Infinite automatic power generation device for generating, storing and amplifying energy

Through the innovative design of infinite automatic power generation devices, the self-generating and self-charge mechanism of components such as rechargeable batteries, capacitors and transformers has been used to solve the problem of dependence on mineral resources in the existing technology, and a safe, reliable and low-cost solution for continuous power generation and energy storage is achieved.

CN120584444APending Publication Date: 2025-09-02皮耶托夫·拉扎纳贾托沃
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Patent Information

Application Number
CN202380061691.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-08-26
Publication Date
2025-09-02

AI Technical Summary

Technical Problem

Existing generators and energy storage equipment rely on limited mineral resources, resulting in environmental pollution and resource competition, and there are safety hazards in the accident, so it is impossible to continuously generate power and store energy.

Method used

An infinite automatic power generation device is adopted to form a closed-loop system by connecting rechargeable batteries, capacitors, transformers and motors in parallel or in series, and using self-generating and self-charge mechanisms composed of insulators and magnets to form a closed-loop system to achieve continuous power generation and energy storage.

Benefits of technology

It realizes continuous power generation and energy storage without external energy input, reduces dependence on mineral resources, reduces environmental pollution risks, and is easy to manufacture, safe and reliable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to an infinite automatic power generation device numbering 1 to 19. Infinite automatic power generation devices numbered 1 to 19 can be used in combination in a product to generate, store, amplify mechanical, current direct current (DC), alternating current (AC) power without the need for an external power source. The manufacturing materials of the unlimited automatic power generation devices numbered from 1 to 19 are rechargeable batteries or capacitors or electric transformers which have the same voltage but different powers and are connected in parallel and / or in series; or an insulated capacitor having two different electrodes separated by an insulator (perforated); or a magnet and diode and coil / transformer held in the high voltage insulator; or the transformer and the motor are provided with insulating magnetic alloy coils; or at least one circular magnet is on the same axis with the rod, U-shaped or other forms of magnets; or at least two twisted insulated wires separated by a high-voltage insulator, the wires being used on the insulator; or a diode, a resistor, a capacitor and a transistor are used between the two batteries; or two backward diodes are connected in parallel on the high-voltage insulator.
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Description

[0001] Field of the Invention

[0002] The present invention relates to unlimited, self-generating devices for generating and storing DC and AC electrical power and mechanical energy, such as batteries, battery chargers, capacitors, electrical transformers, generators, and electric motors. These devices are capable of continuously generating electrical power and mechanical energy without the need for an external energy source.

[0003] Mechanical, electrical, thermal, etc., relating to the manufacture of new types of batteries, generators, capacitors, transformers, electric motors, and related manufactured products, which are capable of providing continuous electrical and / or mechanical power to these products without the need for an external power source. Background of the Invention

[0005] Power generators and energy storage devices such as (rechargeable) batteries, energy storage capacitors, electrical transformers, generators, electric motors, etc. require an initial power source to store, convert, charge or generate electricity, for example:

[0006] 1- The battery and the energy storage capacitor can be charged (if rechargeable) by a battery charger when in use.

[0007] 2--Power transformers require electricity, which is converted and transformed into different voltages and currents...

[0008] 3--Generators require machinery and / or electricity to produce electricity.

[0009] 4--Electric motors require electricity to generate mechanical energy.

[0010] 5--Mechanical engines (in the engines of cars, trains, planes, and ships) require fuels such as gasoline and coal to generate mechanical and electrical power.

[0011] These electrical and mechanical power generators: motors, chargers, transformers and energy storage devices require external electrical power, mechanical power, etc. to continue operating. These powers may come from oil, wind power, solar power, nuclear power, biomass conversion, coal, wood combustion, etc.

[0012] These mineral resources (oil, coal, natural gas, etc.) are limited on Earth, and scientists believe that they are causing harmful weather changes to humans and the Earth (through increases in global climate and temperature, etc.), while traditional nuclear power plants may also pose a threat to life in the event of an accident...

[0013] (Just as happened at nuclear power plants like Chernobyl, Fukushima, and Three Mile Island.) We want generators, transformers, and energy storage devices that can generate, convert, and store electricity without harming the planet or people, while also being easy to build, inexpensive, and consistently reliable.

[0014] Therefore, an unlimited automatic power generation device is required as a generator.

[0015] and storage devices that provide these advantages to improve human living conditions in domestic, public and private use, and to maintain peace on Earth, where wars have been caused by the competition for limited mineral resources (oil, coal, natural gas, etc.) used to power cars, trains, ships, planes and cities.

[0016] I hereby request that my invention be forever prohibited from use for dangerous purposes, be permanently prohibited from use by military activities and / or defense agencies worldwide, or be subject to confiscation... forever, and that the benefits of any unlimited automatic power generation device be used only for peaceful purposes.

[0017] Therefore, there is a need for continuous electrical power and mechanical automatic generation, invented using a combination of several improved batteries and / or capacitors and / or several generators and / or several electrical transformers, Zener diodes, magnets.

[0018] High voltage (antistatic) insulators, metal foils, (insulated) wires and / or electric motors manufactured in a manner other than the conventional description shown below:

[0019] 1- A regular battery has an anode (made of a material like metal or a coal rod) with a positive terminal.

[0020] A positive electrode and a negative electrode, usually made of metal, and an electrolyte, which is an acid (or base), with a typical voltage of about 1 volt. Some high-voltage batteries are made by connecting cells of about 1 volt in series, with the negative electrode connected to the positive terminal of another cell.

[0021] For example;

[0022] For a 4.5 volt battery, three 1.5 volt cells are connected in series.

[0023] Rechargeable batteries are similar to regular batteries, but the materials used for the cathode (-), anode (+), and electrolyte enable them to release energy. Furthermore, rechargeable batteries can be charged by applying higher currents and higher voltages.

[0024] 3- Ordinary (energy storage) capacitors (and other capacitors) are very similar to batteries and can be used as rechargeable power generation and energy storage devices. Polar capacitors and non-polar capacitors (high frequency or low frequency) are both made of two similar electrodes separated by an insulator.

[0025] 4- The core of a conventional power transformer is made of magnetic steel (silicon steel, iron-nickel alloy, ferrite, etc.) and is equipped with a primary coil and a secondary coil. (s). The primary (input) coil carries an alternating current, and the voltage is converted to a higher or lower voltage and / or current in the secondary (output) coil, depending on the number of turns and size of the coil.

[0026] Coils of wire and insulated wire (usually copper) are in the primary (input) and secondary (output), along with an iron core made of the alloy used in the transformer.

[0027] 5-A typical electric generator is made of magnets and / or electromagnets, which have a strong magnetic field and a coil of wire that rotates inside a rotor.

[0028] The alternating magnetic field generated in the rotating coil induces a current whose voltage depends on the frequency of the rotor's rotation. (In some generators, the coil is fixed, while the (electro)magnet rotates or moves to induce the current in the coil.)

[0029] 6-Usually a mechanical generator is driven by an electric motor or requires steam, gasoline, natural gas or electricity to produce a rotating mechanical power which is transmitted through a shaft and can also produce electricity when connected to a generator (dynamo) through a shaft.

[0030] These devices mentioned above originally require electricity to generate, store... and continuously supply electricity. They can be improved by my invention so that electricity (energy) can be continuously generated and / or stored without adding external electricity. This will utilize unlimited self-generation devices and improve the use of the devices mentioned in points 1, 2, 3, 4, 5, and 6 above. Abstract

[0031] According to the present invention, as described in the appended claims, several models of unlimited self-generating devices are provided:

[0032] Infinite automatic power generation device 1: is an automatic rechargeable battery made of at least...

[0033] Three (rechargeable) batteries with three different energy storage capacities but the same voltage are connected in a parallel circuit with a switch.

[0034] Unlimited automatic power generation device 2: is an automatic rechargeable battery consisting of two groups of two (rechargeable) batteries with two groups of different power and four batteries of the same voltage connected in parallel and series, and with a switch.

[0035] Infinite automatic power generation device 3: is an automatic rechargeable charger consisting of 2, 3 or 4 (rechargeable) batteries with different energy storage capabilities but the same voltage, connected in parallel and series, and equipped with relevant.

[0036] Infinite automatic power generation device 4: is an automatically rechargeable charger consisting of 2, 3 or 4 (storage) different capacitors with the same voltage, connected in parallel and series, and with a switch.

[0037] The unlimited automatic power generation device 5 is an AC power generator consisting of at least three (high frequency and / or low frequency) capacitors of different capacitance values ​​connected in parallel, with the same voltage, and equipped with a switch or a resistor.

[0038] Infinite automatic power generation device 6: is an AC generator composed of at least three components.

[0039] Transformers of the same voltage but different powers are connected in parallel.

[0040] Infinite automatic generating device 7: It is an AC generator composed of 1 or 2 new transformers, using an insulated magnetic alloy coil as the input coil and an insulated non-magnetic alloy coil as the output coil.

[0041] Infinite automatic power generation device 8:

[0042] It is an AC power generator consisting of a coil with a magnetic core and an insulating magnet that vibrates when its ends are connected to two parallel insulated reverse diodes.

[0043] Infinite automatic generator device 9: This is a mechanical generator (or motor) consisting of a circular magnet rotating on an axis, and its rotation is driven by the magnetic force generated by a movable / fixed magnet (such as rod-shaped, C-shaped, U-shaped, etc.) close to the circular magnet.

[0044] Infinite automatic power generation device 10: is a mechanical and AC power generator, consisting of a circular magnet with a hole and a coil surrounding it. Near the coil, there are magnets in the form of rods, U shapes, etc. to make it rotate on the axis.

[0045] Infinite Automatic Generator 11: is a new type of AC / DC motor made with insulated magnetic alloy coils (which further enhances the effect of AC).

[0046] The magnetic field in the motor's coils and rotor / stator can be connected to a generator via its shaft to power this new type of electric motor.

[0047] Infinite Automatic Generator 12: is an AC and DC power generator that uses an asymmetrical capacitor with two electrodes of different sizes separated by a thin high-voltage insulator and maintained insulated by the high-voltage insulator.

[0048] Infinite automatic power generation device 13: is a transformer and AC and DC generator.

[0049] It consists of two insulated wires separated by a high voltage insulator and twisted together in the middle section, all of which are placed inside a high voltage insulator.

[0050] Infinite Automatic Generator 14: This is an electron / ion beam and plasma generator using a modified insulated asymmetric capacitor with two electrodes of different sizes. Each electrode has a hole, separated by a thin high-voltage insulator, which also has a hole.

[0051] Infinite Automatic Generator 15: This is a high power, high frequency AC and DC power generator that is made up of two or more asymmetric capacitors connected in series, parallel or in a ring. Each asymmetric capacitor is separated by a high voltage insulator that separates the two insulated different conductors.

[0052] Infinite Automatic Generator 16: This is a generator for AC and DC power supply, which is constructed of insulated wires that are separated by a high-voltage insulator and twisted together at one end and held inside the high-voltage insulator.

[0053] Infinite automatic power generation device 17: It is a self-recharging battery consisting of at least three (rechargeable) batteries, which have the same voltage and similar power.

[0054] The unlimited automatic power generation device 17 comprises a circuit including a diode, a capacitor, a resistor and a transistor, and the circuit can be integrated into an integrated circuit.

[0055] An integrated circuit constructed by connecting more than 50 diodes in parallel can replace diodes, capacitors, resistors, and transistors.

[0056] Tube and capacitor unlimited automatic power generating device 18: This is an automatic power electron beam generator consisting of at least two anti-parallel diodes and a high-voltage insulator, which can continuously generate an electron beam without the need for an additional power supply.

[0057] Infinite Automatic Generator 19: This is an AC generator that utilizes two Infinite Automatic Generators and electronic circuitry. An Improved Infinite Automatic Generator (IAPGD) uses one or more Infinite Automatic Generators (IAPGDs) together.

[0058] 1---Unlimited automatic generators 1 and 2 are used as basic generators.

[0059] resistors and transistors.

[0060] A storage device is a battery capable of generating and storing DC power and current, capable of continuously supplying power at any voltage without the need for an external power source. It consists of a combination of (rechargeable) batteries and / or energy storage capacitors with similar voltages (V) and different power storage capacities (W / h), as well as capacitors with different capacities (F), connected together in parallel (positive + to negative -, negative - to positive +) or in series (positive + to negative -); in this case, the (rechargeable) batteries and / or capacitors can continuously charge themselves without the need for an external power source.

[0061] You need at least a relay and a zener diode, or at least two or three reverse diodes in parallel.

[0062] ( Figure 1.d 、 Figure 1.e and Figure 1.f ),

[0063] These components reduce the amount of current flowing from the positive (or negative) terminal of the rechargeable battery to the positive (or negative) terminal of the low-power battery.

[0064] Rechargeable batteries have the highest power (to prevent battery discharge).

[0065] 2---Infinite automatic power generation device 3 and 4 as a generator is a charger for (rechargeable) batteries or (energy storage) capacitors, continuously generating DC power without the need for an external power supply, achieved by automatic self-charging, the construction requires at least 2 (rechargeable) batteries and / or (energy storage) capacitors with similar voltage. (V)

[0066] Two batteries or capacitors of different power (W / h) or different capacity (F) are connected in parallel (positive to positive, negative to negative); when connected to a (rechargeable) battery for charging, the (rechargeable) battery and / or capacitor in the charger is continuously and automatically charged (no external power supply required). A circuit with a diode and a relay is called "Circuit 162" ( Figure 1.d 、 Figure 1.e and Figure 1.f ), should be added to avoid discharge.

[0067] This "circuit 162" acts as a switch and is used in conjunction with a charger to charge a rechargeable battery.

[0068] 3---An unlimited automatic power generation device 5 for high voltage power supply, composed of (high frequency and / or low frequency) capacitors and (polarized) capacitors, which can continuously generate AC or DC power without adding an external power supply.

[0069] By connecting at least three types of capacitors (high or low frequency, or polarity) in parallel, with similar voltage (V) and different capacitance (F), if placed on or in a high voltage (HV) (anti-static) insulator, they will spontaneously charge themselves, thus generating a continuous AC or DC power supply without the need for an external power supply.

[0070] These capacitors and other connected equipment need to be insulated by high voltage insulators when generating DC or AC power.

[0071] 4---Infinite automatic power generation device 6, used as an AC generator.

[0072] A transformer that can continuously generate (high or low frequency) AC current and power without adding an external power supply is constructed as follows:

[0073] At least three electrical transformers with similar voltages (V) and different powers (W / h) connected in parallel (and in phase) with their inputs (and outputs) are capable of self-charging and continuing to generate alternating current after the initial alternating current is applied.

[0074] These transformers are able to charge themselves and, after using the initial AC power, continue to generate AC power that is not needed afterwards.

[0075] Power no longer required. The principle used for the automatic generation of continuous alternating current (AC) is the same as that used for the automatic generation of direct current (DC), which is to produce continuous direct current by connecting three (or more) rechargeable batteries in parallel, as explained (1---p. 7 & 8). These three parallel outputs can be connected to the input of a transformer 4, the output of which is connected to a circuit that allows alternating current.

[0076] These three parallel outputs can be connected to the input of transformer 4, and the output of the transformer is connected to a circuit that allows AC current to flow in one direction only, by re-entering the three parallel inputs of three more transformers, forming a loop.

[0077] 5. Infinite automatic power generation device 7, acting as an AC generator, utilizes a novel transformer to continuously generate (high-frequency or low-frequency) alternating current and electricity, without the need for an external power source. The device consists of at least one or two novel transformers equipped with output coils made of insulated copper wire and input coils made of insulated magnetic alloy wire.

[0078] The output coil of the first new type of transformer, transformer A, is connected to the input coil of the second new type of transformer, transformer B. Furthermore, the output coil of transformer B can be connected to the input of the first new type of transformer A through a circuit consisting of diodes. This circuit only allows AC current to flow to the input of the first new type of transformer A, forming a loop. The two new types of transformers are connected in a toroidal manner.

[0079] The two new transformers are able to recharge themselves and continuously generate more electricity without the need to add any external power supply.

[0080] 6---Infinite automatic power generation device 8, as an AC generator, consists of an insulating magnet, a diode, a high-voltage (anti-static) insulator and a coil.

[0081] These coils can have a core and are capable of continuously generating alternating current without an external power source.

[0082] This is a combination of a coil (with or without an iron core), a transformer, a magnet, a diode, and high-voltage (anti-static) insulators that allows the magnet to vibrate continuously near the iron core of the transformer or the iron core of the coil.

[0083] By using two isolated reverse-phase diodes, a low AC voltage is repeatedly short-circuited across an insulated magnet, causing the magnet near the transformer core to repeatedly contract and expand. The vibrating magnet generates an oscillating magnetic field, which in turn generates a continuous AC current in the transformer coil that resonates with the magnet's vibration frequency.

[0084] 7---Infinite automatic power generation devices 9 and 10 as mechanical generators (or motors) can be constructed (modified) to function simultaneously as AC / DC generators (dynamos) and mechanical generators, continuously producing mechanical and electrical power without the need for an external power source. Its construction is:

[0085] By using a circular magnet (which can have holes around it) and connecting two counter-connected coils in series nearby, each with a C-shaped core,

[0086] By using a circular magnet (which may have holes around it) and two coils connected in (opposite) series nearby, forming a C-shape, the core is made of a magnetic alloy to generate alternating current.

[0087] Other magnets equipped with buttons, such as rod, C-shaped, U-shaped or other shapes, can be adjusted about their own axis to variable angles / positions near or around a circular magnet attached to the rotating shaft.

[0088] The magnetic field created by these magnets with rods, C-shapes or U-shapes produces a variable magnetic force (depending on their angle and distance), which interacts with the circular magnet rotating on its axis, thereby continuously generating variable mechanical energy (which can be converted into alternating current) without the need for an external power source.

[0089] 8---Infinite automatic power generation device 11, as a mechanical generator, is a new type of motor structure.

[0090] In electric motors using AC / DC power, this is achieved by using insulated magnetic alloy coils that enhance the alternating magnetic field in the rotor.

[0091] This increases the power output of the motor (DC / AC) over motors built using insulated copper coils (or non-magnetic alloy wire).

[0092] If this new type of electric motor is connected to a generator via its shaft, it can continuously generate AC / DC electricity and mechanical power without adding an external power source, by using only a portion of the generator's power output to electrically drive the motor.

[0093] The insulated magnetic alloy wire may be, for example, an insulated silicon steel wire (iron (95%), silicon (about 5%)) or an insulated iron-nickel alloy wire (iron (30-70%), nickel (70-30%)).

[0094] This insulated magnetic alloy coil in the core of the coil and rotor or stator of the new motor enhances the alternating magnetic field generated by direct current and alternating current, thereby increasing the mechanical output power of the new motor, exceeding that of ordinary motors using insulated copper coils.

[0095] 9---Infinite automatic power generation device 12 as an AC generator, generating 20 high voltage and high frequency AC and DC (static) power, constructed using symmetrical capacitors. (s)

[0096] A bisymmetrical capacitor consists of two electrodes of different sizes and volumes, separated by a thin layer of high-voltage insulator, which produces a continuous negative charge on the larger electrode and a positive charge on the smaller electrode, thereby continuously generating high voltage, static electricity, ionized air and other phenomena.

[0097] The bisymmetrical capacitor can act as a charge amplifier and polarity inverter in the insulating state.

[0098] Asymmetric capacitors can be connected in series, parallel or in a ring configuration and used on high voltage insulators.

[0099] 10- Infinite automatic generator 13 is used as a transformer and AC and DC generator to increase or decrease the input voltage and / or current. This is made up of two insulated electrical conductors (wires, etc.) that are separated by a high voltage insulator in the middle of their length and twisted around each other

[0100] and kept insulated in a very high voltage (antistatic) insulating casing (e.g. paraffin),

[0101] The input and output of this transformer are at the ends of two insulated wires, and the voltage produced at the output is: (depending on the number of turns of the winding on the two conductors);

[0102] 1- Input voltage / current in output line increases / decreases,

[0103] 2- The polarity of each insulated output wire end;

[0104] 3- Is the output both DC and AC, or just AC voltage,

[0105] At least two transformers are connected in parallel, in series or in a loop, which can continuously generate high-voltage electrostatic energy (ionized air, etc.) while maintaining the insulation of the high-voltage insulator without the need for an external power supply.

[0106] 11---The unlimited automatic power generation device 14 uses an improved asymmetric capacitor as an electron / ion beam or high-voltage electrostatic generator.

[0107] Using an asymmetric capacitor with two electrodes of different sizes and a hole in the middle, the electrodes are separated by a thin high-voltage insulator with a hole in the insulator. Electrons flow from the larger, negatively charged electrode to the smaller, positively charged electrode, creating an electron / ion beam. The electron / ion beam is generated in the hole and flows from the largest, negatively charged electrode to the smallest, positively charged electrode, continuously producing ionized air.

[0108] Alternatively, plasma could be used to generate thrust for engines, or to beam particles to move spacecraft through space (whether in air or a vacuum).

[0109] The two asymmetric electrodes with holes can be separated by a high-voltage insulator without holes. This high-voltage insulator can separate gas (or air) from vacuum or liquid (water) if it is thin enough and permeable to gas, but not to water.

[0110] This enables positive (hydrogen) and negative (oxygen) ions to flow continuously through the pores of two electrodes and an insulator (with or without pores) without an external power source.

[0111] 12---Infinite automatic power generation device 15 is a high power high voltage and high frequency AC and DC power generator and / or electron / ion beam generator constructed as follows:

[0112] This is done by connecting at least two or three asymmetric capacitors (separated by two insulated conductors and a high-voltage insulator) in series to form a loop, acting as an amplifier and inverter of charge and polarity.

[0113] This device generates a higher voltage and electron beam intensity between an anode + (in the form of a ring) and a cathode - (e.g. in the form of a needle tip);

[0114] The device is used for electron / ion beam generation and can also be used in propulsion engines in space, or as a high-voltage electrostatic generator, or for charging high-voltage capacitors.

[0115] The 13-Infinite Automatic Generator 16 is an AC and DC generator that uses two insulated wires of the same or different sizes, twisted together at both ends and separated by a high-voltage insulator. They are fixed inside the high-voltage insulator.

[0116] The wires with the largest diameter and length produce a negative charge (alternating), while the smaller wires produce a positive charge (alternating).

[0117] If the two wires are similar sizes, it will act like a transformer,

[0118] 14---Infinite automatic power generation device 17 is an automatic rechargeable battery and / or battery charger comprising at least three (rechargeable) batteries: battery 1, battery 2, and battery 3, which have similar voltages and powers. A circuit comprising one or more diodes, capacitors, resistors, and a transistor is connected between battery 1 and battery 2. Battery 3 is charged when connected to the other poles of battery 1 and battery 2, and battery 3 is charged without the addition of a power source. 15---Infinite automatic power generation device 18 is an automatic power supply electron beam generator comprising at least two reverse fast-switching diodes (1N4148 or Schottky diodes) connected in parallel, which are insulated by a high-voltage insulator (examples of insulators include paraffin paper, polyethylene terephthalate (PET), and oil-containing paper).

[0119] The device, which generates a positive voltage at one round end and a negative voltage at the other, is needle-shaped and can continuously generate electron beams without the need for an external power supply.

[0120] 15'---Infinite automatic generator 19 is an AC generator that alternately charges two or more (rechargeable) batteries using the circuit used in the two automatic generators 17. By alternately activating and deactivating the two infinite automatic generators, current will flow in both directions.

[0121] The combination of unlimited automatic power generation devices I invented can be combined in different ways to generate and store electricity, which can be used, for example, in power stations, hydrogen production stations, power stations in factories, or in buildings, spacecraft engines, hydrogen production, etc.

[0122] The novelties and advantages of the 18 infinite automatic power generation devices I invented are summarized in

[0123] Paragraphs 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, and any combination thereof, are intended to continuously generate very cheap electrical and mechanical power without the need for an additional external power source.

[0124] These devices are easy to manufacture because existing, inexpensive products can be used, and safe because no dangerous, toxic byproducts are produced.

[0125] A brief description of each image.

[0126] The invention will be more clearly understood from the following description and examples, the examples of which are given with reference to the accompanying drawings, which are electrical schematics and diagrams of the apparatus, in which:

[0127] Figure 1.a The structure of the present invention is shown, namely an unlimited automatic power generation device 1, which is made of (rechargeable) batteries as a DC power generator and storage device.

[0128] The device is designed as a self-generating battery of approximately 1 volt, capable of continuously producing direct current and electrical current without the need for an external power source (no circuit to stop the discharge).

[0129] Figure 1.b 、 Figure 1.c 、 Figure 1.d 、 Figure 1.e and Figure 1.f Two different configurations of the invention are shown.

[0130] The Infinite Automatic Power Generation Device 1 acts as a DC power generator and storage device, utilizing a rechargeable battery equipped with a circuit that acts as a switch to prevent discharge. It incorporates components such as a Zener diode, relay, transistor, and resistor.

[0131] This is the construction of an infinite self-generating battery capable of producing 7.5 volts of direct current, storing 1 watt-hour of power, capable of generating electricity continuously without an external power source, and by adding one of three equivalent circuits, called "Circuit 162" (see Figure 1.d 、 Figure 1.e and Figure 1.f). "Circuit 162" is to prevent the discharge of the 7.5 volt automatic generating battery.

[0132] Figure 1.g The structure of the present invention is shown; an unlimited automatic power generation device 3, which can be used as a DC power generator and storage device, is made of (rechargeable) batteries.

[0133] This is built as an unlimited automatic power generation device that can be used as a charger to continuously charge (rechargeable) batteries without adding an external power source when charging.

[0134] One of the three circuits of "circuit 162" can be used to prevent the battery from discharging so that it can be charged when used as a charger.

[0135] Figure 1.h The structure of the present invention is shown; the unlimited automatic power generation 2 is used as a DC power generator and storage device, and is made using (rechargeable) batteries.

[0136] This is a self-generating battery, approximately 24 volts, 40 amps, capable of continuously generating direct current without the need for an external power source (it is equipped with two switches to stop the discharge).

[0137] Figure 2.a Shows the structure of an infinite automatic generator 5, which operates as an AC generator using (high frequency or low frequency) capacitors (F) and (MKP).

[0138] This is constructed as an unlimited automatic power generating device that can act as an AC generator, continuously producing (very high or low frequency AC current) without the need to add an external power source.

[0139] Figure 2.b The structure of the infinite automatic power generation device 4 is shown.

[0140] This is used as a DC power generator and storage device, using polarized capacitors; electrolytic supercapacitors, ultracapacitors, etc.

[0141] This is to build an unlimited automatic power generation device that acts as a DC generator, continuously generating and storing DC current without the need to add an external power source.

[0142] Figure 2.c The structure of the infinite automatic power generation device 4 is shown, which can serve as a DC power generator and a storage device composed of energy storage capacitors.

[0143] This is a device built to generate unlimited and automatic electricity, and can be used as a charger to continuously charge (store) DC power to capacitors without the need for an external power source.

[0144] Figure 2.dThe structure of the invention is shown; the infinite automatic power generation device 12 uses a high-voltage electrostatic generator that is made of at least one new type of capacitor (which I call an asymmetric capacitor).

[0145] Asymmetric capacitors consist of two electrodes of different sizes separated by a high voltage (HV) (anti-static) insulator to create:

[0146] When the asymmetric capacitor is isolated from a high-voltage insulator, the largest electrode develops a negative charge, while the smallest electrode develops a positive charge.

[0147] The charges on the two electrodes of the asymmetric capacitor continuously generate energy without the need for an external power source; (high voltage static electricity, ionized air, etc.).

[0148] Figure 2.e The structure of an infinite automatic power generation device 14, which can be used as an electron / ion beam generator, is shown. It uses an asymmetric capacitor with a high-voltage insulator with one or more holes inside, separating a large electrode and a small electrode, each of which has one or more (small) holes.

[0149] The device can be used as an electron / ion beam generator.

[0150] This is constructed as an unlimited automatic power generation device that can continuously and spontaneously produce electron (or ion) beams without the addition of an external power source. These electron beams can be used to ionize the air or used in space engines that use (continuous) charged particle beams to provide thrust in space (without any external power source).

[0151] Figure 2.f The structure of an infinite automatic power generating device 16 is shown, which can be used as an AC and DC generator, as well as an amplifier and inverter of polarity and charge, and is made using asymmetric capacitors.

[0152] The apparatus is constructed as an infinite automatic power generating device consisting of at least two insulated conductors (of different sizes) separated by a high voltage antistatic insulator and rotating together at the ends of a portion of their length.

[0153] The other ends of these two conductors continuously generate increasingly stronger direct current and alternating current without the need for an external power source (if the two wires are different sizes), or only alternating current (if the two wires are the same size), and at very high or extremely high frequencies.

[0154] The equipment must be completely isolated by high voltage insulators and paraffin treated cardboard; e.g.

[0155] The longest / largest insulated wire has a negative charge at each end, while the shortest / smallest insulated wire has a positive charge. When these charges remain insulated without an external power source, they continue to increase.

[0156] Figure 2.g The structure of an infinite automatic power generating device 13 is shown. The device can be used as an AC and DC power source, or simply as an AC generator. It can also function as a transformer, amplifier, and charging polarity inverter, suitable for producing both AC and DC power.

[0157] - This is a device constructed to generate unlimited automatic electricity, having at least two insulated conductors (of similar length and thickness) separated by a thin layer of high voltage anti-static insulation material and twisted together in the middle of their length.

[0158] -The other two uninsulated ends of the two same insulated conductors are the two inputs and two outputs of the device, which acts as a transformer by increasing and / or decreasing the self-generated AC voltage.

[0159] --When completely insulated by high-voltage insulators (for example, placed in a cardboard box wrapped in paraffin), it can generate continuous AC voltage and / or current at high or low frequencies without the need for an external power source.

[0160] --These devices can act as high-voltage AC generators (when the two conductors are the same size), or they can act as both DC and AC generators when the two conductors are different sizes.

[0161] Figure 2.h The structure of the unlimited automatic power penetration device 15 is shown, which is used as a high voltage AC and DC power source.

[0162] The device consists of four insulated conductors separated by three high-voltage anti-static insulators, forming three asymmetric capacitors that function together as an amplifier and inverter.

[0163] The three asymmetric capacitors are connected in a ring and housed in a housing with high-voltage (antistatic) insulation. The thrust is in the form of an electron (or ion) beam. This device can also be used to ionize air and gases, as the three asymmetric capacitors are connected to an initially negatively charged conductor via a loop and an inverter, generating an amplified high negative charge (-).

[0164] These electrons / ions emitted by the needle tip (as an example) are attracted and accelerated through a positively charged ring connected to an amplifying high voltage positive voltage.

[0165] These amplified charges are due to the inverter and amplifier connected in the loop if the equipment remains insulated.

[0166] This unlimited automatic power generation device can also serve as an air ionizer, plasma generator, ... and can work continuously without the need for an external power source.

[0167] For best results, the device should be placed in a case or box filled with good quality high voltage insulating material such as paraffin or oil.

[0168] Figure 3.a The structure of an infinite automatic generator 6 is shown, which can be used as an AC generator and an AC power amplifier and is made using 3 or 4 electrical transformers.

[0169] This is an automatic power generating device that can continuously generate electrical (high or low frequency) alternating current without the need for continuous addition of an external power source.

[0170] This is made by connecting the three inputs (and three outputs) of at least three electrical transformers of similar voltage (V) and different power (W / h) in parallel and in phase.

[0171] These three transformers can automatically charge and continue to generate AC power when connected to the input of the fourth transformer (after the initial AC power is used).

[0172] The output of the fourth transformer is connected to a circuit that only allows AC current to flow to the three parallel-connected inputs (connected to the other three transformers).

[0173] By connecting these transformers in a loop, more electricity can be generated.

[0174] Figure 3.b The structure of an unlimited automatic power generation device 7 is shown, which acts as an AC generator and AC amplifier and is composed of at least one or two new types of transformers.

[0175] This is an AC generator built as an unlimited automatic power generation device, consisting of two new types of transformers. The input coil uses an insulated magnetic alloy coil [insulated silicon steel wire (iron (95%), silicon (about 5%) or insulated iron-nickel alloy wire (iron (30-70%), nickel (70-30%)...].

[0176] The output coil uses insulated copper wire to generate more electricity.

[0177] More power can be generated by connecting the output of a new type of transformer, A, to the input of another new type of transformer, B, whose output is connected to a circuit so that the AC current only enters the new type of transformer. A , thus forming a cycle.

[0178] (The two transformers are then connected in a loop) to continuously generate more AC power (either high or low) without adding an external power supply.

[0179] Figure 4a, Figure 4.b 、 Figure 4.c and Figure 4.d Four structures of an infinite automatic generator 8 for use as an AC power source (low or high frequency) are shown. This consists of a transformer and / or coil, high voltage insulators, diodes and a rod, C It is composed of magnets in the shape of a circle, a U shape or other shapes.

[0180] This infinite automatic power generation device acts as an AC generator, capable of continuously generating AC power without the need for an external power source.

[0181] Alternating current is generated by induced currents produced by the vibrating magnetic field in a vibrating insulating magnet.

[0182] Two diodes are connected across this magnet, repeatedly short-circuiting the low AC voltage across the insulated magnet, causing it to continually contract and expand.

[0183] Figure 5.a and Figure 5.b The structure of the Infinite Automatic Generator No. 9 is displayed.

[0184] This is used as a mechanical power generator (motor) and can also be used as an AC / DC generator and mechanical power generator.

[0185] Infinite automatic generation power supply device 10, such as Figure 5.c and Figure 5.d shown.

[0186] The unlimited automatic power generation device No. 10 is composed of at least one circular magnet (with a hole on its surface and at least two nearby C The invention is composed of a shaped alloy core coil) and at least one or two other magnets to form a new type of electric motor.

[0187] The infinite automatic power generation device 9 acts as a mechanical power generator, which can spontaneously and continuously generate mechanical power without adding external power.

[0188] This power can be converted into continuous electricity production by connecting the shafts of the electric motor and generator.

[0189] Alternatively, by adding holes to the circular magnet and placing several coils near its surface

[0190] Figure 6 The structure of the infinite automatic power generation device 11 is shown.

[0191] This is used as a mechanical power generator.

[0192] This is made using a normal electric motor where the normal (copper) coils are replaced with insulated magnetic alloy wires.

[0193] For example, insulated silicon steel wire (iron (95%), silicon (about 5%)) or insulated iron-nickel alloy wire (iron (30-70%), nickel (70-30%))...

[0194] Insulated ferrite coils can further enhance the alternating magnetic field within the coils of electric motors using AC / DC power. This increase in the alternating magnetic field within the motor coils allows for a stronger alternating magnetic field, even when using AC / DC power (compared to motors built with insulated copper coils). This results in an autonomous power generation device equipped with a more powerful electric motor capable of generating more mechanical power output (while using the same input power as a conventional electric motor). If connected to a generator via its shaft, this device can continuously generate more AC / DC electrical and mechanical power without the need for an external power source, by allowing a portion of the generator's electrical output to power the new motor, which is made with insulated ferrite coils.

[0195] Figure 7.a An unlimited automatic power generation device 17 is shown, which is composed of at least 2 or 3 similar batteries (rechargeable) with arbitrary power storage and voltage. (At least 1.2 volts.)

[0196] For example, the negative terminal of battery 1 is connected to the cathodes of at least one or two diodes, the negative terminal of a 1000 microfarad (electrolytic) capacitor, and the emitter of an NPN transistor (BC547). The positive terminal of battery 2 is connected to the anodes of at least one or two diodes (connected in parallel), the positive terminal of a 1000 microfarad electrolytic capacitor, and the collector of an NPN transistor. The base of the NPN transistor (BC547) is connected to a resistor, the other end of which is connected to the positive terminal of battery 2. The positive terminal of battery 1 is connected to the positive terminal of battery 3 for charging, and the negative terminal of battery 2 is connected to the negative terminal of battery 3 for charging. Figure 7.b An infinite automatic power generation device 18 is shown, which is composed of at least two anti-parallel diodes with a ring-shaped anode and a needle-point cathode located on a high-voltage insulator.

[0197] Figure 7.c An unlimited automatic generator 19 is shown, consisting of two circuits of automatic generators 17, equipped with other components to alternately activate one of the circuits, thereby generating alternating current to charge two rechargeable batteries.

[0198] Detailed description of the painting

[0199] FIG1 shows a basic infinite automatic power generation device 1, which acts as a DC power generator and storage device.

[0200] This allows for the continuous generation of DC power without the need for an additional power supply.

[0201] Figure 1.a There is no circuit to prevent the battery from discharging when fully charged, where:

[0202] (1) is the cathode of (rechargeable) 1.2V battery 1; negative electrode -

[0203] (2) is the anode of (rechargeable) 1.2V battery 1; positive +

[0204] (3) is the cathode of (rechargeable) 1.2V battery 2; negative electrode -

[0205] (4) is the anode of (rechargeable) 1.2V battery 2; positive +

[0206] (5) is the cathode of the (rechargeable) 1.2V battery 3; the negative electrode -

[0207] (6) is the anode of the (rechargeable) 1.2V battery 3; positive +

[0208] (7) is the cathode of the (automatic charging) battery output; negative pole -

[0209] (10 self-charging batteries are a combination of battery 1, battery 2 and battery 3 connected in parallel)

[0210] (8) is the anode; it is the positive electrode + of the (self-charging) battery output.

[0211] (The automatically rechargeable battery is a combination of battery 1, battery 2, and battery 3 connected in parallel)

[0212] as well as Figure 1.d 、 Figure 1.e 、 Figure 1.f The circuit described in detail in can be used as a switch or relay, connected between (4) and (6), and / or between (3) and (5) to avoid discharge of the three batteries.

[0213] Where: Rechargeable battery 1 has a voltage of 1.5 volts and produces a current of 1 ampere. W / h = Watt per hour.

[0214] The voltage of the rechargeable battery 2 is 1.5 volts and produces 0.5 amps. Watt / hour = 0.5 watts / hour.

[0215] The voltage of the rechargeable battery 3 is 15 volts and produces 0.25 amperes. Watt-hours = 0.25 watt-hours.

[0216] This is a self-rechargeable battery that continuously generates 1.5 volts. It is capable of continuously generating at least 1A.V / h = 1W / h when all cells 1, 2, and 3 are fully automatically charged. No external power source is required for charging. This requires a circuit (referred to as "circuit 162"), such as Figure 1.d 、 Figure 1.e or Figure 1.f (or equivalent circuit), connected between (4) and (6), and / or (3) and ... (5). This is to avoid discharging of the three fully charged batteries.

[0217] Figure 1.b An infinite automatic power generation device 1 is shown, which is used as a DC power supply and storage device.

[0218] This is made possible by a 7.5V battery (rechargeable included), capable of continuously generating and storing DC power without the need for an external power source.

[0219] This is made up of the following parts:

[0220] (9) is the cathode; (automatic charging) the negative terminal of battery II -7.5V

[0221] (10) is the anode; (automatic charging) the positive terminal of battery II +7.5V

[0222] (11) is the cathode; negative electrode - (rechargeable) 1.2 volt battery 1

[0223] (12) is the cathode; negative electrode - (rechargeable) 1.2 volt battery 2

[0224] (13) is the cathode; negative electrode - (rechargeable) 1.2 volt battery 3

[0225] (14) is the anode; the positive terminal of the rechargeable 1.2V battery 1 +

[0226] (15) is the anode; the positive electrode of the rechargeable 1.2V battery 2 +

[0227] (16) is the anode; the positive electrode of the rechargeable 1.2V battery 3 +

[0228] (17) is the cathode; the negative electrode of the rechargeable 1.2V battery 4-

[0229] (18) is the cathode; the negative electrode of the rechargeable 1.2V battery 5-

[0230] (19) is the cathode; the negative electrode of the rechargeable 1.2V battery 6-

[0231] (20) is the anode; the positive electrode of the rechargeable 1.2V battery 4 +

[0232] (21) is the anode; the positive electrode of the rechargeable 1.2V battery 5 +

[0233] (22) is the anode; the positive electrode + of the rechargeable 1.2V battery 6. (23) is the cathode; the negative electrode - of the rechargeable 1.2V battery 7.

[0234] (24) is the cathode; the negative electrode - of the rechargeable 1.2V battery 8. (25) is the cathode; the negative electrode - of the rechargeable 1.2V battery 9.

[0235] (26) is the anode; the positive terminal + of the rechargeable 1.2V battery 7. (27) is the anode; the positive terminal + of the rechargeable 1.2V battery 8.

[0236] (28) is the anode; the positive terminal + of the rechargeable 1.2V battery 9. (29) is the cathode; the negative terminal - of the rechargeable 1.2V battery 10.

[0237] (30) is the cathode of the rechargeable 1.2V battery 11; the negative electrode -

[0238] (31) is the cathode of the rechargeable 1.2V battery 12; the negative electrode -

[0239] (32) is the anode of the rechargeable 1.2V battery 10; positive electrode +

[0240] (33) is the anode of the rechargeable 1.2V battery 11; positive electrode +

[0241] (34) is the anode of the rechargeable 1.2V battery 12; positive electrode +

[0242] (35) is the cathode of the rechargeable 1.2V battery 13; the negative electrode -

[0243] (36) is the cathode of the rechargeable 1.2V battery 14; the negative electrode -

[0244] (37) is the cathode of the rechargeable 1.2V battery 15; the negative electrode -

[0245] (38) is the anode; (rechargeable) 1.2V battery 13 positive electrode +

[0246] (39) is the anode; (rechargeable) 1.2V battery 14 positive electrode +

[0247] (40) is the anode; (rechargeable) 1.2V battery 15 positive electrode +

[0248] (41) is the cathode; the negative electrode of the (rechargeable) 1.2V battery 16

[0249] (42) is the cathode of a (rechargeable) 1.2V battery; the negative electrode. 17

[0250] (43) is the cathode of a rechargeable 1.2 volt battery; the negative electrode. 18

[0251] Batteries 1, 2, and 3 are connected in series, batteries 4, 5, and 6 are connected in series, and batteries 7, 8, and 9 are connected in series.

[0252] Batteries 10 , 11 , and 12 are connected in series with batteries 13 , 14 , and 15 .

[0253] Batteries 16, 17 and 18 together produce a basic self-charging battery with a voltage of 7.5 volts, capable of continuously producing at least 1 ampere·volt / hour = 1 watt / hour = 1 W / h.

[0254] These batteries are self-charging and require no external power source.

[0255] These batteries will discharge when fully charged unless one of the "circuits 162" (or equivalent) is added to prevent discharge.

[0256] Figure 1.c An unlimited automatic power generation device 1 is shown as a DC power generator and storage device for (automatically charging) a 7.5 volt battery.

[0257] This is used with Figure 1.b The same (rechargeable) battery as in the original was made, but connected differently, and one of three circuits, called "Circuit 162," was used to prevent the fully charged 7.5 volt battery from discharging.

[0258] This build is when:

[0259] Rechargeable cells 1, 4, 7, 10, 13, and 16 are connected in series to form a 7.5 volt, 1 watt-hour self-recharging battery that needs to be charged as follows:

[0260] ----Rechargeable batteries 2, 5, 8, 11, 14, and 17 are connected in series to form a 12-volt, 0.5-watt-hour rechargeable battery, and,

[0261] Rechargeable batteries numbered 3, 6, 9, 12, 15, and 18 were connected in series to form a 7.5 volt, 0.25 watt-hour rechargeable battery.

[0262] Batteries 2, 5, 8, 11, 14 and 17 are connected in parallel

[0263] ---Compatible with batteries 2, 5, 8, 11, 14 and 17

[0264] ---Compatible with batteries 3, 6, 9, 12, 15 and 18

[0265] The negative terminal of battery 2 (12) is connected to the negative terminal of battery 3 (13), and the positive terminal of battery 17 (46) is connected to the positive terminal of battery 18 (45).

[0266] (162) is a manual relay that disconnects when the 7.5V batteries 1, 4, 7, 10, 13 and 16 are fully charged.

[0267] Batteries 1, 4, 7, 10, 13, and 16 are connected in parallel:

[0268] ---Batteries 2, 5, 8, 11, 14, 17 and

[0269] ---Batteries 3, 6, 9, 12, 15, and 18

[0270] Terminals (12) and (13) of battery 2 and battery 3 are connected to terminal (11) of battery 1.

[0271] The positive poles (45) and (46) of batteries 17 and 18 are connected to one of the three circuits of "Circuit 162", which is activated when the switch connected to the positive pole (44) of battery 1 (7.5V, 1W / h) is opened / closed, depending on the voltage of battery 1.

[0272] Figure 1.d Shown is one of three circuits named "Circuit 162" designed for use with a 7.5V, 1W / h automatically rechargeable battery (or any other battery voltage or energy storage) equipped with a relay.

[0273] This relay allows charging to be stopped when the battery is fully charged at 7.5 volts and 1 watt per hour, and automatically maintains the charge during partial discharge.

[0274] Relays (168), (169), (170) and (171) are activated by a simple circuit using a Zener diode 167 (as an example) of approximately 7.2 volts, a transistor (166) and the relays.

[0275] Resistor (165) is used to connect anode (164) = anode (45) and (46) ( Figure 1.c ) is connected to the connection of the two other cells so that anode (163) = anode (44) ( Figure 1.c ) charging, this anode belongs to batteries 1, 4, 7, 10, 13 and 16 that need to be charged at 7.5V.

[0276] When (181) is connected to the pole-(11)&(12)&(13)( Figure 1.c ), this allows continuous automatic charging and avoids discharging of the 7.5V&1W / h batteries (1&4&7&10&13&16) for charging.

[0277] Figure 1.eShows how, through three reverse diodes (174), (175), and (176) in parallel, i.e., Figure 1.c (45) and (46) in

[0278] Figure 1.f more current can flow out of the anode (172) of the battery in order to extract more current from the highest power cell. Figure 1.e shows a circuit similar to Figure 1.f but it uses two reverse diodes. One diode, with its anode connected to the anode (177) ( Figure 1.c ) = (45) and (46) ( Figure 1.f ), is connected to the positive poles of two rechargeable 7.5V batteries. This is charging the anode (178) ( Figure 1.c ) = (44) (

[0279] (The batteries 1, 4, 7, 10, 13, and 16 need to be charged.)

[0280] This is because each diode reduces the input voltage in a different way. For example: one diode (179) can reduce the voltage by 0.35 volts, while another diode (180) can reduce the input voltage by 0.37 volts. This allows current to flow from the positive pole (177) ( Figure 1.f ) = (45) and (46) ( Figure 1.c ) to the positive pole (178) ( Figure 1.f ) = (44) ( Figure 1.c ). This prevents the 7.5V, 1W / h batteries 1, 4, 7, 10, 13, and 16 from discharging from their positive terminals (44) ( Figure 1.c ) during charging. This circuit does not use any mechanical components.

[0281] Figure 1.b The schematic diagram in

[0282] Figure 1.d 、 Figure 1.e and Figure 1.f show three equivalent circuits, called "circuit 162", as examples of circuits for replacing relay 162 in order to avoid Figure 1.c the discharge of the batteries in

[0283] Figure 1.e and Figure 1.f The circuits in

[0284] Figure 1.g An infinite automatic power generation device 3 is shown as a DC generator and storage device for use in a charger device to charge or recharge rechargeable batteries or capacitors.

[0285] When charging batteries and / or capacitors using this automatic charger, no external power source is required to repeatedly charge (rechargeable) batteries and (storage) capacitors.

[0286] This is constructed as follows:

[0287] (94) is the cathode of the rechargeable 1.2 volt battery 1; the negative electrode.

[0288] (96) is the anode; the positive electrode of the rechargeable 1.2V battery 1 +

[0289] (95) is the cathode of the rechargeable 1.2 volt battery 2; the negative electrode.

[0290] (97) is the anode; the positive terminal of a rechargeable 1.2V battery +2

[0291] (98) is the negative output of the infinite automatic power generation charger connected to the cathode; the negative electrode is the 1.2V (rechargeable) battery III that needs to be charged.

[0292] (99) is the positive output of the infinite automatic power generation charger, connected to the anode; the positive electrode is connected to the 1.2V (rechargeable) battery III for charging. For example: the voltage of battery 1 is 1.2V, which can generate 0.25AV / h = 0.25W / h; the voltage of battery 2 is 1.2V, which can generate 0.50AV / h = 0.50W / h; battery III is a 1.2V (rechargeable) battery with a charging power of 1W / h: the voltage of battery III is 1.2V, and when fully charged, it can generate at least 1A.V / h = 1W / h. Battery III, with a voltage of 1.2V and a power of 1W / h, must be disconnected from the charger after being fully charged to prevent it from being discharged.

[0293] Battery III may have a power of more than 1 watt / hour, such as 5 watt / hour or more, while Battery 1 and Battery 2 may maintain a voltage of 1.2 volts and 0.25 watt / hour and 0.50 watt / hour, respectively. Any circuit referred to as "circuit 162," such as Figure 1.d 、 Figure 1.e or Figure 1.f As shown, both can be used to prevent battery III from discharging while the charger is charging.

[0294] A relay (168) and (169) and (170) and (171) and a Zener diode (167) and a transistor (166) and / or a circuit that controls the voltage from ~1V to >12V (for example for battery III) can be added to the infinite self-generating charger to cut off the connection between the cathode (98) and / or anode (99) of the infinite self-generating charger and the cathode and / or anode of the rechargeable battery III. This infinite self-generating charger can theoretically charge an unlimited number of 7.5V empty batteries if the voltage of battery 1 and battery 2 is 7.5V and their power is different from that of battery III (i.e., the battery to be charged), and battery III also has 7.5V, and all batteries 1, 2 and III are working normally. The higher the storage power (and voltage) of battery 1 and battery 2, the faster the battery III is charged.

[0295] Batteries 1, 2 and 3 must have the same voltage, such as 1.5V, 12V, 100V or any other higher voltage.

[0296] Figure 1.g The schematic diagram in the figure is an example of an infinite automatic generator used as a charger with two rechargeable batteries. This can be achieved by connecting two or more batteries of the same voltage (which can be more than 1 volt) in parallel, using different

[0297] Batteries with greater energy storage capacity charge rechargeable batteries and / or capacitors or other product power supply units more quickly.

[0298] Figure 1.h An unlimited automatic power generation device 2 is shown, serving as a 2.4 kWh, 24 volt, 100 ampere DC power storage device. This device, consisting of two 12 volt, 60 ampere batteries and two 12 volt, 40 ampere batteries (or two, four, etc. batteries and two, four, etc. other capacitors of varying voltages and powers), is capable of continuously generating and storing DC power. The method is as follows:

[0299] (193) is the anode, positive +, and (202) is the cathode, negative -, from a 12 volt 60 amp battery W

[0300] (195) is the anode, positive electrode +, and (196) is the cathode, negative electrode - of a 12 volt, 60 amp battery X.

[0301] (198) is the anode, positive electrode +, and (199) is the cathode, negative electrode -, belonging to a 12 volt, 40 amp battery Y. (200) is the anode, polarity +, and (201) is the cathode, polarity -, belonging to a 12 volt, 40 amp battery Z. (208) is the anode, positive electrode +, and (207) is the cathode, negative electrode -, belonging to a 2.4 kWh battery. (IAPGD). Batteries Y and Z can be replaced by energy storage capacitors, while batteries W, X, Y and Z can have different voltages (V) and powers (A, W / h). (203) and (204) are two (Schottky) diodes. (205) and (206) are two manual switches used to prevent discharge of 20, which can be Figure 1.d 、 Figure 1.e 、

[0302] Figure 1.f Or other similar circuits. Batteries W and X are connected in series, batteries Y and Z are connected in series, and batteries W and X are connected in parallel with batteries Y and Z. The negative terminals (GRD) of batteries W and X are connected together with the negative terminals of batteries Y and Z through two diodes; the cathode of one diode is connected to the negative terminals of batteries Y and Z, and the anode of the other diode is connected to the positive terminals of batteries W and X. A switch is connected to each diode.

[0303] Figure 2.a An infinite automatic power generation device 5 using an AC generator is shown.

[0304] (47) is one terminal of the ceramic capacitor. (50) is the other terminal of the ceramic capacitor.

[0305] (48) is one terminal of the ceramic capacitor. (51) is the other terminal of the ceramic capacitor.

[0306] (49) is one terminal of the ceramic capacitor. (52) is the other terminal of the ceramic capacitor 3.

[0307] (53) is the output terminal of the infinite automatic power generation device, which uses capacitors to generate alternating current.

[0308] This produces an alternating (high or low) frequency current that allows for continuous operation without the need for any external power source.

[0309] (54) is another output terminal of this infinite self-generating device, which generates electricity through the capacitor.

[0310] These two outputs continuously generate alternating current (high or low frequency) without the need for any external power supply.

[0311] For example:

[0312] You can use three ceramic capacitors:

[0313] Capacitor 1 has a voltage of 100 volts and a capacitance of 100 picofarads.

[0314] Capacitor 2 has a voltage of 100 volts and a capacitance of 1000 picofarads.

[0315] Capacitor 3 has a voltage of 100 volts and a capacitance of 10,000 picofarads.

[0316] A low value (piezoelectric) capacitor generates a (very) high frequency AC voltage (possibly high voltage) that continues to increase without external power, capable of ionizing air without initial power.

[0317] High-value capacitors (such as MKP, etc.) may generate low-frequency AC if three or more capacitors are connected in parallel on a high-voltage insulator.

[0318] The larger the capacitance of a capacitor (the higher the number of farads) and the higher the voltage (the higher the number of volts), the more power it can produce.

[0319] However, at lower capacitance, the frequency and voltage can be higher. These three or more capacitors in parallel can continuously generate alternating current (ionized air, electrons, etc.) without any external power source.

[0320] By connecting three capacitors in parallel at 220V, with capacities of, for example, 50 MKP, 25 MKP, and 100 MKP, more AC power can be generated.

[0321] In theory:

[0322] 0.0001*44,000=4W / h Maximum power is continuously produced without adding an external power supply, when the three capacitors are surrounded by high voltage anti-static insulators.

[0323] The alternating current generated by at least three capacitors connected in parallel can be amplified by one or more new transformers and circuits, such as Figure 3.b shown.

[0324] In this infinite automatic generator setup, all capacitors used as alternators should have similar voltages (V) and should come in at least 2 or 3 different capacitance values ​​(F).

[0325] Figure 2.b An infinite automatic power generation device 4 is presented, which acts as a DC power source and storage device, utilizing (high or ultra-high) storage electrolytic capacitors, polarized capacitors, etc. This continuously generates DC power without the need for an external power source.

[0326] This is constructed in the following way:

[0327] (55) is the negative terminal of capacitor 1. (storage, electrolytic, ....capacitor)

[0328] (58) is the positive terminal + of capacitor 1 (storage, electrolytic, .... capacitor)

[0329] (56) is the negative terminal of capacitor 2. (storage, electrolytic, ....capacitor)

[0330] (59) is the positive terminal of capacitor 2 +

[0331] (57) is the negative electrode of the capacitor.

[0332] (60) is the positive terminal of capacitor 3 +

[0333] (61) is the negative terminal - the output of a continuously self-charging capacitor, which can continuously generate DC power without the need for an external power supply.

[0334] (62) is the positive terminal + of the output of the continuous automatic charging capacitor, which can continuously generate DC current without adding an external power supply.

[0335] Like batteries, all capacitors in this infinite automatic power generation device should have the same voltage (V) and at least 2 or 3 different capacities (F).

[0336] As an example, the voltage of the electrolytic capacitor 1 is 10 V and the capacitance is 10 microfarads.

[0337] Capacitor 2 has a voltage of 10 volts and a capacitance of 100 microfarads.

[0338] The voltage of capacitor 3 is 10 volts and the capacity is 1000 microfarads.

[0339] This unlimited automatic power generation device consists of (high) storage, electrolytic, and superpolarized capacitors, etc., and can continuously generate direct current without the need for an external power source.

[0340] This produces approximately:

[0341] 0.001*(10*2)=0.1W, and there must be Figure 1.d 、 Figure 1.e 、 Figure 1.f The circuit shown in (59) and (60) ( Figure 2.b ) to avoid discharge.

[0342] (The capacitor's leakage current limits the amount of power that can be continuously produced.)

[0343] Using three capacitors with a voltage of 220V and capacities of 50 microfarads, 25 microfarads, and 100 microfarads, more DC power can be continuously generated without adding an external power supply.

[0344] Theoretically: 0.0001*44000=4 watts. When these three capacitors are insulated with high voltage (anti-static) insulating material, they can generate maximum power.

[0345] Figure 2.c An infinite automatic power generation device 4 is shown, which acts as a DC power generator and storage device (made of polarized capacitors), and also acts as a charger, continuously generating DC power when charging or recharging the capacitors without adding any external power supply.

[0346] This is constructed as follows:

[0347] (102) is the negative electrode of capacitor 1 - (energy storage, electrolysis, etc.) (energy storage, electrolysis, etc. capacitor)

[0348] (100) is the positive electrode + of capacitor 1 (energy storage, electrolysis, etc.). (Energy storage, electrolysis, etc. capacitor)

[0349] (103) is the negative electrode of capacitor 2 - (energy storage, electrolysis, etc.) (energy storage, electrolysis, etc. capacitor)

[0350] (101) is the positive electrode + of capacitor 2 (energy storage, electrolysis, etc.). (Energy storage, electrolysis, etc. capacitor)

[0351] (104) is connected to the positive terminal + of the capacitor V to be charged and is the positive terminal of the automatic charger, anode +.

[0352] (105) is connected to the negative terminal of capacitor V and is the negative terminal, cathode, of the automatic charger.

[0353] As an example, two electrolytic capacitors used as chargers are:

[0354] Capacitor 1, voltage is 10V, capacity is 10 microfarads.

[0355] Capacitor 2, voltage is 10V, capacity is 100 microfarads.

[0356] The capacitor V that needs to be charged (or recharged), for example:

[0357] Capacitor V has a voltage of 10V and a capacity of 1000 microfarads.

[0358] As with battery chargers, all capacitors of the charger and the capacitors to be charged should have the same voltage (V) and should have at least 2 or 3 different capacities (F). As with battery chargers, Figure 2.cThe capacitors in the circuit must be disconnected from the charger immediately after charging to avoid discharge. A circuit equivalent to an automatic switch or relay, such as Figure 1.d 、 Figure 1.e and Figure 1.f One of the three circuits described in detail in the Figure 2.c between (104) in and the anode of capacitor V to disconnect it from the charger.

[0359] For example, this new type of continuous DC automatic generation charger uses (high) energy storage electrolytic capacitors, polarized capacitors, supercapacitors, etc., without the need for an external power supply. It can continuously generate at least about 250.001*(10*2)=0.1 watts (for charging capacitors) without the need for an external power supply.

[0360] This charger and capacitor must be placed on a high voltage insulator (high voltage = high voltage) (anti-static insulator) when charging. (Usually the leakage current of the capacitor limits the continuous power generated).

[0361] This charger requires at least one or two capacitors of different capacity (farads) but similar voltage. This depends on whether the capacitor to be charged is a different capacity than the two capacitors in the charger, and all three capacitors should have roughly the same voltage (V).

[0362] Figure 2.d An infinite power generating device 12 is shown which can be used as both an AC and a DC high voltage generator.

[0363] This is created by an asymmetric capacitor that is able to continuously generate electricity without adding any external power source.

[0364] This is constructed as follows:

[0365] (126) is the largest electrode; the negatively charged cathode can be made of metal foil, metal conductor, etc.

[0366] (130) is the wire connected to the largest electrode, the cathode has a negative electrode - can be made of metal foil,

[0367] (127) is the smallest electrode, the positively charged anode, which can be a metal foil, ...

[0368] (129) is the wire connected to the smallest electrode, the anode and the positive electrode +.

[0369] (128) is a high voltage (antistatic) insulator, which can be air, oil paper or paraffin, etc. (as examples)

[0370] This infinite automatic generator generates DC (and AC) electricity and is an asymmetric capacitor having two electrodes (126) and (127) of different sizes separated by a high voltage (HV) antistatic insulator (128).

[0371] This generates both direct current (DC) and alternating current (AC) simultaneously, without the need for any external power source, and will continue to do so if placed on or inside the casing or insulation of a high voltage insulator.

[0372] This generates both direct and alternating current, and does so continuously without the need for any external power source, while remaining surrounded and insulated by high-voltage insulators. (The insulators could be, for example, paper with oil, paraffin, mica, etc.)

[0373] If this asymmetric capacitor is kept in an insulated box, or used with a high-voltage insulator, it can continuously generate electricity without an external power source:

[0374] By creating an increasingly negative charge on the electrode with the largest surface area and volume, a cathode (126) is formed which is connected to a wire. (130)

[0375] By generating more and more positive charges + on the smallest electrode (127), an anode (127) is formed.

[0376] The asymmetry in the size of the two electrodes (126) and (127), and the asymmetry in the amount of charge on the two electrodes in this asymmetric capacitor, continuously generates direct current (and alternating current) (in the form of ionized air).

[0377] This is when the capacitance of the asymmetric capacitor is in the order of picofarads (pF); the surface area is on the order of a few square centimeters, and the high-voltage insulator used is less than about 0.1 mm thick.

[0378] This can be more easily achieved by completely insulating the asymmetric capacitor, using a (very high voltage) high voltage antistatic insulator and placing it in a housing, and using a (very) high voltage insulator between the two electrodes of different sizes. For example, by using materials such as paper, oil, paraffin, mica, glass, quartz, etc. around the asymmetric capacitor. The higher the capacitance (F) value of an asymmetric capacitor (where the electrode surface and volume differ greatly), the lower the frequency and the greater the power generated by the asymmetric capacitor.

[0379] The greater the difference in surface and volume between the two electrodes, the higher the DC voltage generated, and this asymmetric capacitor is able to generate both AC and DC currents and voltages from this infinite self-generating power device.

[0380] Both the cathode and the anode of this asymmetric capacitor can be covered / surrounded by high voltage antistatic insulating material.

[0381] Figure 2.e An infinite self-generating power supply device 14 is shown, acting as an ion thrust generator and electron / ion beam emitter.

[0382] This was created using a modified bisymmetrical capacitor with at least one hole that can continuously generate thrust without adding any external power source in the form of an electron (or ion) beam.

[0383] This is constructed as follows:

[0384] (131) is the cathode; negatively charged - it is the largest electrode and has at least one (small) hole in the negative electrode, which can be a metal foil.

[0385] (If desired, this cathode can be connected to a wire and covered with a high-voltage anti-static insulator with a hole facing the cathode.)

[0386] (133) is the anode, which is positively charged +, is the smallest electrode, and has at least one (small) hole, which can be a metal foil,...

[0387] (If desired, this anode can be connected to a wire and covered with a high-voltage antistatic insulator with a hole facing the anode.)

[0388] (132) is a high voltage (HV) (antistatic) insulator having at least one (small) hole.

[0389] (134) are two holes on the two electrodes and one hole on the high voltage insulator, which stand opposite each other to form at least one (small) hole (in this example).

[0390] The ion and / or electron beam is generated by the negative charges on the largest electrode (131), which are attracted and pushed by the smallest positively charged electrode (133), through the holes of the two electrodes and the holes of the (thin) high voltage insulator of the asymmetric capacitor (132).

[0391] The three holes form a single hole (134) in an asymmetric capacitor having electrodes of asymmetric size, for example, the hole can be made by using aluminum foil of different sizes on both sides of the paper and coated with oil or paraffin wax, or mica, etc. and by avoiding any contact between the two foils of different sizes and by using a high voltage (HV) insulator to keep the device insulated, thereby allowing electrons / ions to flow freely from cathode- to anode+ (for example, by using a large paper with paraffin wax, or other high voltage (HV) insulator to support and / or surround this infinite self-generating device made of an asymmetric capacitor with holes)

[0392] Asymmetrically sized electrodes can be made by using different sizes of aluminum foil, oil or paraffin wax, mica, etc. on both sides of the paper and punching holes in them while avoiding any contact between the two different sized foils.

[0393] The device is insulated using a high voltage insulator, allowing electrons / ions to flow freely from the cathode to the anode.

[0394] For example, this infinite, automatic generator is made from an asymmetrical capacitor with holes in it, placed on a large cardboard box, and using paraffin or other high-voltage insulating material. Two sheets of paper of different sizes can also serve as electrodes of different sizes, and plastic tape can be used as an insulator between the two sheets. One or more (small) holes can be punched in the paper and the tape. This produces a slower, but continuously increasing, electron / ion beam.

[0395] Figure 2.f An infinite automatic power generating device 16 made of insulated wire and high voltage insulators is shown.

[0396] This is used as a high voltage (HV) DC and AC generator, capable of continuously generating electricity without the need for an external power source.

[0397] This is constructed in the following manner: (135) are the two insulated ends of (136) one of the two conductors.

[0398] (wire; conductor A) (138) and (139) are the two uninsulated end points of another conductor B. (140) is a paper box with paraffin, oil, etc. ... (137) is a (very) high-voltage insulating material; paper made of paraffin, oil, polyester, etc. Two insulated conductors (similar or different in length and / or thickness) are sandwiched together by a (thin) high-voltage antistatic insulator (137).

[0399] And the insulated end of one of the insulated conductors, B, is being twisted or rotated through a portion of the insulated end of the other conductor, A.

[0400] When the other ends (138) and (135) of two insulated conductors A and B are not insulated and continuously emit increasing AC fields, voltages and currents at high frequencies and / or 5 frequencies:

[0401] ---A high voltage (antistatic) insulator (137) is located between two insulated conductors which are fastened together (forming an asymmetrical capacitor).

[0402] ---This can happen if the two insulated conductors are held together by a high-voltage insulator and are completely insulated by the high-voltage insulator.

[0403] For example, in one case, (140) was a paper case made of paraffin wax, ….

[0404] If two insulated conductors are different in size or length and are secured between them with a high voltage insulator, an oscillating negative voltage will be generated at the end of the longest and / or thickest insulated conductor.

[0405] The smallest / shortest insulated conductor will have a positive + oscillating voltage. A series of such (asymmetric) capacitors are insulated conductors, with two insulated conductors held together by a high voltage insulator, that can be connected in series to increase DC and / or AC voltage. All asymmetric capacitors are insulated in a housing with a high voltage insulator.

[0406] For example:

[0407] They are sealed in a box containing paraffin, oil, etc., surrounding all the asymmetrical capacitors.

[0408] Figure 7.a An unlimited self-generating device 17 is shown, which consists of at least 2 or 3 similar electric (rechargeable) batteries with a voltage of at least 1.2 volts and is equipped with any power storage device.

[0409] This is constructed as follows: (as an example)

[0410] For example, the negative electrode of battery 1 (208) is connected to the cathodes of at least one or two diodes (210) and (211) connected in parallel, and to the negative electrode of a 1000 microfarad electrolytic capacitor (212) (using a higher voltage than battery 1 and battery 2), and to the emitter of an NPN transistor (BC547) (213).

[0411] The positive terminal of battery 2 (209) is connected to the anodes of at least one or two diodes (210) and (211) in parallel, connected to the positive terminal of a 1000 microfarad electrolytic capacitor (212), and connected to the collector of an NPN transistor (BC547) (213). The base of the transistor (312) is connected to a resistor (47K ohm) (214), the other end of which is connected to the positive terminal of battery 2 (209). The positive terminal of battery 1 (208) is connected to the positive terminal of battery 3 (207) for charging.

[0412] The negative terminal of 2 (209) is connected to the negative terminal of battery 3 (207) for charging.

[0413] Both battery 1 (208) and battery 2 (209) must be charged before battery 3 (207) can be charged. If only battery 1 (208) and battery 2 (209) are used, the circuit can act as a battery charger, and when battery 3 (207) is charging, it can be removed or replaced with an empty battery for charging. Batteries 1, 2 and 3 (207) or (208) or (209) can be composed of multiple batteries connected in parallel or in series to facilitate charging if their total power and voltage are approximately the same as those of battery 1 and battery 2. Battery 1 (208) and battery 2 (209) can be composed of several batteries with similar power and voltage connected in parallel or in series. If at least 3 batteries are used, this circuit can act as an independent power supply when battery 3 is charging.

[0414] Figure 7.b Shown; an infinite self-generating device 18 having at least two high voltage insulating (219) reverse diodes (215) and (216); the anode has a ring (217) and the cathode has a needle tip (218).

[0415] Figure 2.g The structure of another infinite self-generating device 13 is shown. The device is used as a high-frequency or low-frequency transformer (with capacity) and an AC & DC generator. It consists of at least two insulated conductors separated by a high-voltage (anti-static) insulator, and continuously generates and converts electric (static) power without adding an external power supply. The device is composed of the following parts: (141) and (142) are two conductors (with similar length and thickness), (143) and (149) are high-voltage (anti-static) insulators, (144) and (145) are ends of the insulated conductor (141), and (146) and (147) are ends of the insulated conductor (142). (148) is a shell made of paper containing paraffin wax, which serves as a high-voltage insulator (for example).

[0416] Conductors (wires etc.) (141) and (142) (of similar length and thickness) are fastened together at the middle of their length with a (very) thin and (very) high voltage (HV) insulator (143) sandwiched between them.

[0417] For example:

[0418] Two insulated conductors are separated by a high voltage insulation material at their midsection and are twisted, bonded or rotated about each other over part of their length.

[0419] The two insulated wires (141) and (142) are fixed to each other at a length midway between the two twisted conductors by high voltage insulators (143) and (149).

[0420] This is a built-in transformer (and capacitor) that can be used to generate increased voltage and / or current while being completely insulated by high voltage insulators.

[0421] For example: In a paper box (148) filled with paraffin wax….

[0422] If two insulated conductors (141) or (142) differ in size or length and have a high-voltage insulator sandwiched between them, then:

[0423] --The longest and / or largest insulated conductors will produce an oscillating negative voltage that increases or decreases.

[0424] - and the smallest or shortest insulated conductor will produce an oscillating positive voltage that increases or decreases, depending on the number of turns in conductor (141) and conductor (142).

[0425] The two insulated wires (141) and (142) are held together at their middle portions by high voltage insulators (143) and (149), which are located between the two twisted conductors.

[0426] The two conductors have two terminals, namely input terminals (144) and (145), and two other terminals (146) and (147) which can be used as output terminals. When completely insulated in a housing (148) filled with high-voltage insulating material, they can generate a gradually increasing AC voltage and current of high or low frequency.

[0427] like Figure 2.g The series of transformers shown (with insulated conductors connected together by high voltage insulators) can be added, connected in parallel, connected in a ring or in series.

[0428] This can be used to increase or decrease the AC and DC voltage and / or current that can be continuously generated without the need for an external power supply. Multiple units of this device can be connected in parallel and / or series, capable of generating very high AC voltage (HV) and very high frequency electrostatic fields, currents, and voltages. This device produces charged air.

[0429] Figure 2.h An infinite automatic power generating device 15 is shown as a high voltage AC and DC power generator, and a high voltage electrostatic power amplifier consisting of four insulated conductors.

[0430] High voltage (antistatic) insulator in a high voltage insulation box.

[0431] These devices are capable of continuously amplifying and generating AC and electrostatic power without the need for adding external power sources in the form of electron or ion beams.

[0432] This can be used to ionize air, gas or for space engines using ion beams, or as a high-voltage generator.

[0433] Or charging a high voltage capacitor...

[0434] This is constructed as follows:

[0435] There are at least four (insulated) conductors (161) and (150) and (152) and (154) which are fastened together at one end of their respective lengths (each insulated conductor).

[0436] Between each conductor is a (very) thin high voltage (HV) antistatic insulator (158) and (151) and (153).

[0437] The conductor (161) is longer and / or thicker than the conductor (150),

[0438] The conductor (150) is longer and / or thicker than the conductor (152).

[0439] The conductor (152) is longer and / or thicker than the conductor (154), and the insulated conductor (150) is wrapped around a high voltage (anti-static) insulator (158) which covers one end of the insulated conductor (161).

[0440] The insulated conductor (152) is rotated and wrapped around a high voltage antistatic insulator (151) which covers one end of the insulated conductor (150).

[0441] The insulated conductor (154) is rotated and twisted around a high voltage (antistatic) insulator (153) which covers one end of the insulated conductor (152).

[0442] These four conductors form three asymmetric capacitors, each capable of reversing and increasing the polarity of charge:

[0443] If the conductor (161) initially has a negative charge (-), then the conductor (150) has an increasing positive charge (+).

[0444] This creates a higher negative charge (-) in conductor (152) than the negative charge (-) on the conductor. (161) This creates a higher positive charge (+) in conductor (154) than the positive charge on conductor (150).

[0445] When the conductor (152) with increasing negative charge is connected to the conductor (161) with negative charge, it forms a circulating circuit.

[0446] This further continues to increase the negative charge on the conductor (161).

[0447] Then this increase in conductors appears again. (152),

[0448] This further increases the positive charge on conductors (154) and (155) and on the ring (156).

[0449] The conductor (155) thus has a very high positive charge and is connected to a ring (156) which (as an example) acts as anode +.

[0450] The high negative charge is emitted by the needle tip (e.g. No. 159),

[0451] and is attracted to pass through the positively charged ring (156) connected to the positive conductor (155).

[0452] This creates a beam of negatively charged particles in the air, vacuum, etc.

[0453] Conductors (161), (150) and (152) form two asymmetric capacitors in a loop, which is an example. More asymmetric capacitors can be used in the loop, such as 4, 6 or more to increase the negative charge in the loop. Or 3 or 5 or more to increase the charge in the loop.

[0454] This further increases the voltage and strength of the device, as well as the power, beam… or high voltage generator.

[0455] This device has no mechanical parts, and other similar devices can be connected in series (positive to negative) or in parallel to continuously generate more powerful electron beams or charged particle beams without the need for an external power source.

[0456] This can be used to generate thrust for engines used in space, in a vacuum, or to ionize air, gas, or plasma.

[0457] …

[0458] Or continuously generate more high voltage (HV) power without adding an external power supply.

[0459] For best results, the device needs to be placed in a box or case (157) filled with very good (anti-static) insulating material (e.g. paraffin, oil, etc.) (160).

[0460] Figure 3.a An infinite automatic power generating device 6 is shown, acting as an AC generator and AC amplifier, consisting of at least three or four conventional transformers. These transformers have internal capacity (which also acts as capacitors) and may require an external AC power source initially, but not thereafter.

[0461] This is constructed as follows:

[0462] (110) is the secondary (output) coil of transformer 1

[0463] (111) is the iron core of transformer 1

[0464] (112) is the primary (input) coil of transformer 1, and (113) is the secondary (output) coil of transformer 2.

[0465] (114) is the iron core of transformer 2

[0466] (115) is the primary (input) coil of transformer 2

[0467] (116) is the secondary (output) coil of transformer 3

[0468] (117) is the iron core of transformer 3

[0469] (118) is the primary (input) coil of transformer 3, (108) and (109) are the outputs of the 3 secondary (output) coils of transformers 1, 2 and 3, which are connected in parallel.

[0470] (106) and (107) are the inputs to the primary (input) coils of transformers 1, 2, and 3,

[0471] These transformers are connected in parallel,

[0472] in:

[0473] The secondary (output) winding of transformer 1 is connected in parallel with the secondary (output) winding of transformer 2 and the secondary (output) winding of transformer 3.

[0474] The primary (input) winding of transformer 1 is connected in parallel with the primary (input) winding of transformer 2 and the primary (input) winding of transformer 3.

[0475] For example:

[0476] The output (secondary) voltage of transformer 1 is 12 volts and the power is 6 watt-hours.

[0477] The output (secondary) voltage of transformer 2 is 12 volts and the power is 3 watt-hours.

[0478] The output (secondary) voltage of the transformer 3 is 12 volts and the power is 1 watt / hour.

[0479] The input (primary) voltage of transformer 1 is 220V and the power is 6W / h.

[0480] The input (primary) voltage of transformer 2 is 220V and the power is 3W / h.

[0481] The input (primary) voltage of transformer 3 is 220V and the power is 1 watt-hour.

[0482] As an example:

[0483] The pole outputs (108) and (109) of the continuous automatic charging transformer generate alternating current (AC) high frequency current.

[0484] This AC current can be converted again:

[0485] This is done by connecting the secondary outputs (108) and (109) to the input of a fourth transformer:

[0486] This is done as follows:

[0487] The input (primary) voltage of the transformer 4 is 12 volts and the power is about 10 watts.

[0488] The output (secondary) voltage of the transformer 4 is 220V, and the power is about 10W.

[0489] The outputs of (108) and (109) are connected in phase or anti-phase (90 degrees + 90 degrees = 180 degrees) with the input of transformer 4. The output of transformer 4 is connected to a circuit (for example) consisting of diodes so that only AC current flows to the inputs (106) and (107) of the three transformers connected in parallel. The principle used by these three (or four) transformers is the same as Figure 1.a The principle of (rechargeable) batteries, capacitors, etc. used for DC power supply is similar to that shown in .

[0490] But it adapts to AC by using transformers of different output power but the same voltage, these transformers use the same input voltage but with different input power every 3 or 4 transformers. The same principle can be used with 4, 5 or more conventional transformers.

[0491] Figure 3.b An unlimited automatic power generating device 7 used as an AC power generator and an AC power amplifier is shown.

[0492] This is built from a combination of at least two new types of transformers that can amplify incoming alternating current (AC) more efficiently than ordinary transformers.

[0493] These new transformers are connected in a loop in a circuit to continuously generate alternating current without the need for an external power source.

[0494] This is constructed as follows:

[0495] (26) and (27) are the inputs of the main transformer A

[0496] (28) and (29) are the outputs of the main transformer A

[0497] (30) and (31) are the inputs of the auxiliary transformer B

[0498] (32) and (33) are the outputs of the auxiliary transformer B

[0499] (34) is the input coil of the main transformer A made of insulated magnetic alloy wire.

[0500] For example: insulated silicon steel [iron (95%) and silicon (Si~5%, Fe, 95%)] wire or insulated iron (30%-70%) and nickel (70%-30%) alloy wire...

[0501] (These magnetic alloy wires enhance the alternating magnetic field around the insulating magnetic alloy wire)

[0502] (35) is the output coil of the main transformer A made of an insulated non-magnetic coil (for example, insulated copper wire).

[0503] (36) is the input coil of the secondary transformer B (made of insulated magnetic alloy wire).

[0504] For example: insulated silicon steel wire, or insulated iron-nickel alloy wire... (this can enhance the alternating magnetic field around the insulated magnetic alloy wire)

[0505] (37) is the output coil of the secondary transformer B, which is made of copper or other non-magnetic alloy.

[0506] (38) is the core of the primary transformer (made of silicon steel, ferrite, etc.).

[0507] (39) is the core of the secondary transformer B (made of silicon steel, ferrite, etc.).

[0508] The two new types of transformers A and B amplify the AC currents (26) and (27) from the input.

[0509] This is achieved by using insulated magnetic alloy wire in the input coil (34) of the main transformer A.

[0510] This is done by using an insulated magnetic alloy coil in the input coil (36) of the secondary transformer B.

[0511] The insulated magnetic alloy wire forming the coils (34) and (36) may be, for example:

[0512] Insulated silicon steel wire, or insulated iron-nickel alloy wire, ... (instead of insulated copper wire).

[0513] These coils, made of insulated silicon steel wire, are located in the input coil (34) of the main transformer A.

[0514] These coils made of insulated silicon steel wire are located in the input coil (36) of transformer B.

[0515] These insulated magnetic coils further enhance the magnetic field (39) generated by the alternating currents induced in the core (38) by the input primary coils (34) and (36).

[0516] and again amplify the output coils (35) and (37) of transformers A and B;

[0517] This results in an amplified alternating induced AC current and AC power in the output coil.

[0518] The output coils are made of copper (35) and (37) and belong to the new transformers A and B.

[0519] This output is available at the outputs (28) and (29) of the coil (35) of the primary transformer A, which are made of insulated copper wire. This output is available at the outputs (32) and (33) of the output coil (37) of the secondary transformer B.

[0520] The amplified power output of transformer A is amplified again in transformer B. This power can be further amplified by using more transformers designed as transformers A and B, which are connected in a manner such as Figure 3.b shown.

[0521] The two transformers (Transformer A and Transformer B) work together to reverse the phase of the input current by 180 degrees.

[0522] The phase of the current outputs (32) and (33) is rotated 90 degrees counterclockwise in transformer B, and then rotated 90 degrees counterclockwise again in the outputs (28) and (29) of transformer A;

[0523] This results in two new transformers, A and B, with their phases reversed by 180 degrees.

[0524] The outputs (32) and (33) of the secondary transformer B can again be connected to the inputs (26) and (27) of the primary transformer A to form a loop in the circuit.

[0525] This can be achieved by using a diode circuit or other circuit connected to the inputs (26) and (27) of the main transformer A;

[0526] This further enhances the output of the secondary transformers A and B. These three or four new transformers can also be Figure 3.a Used in the circuit.

[0527] Figure 4.a An unlimited automatic power generation device 8 for generating and charging AC power is shown.

[0528] This is made up of a coil of wire, at least two diodes, a rod or bar magnet, and a high voltage (anti-static) insulator. This is used as an AC generator.

[0529] This is constructed as follows:

[0530] (40) is a magnet.

[0531] (41) is a high voltage antistatic insulator

[0532] (42) and (43) are the outputs of the coil

[0533] (44) is a coil,

[0534] (45) and (46) are two (fast switching) diodes.

[0535] (47) and (48) are high voltage (anti-static) insulators between the magnet and the coil, and also insulate the diode.

[0536] The insulating magnet (40) generates an infinite continuous oscillating (AC) current in the form of a bar (or rod).

[0537] This continuous oscillation is achieved by connecting the longest ends of the magnet (40) to two insulated reverse diodes ( 45 )and( 46 ) are realized in parallel.

[0538] A very thin high voltage (HV) antistatic insulator (41) is placed in a very narrow space between the vibrating magnet and the coil.

[0539] Insulated magnets contract and decontract themselves (preferably made of metal, alloy, etc.) by utilizing the magnetic contraction and decontraction caused by a very low AC voltage between the two ends of a large magnet.

[0540] When this low AC current enters two (or more) insulated diodes (or Zener diodes and diodes), it will be repeatedly short-circuited if the insulated magnetic body (40) diodes are kept insulated and high voltage anti-static insulators (41) and (47) are used.

[0541] (48). A magnet vibrating at its longest part generates a vibrating magnetic field around the magnet (40), thereby generating vibrations and / or alternating currents in the outputs (42) and (43) of the coil (44).

[0542] The coil (44) should have an appropriate impedance to resonate with the frequency of the vibrating magnet; to increase the induced current in the coil. (44), which means that the coil (44) should have an appropriate size, number of turns...

[0543] By connecting it to Figure 3.b The new transformer shown can increase the AC power that can be continuously generated without adding an external power supply.

[0544] Or it can be converted to DC by a diode.

[0545] If a Zener diode is used instead of the two diodes (45) and (46),

[0546] It will continuously generate pulsating DC power without the need to add an external power supply.

[0547] Figure 4.b A 2SD structure of an unlimited self-generating device 8 is demonstrated, which functions as an AC generator and an AC charger.

[0548] This is made of a tubular magnet, inside which there is a coil with a core of magnetic alloy (ferrite, silicon steel, iron nickel alloy, etc.), as well as a high voltage (anti-static) insulator and two diodes.

[0549] This is constructed as follows:

[0550] (52) is a tubular magnet

[0551] (50), (53), (54) and (55) are high voltage antistatic insulators

[0552] (51) is a coil,

[0553] (49) is the core of the coil,

[0554] (56) and (57) are two (fast switching) diodes,

[0555] (58) and (59) are the coil outputs that generate AC current and AC power.

[0556] The core (49) is isolated from the coil (51) by a thin layer of high voltage (HV) antistatic insulation material.

[0557] It is placed inside a (metallic...) magnet (52), which is in the shape of a tubular structure and is also insulated with high-voltage (anti-static) insulating materials (53), (54), (55).

[0558] The insulating magnet (52) continuously vibrates and continuously generates an alternating current (AC) in the coil (51).

[0559] This is accomplished by connecting the longest ends of the magnet in a tubular form (52) to at least two insulating diodes (56), & (57).

[0560] This enables the magnets in the tube to contract and expand themselves using magnetic contraction.

[0561] This is caused by repeated short circuits of very low AC current across a large insulating magnet (52).

[0562] Involving two isolated (two or more) diodes (56) and (57).

[0563] The vibrations produced by the insulating magnets (52) generate an oscillating magnetic field in the core (49) made of a magnetic alloy.

[0564] (Silicon steel, ferrite, iron-nickel alloy...).

[0565] This core enhances the vibrating magnetic induction field generated by the vibrating magnet (52) in the coil (51),

[0566] This results in a higher frequency alternating current (AC) induced current and AC power being generated in the outputs (58) and (59) of the coil (51). The coil (51) uses insulated copper wire (as an example).

[0567] The coil (51) and the core (49) should have appropriate impedance to resonate with the frequency of the vibrating magnet.

[0568] This means increasing the induced current in the coil. (51)

[0569] This means that the coil (51) should have the correct size, number of turns etc.

[0570] This means that the core (49) should be of suitable size, shape, etc. to resonate with the frequency of the vibrating magnet. (52) The magnet 52 is vibrated by repeatedly short-circuiting a low AC voltage across the two ends of the magnet 51.

[0571] This causes the insulating magnet to repeatedly contract and expand through magnetic contraction and magnetic expansion.

[0572] By connecting it to the input of a new type of transformer, the continuously generated AC power can be increased without adding an external power supply, such as Figure 3.b shown.

[0573] Alternatively, this AC power can be converted to DC power using diodes.

[0574] By using a Zener diode instead of the two diodes (45) and (46), a pulsating DC power supply can be continuously generated without adding an external power supply.

[0575] Figure 4.c A third configuration of an infinite automatic generating device for an AC generator is presented.

[0576] This consists of a C-shaped magnet and a core coil made of a magnetic alloy (ferrite, silicon steel, iron-nickel alloy, etc.), as well as two diodes and high-voltage anti-static insulators.

[0577] This build is as follows:

[0578] (60) and (61) are the outputs produced by the coil. (AC current)

[0579] (64) is a coil.

[0580] (63) is the core of the coil (made of ferrite, silicon steel, super alloy, etc.).

[0581] (65) is a magnet (metal, alloy, ferrite, etc.) that exists in C form.

[0582] (66) and (67) and (68) and (71) are high voltage antistatic insulators.

[0583] (69) and (70) are two (fast switching) diodes.

[0584] Together, this can create an infinite automatic power generation device.

[0585] Coil (64) and core (63) (may be replaced by a transformer)

[0586] High voltage antistatic insulators (66), (67), (71) surround the C-shaped vibrating magnet (65).

[0587] This magnet is kept vibrating by connecting the two longest ends (65) of the magnet to at least two (reverse) diodes (69) and (70) in parallel.

[0588] By placing the two ends of the magnet (65) (in a C shape) very close to the core (63) and the sides of the coil. (64)

[0589] The core and the coil are separated by a (very) thin layer of high voltage antistatic insulation material (68).

[0590] This high voltage insulator is placed in a very narrow space between the sides of the magnet (65) and the sides of the core (63), which is surrounded by the coil (64).

[0591] By connecting the two ends of the insulating magnet (65) to at least two parallel reverse diodes (69) and (70) (for example).

[0592] The magnet (65) contracts and expands itself by using magnetic (de)contraction,

[0593] This is because the AC voltage between the two ends of the large magnet (65) is very low and is repeatedly short-circuited by two (or more) insulating diodes (69) and (70).

[0594] If the equipment is well insulated by high voltage antistatic insulating materials (66) and (67) as well as (68) and (71), an AC voltage will be generated.

[0595] When the C-shaped magnet (65) vibrates, it generates a vibrating magnetic induction field.

[0596] This magnetic field is amplified in the core (63) (made of ferrite, silicon steel, iron-nickel alloy, etc.),

[0597] This generates an alternating current in coil (64), which is output at (60) and (61) of coil (64).

[0598] The coil (64) and the iron core (63) should have appropriate impedance to resonate with the frequency of the vibrating magnet (65) to increase the induced current in the coil (64),

[0599] This means that the coil (64) and the core (63) should have the correct size, number of turns... and shape, size... to be able to resonate with the frequency of the vibrating magnet. This means that the coil (64) and the core (63) should have the correct size, number of turns... and size, shape... to be able to resonate with the frequency of the vibrating magnet (65).

[0600] The AC power generated by this infinite automatic generator is continuous, requires no external power source, and can be converted into DC power through diodes.

[0601] By connecting it to Figure 3.b The new transformer shown can continuously generate AC power without increasing the power supply.

[0602] If two Zener diodes are used instead of the two diodes (69) and (70), a pulsating DC power supply can be continuously generated without adding an external power supply.

[0603] Figure 4.d A fourth configuration of an infinite automatic power generation device 8, which can be used as an AC generator and / or AC charger, is shown. This is constructed using a transformer with two coils, a core made of a magnetic alloy (made of silicon steel, ferrite, iron-nickel alloy, etc.), high-voltage insulation (polyester, oil, polyethylene film, etc.), two diodes, and a strong magnet (rod-shaped).

[0604] This is constructed as follows:

[0605] (72) is a magnet that can be an iron, nickel, cobalt alloy magnet or other metal alloy magnet (even a ferrite magnet...), and its shape (for example) can be a rod. (But it can also be C or U or other forms,...),

[0606] (74) and (75) are two parallel reverse (fast switching) diodes.

[0607] (79) and (80) are two outputs of the transformer output coil (77). (AC current)

[0608] (81) and (82) are the other two outputs of the transformer output coil (78). (AC current)

[0609] (77) is a coil in a transformer.

[0610] (78) is another coil in the transformer.

[0611] (72) is a rod-shaped magnet

[0612] (73) is a high voltage (anti-static) insulator

[0613] (74) and (75) are two reverse (fast switching) diodes

[0614] (76) is the core of the transformer

[0615] In coils (77) and (78), an alternating current (AC) is continuously generated indefinitely.

[0616] This is accomplished by holding the farthest side surface of the magnet (72) very close to the transformer (76) core and placing a very thin high voltage antistatic insulating material (73) (e.g. PET, oil, etc.) in a very narrow space between one side surface of the magnet (72) and the transformer (76) core surface.

[0617] The magnet achieves its own contraction and expansion by connecting the two surfaces at both ends of the insulating magnet (72) to at least two insulating reverse diodes (74). (75)

[0618] This magnetic contraction and decontraction is caused by the very low AC voltage across the large insulating magnet (72), repeatedly shorting out two (or more) diodes (74) and (75).

[0619] The magnetic induction field generated by the vibrating magnet (72) is amplified in the core (76) of the transformer (made of ferrite, silicon steel, iron 20 nickel cobalt alloy or other magnetic alloys, ...).

[0620] This generates an AC current in coils (77) and (78), thereby generating AC power at output terminals (81) and (82).

[0621] This produces alternating current at the output terminals (79) and (80) of the transformer used in the infinite automatic generator.

[0622] The coils (77) and (78) and the core (76) should have the appropriate impedance to resonate with the frequency of the vibrating magnet (72); this resonance is to increase the induced current in the coils (77) and (78). This means that the coils (77) and (78) should have the correct size, number of turns... and the core (76) should also have the correct size and shape to resonate with the frequency of the vibrating magnet (72). The generated alternating current can be further increased by connecting the outputs (81) and (82) and / or the outputs (79) and (80) to the input of a new type of transformer, such as Figure 3.b As shown. This AC output power can be converted to DC power by a diode. If the diode (74) is replaced by a Zener diode, a DC pulsating power may appear in the output. (75).

[0623] Figure 5.a Shown from above, Figure 5.b A side view of an infinite automatic generator 9, acting as a mechanical generator and an electric motor. This structure utilizes at least one circular magnet and one or more other magnets. If connected to a generator, it can also continuously generate mechanical and electrical power without the need for an external power source.

[0624] This build is as follows:

[0625] (83) and (87) are cases related to electric motors.

[0626] (84) is an external bar magnet having its own axis (164) with its south pole located below the rotor, and the underside of the circular magnet also shows its south pole.

[0627] (85) is the shaft of the rotor (90) connected to the circular magnet. (86)

[0628] (86) is a circular magnet connected to the rotor. (90)

[0629] (88) is a second external bar magnet fixed on its own axis.

[0630] (163) has its north magnetic pole located above the rotor and the circular magnet (86) also shows its north magnetic pole.

[0631] (165) is an adjustment knob used to manually change / rotate the position / angle of the magnet. (88)

[0632] (163) is a shaft that allows the magnet (88) to rotate / change position / angle relative to the circular magnet. (86)

[0633] (166) is an adjustment knob used to manually change / rotate the position / angle of the magnet. (84)

[0634] (164) is a shaft that allows the magnet (84) to rotate / change position / angle relative to the circular magnet. (86)

[0635] (89) is the free space between the magnets, air or vacuum, ...

[0636] (90) is a rotor connected to a circular magnet,

[0637] (91) is the hole where the rotor shaft rotates, a hole in the housing (83) (can be a magnetic gear).

[0638] (87) The metal casing surrounding the electric motor.

[0639] (93) is one side of the internal circular magnet, with its south pole located below the rotor and the circular magnet.

[0640] (92) is the side of the internal circular magnet, with its north pole located above the rotor and the circular magnet.

[0641] Together, these components create an infinite, automatic power generation device: an electric motor.

[0642] This build is as follows:

[0643] For example:

[0644] ---A circular magnet (86) is connected to a rotor (90) and can rotate freely around its axis (85), with the south pole (93) located below the circular magnet (86) and the north pole (92) located above the circular magnet (86).

[0645] ---In the circular magnet (86) below, one (or more) bar magnets (84)

[0646] Or by using magnets in a C-shape, U-shape or other formation with their south poles located below the circular magnet (86) and their north poles also located above the circular magnet.

[0647] --- and place one (or more) other rod-shaped magnets (88) above the circular magnet (86)

[0648] Or by using a magnet in a C-shape, U-shape or other form with its north pole positioned above a circular magnet (86) which also has its north pole positioned above.

[0649] Instead of the rod-shaped magnets (84) and (88), a C-shaped, U-shaped or other type of magnet combination can be used to simultaneously generate a repulsive magnetic force on the circular magnet. (86)

[0650] This combined repulsive magnetic force is located above and below the circular magnet (86), and multiple magnets are arranged in a C-shape, U-shape or similar form.

[0651] This is achieved by replacing the two magnets (84) and (88) in the form of rods with two magnets fixed at an optimal angle around their axes (163) and (164) in a U-shape, C-shape or other form.

[0652] This allows the magnetic repulsion forces above and below the circular magnets (86) to act on the rotor (90) attached to its center, thereby enabling it to rotate around its axis. (85),

[0653] This is done as follows:

[0654] One (or more) magnets bent into a U-shape, C-shape, or other shape, with its south pole placed below the south pole of the round magnet.

[0655] The same magnet is shown in a C-shape, U-shape or similar shape with its polarity shown with its North pole located above the circular magnet (86), the North pole of the circular magnet also shown above.

[0656] A magnet in the form of a U-shape or a C-shape, etc. is placed near the circular magnet and knobs (165) and (166) are adjusted at an optimal angle / direction.

[0657] This combination of magnets allows for the generation of upward and downward magnetic repulsion between the circular magnet (86) attached to its center and the rotor (90), enabling it to rotate freely around its axis. (85),

[0658] This is due to the mutual repulsion of the two magnets.

[0659] C-shaped, U-shaped or other shaped magnets can be used in combination to replace the rod-shaped magnets (84) and (88), thereby generating a repulsive magnetic force above and below the circular magnets at the same time. (86).

[0660] This consists of one or more magnets shaped like a C, U, or other form.

[0661] This consists of magnets (84) and (88) shaped like poles, which are being replaced by two magnets placed / fixed in a U-shape, C-shape or other formation.

[0662] The two magnets are positioned at optimum angles about their axes (163) and (164) so ​​that magnetic repulsion occurs above and below as the circular magnet (86) and rotor (90) rotate about their axes (85).

[0663] The structure is as follows: one (or more) magnets are bent into a U-shape, C-shape or other shape, with the south pole located below the circular magnet and the north pole located above the circular magnet. The north pole of the circular magnet is at the top and the south pole is at the bottom.

[0664] Place a U-shaped, C-shaped or other shaped magnet near the circular magnet and adjust knobs (165) and (166) to achieve the best angle / direction to achieve the best magnetic repulsion effect.

[0665] This causes the circular magnet (86) to rotate, which in turn causes the rotor (90) to rotate on its axis (85).

[0666] You can add another combination of magnets, C-shaped or U-shaped (or other shapes) to a rod to create both repulsive and attractive magnetic forces on a round magnet. (86)

[0667] These additional magnets, shaped like a C or U, act as additional magnetic coupling, enabling the generation of even more mechanical energy from this infinitely self-generating machine.

[0668] This creates upward and downward magnetic attraction and repulsion between the rotating circular magnet (86) and the rotor (90) attached around its axis by adding one or more additional magnets arranged in a U-shape, C-shape or other formation at the optimal angle / orientation. (85). This configuration is achieved by placing one or two (or more) magnets in a C-shape or U-shape with their north poles located below one of the circular magnets. (86),

[0669] In a C-shaped or U-shaped magnet, the south pole is located above the circular magnet. (86).

[0670] When two or four or more magnets (in a rod) or C or U (or other) forms of repulsive and attractive magnetic forces are combined, this enables the circular magnet (86) to rotate freely on its axis (85) and generate unlimited self-generating power;

[0671] A self-generating motor (for example) is able to continuously generate more mechanical 15 (convertible to electricity, etc.) power without the need to add an external power source.

[0672] Each magnet, whether in the form of a rod, C, U or other shape, can be fixed in the middle of its length (or at the curved end of the C, U or other shape) about its own axis (163) and (164), thereby allowing it to be moved / rotated (remotely or manually) around its axis (163) and (164) at an angle of approximately 90 degrees by adjusting knobs (165) and (166).

[0673] This allows the C-shaped and U-shaped magnets to have two different orientations and / or positions relative to the circular magnet (86),

[0674] This allows the circular magnet (86) and rotor (90) to rotate on its axis (85) in one or opposite directions; clockwise or counterclockwise.

[0675] A rod, C-shaped, U-shaped, or other shaped magnet can be remotely or manually moved about its axis from 0 to 180 degrees. (164) This produces a variable repulsive (and / or attractive) magnetic force acting on the circular magnet. (86)

[0676] This allows the circular magnet (86) and rotor (90) to rotate freely about the shaft (85) and can be rotated with less / more power, less / more speed, in the opposite direction, or stopped.

[0677] This is achieved by reducing / increasing or reversing or stopping the repulsive and / or attractive forces from the magnets, using a rod in the shape of a C, U, etc., opposite the circular magnet. (86)

[0678] This is accomplished by varying the repulsion (and / or attraction) angle / distance of the magnets, using a rod or C-shaped, U-shaped or other device that rotates the circular magnet (86) about its axis (85).

[0679] A simpler infinite automatic power generation device can use a preset C-shaped, U-shaped, etc. magnet, without the need for adjustment knobs (166) and (165) and without the need for a shaft (164). (163).

[0680] The circular magnet (86) rotates freely and continuously on its axis (85), and can continuously generate mechanical energy without the need for an external power source. This mechanical energy can be converted into electrical energy by connecting the axis (85) of the circular magnet (86) to the axis of a generator, thereby generating AC or DC electricity.

[0681] This power output can be connected to the input of a new type of transformer, such as Figure 3.b As shown, to obtain the increased (amplified) AC power at the output end of the new transformer, as Figure 3.b shown.

[0682] Figure 5.c Shown from above, Figure 5.d The side view shows how this infinite automatic generator 10 can be used as both a mechanical and an AC generator.

[0683] This is constructed from a circular magnet (86) with a series of holes (182) along its circumference, with no holes (183) between them, and of the same diameter, attached to the rotor and shaft. (85),

[0684] The four ends (184) and (185) and (186) and (187) (with the diameter size of the aperture) are close to two identical reverse coils (188) and (189) connected in series, whose cores are C-shaped (191) and (192).

[0685] The two opposing coils are simultaneously facing a hole and no hole (repeatedly) as the circumference (190) of the circular magnet (86) rotates.

[0686] This rotating circular magnet with a hole induces alternating current in two coils made of C-shaped cores (191) and (192).

[0687] The AC power output it generates can be connected to the input of a new type of transformer (A), such as Figure 3.b shown to further increase the power from the infinite automatic generating motor.

[0688] The electrical output of the new transformer (A) is as follows Figure 3.b As shown, this can be increased by a new transformer as detailed in Figure 3.

[0689] This increase in electrical output can be repeated multiple times.

[0690] Figure 6 An infinite automatic power generation device 11 is shown.

[0691] This is a common electric motor using AC / DC power, comprising a rotor (122), usually made of silicon steel sheets (or other magnetic alloys, etc.), in the shape of a capital letter I.

[0692] These silicon steel sheets are bonded together to form a three-dimensional I-shaped rotor.

[0693] This is constructed as follows:

[0694] (120) is a static magnet of the motor showing a pole in front of one of the two ends of the rotor.

[0695] (121) is another static magnet of the motor, showing the poles in front of the other end of the rotor.

[0696] (122) is the I-type rotor of the motor.

[0697] (123) and (124) are coils made of insulating magnetic alloy coils wound on the support rods of the rotor (122) (new type of motor).

[0698] (125) is a shaft placed in the middle of the new motor rotor (122).

[0699] The coils (123) and (124) are made of insulated magnetic alloy wire and enhance the alternating magnetic field generated by the DC and / or AC current in the coils. (s)

[0700] Coils (123) and (124) are wound around two branches of the rotor (122).

[0701] This rotor is I-shaped with two branches (122) separated by a shaft (125) on the rotor.

[0702] Each end of the I-type rotor generates an alternating magnetic field opposite (near and in front of) the stationary magnetic field (magnet) (120), (121)

[0703] These alternating magnetic forces from the rotor (122) and magnets (120) and (121) cause the rotor to rotate when current is passed through the coil (123). (124).

[0704] Conventional DC and AC electric motors use coils wound with insulated copper wire.

[0705] However, this infinite automatic generating motor using direct current and / or alternating current is made of an insulated magnetic alloy coil.

[0706] These insulated magnetic wires may be, for example, insulated silicon steel wires or insulated iron-nickel alloy wires . . .

[0707] The alternating current in the insulated silicon steel [Fe (95%) and Si (~5%)] conductor (or the alternating current in the insulated iron-nickel alloy [Fe (25%-75%) and Ni (75%-25%)] conductor) generates an amplified alternating magnetic field in the coils (123) and (124).

[0708] In the coils (123) and (124) made of insulated magnetic wire, this enhanced alternating magnetic field is stronger than the magnetic field generated by the insulated copper (Cu (~99%)) coils in conventional motors. In the coils (123) and (124) made of insulated magnetic wire, this enhanced alternating magnetic field is further amplified in the core of the rotor (122) made of silicon steel, ...

[0709] The stronger alternating magnetic field at both ends of the rotor (122) interacts with the magnetic field of the surrounding (electric) or static magnets (120) and (121). This increases the magnetic force between the two ends of the rotor (122) and the opposing static magnets (120) and (121) (and / or electromagnets) that surround the rotor.

[0710] This results in the infinite automatic generator (motor using insulated magnetic alloy coils) providing more mechanical power than 2 ordinary motors using insulated copper coils, which is the same in the motor using insulated copper coils and the motor using insulated magnetic alloy coils.

[0711] If the rotor of an infinite automatic generator is connected to the shaft of a generator to generate electricity, and the rotor is an electric motor made of a magnetic alloy coil,

[0712] Some of the electricity from the generator can then be used to power an electric motor, which uses coils made of magnetic alloy wire to drive the generator.

[0713] This invention can be applied to any other type, class, or model of electric motor that uses a core made of a magnetic alloy and a coil made of insulated copper wire.

[0714] These motors, which are wound with insulated copper wire, can be replaced with coils wound with insulated magnetic alloy wire.

[0715] For example: insulated silicon steel wire or insulated iron nickel wire... can be used in electric motors, using DC and / or AC power, and suitable for rotors of any shape.

[0716] For example, with a rotor:

[0717] I have a shape with two branches and two coils separated by the axis of the rotor, or a Y shape with three branches and three coils separated by the axis of the rotor, or

[0718] An X-shape with four branches and four coils, separated on the axis of the rotor.

[0719] Or a rotor with other shapes in an electric motor. The invention is also applicable to a rotor motor without coils, in which the copper wire forming the coils is located on the stator. (The stator is made of a magnetic alloy, and the insulated copper wire is inserted outside the rotor).

[0720] (On the stator which is placed on the rotor).

[0721] The insulated copper coils used for the stator can be replaced with insulated magnetic alloy wire.

[0722] For example: insulated silicon steel wire, or insulated iron-nickel alloy wire... used to make infinite automatic generating motors.

[0723] This allows for the continuous generation of more mechanical energy without the need for external power. By connecting the shaft of this new type of motor to a generator, and using a portion of the generator's electricity to power an unlimited automatic power generation device, this is a new type of motor (made of magnetic alloy wire). This combination allows for the continuous generation of more electrical and mechanical power without the need for an external power source.

[0724] To increase the power output, the electrical output of the generator (connected to the new motor via a shaft) is distributed to the input of at least one new transformer, such as Figure 3.b shown.

[0725] Its amplified AC output is connected to the electrical input of an infinite automatic generator (a new type of electric motor made of insulated magnetic alloy wire). This provides more power to the new type of electric motor, thereby generating more mechanical and electrical power.

[0726] (This could be for a vehicle, car, truck, train, plane, spacecraft... or a drill, washing machine...)

[0727] Several combinations of devices I invented (described above) can be used together, including (for example):

[0728] Combination 1: Use Figure 3.b The three new transformers described in detail in Figure 3.a The circuit described in detail in , generates more power from the circuit.

[0729] Combination 2: Use Figure 3.b A new type of transformer is described in detail to amplify the Figure 4.a 、 Figure 4.b 、 Figure 4.c and Figure 4.d The power of one or more unlimited devices as described in detail in.

[0730] Combination 3: Use one or more new transformers, such as Figure 3.b As shown, to amplify the power generated by the devices mentioned in Figure 2. a Combination 4: Combinations 1, 2 and 3 can be used to store the power they generate to charge or recharge, or as chargers for high-capacity capacitors, high-power (rechargeable) batteries, such as Figure 1.a to Figure 1.g As shown; (1; a, b, c, d, e, f, g) combination 5: use Figure 6 New motor as detailed in 3.b and / or Figure 3.a The generators and transformers detailed in the Figure 6 The new electric motor in the EV is shared, thus generating more mechanical and electrical power.

[0731] Combination 6: Use Figure 2.fVarious devices described in detail in series, parallel, and ring connections Figure 2.e The equipment detailed in the document will generate more powerful electron beams, ion beams, and more powerful high-voltage electrostatic power for ion beam propulsion engines.

[0732] Combination 7: Use Figure 1.a to Figure 6 Any other combination of equipment mentioned in Figure 1.a to Figure 6 For use with the unlimited automatic power generation device described in detail.

[0733] Figure 7.c An infinite automatic power generation device 19 consisting of two circuits is shown for use in Figure 7. a, where one circuit, when activated, allows voltage and current to flow in one direction, and then the other circuit is activated, allowing current to flow in the opposite direction.

[0734] Figure 7.b The complete circuit in acts as an inverter, switching two circuits in the following way:

[0735] The resistor values ​​are as follows: Figure 7.b Components (247), (248) and (249) are 1 kilo-ohm.

[0736] Figure 7.b Components (250) and (251) are 47 kilo-ohms.

[0737] The resistance of the component (252) is 160 kΩ. The resistance of the component (253) is 2.2 kΩ.

[0738] The resistance of components (254) and (260) is 1.2 kilo-ohms. The resistance of component (255) is 120 kilo-ohms.

[0739] The resistance of components (256), (257) and (261) is 470 kilo-ohms.

[0740] ----Capacitors with the following values:

[0741] Elements (245) and (246) are 1000 microfarads. The capacitance of assembly (258) is 47 pF.

[0742] Fast switching diode 1n4148 in the assembly: 15 (234) & (235), (236), (237), (238), (239),

[0743] (240), (241), (242), (243), (244)

[0744] ---NPN transistors (BC547) in components: (227), (228), (229), (230)

[0745] ---NPN transistor (2N6052) in the assembly (224)

[0746] ---PNP transistor (2N4001) in the assembly: (231), (232), (233)

[0747] ---PNP transistor (2N6059) in the assembly (263)

[0748] --- and 2 (rechargeable) batteries for 2 circuits in the assembly: (220), (221), (222), (223)

[0749] ---Alternately charge two batteries in two circuits: (225), (226)

[0750] The frequency of the alternating switching of the two circuits is controlled by an electrical oscillator which generates a sine wave or square wave voltage at points (259) and (262).

[0751] This circuit is an example of a circuit that can generate continuous AC current at (263) and (264) without the need for an external power supply.

Claims

1. Infinite automatic power generation devices can generate electricity continuously without the need for an external power source. They include the following 19 models: Infinite automatic power generation device 1: is an automatic rechargeable battery consisting of at least 3 (rechargeable) batteries, These 3 batteries have 3 different energy storage and 3 identical voltages and are connected in parallel with a switch. Infinite automatic power generation device 2: It is an automatic rechargeable battery consisting of two sets of two (rechargeable) batteries. With two groups of different powers and four of the same voltage, these batteries are connected in parallel and series through switches. Infinite automatic power generation device 3: is an automatic rechargeable charger consisting of 2, 3 or 4 (rechargeable) batteries with different energy storage capacities but the same voltage, which are connected in parallel and series through switches. Infinite automatic power generation device 4: is an automatic rechargeable charger composed of at least three (storage) different capacitors and / or (rechargeable) batteries connected in parallel and series at the same voltage, and provided with a switch. Infinite automatic generator 5: is an AC generator, which consists of at least 3 (high frequency and / or low frequency) Capacitors of different capacitance values ​​are connected in parallel with the same voltage and equipped with switches or resistors. Infinite automatic power generation device 6: is an AC generator, It is composed of at least three transformers with the same voltage but different power connected in parallel. Infinite automatic generator 7: It is an AC generator composed of one or two new transformers. These transformers are connected in a toroidal circuit and use insulated magnetic alloy wire in the input coil. Insulated non-magnetic alloy wire is used in the output coil. Infinite automatic power generation device 8: It is an alternating current generator consisting of a coil (or coils) and a core close to an insulating vibrating magnet with two parallel insulated reverse diodes connected at both ends of the magnet. Infinite automatic power generation device 9: A mechanical power generator (or electric motor) consisting of a circular magnet and a rotating shaft. The rotation is due to the magnetic force generated by a movable / fixed magnet (such as a rod, C-shaped, U-shaped, etc.) close to the circular magnet. Infinite automatic power generation device 10: It is a mechanical generator and alternator consisting of a coil of wire located near a circular magnet hole. A circular magnet rotates around its axis, close to a magnet shaped like a rod, U, etc. Infinite automatic power generation device 11: It is a new type of AC / DC motor made of insulated magnetic alloy coil. It can enhance the alternating magnetic field in the coils and rotor / stator of the electric motor, which can be connected to a generator via its shaft to provide electricity for this new type of electric motor. Infinite automatic power generation device 12: It is an AC and DC power generator consisting of asymmetric capacitors, each capacitor consisting of two electrodes of different sizes separated by a thin high-voltage insulating material and kept insulated on a high-voltage insulator. Infinite automatic generating device 13: is an electric transformer and AC and DC generator, consisting of two insulated wires separated by a high-voltage insulator and rotated with each other in the middle of their length and fixed in the high-voltage insulator. Infinite Automatic Power Generation Device 14: It is an electron / ion beam and plasma generator. It is constructed from a modified insulated bisymmetrical capacitor with two electrodes of different sizes. Each electrode has a hole, and the electrodes are separated by a thin high-voltage insulator with holes. Infinite automatic power generation device 15: is a high power, high voltage and high frequency AC and DC generator, Two or more asymmetrical capacitors (made of two wires with different insulation separated by a high-voltage insulator) Series, parallel or ring connection. Infinite Automatic Generator 16: is an AC and DC power generator consisting of two insulated wires separated by a high voltage insulator, rotated towards each other at the ends of their length. Infinite Automatic Generator 17: is a generator that can be used as a battery charger, requiring at least 2 or 3 similar electric (rechargeable) batteries with a voltage of at least 1.2 volts and a power storage of at least 10 milliwatts, as an example. The negative terminal of battery 1 is connected to the cathode of at least one or two parallel diodes and a 1000 microfarad (212) The negative terminal of the electrolytic capacitor (which has a higher voltage than battery 1 and battery 2) is connected to the emitter of the NPN transistor (BC547). The positive terminal of battery 2 is connected to the anode of at least 1 or 2 parallel diodes, to the positive terminal of a 1000 microfarad electrolytic capacitor, and to the collector of an NPN transistor (BC547). The base of the transistor is connected to a resistor (47K ohm) and the other end of the resistor is connected to the positive terminal of battery 2. The positive terminal of battery 1 is connected to the positive terminal of battery 3 for charging. The negative terminal of battery 2 is connected to the negative terminal of battery 3 for charging. Infinite automatic power generation device 18: It is an electrostatic electron beam generator, which consists of at least two fast switching diodes connected in inverted parallel. The diode is placed inside or on top of a high voltage insulator, with an anode metal ring at one end and a cathode needle tip at the other. Infinite self-powered energy generation device 19: is an AC generator using two infinite self-powered generators 17, These generators are activated alternately to allow 2 DC currents per circuit to alternate in both directions.

2. Infinite self-powered generator 1: It is built using (rechargeable) batteries for the purpose of generating and / or storing direct current. It is used as a charging device capable of continuously generating direct current without the addition of an external power source. The device includes at least the following: Three (rechargeable) batteries: Battery 1, Battery 2, Battery 3. The three (rechargeable) batteries: Battery 1, 2 and 3 can be made up of the same (rechargeable) batteries, These cells have the same voltage (V) and the same power storage (W / h). These three cells form cells 1, 2, or 3 and are connected in series (positive to negative) to form a single cell with a voltage greater than 1V. When these batteries are connected in series, the higher voltage equals the total voltage (V). The total output (watt-hours) equals the sum of the outputs of one (or each) battery connected in series. Each device has at least three (rechargeable batteries). Batteries 1, 2, and 3 have a voltage (V) of at least 1V or higher, and they have at least two or three different storage capacities (W / h). The three batteries 1, 2, and 3 are connected in parallel. In other words, connect the positive terminal of battery 1 to the positive terminals of battery 2 and battery 3. Connect the negative terminal of battery 1 to the negative terminals of battery 2 and battery 3. You can connect two or three reverse-connected diodes (Zener diodes) in parallel between the positive (or negative) terminal of battery 2 and the positive (or negative) terminal of battery 3 (or other equivalent circuits). This circuit uses a Zener diode to prevent the discharge of Battery 3. This is done by disconnecting Battery 1 and Battery 2 when Battery 3 is fully charged. When Battery 3 is not fully charged, it is disconnected by reconnecting Battery 3 to Battery 1 and Battery 2. The positive and negative terminals of battery 3 are the output of the infinite DC automatic generator. Battery 3 should have the highest energy storage (watt-hour). Battery 2 and battery 1 should have two lower different values ​​of energy storage (watt-hour). Battery 1, Battery 2 and Battery 3 should have the same voltage (V). More than three (rechargeable) batteries with the same voltage (V) but different electrical energy storage (W / h) can be used in parallel.

3. The unlimited automatic power generation device 1 and 17 according to claims 2 and 50, wherein the voltage is about 1 volt to 50 volts, can be used to manufacture the following products, which can operate continuously, This means that these products have continuous DC power without the need for an external power supply because they have at least: The automatic power generation device 1 according to claim 2 is used in the same manner as a conventional (rechargeable) Batteries or power supply units have similar voltage (V) and power storage (W / h). These power units, derived from batteries in car generators, can be used to manufacture the following products: Cell phones, laptops, printers, electric drills, flashlights, watches, smart watches, handheld calculators, and computers, translators, cameras, electric bikes, car and truck batteries, televisions, electric pumps, toy battery chargers, A, AA and AAA battery chargers, rechargeable A, AA and AAA battery chargers. Electric compressor battery charger, Android battery charger, drone battery charger, Robot battery charger, electric car battery charger, electric aircraft battery charger, electric scooter battery charger, electric bicycle battery charger, These new products are manufactured by replacing or charging the usual (rechargeable) batteries or capacitors and / or power supply units in the above products with the automatic power generation device according to claim 2, These automatic generators use the same common (rechargeable) Battery or power supply Battery or power supply unit of the same (similar) voltage (V) and power storage (W / h). This automatic power generation device uses the same (similar) voltage and power storage (watt-hours) as the rechargeable battery or power battery or power unit originally used in the above products. This is to create these products that can function continuously without the need for an external power source. This product can also be called an unlimited automatic power generation device.

4. An unlimited self-generating device 1 and 17 as claimed in claims 2 and 50; the voltage is about 1 volt (V) to 500 volts (V), Can be used as one of the following products for the production of the following products can be operated continuously (By continuously providing DC power without requiring an external power supply) Electricity) includes at least: The automatic power generation device according to claim 2, which uses the same (similar) voltage (V) and power storage (W / h) as the usual (rechargeable) Batteries or power supply units for the manufacture of the following products: Electric bicycle batteries and chargers, Batteries and battery chargers for cars, vans and trucks, TV batteries and battery chargers, Batteries and chargers for electric pumps, batteries and chargers for toys, batteries and battery chargers for electric compressors, Robot batteries and battery chargers, drone batteries and chargers, electric vehicle chargers, Electric aircraft batteries and battery chargers, electric scooter batteries and battery chargers, wind turbine batteries and chargers, solar and hydro and hydrogen power stations, batteries and chargers, wind power storage batteries and chargers, Factory robot batteries and chargers, drone batteries and chargers, electric vehicle chargers, Electric aircraft batteries and battery chargers, electric scooter batteries and battery chargers, wind turbine batteries and chargers, by replacing or charging the usual (rechargeable) The battery / battery or capacitor and / or power supply unit in the above listed products are replaced with an automatic power generation device according to claim 2 These unlimited automatic power generation devices use the same (or similar) voltage V and energy storage (W / h) as the rechargeable batteries or power batteries or power units originally used in the above products. This makes it possible to manufacture these products that can operate continuously without the need for an external power source, Therefore, it can be called an unlimited automatic power generation device.

5. An unlimited automatic power generation device 3, the purpose of which is to serve as a charger, Continuously provides DC power to (rechargeable) batteries and / or (storage) capacitors, Without the need to constantly add external power, it is composed of at least the following parts: 2 (rechargeable) batteries; Battery 1 and Battery 2 have the same voltage (V) but 1 or 2 different energy storage capabilities (W / h), they are connected in parallel (which means); The positive terminal of battery 1 is connected to the positive terminal of battery 2, and is also connected to the positive terminal of the rechargeable battery for charging. The negative terminal of battery 1 is connected to the negative terminal of battery 2, and is also connected to the negative terminal of the rechargeable battery for charging. The charging voltage of rechargeable battery 3 must also be the same as that of battery 1 and battery 2, which is approximately volts (V). And its energy storage power (W / h) should be higher than that of battery 1 and battery 2, but different from that of battery 1 and battery 2 used for the charger. 2 or 3 reverse (Zener) diodes in parallel (or equivalent circuit as a switch or relay) It can be connected between the positive electrode (or negative electrode) of battery 2 and the positive electrode (or negative electrode) of battery 3 that needs to be charged. These 2 or 3 reverse (Zener) diodes are connected in parallel (or other equivalent circuits) to avoid (chargeable) Discharge of battery 3; disconnect it from the charger when the battery is fully charged, and connect it to the charger when battery 3 is discharged.

6. Infinite automatic power generation device 4 for use as a DC charger device, The purpose for (rechargeable) batteries and / or capacitors is to allow the capacitor or battery or other device to be continuously charged with direct current without the need for a continuous addition of an external power source. This automatic power generation device is designed to keep capacitors, batteries or other devices charged continuously. Without having to constantly add an external power supply. This is built as follows: Two (or more) capacitors or (rechargeable) batteries with the same voltage (V) and 1 or 2 (or more) different energy storage powers (W / h) or capacities (F) are connected in parallel, (meaning); The positive terminal of capacitor 1 or the positive terminal of (rechargeable) battery 1 is connected to the positive terminal of capacitor 2 or (rechargeable) The positive terminal of battery 2 is connected to the positive terminal of a capacitor or (rechargeable) battery for charging. The negative terminal of capacitor 1 or (rechargeable) battery 1 is connected to the negative terminal of capacitor 2 or (rechargeable) battery 2, And connected to the negative terminal of a capacitor or (rechargeable) battery for charging. All capacitors or (rechargeable) batteries should also have approximately the same voltage (V) when charged. All capacitors or (rechargeable) batteries to be charged should also have approximately the same voltage (V), And should have 1 or 2 capacitors than used in charger 1&2 or (rechargeable) Battery 1 & 2 or Battery 1 & Capacitor 2 has higher capacity (F) or power storage (W / h). Two to three reverse (Zener) diodes in parallel (or equivalent circuit) can be connected between the positive (or negative) electrode of the capacitor 2 (or rechargeable battery 2) and the positive (or negative) electrode of the capacitor or (rechargeable) battery for charging. These two or three parallel (Zener) diodes (or other equivalent circuits) The purpose is to avoid discharge of capacitors or (rechargeable) batteries that need to be charged. This is done by switching them off from the charger.

7. An infinite automatic power generation charger device 4, consisting of capacitors and / or (rechargeable) batteries, The voltage range is from 1V to 50V, as described in Statement 5 and Statement 6. This automatic power generation device can be used as one of the equipment for manufacturing the following products, which can operate continuously. This is achieved by providing DC power continuously without adding an external power source. It is constructed in the following manner; These products are manufactured according to claim 2 and / or claims 5 and 6 using an infinite automatic power generation device 4 . The unlimited automatic power generation device 4 uses the same (similar) voltage (V) and electrical energy storage (W / h) as ordinary (rechargeable) batteries or power supply units manufactured in the products listed below; Laptop battery chargers, flashlight battery chargers, lighting and radio and TV battery chargers, camera battery chargers, Toy battery chargers, A, AA and AAA battery chargers, rechargeable A, AA and AAA battery chargers, electric vacuum cleaner battery chargers, Ventilator battery charger, electric bicycle battery charger, electric scooter battery charger, car battery charger, truck battery charger; The above product is produced by using an automatic power generation device (as described in claim 2, claim 5 and claim 6) Replace and / or recharge conventional (rechargeable) batteries or capacitors and / or power supply units in the above products. These products are intended to charge conventional (rechargeable) batteries or capacitors and / or power supply units in the products listed above, equipped with a built-in (or externally added) automatic power generation device(s), The voltage (V) and power storage (W / h) of these automatic generators are the same (similar) to the ordinary (rechargeable) batteries and / or power supply units originally used in the above products. This allows for the creation of products that can operate continuously without the need for an external power source, known as infinite self-generating devices.

8. An infinite automatic power generation device 1, 2, 3, 4 and 17, For use in replacing the same (similar) voltage (V) power storage (W / h) or (rechargeable) battery / battery and / or power supply unit manufactured in conventional products listed in claim 7. This type of automatic generator is used to create products that can operate continuously without the need for an external power source and is called an infinite automatic generator. If the infinite automatic generators 1, 2, 3, 4 and 17 are used as chargers, as described in claims 2, 5, 6 and 50, the voltage range thereof is 5V to 500V, Then this infinite automatic power generation device can be used to manufacture the following products: These new products can operate continuously (by continuously providing DC power without the need for an external power supply). These new products include at least: According to the unlimited automatic power generation devices 1, 2, 3, and 4 of claim 2, claim 5, and claim 6, This unlimited automatic generator uses the same common (rechargeable) Batteries, supercapacitors or power supply units of the same (or similar) voltage (V) and power storage (W / h); Car battery charger, truck battery charger, marine battery charger, wind turbine battery charger, Battery chargers for wind turbine energy storage, battery chargers for power stations, and battery chargers for hydrogen production. These new products are manufactured by replacing and / or charging the conventional (rechargeable) batteries, capacitors and / or power supply units in the above products. These common (rechargeable) batteries, capacitors and / or power supply units can be built-in. (either for built-in or external products) The automatic power generation device according to claim 2 and / or claim 5 and claim 6 can charge or replace conventional (rechargeable) batteries or capacitors and / or power supply units in the above products. The built-in (or externally added) automatic power generation device uses the same ordinary (rechargeable) Batteries or power supply units of the same (or similar) voltage (V) and power storage (W / h). This is to create products that can operate continuously without the need for external power supply, which can be called an unlimited automatic power generation device.

9. An unlimited automatic power generation device 12 for use as a generator for continuous DC and AC static electricity and high and low voltage generators without the need for continuous addition of an external power source, comprising at least the following components: One or more asymmetric capacitors, each of which is made of at least two electrodes of different size, surface or volume. These electrodes can be metal foil, metal wire, plastic conductor, or paper, fabric... The two electrodes are separated by a (thin) high voltage (HV) (antistatic) insulator. This HV insulating material can be, for example: Paraffin-coated paper, oil, polyester film, glass... or polyethylene film, quartz, glass, silicon, Teflon... Asymmetrical capacitors are isolated and used on or inside other high-voltage (antistatic) insulators for very high voltages. This high-voltage insulator can be, for example, paraffin-coated paper, oil, polyethylene terephthalate (PET), Teflon, etc. These insulators enable the largest electrode in the asymmetric capacitor to spontaneously and continuously carry a negative charge. At the same time, the smallest electrode spontaneously becomes continuously positively charged. The charge, voltage (V), and intensity of these two electrodes continue to increase. This increase occurs when all asymmetrical capacitors are completely insulated or placed at very high voltages (anti-static) On or inside an insulator. Such high voltage insulators may be, for example; Polyethylene terephthalate (PET), Teflon, or paper shells filled with paraffin or oil. These devices allow for the continuous production of high-voltage electrostatic power without the addition of an external power source.

10. An infinite automatic generator 12 is used as a high voltage generator and / or an electrostatic generator. This is implemented according to claim 9 using (storage) capacitors. If these (storage) capacitors have a voltage from 1 to 500,000 volts in an infinite automatic generator, then this infinite automatic generator can be used to make the following products that can operate continuously, These products operate continuously by providing AC and DC high voltage power, eliminating the need for an external power source. These manufactured products contain at least: According to claim 9, the automatic power generation device 12 uses the same (similar) voltage (V) and the same stored energy (W / h) as the (high) voltage power supply unit originally used in the following manufactured products; Power supply equipment for camera flash, ultra-high intensity laser pulse equipment, spark generator, high voltage electrostatic generator (for High-voltage capacitor charging), plasma generator and air ion generator are new products manufactured by replacing the traditional (rechargeable) batteries, capacitors or power supply units in the above products with an unlimited automatic power generation device 12 (as described in item 9). These automatic power generation devices 12 are described in item 9, using the same common (high) Voltage power supply units with the same (similar) voltage (V) and the same stored energy (W / h); Power supply equipment for camera flash, ultra-high intensity laser pulse equipment, spark generator, high voltage electrostatic generator. (Also used to charge high voltage capacitors) Plasma generators, air ionizers, These products are produced by using an infinite automatic generator and an asymmetrical capacitor (as described in item 9) Manufactured to replace conventional (rechargeable) batteries or capacitors and / or power supply units in the products listed above. The purpose of these infinite asymmetric capacitors is similar to the ones originally used in the above products (high) The voltage power supply units generate the same voltage (V) and power storage (W / h). These newly manufactured products can operate continuously without the need for an external power source. These newly manufactured products can be called unlimited automatic power generation devices.

11. An infinite automatic power generation device 14 is used as an ion generator device, which can continuously generate electron or ion beams without continuously adding external power. The infinite automatic power generation device 14 can be used in space, A propulsion engine in vacuum or air, or for use in an air ionizer, a photocopier, or a chemical reaction requiring a charged particle beam. The device shall include at least: One or more (improved) bisymmetrical capacitors, this / these (modified) An asymmetric capacitor is composed of two electrodes, which can be metal foil, insulated metal wire, paper, fabric, etc., with different sizes, surfaces and / or volumes. The two different electrodes each have at least one hole and are separated by a (thin) high voltage (HV) antistatic insulator with a small hole in it. The high-voltage insulator may be PET, polyethylene film, paraffin-treated paper, oil, glass, mica, quartz, silicon, etc. The size of the holes in the high-voltage insulator is similar to that of the holes in the two electrodes. Such high voltage insulation material may be, for example: paraffin-coated paper, oil, polyester (PET), mica, glass or the like. This high voltage (HV) insulator is placed around and below an asymmetric capacitor. This HV insulator allows the largest electrode to spontaneously and continuously become negatively charged. This HV insulator allows the smallest electrode to spontaneously and continuously become positively charged. If good insulation is maintained, the charge, voltage, and intensity of the two electrodes will continue to increase. Let electrons and ions flow through the three holes; It flows out from the pores of the negative electrode, then to the pores of the insulator, and then to the pores of the positive electrode. The three holes form a hole and face each other, when the two electrodes are (high voltage) anti-static (piezoelectric and non-piezoelectric) When an insulator is separated. Glass, quartz, etc. are insulators and exhibit piezoelectric properties. This allows electron / ion beams to be continuously generated in air / vacuum without the addition of an external power source. The electron / ion beam phenomenon occurs when a very high voltage insulator, such as paraffin-coated paper, oil shells, polyester film, mica, or Teflon, is placed around or under an asymmetrical capacitor.

12. An infinite automatic power generation device 14 and 18, made of (improved) bisymmetrical capacitors, The device can be used to manufacture the following: Products that can operate continuously with constant access to electricity, without the need for an external power source. The equipment includes at least: The automatic power generation device according to items 9, 11 and 49 uses the same (similar) voltage (V) and the same energy storage (W / h) or power unit as the (high) voltage power supply unit originally used in the manufactured products listed below. Air ionizer, electron beam generator, ion beam generator, space ion trust engine, plasma generator, these improved products are obtained by replacing the commonly used (rechargeable) batteries or capacitors and / or transformers in the above products, Electron / ion beam generator and power supply unit are used to manufacture. Infinite automatic power generation device and (improvements) as described in items 9, 11 and 49 Asymmetric capacitors are replacing conventional rechargeable batteries, capacitors, transformers and power supply units. The use of these unlimited automatic power generation devices produces the same (similar) voltage (V) and power storage (W / h) as the high voltage power supply units originally used in the above products. This enables newly manufactured products to operate continuously without the need for an external power source, and these new products can be called unlimited automatic power generation products.

13. Another infinite automatic power generation device 12 is continuously generating (high voltage) DC and AC power, And high voltage static electricity, without the need to constantly add an external power source. This other unlimited automatic power generation device includes at least: One or more asymmetric capacitors: Each asymmetric capacitor includes at least two electrodes. The two electrodes may be conductors; insulated metal wires, ...) of different sizes, surfaces and / or volumes, The two electrodes are separated by a (thin) high voltage (HV) antistatic insulator. Another very high voltage insulating material, such as paper made of paraffin, oil or PET, surrounds each bisymmetrical capacitor. This causes the largest electrode to spontaneously and continuously become negatively charged. This causes the smallest electrode to spontaneously and continuously charge positively. This charge generation occurs in each of these asymmetric capacitors. The charge, voltage, and current of the electrodes in these two asymmetric capacitors continue to increase. This increased charge generation occurs when a very high voltage (HV) insulator Located under or around all asymmetrical capacitors connected in series or parallel. The (HV) insulation can be paper treated with paraffin, oil or polyethylene terephthalate (PET). This is done by connecting asymmetrical capacitors (pole + connected to pole -) and (pole - connected to pole +) or (pole - connected to pole -) and / or (pole+connects pole+). This enables each asymmetric capacitor to act as an inverting and / or amplifying charge and electrical polarity. This is achieved by using an electrode (insulated wire) as the input of another asymmetric capacitor. This is achieved by selecting the largest or smallest electrode. The two or three asymmetric capacitors are connected in series to form a loop, thereby increasing the DC and AC high voltage (HV) and (quiescent) power output and ion beam power (between cathode- and anode+) without the need for an external power supply.

14. The unlimited automatic generating devices 12, 13, 14, 15, 16 and 18 are composed of asymmetric capacitors and diodes, as described in items 9, 11, 13 and 49. This automatic power generation device can be used as one of the equipment to manufacture the following products, which can operate continuously (By continuously providing high voltage power without the need for an external power supply). These products utilize the self-generating devices described in items 12, 13, 14, 15, and 49 and incorporate the asymmetric capacitors or diodes described in items 9, 11, 13, and 49. These automatic power generation devices use the same voltage (V) and the same (similar) power storage (W / h) in these manufactured products as the conventional (high voltage) power supply units originally used in these products. These automatic generators can be used to manufacture the following products: Air ionizer, electron beam generator, ion beam generator, ion trust engine for space, Plasma generators, high voltage generators, high energy pulse lasers, power supply equipment for camera flashes, Ultra-high intensity laser pulse equipment, spark generator, high voltage electrostatic generator (used in copiers, etc.). These manufactured products are produced by using (rechargeable) batteries or capacitors and / or (high voltage) commonly found in the above products. The power supply unit is replaced. According to the requirements of items 9, 11 and 13, automatic power generation devices and asymmetric capacitors replace the usual (rechargeable) batteries or capacitors and / or (high voltage) power supply units in the above products. The automatic power generating device and asymmetrical capacitor according to items 9, 11 and 13, the voltage (V) and power storage (W / h) are the same (similar) as the (high) voltage power supply unit in the above products. These newly manufactured products can operate continuously without the need for an external power source.

15. The unlimited automatic power generation device 8 can be used as a generator and energy storage device. This automatic generator consists of a transformer, a coil and a magnet in the form of a rod (button), C-shaped, U-shaped or tubular. and at least 1 or 2 diodes and a high-voltage electrostatic insulator. This automatic generator is designed to continuously generate AC (and DC) electricity without the need for an external power source. The frequency is 60-100 Hz or other frequencies. This automatic power supply device includes at least: Magnets in the form of rods, buttons, C-shaped, U-shaped, tubular (or other) shapes, The two longest ends of this magnet are connected to one or two diodes. The magnet is strongest at its two extremes, the south and north poles. Two reverse-direction diodes are connected in parallel, and the magnet and at least one or two diodes are insulated with very high-voltage anti-static insulation. This high-voltage insulation can be, for example: Use paraffin, oil, polyethylene film or PET paper... The insulating magnet vibrates due to repeated short circuiting of a very low AC voltage across the insulating magnet. This magnet is connected in parallel via at least two insulated, reverse-directed diodes. The magnet contracts and decontracts due to magnetostriction and decontraction. Magnetostriction and magnetostatic expansion are caused by repeated short-circuiting of a very low AC voltage that occurs spontaneously across the insulated magnet. This is in a coil or coil with a magnetic alloy core, Or a transformer with a core that produces a continuously oscillating magnetic field. The cores of these transformers can be made of magnetic alloys such as silicon steel and iron-nickel alloys. The core amplifies the alternating magnetic field from the vibrating magnet. This vibrating magnet is placed very close (less than 1 mm) to the coil or core or transformer. Currents are continuously induced in the coils and / or transformers. This induced current is continuously generated in the coil and / or transformer. These output coils and cores must have the correct impedance to resonate with the frequency of the vibrating insulating magnets. This means the coil and core must be the correct size, number of turns, inductance and permeability. In order to produce the maximum AC output from this infinite automatic generating device.

16. Infinite automatic power generation device 8 consisting of a coil, a transformer, at least one (strong) magnet, one or two diodes and a very high voltage (antistatic) insulator, as described in claim 15. This infinite energy generation device can be used to create the following products, which can operate continuously without the need for an external energy source. These new products can continuously provide AC power without the need for an external power source. These new products include: The automatic power generation device 8 according to claim 15 has the same voltage (V) and power storage (W / h) as (or similar to) conventional voltage power supply units originally used in the following manufactured products: Electric AC generators, portable low-power AC generators for electric watches, calculators, laptops, mobile phones, battery chargers or (storage) capacitors, watches, digital watches, smart watches, televisions. These products are manufactured by replacing the conventional (rechargeable) batteries or capacitors and / or power supply units in the above products with the automatic power generation device described in Item 15. These autonomous power generation devices use the same (similar) voltage (V) and energy storage (W / h) as conventional (rechargeable) batteries, energy storage capacitors, power supply units to create these products that can operate continuously without the need for an external power source.

17. The unlimited automatic power generation device 5 is made of capacitors (high frequency or low frequency, non-polar, etc.), For example, an insulating material such as mica or PET is used. These capacitors have two identical electrodes. This infinite automatic generator can continuously generate electric (static) voltage and / or low frequency AC current and AC power without adding an external power source (high or low frequency). (60-100Hz) The production of the infinite automatic power generation device 5 requires at least: 2 or 3 non-polarized high-frequency or low-frequency capacitors (MKP), (F) connected in parallel. These three common capacitors have (approximately) the same voltage (V), but at least 2 or 3 different capacitances (F), and are separated by electrodes of the same size and insulating material. These capacitors are connected in parallel. The first pole of each capacitor is connected to the first pole of the other capacitors. The second electrode of each capacitor is connected to the second electrodes of the other capacitors. Each capacitor consists of two identical electrodes. High frequency electrostatic voltage and / or conventional low frequency alternating current (60-100Hz) The output comes from the two poles of the capacitor with the largest capacity. (F) The capacitor with the largest capacity is one of at least three capacitors connected in parallel. All capacitors must remain insulated with high voltage (HV) antistatic insulation material at all times. High voltage (HV) antistatic insulators are essential for continuous alternating current (AC) power generation without the need for an external power source.

18. An infinite automatic generating device, 15 and 5 and 18, consisting of non-polar capacitors, oil, Made of materials such as electrolytic mica, it is suitable for high or low frequency and is an AC power generator. These non-polarized capacitors are described in items 17 and 49. This automatic power generation device 15&5&18 can be used to manufacture the following products: These products can operate continuously without an external power source. These newly manufactured products are able to continuously provide AC power without the need for an external power source. These newly manufactured products include: The automatic power generation device according to items 17 and 49 has the same voltage (V) as a conventional battery and the same (similar) power storage (W / h), Capacitors, power units) are used to manufacture the products listed below; These batteries, capacitors, and power packs were originally used in the following manufactured products: Portable AC generators, High voltage electronic / ion generators, Air ionizers, Ion gas generators, High voltage (static) generators, (very) high frequency high voltage generators, These products are manufactured by replacing conventional (rechargeable) batteries or capacitors and / or power supply units in the above products with an unlimited automatic power generation device (as described in claim 18). The unlimited automatic power generation device according to claim 17 uses the same (or similar) voltage (V) and power storage (W / h) as the (rechargeable) batteries, energy storage capacitors, and power units originally used in the above products. These newly manufactured products can operate continuously without the need for an external power source. These newly manufactured products can be called unlimited automatic power generation products.

19. The unlimited automatic power generation device 6 is used as a generator and storage device. The infinite automatic power generation device 6 is made of an electric transformer, The unlimited automatic power generation device 6 can be used as a continuous AC power (60-100 Hz or other frequency) generator without the need for an external power source. The unlimited automatic power generation device 6 comprises at least: 3 or 4 (high frequency or low frequency) transformers with the same input voltage (V) but 2 or 3 different output powers (W / h). The three inputs of these three transformers are connected in parallel and in phase. The outputs of these three transformers have 2 or 3 different output powers (watt-hours). The output voltage (V) of these three transformers is the same. Three transformers with three different output powers (W / h) are connected in parallel and in phase. The outputs of three transformers are connected in parallel to the input of a fourth transformer. The output of the fourth transformer is connected to a circuit. A circuit allows AC current to flow only from the output of the fourth transformer to the three parallel inputs of the first three transformers. These four transformers form a circuit in a loop, continuously generating AC power without the need for an external power source. The output power comes from a fraction of the three identical output voltages (V) from these three transformers. and / or the output power comes from a portion of the output of the fourth transformer, These outputs are capable of continuously generating AC power without the need for an external power supply.

20. An infinite automatic power generation device 6, used as an AC generator and AC storage device, Made of a transformer, as claimed in claim 19, it can be used as one of the equipment for manufacturing the following products, These products can operate continuously (by continuously providing AC power without adding external power), These new products are made from the following materials: The automatic power generation device according to claim 19, using the same voltage (V) and the same (similar) power storage (W / h) as the battery, Transformers, capacitors, and power supply units used in the manufacture of Products listed below: Generators in power stations, (portable) AC generators, AC generators for electric vehicles; Electric trucks, electric boats, electric vans, electric planes, electric spacecraft, According to the automatic power generation device of claim 19, the conventional (rechargeable) Batteries or capacitors and / or transformers or power supply units. The power generation device according to claim 19 uses the same voltage (V) and power storage (W / h) as a (rechargeable) battery, energy storage capacitor, transformer, and power supply unit. These newly manufactured products can continue to operate without an external power source and can be called unlimited automatic power generation products.

21. The unlimited automatic power generation device 7 is used as a generator. This is made using a transformer and is designed to continuously generate alternating current (60-100 Hz or other frequencies) without the need for an external power source. This is constructed as follows: The input coils of 1 or 2 power transformers are made of insulated magnetic alloy coils; Examples of these alloys are: Insulated silicon steel wire, containing 95% iron and about 5% silicon. or insulated iron-nickel alloy wire… containing 25%-75% iron and 75%-25% nickel… These insulating magnetic alloys enhance the alternating magnetic field inside the coils and cores of both transformers. This results in higher AC induced current and AC power output in the output coils of the two new transformers. Typically, transformers use coils of insulated copper wire. These two new types of transformers can be connected in a ring shape in a circuit. This is done as follows: The insulated copper wire winding of transformer 1 is connected in parallel with the input winding of transformer 2. The input coil of the transformer 2 is made of insulating magnetic alloy. The output coil of transformer 2 is made of insulated copper wire and is connected in parallel with the input coil of transformer 1. The input coil of the transformer 1 is made of insulated magnetic alloy wire. A circuit is added between the output of transformer 2 and the input of transformer 1. This circuit allows AC current to flow from transformer 2 to transformer 1 in only one loop. The two transformers can continuously generate more electricity without the addition of an external power source. Insulated magnetic alloy wire can be made from materials such as: Insulated silicon steel wire (about 5% silicon, about 95% iron, ...) Insulated iron-nickel alloy wire (Nickel content is about 30% to 60%, and iron content is about 60% to 30%).

22. The unlimited automatic power generation device 7 can be used as an AC power generator and storage device. This infinite automatic power generation device 7 is manufactured according to the new transformer described in claim 21. This can be used to create products that can operate continuously without the need for an external power source. These new products can provide continuous power without the need for an external power source. They are made as follows: The automatic power generation device 7 according to claim 21 uses voltage (V) and energy storage (W / h). The manufactured products listed below were originally made up of batteries, capacitors, transformers, and power supply units. These batteries, capacitors, transformers and power supply units use voltage (V) and power storage (W / h). The automatic power generation device 7 according to claim 22, and the battery, capacitor, The transformers and power supply units have the same voltage (V) and power storage (W / h). The following is a list of new products: Generators in power stations, (portable) AC generators, AC generators for electric vehicles; electric trucks, electric boats, electric vans, electric aircraft. Electric spacecraft, AC and DC generators for factory use, (portable) electric AC generators, power generation devices according to claim 21 replacing conventional (rechargeable) batteries or capacitors and / or transformers, power units in the above new products. According to claim 21, the power generation device uses (rechargeable) batteries, energy storage capacitors, The transformer and the power supply unit have the same voltage (V) and power storage (W / h). The newly manufactured products can operate continuously without adding an external power source. These new products can be called unlimited automatic power generation products.

23. The unlimited automatic power generation device 11 can be used as a mechanical power generation device. The infinite automatic generator 11 is a new type of electric motor that can generate mechanical power. The unlimited automatic power generation device 11 generates electricity continuously in the following combinations with the generator without adding an external power source: The infinite automatic power generation device 11 is connected to a generator to provide power for the infinite automatic power generation device 11 . The structure of the unlimited automatic power generation device 11 is as follows: This is a new type of electric motor made with insulated magnetic alloy coils. Such an insulated magnetic alloy wire may be, for example, an insulated silicon steel wire or an insulated iron-nickel alloy wire. These insulated magnetic alloy coils enhance the alternating magnetic field inside the motor's rotor and / or stator. This results in the new motor producing stronger magnetic force and higher power output. It is possible to continuously generate mechanical and electrical energy without the need for an external power source: If the automatic generator 11 is connected by its shaft to drive a generator, and If the generator provides part of the electricity to the new type of electric motor.

24. The infinite automatic power generation device 11 is used as an AC automatic power generation device. This is made from an electric motor whose coils are made from insulated magnetic alloy coils as described in item 23. This can be used to make the following products, These new products are designed for continuous operation, utilizing both AC and DC power without the need for an external power supply. The automatic power generator according to claim 23, using the same voltage (V) and the same (similar) power storage (W / h) as the battery, Capacitors, power supply units used in the manufacture of the products listed below; Electric DC and / or AC generators and mechanical generators are used in / for power stations, AC and mechanical generators and motors in factories, for houses, for (portable) electric DC and / or AC generators and mechanical generators (motors) in cars, trucks, airplanes, ships, trains, spacecraft, washing machines, robots, Android devices, electric scooters, electric bicycles, electric drills, electric scooters, Walkmans, power generators for computers and laptops and mobile phones, power generators for battery chargers, the power generation device 11 described in claim 23 replaces the traditional (rechargeable) batteries or capacitors and / or transformers, power supply units in the above new products. The new products mentioned above can operate continuously without the need for an external power source. These new products can also be called automatic power generation devices.

25. The infinite automatic generator 9 is generating mechanical power. The infinite automatic generator 9 can also continuously generate machinery and electricity if: The infinite automatic generator 9 is connected to the generator via its shaft, Then the unlimited automatic power generation device 9 also supplies electricity. The unlimited automatic power generation device 9 comprises at least: A round magnet with the north pole at the top and the south pole at the bottom. (or vice versa) The circular magnets are connected to a rotor that is free to rotate around an axis. The upper side of the circular magnet shows its north pole, while the lower side of the circular magnet shows its south pole. Place at least one (or two) magnets with rods, or C-shaped, U-shaped or other magnets, It is best to approach the circular magnet at a suitable angle. These are magnets with rods, or C-, U-, or other shapes, with their north pole positioned above the round magnet. These are magnets with rods, or C-, U-, or other shapes, with their south pole located below the round magnet. These magnets with rods, either C-shaped, U-shaped or other shapes, This creates a magnetic repulsive force on the circular magnets attached to the rotor. These magnetic repulsive forces cause the circular magnet to rotate about an axis. The rotating shaft generates continuous mechanical power. This shaft can be connected to turn a generator, continuously producing electrical and mechanical power without the need for adding external power.

26. The unlimited automatic power generation device 9 can be used as a mechanical power generation device. Generates continuous and spontaneous mechanical power. The Infinite Automatic Generator 10 is a new type of generator and motor. This is made in the following way: This is made with a round magnet and at least one or two magnets. These have at least one or two magnets with a rod, or C-shaped or U-shaped or other forms, as described in items 25 and 43. Round magnets and one or two magnets are used in the manufacture of automatic power generation devices 9 for the following products: These products have continuous mechanical and / or electrical energy. With this continuous mechanical and / or electrical power, these new products can operate without the need for an external power source. These new products include: An automatic power generating device according to items 25 and 43. The automatic power generation device 9 described in claims 1 and 25 uses voltage (V) and energy storage (W / h). The products listed below originally consisted of batteries, capacitors, transformers, and power supply units. These batteries, capacitors, transformers and power supply units use voltage (V) and power storage (W / h). The automatic power generation device 9 has the same voltage (V) as the battery, capacitor, transformer and power supply unit and power storage (W / h). Here is a list of these new products: Mechanical generators for hydraulic engines, used in AC power stations Mechanical generators for portable AC power stations; Mechanical power generators (motors, engines) for cars, trucks, airplanes, boats, trains, spacecraft, washing machines; Mechanical power generators (motors, engines) for electric scooters, electric bicycles, electric drills, electric helicopters, and electric drones The automatic power generation device described in claim 25 replaces the traditional (rechargeable) Batteries or capacitors and / or transformers or power supply units or electric motors or engines. These new products can operate continuously without the need for an external power source and are called self-generating products.

27. The unlimited automatic power generation device 13 is used as a transformer for high voltage, Electrostatic generators with high frequency AC and DC or AC only. The infinite automatic generator 13 is also used to increase or decrease the AC voltage. The unlimited automatic power generation device 13 comprises at least: Two insulated electrical conductors (wires, insulated wires, etc.) separated by a high-voltage insulator, Such a high voltage (HV) insulator may be, for example, paraffin-coated paper, oil, polyester (PET) or the like. The two insulated electrical conductors are separated by a high voltage (HV) antistatic insulator. The two insulated electrical conductors, separated by high voltage (HV) antistatic insulation, are rotated towards each other in the middle of their length. Twisted... Two twisted insulated conductors separated by a high voltage (antistatic) insulator, held in a very high voltage (antistatic) insulating housing. This case includes paraffin, oil, etc. as examples. Or two twisted insulated conductors separated by a high voltage (anti-static) insulator and placed on paraffin-coated paper to maintain insulation. The input and output of this transformer are at the two ends of the two insulated wires. The output power of the device, used as a DC and AC transformer, depends on the number of turns of the winding on the two conductors. can generate an increasing or decreasing input voltage and / or current at the output, And can produce polarity at both ends of each insulated wire of the output, These DC and AC transformers can be connected in series and / or in parallel. or in series to produce continuous and spontaneous high voltage static AC power. This device is able to continuously and spontaneously generate high-voltage static alternating current without the addition of an external power source. AC current will only be produced in the output if the two insulated wires are exactly the same size. If one of the two insulated wires is different from the other, then both DC and AC will be present in the output. The longest or largest insulated wire has negative DC and AC voltages. The shortest or smallest insulated wire (conductor) has positive DC and AC voltages. The two insulated conductors must be separated by high voltage (antistatic) insulation material and placed in a high voltage (HV) Insulated housing. For example, a case about paraffin, oil, etc., ... or two by high voltage (antistatic) Insulated conductors separated by insulating material are used on paraffin-coated paper, Additional insulation under or around this device is necessary in order to continue generating electricity without adding an external power source.

28. The infinite automatic generator 13 is used as a transformer, For increasing, decreasing and / or generating direct current and alternating current or only alternating current, as claimed in claim 27. The unlimited automatic power generation device 13 can be used to manufacture the following new products: These new products can operate continuously by receiving electricity continuously, without the need for an external power source. These new products include: The automatic power generation device according to claim 27 uses the same voltage (V) and energy storage (W / h) as the battery, supercapacitor, power unit originally used in the following listed products: High frequency transformer, ultra high frequency high voltage transformer, High frequency and high voltage electrostatic alternator, high frequency and high voltage DC and AC generator and transformer, Plasma generators, lighting power supply equipment with gas bulb discharge, An air ionizer according to claim 27, The automatic power generation device 13 replaces the battery / battery pack, transformer and / or power supply unit in the above products. Automatic power generation device 13 uses (rechargeable) batteries, energy storage capacitors, The transformer and the power supply unit have the same voltage (V) and energy storage (W / h). (s), These (rechargeable) batteries, energy storage capacitors, transformers, power units were originally used in the products listed above. According to claim 27, all transformers used in the manufacture of the above new products must use high voltage (HV) (Anti-static) insulating material for insulation. It is necessary to manufacture the above new products. These new products can operate continuously without the need for an external power source. These new products can also be called automatic power generation products.

29. Any other automatic power generation device derived from my invention, such as that in claim 1、2、3、4、5、6、7、8、9、10、11、12、13、14、15、16、17、18、19、20、21、22、23、24、25、26、27、28、29、30、31、32、33、34、35、36、37、38、39、40、41、42、43、44、45、46、47、48、49、50、51、 It can be used in conjunction with the following devices, including the unlimited automatic power generation device described in my invention, As detailed in the following claims: 1,2,3,4,5,6,7,8,9,10,11,12,13,14,15,16,17,18,19,20,21,22,23,24,25,26,27,28,29,30,31,32,33,34,35,36,37,38,39,40,41,42,43,44,45,46,47,48,49,50,51 The above combination can improve or increase the power generation of these combinations. The combination of these automatic power generation equipment is to make new products. These new products are capable of generating, storing, and amplifying AC and DC electricity, as well as high-voltage electrostatic energy and / or mechanical energy. The combination of these automated power generation devices is designed to create better products.

30. An infinite automatic power generation device 7 comprising at least one or more novel transformers according to claim 21 and claim 22. The infinite automatic power generation device 7 can generate more electricity from the circuit according to claim 19. This automatic power generation device includes: At least one to three types of transformers use the principle of magnetic amplification in new transformers. This additional power amplification is due to the use of an input coil made of an insulated magnetic alloy coil, as described in Item 21. The three transformers are connected together as described in claim 19 . The same principle of charging a battery using direct current as described in claim 1 and claim 3 also applies to alternating current. These three transformers are able to continuously generate more AC power without the need for an external power source. The increased AC power is located at the input and / or output of the three new transformers. (As claimed in claim 21) The inputs of the three new transformers are connected in parallel. The output voltages of the three new transformers are the same (V), and the outputs of the three new transformers have three different power outputs (watt-hours). The outputs of the three new transformers are connected in parallel, as described in Item 19.

31. The unlimited automatic power generation device 7 is used as an AC generator and energy storage device. The unlimited automatic power generation device 7 is constructed according to the transformers of claims 30, 21, 19 and 34. The unlimited automatic power generation device 7 can be used to manufacture the following new products, which can operate continuously. These new products provide continuous power without the need for an external power supply. They include: According to the requirements of items 19, 21, 30 and 34, the unlimited automatic power generation device 7. Infinite automatic power generation device 7 uses the same voltage (V) as batteries, capacitors, transformers and power supply units and electrical energy storage (W / h). (s) The products listed below originally used batteries, capacitors, transformers, and power supply units: Mechanical generators for hydraulic engines, AC power stations, and (portable) AC power stations. Mechanical power generators for cars, trucks, airplanes, boats, trains, spacecraft, washing machines, electric scooters, electric bicycles, electric drills, electric helicopters, and electric drones. Automatic generators replace conventional (rechargeable) batteries or capacitors, transformers, and power supply units. These common (rechargeable) batteries or capacitors, as well as transformers and power supply units, were originally used in these products. These automatic power generation devices and these common rechargeable batteries or capacitors, transformers, The power supply units have the same voltage (V) and energy storage (watt-hours). These new products can operate continuously without external power supply.

32. An unlimited automatic power generation device 7 comprising at least one or more of the novel transformers as claimed in claim 21, for the purpose of generating more electricity from the motor as claimed in claim 23, and constructed as follows: At least one new transformer A, as claimed in claim 20, has its input connected to the electrical output of the generator. This generator produces alternating current and / or direct current. This generator is connected to a new type of electric motor via its shaft. This new type of motor is made of insulated magnetic alloy wire, as described in Item 23. This new motor draws power from the AC and / or DC output of at least one new transformer A. As described in claim 21. According to claim 21, the input of the new transformer A is increased at the output of the new transformer A, thereby increasing the power. The output of transformer A can be connected to the input of a new transformer, B. The new transformer B again increases the output power, as described in Item 21. The outputs of transformers A and B can continue to produce more power without adding an external power supply.

33. The unlimited automatic power generation device 7 is used as an AC generator and energy storage device. The infinite automatic power generating device 7 is made of a transformer, and the construction of the infinite automatic power generating device 7 is as described in Items 21, 23, 32 and 43. The unlimited automatic power generation device 7 can be used to manufacture the following products, which can operate continuously. These new products feature continuous power supply (no external power supply required). These new products include: An automatic power generating device according to items 21, 23, 32 and 43. The products listed below feature batteries, capacitors, transformers, and power supply units, with voltage (V) and power storage (W / h). Automatic power generation devices and power storage (W / h) such as batteries, capacitors, transformers, and power supply units have the same voltage (V) and power storage (W / h). New products use automatic power generation devices. The automatic power generation device replaces batteries, capacitors, transformers and power supply units. This automatic generator can be used for the following products: New products such as mechanical generators for hydraulic engines, power stations, (portable) AC power stations for factories and residential buildings, and mechanical power generators (motors) for cars, trucks, airplanes, ships, trains, spacecraft, washing machines, electric scooters, electric bicycles, electric drills, electric helicopters, and electric drones are manufactured using automatic power generation devices. The automatic generator replaces conventional (rechargeable) batteries, capacitors, transformers, electric motors and power supply units. The automatic power generating device is constructed according to the requirements of claims 21, 23 and 32. These new products are equipped with automatic power generation devices, which can operate continuously without the need for external power supply.

34. Combination of unlimited automatic power generation devices 7 and 11; Made of at least one or more novel transformers as claimed in claim 21, The purpose is to generate more mechanical and electrical alternating current from the motor as claimed in claim 23. The increased power output can be collected at the output of the novel transformer (as described in claim 21), and / or collected at the output of at least one (second) new type transformer (as claimed in claims 21, 25), the input of which can be connected to the output of the first new type transformer (as claimed in claim 21), To continuously generate more AC output without adding an external power supply. The increased output from the second or first transformer can be partially used to power the novel motor as claimed in claim 23, and this can be repeated multiple times by adding and connecting more novel transformers (as claimed in claim 21), To further increase mechanical and AC output.

35. The infinite automatic generator 8 is used as an AC generator. The infinite automatic generator 8 is capable of continuously and spontaneously generating (mechanical) alternating current. The materials for making the Infinite Automatic Generator 8 include: Magnets with rods, or tubes in C, U or other shapes, as well as diodes, high-voltage insulators and coils. The infinite automatic power generation device 8 is constructed as described in claim 15 , claim 19 and claim 21 . The Infinite Automatic Generator 8 can be used to create the following new products: These new products can operate continuously without the need for an external power source. These new products feature continuous mechanical and electrical power, requiring no external power source. Here's how these new products are made: An automatic power generating device according to items 15, 19, 20 and 21. The automatic generator and (rechargeable) battery, capacitor, transformer, power supply unit have the same voltage (V) and power storage (W / h). The following products contain rechargeable batteries, capacitors, transformers, and power supply units: Portable (high and low power) generators. Alternators for: Houses, Buildings, Cars, Trucks, Planes, Boats, Trains, Spacecraft, Washing Machines, Electric Scooters, Electric Bikes, Electric Drills. Electric AC low power generator for electronic watches, calculators, laptops, mobile phones, Battery chargers (rechargeable), (storage) capacitors, watches, digital watches, smart watches, and televisions. These new products are produced as follows: The automatic generator replaces conventional (rechargeable) batteries, capacitors, transformers, electric motors and power supply units. The products listed above initially included conventional (rechargeable) batteries, capacitors, transformers, motors and power supply units. The automatic power generating device is constructed as described in claims 15, 19 and 21. These new products can operate continuously without the need for external additions. These new products can also be called unlimited automatic power generation products.

36. The combination of the infinite automatic generator 5 and 7 comprises at least one or more novel transformers according to claim 21. The combination of the infinite automatic generator 5 and 7 is intended to amplify the AC power of the infinite automatic generator 5. This infinite automatic generator 5 is generating alternating current as described in claim 17. The combination of the infinite automatic generators 5 and 7 and the infinite automatic generator for generating alternating current are constructed as follows: At least one new transformer, as claimed in claim 21, An input of at least one novel transformer is connected to an electrical output of the circuit. The circuit comprises at least three capacitors connected in parallel, as recited in claim 17. The output of at least one new type of transformer can be connected to the input of a second new type of transformer. The two novel transformers are manufactured according to the method described in claim 21. These two new transformers further increase the output power without adding an external power supply. All capacitors and at least 1 or 2 new transformers are for high voltage (HV) (anti-static) The use of the three capacitors on or inside the insulator is as described in claim 17. This high-voltage insulator allows for continued increases in electricity generation. The continuously increasing amount of energy is generated without adding an external power source. A plurality of novel transformers can be connected in parallel, as described in claim 21. More than one or two new transformers further increase output power.

37. Infinite automatic generator 9 used as a mechanical power generator (an electric motor), The infinite automatic power generation device 9 can be used for continuous and spontaneous mechanical power generation. The infinite automatic power generation device 9 is constructed as follows: A round magnet and at least 1 or 2 magnets (with rods, or C-shaped, U-shaped or other shapes). The circular magnet and the at least one magnet are used as described in Items 25, 43, and 45. The novel transformer is constructed as described in Claim 19 and Claim 21. The infinite automatic power generation device 9 and the infinite automatic power generation devices according to Items 25, 19, 21, 43, and 45 can be used to manufacture new products. These new products can operate without the addition of an external power source, these new products have a continuous power supply without the need for an external power source. The unlimited automatic power generation device claimed in items 25, 19, 21, 43 and 45, and the (rechargeable) battery, capacitor, transformer and power supply unit have the same voltage (V) and power storage (W / h). Rechargeable batteries, capacitors, transformers, and power supply units are originally used in the products listed below: Mechanical generators for hydraulic engines, mechanical generators for AC power stations, mechanical generators for (portable) AC power stations; Mechanical generators for cars, trucks, airplanes, ships, trains, spacecraft, and washing machines Mechanical generators for (electric) scooters, (electric) bicycles, (electric) drilling rigs, (electric) helicopters, as well as for (electric) drones, electric motors used in power plants and factories, mechanical generators, Used in buildings and for personal use. The power generation device claimed in items 25, 19, 21, 43, and 45 replaces conventional rechargeable batteries, capacitors, Motor and power supply unit. Rechargeable batteries, energy storage capacitors, transformers, electric motors, and power supply units were initially used in these products. The new product is manufactured according to the power generation device described in claims 25, 19, 21, 43 and 45. These new products can operate continuously without the need for an external power source. These new products can be called unlimited automatic power generation products.

38. Infinite automatic generators 12 and 18 for amplifying and / or increasing the AC / DC current and voltage of the automatic generators as claimed in claims 13 and 49. The combination of this infinite automatic power generation device is as follows: At least one automatic generator for generating alternating current according to claim 13 and at least one of the series-connected (and / or parallel-connected) and / or loop-connected circuits of claim 49 (or more) other automatic power generation devices as claimed in claim 13 and claim 49 The increased output power comes from the output of the last self-generating device (asymmetric capacitor), as described in claim 13, among all other self-generating devices (asymmetric capacitors). Other self-generating devices connected together (asymmetric capacitors) Series, parallel or loop, and all asymmetric capacitor diodes as claimed in claims 13 and 49 Claims 13 and 49 must be insulated by high voltage (HV) (antistatic) insulators. Generates AC and DC power and / or high voltage AC electrostatic power without the need for an external power source.

39. The unlimited automatic power generation device 14 is composed of one or more asymmetric capacitors with holes. These different asymmetric capacitors can continuously generate electron / ion beams without an external power supply. The asymmetric capacitor with a hole is constructed according to claim 11. The automatic generator 14 is made of an asymmetrical capacitor with a hole. The structure of the automatic power generation device 15 is as described in claim 13 . The automatic generator 15 can be used with an asymmetric capacitor with holes. Here’s how to make this combination: One or more asymmetrical capacitors with holes are connected to the final output of one or more automatic generators 15 . The automatic power generation devices 15 are connected in series or in a loop. All of the asymmetric capacitors claimed in items 9, 11 and 13 are used in or placed within isolated high voltage (HV) insulators. This high voltage (HV) (anti-static) insulator allows more powerful electron / ion beams to pass through. The electron / ion beam is generated continuously and requires no external power source.

40. The unlimited automatic power generation device 15 is composed of one or more asymmetric capacitors. The construction of these asymmetric capacitors is as described in items 9, 11, 13 and 38. The infinite automatic power generation device 18 is constructed as described in claims 1 and 49 . The infinite automatic power generation devices 15 and 18 are used to generate electricity and electrostatic energy. The unlimited automatic power generation devices 15 and 18 continuously generate electricity without adding an external power source. The infinite automatic power generation devices 15 and 18 are constructed as described in items 9, 11, 13, 38 and 49. Infinite automatic power generation devices 15 and 18, and conventional power supply devices, Produced with conventional high The voltage (V) and power (W / h) of the pressure power supply unit are the same; Air ionizer, electron beam generator, ion beam generator, space ion trust engine, Plasma generators, high voltage generators, high energy pulse lasers, power supply equipment for camera flashes, High-intensity laser pulse equipment, spark generators, high-voltage electrostatic generators for copiers, The unlimited automatic power generation devices 15 and 18 replace the conventional rechargeable batteries, capacitors and power supply units in the above products. The infinite automatic generators 15 and 18 are made of diodes and asymmetrical capacitors. The manufacture and use of these diodes and asymmetric capacitors are as described in items 9, 11, 10, 49, 13 and 38. The unlimited automatic power generation devices 15 and 18 and the rechargeable battery, capacitor, and power supply unit have the same voltage (V) and power (W / h). These products can operate continuously without the need for an external power source. These products can be called unlimited automatic power generation products.

41. The unlimited automatic power generation device 13 is made of two or more transformers. According to claim 27, two or more transformers are constructed. The infinite automatic power generating device 13 amplifies static power as well as direct current and alternating current. The unlimited automatic power generation device 13 generates high voltage electrostatic power without adding an external power source. The structure of the unlimited automatic power generation device 13 is as follows: According to claim 27, two transformers are constructed. The two transformers are connected in parallel and / or in a loop. The output of the first transformer is connected in parallel with the input of the second transformer. The inputs of transformers 1 and / or 2 may be connected to diodes, Zener diodes, capacitors or other electronic components. These electronic components and transformers generate high-voltage direct current or triangular-wave alternating current at output. The transformer amplifies the input voltage and power. This increase in voltage and power is achieved without adding an external power supply. All transformers are used on or inside high voltage insulators. This high-voltage insulator allows for continued power amplification and generation without the addition of an external power source.

42. The unlimited automatic power generation device 13 is composed of a transformer. This transformer can increase, decrease or generate static power, as well as direct and alternating current, or just alternating current. This transformer is built in accordance with the requirements of Items 27 and 41. The infinite automatic power generation device 18 is constructed as described in claim 1 and claim 49. The unlimited automatic power generation devices 18 and 13 can be used to manufacture new products. These new products can operate continuously without the need for an external power source. These new products have a continuous power supply. These new ones include: The infinite automatic power generation device 13 is constructed as described in claims 27 and 41. The construction of the unlimited automatic power generation device 18 complies with the description of claims 1 and 49 . The unlimited automatic power generation devices 13 and 18 and the battery, capacitor, transformer and power supply unit generate the same voltage (V) and power (W / h). The rechargeable battery, capacitor, transformer and power supply unit were originally used in the following products: High-frequency transformers, ultra-high-frequency high-voltage transformers, high-frequency high-voltage static AC generators, high-frequency high-voltage DC and AC generators, transformers, plasma generators, lighting power supply equipment with gas bulb discharge, Air ionizers, high-voltage generators for space propulsion engines, use electron / ion beams to generate thrust in space. The new product is an automatic power generation device that replaces the usual (rechargeable) batteries or transformers, capacitors and / or power supply units in the above products, as described in items 27, 41 and 49, using the same (similar) voltage (V) and energy storage (W / h) as the (rechargeable) battery storage capacitors, transformers, power supply units. Initially in the above listed products and all transformers described in claim 27 in claims 41 and 49, high voltage (HV) (antistatic) insulators must be used to insulate the above products, To ensure they operate normally without external power.

43. The unlimited automatic generator 10 is capable of continuously and spontaneously generating mechanical and electrical energy, The novel electric motor is manufactured according to the method described in claim 25. The infinite automatic power generation device 10 can generate an AC generator. The infinite automatic power generation device 10 includes: The circular magnet having a rotor and a shaft as claimed in claim 25, A circular magnet has a series of holes around its circumference with no holes between them. Two identical opposing coils are connected in series. Two identical, opposing coils have a C-shaped core, The four ends of the two C-shaped cores are respectively placed above and below the hole of the circular magnet. The diameter of the C-shaped core is the same as the diameter of the hole. The diameter of the hole and the diameter without the hole are the same. When the circular magnet rotates: Two C-shaped cores face a hole or circular magnet repeatedly and simultaneously. The rotating hole induces alternating current in two opposing coils connected in series with the C-shaped core. One or more magnets and a rod (C, U, etc.) can be pre-fixed around their axis. The angle between the round magnet and the rod or U-shaped magnet can be manually adjusted by a knob. The angle between the circular magnet and the rod or U-shaped magnet can be fixed in advance. The angle between the circular magnet and the magnet in the rod or U-shape is such that magnetic repulsive forces are generated above and below the circular magnet. These repulsive magnetic forces cause the rotor to rotate around its axis. One or more magnets arranged in a U- or C-shape have their south pole located below the circular magnet. In a C- or U-shaped magnet, the north pole is located above the circular magnet. The north pole of the circular magnet is above the circular magnet. The south pole of the circular magnet is located below the circular magnet. (Or vice versa for magnets with C, U and other shapes as well as circular magnets.) Circular magnets and one or more other magnets in the shape of a U, C, or other form may be used for magnetic attraction. The magnetic attraction is above and below the circular magnet. The magnetic attraction causes the circular magnet and the rotor to rotate about their axis. The good angle between the circular magnet and the magnet with C, U, etc. shapes forms the rotation of the circular magnet. The rotation of the circular magnet is performed as follows: One or two or more other magnets are arranged in a C-shape or U-shape with the north poles at their ends placed below the circular magnet. -- and the same 1 or 2 or more other magnets in C-shape, U-shape or other forms, Its south end is placed on top of the circular magnet. The north pole of the circular magnet is located on top of the circular magnet. The south pole of the circular magnet is located below the circular magnet. Or the opposite for all magnets, Place 2, 4 or more U-shaped, C-shaped or other shaped magnets near the round magnet. Can produce magnetic repulsion and attraction. The repulsive and attractive magnetic forces are located above and below the circular magnet respectively. The repulsive and attractive effects of the magnetic forces cause the circular magnets and the rotor to rotate about their axis. The repulsion and attraction of the magnetic force produces more mechanical power output, Rod-shaped, C-shaped, U-shaped magnets can be pre-fixed in the middle of their length. Alternatively, a magnet in the form of a rod, C, or U shape can be adjusted by rotating a knob on its axis. Round magnets and bar magnets (C, U, etc.) at different angles (adjustable between 0 and 90 degrees) Clockwise or counterclockwise rotation is allowed. Different angles (from 0 to 180 degrees) between the round magnet and the bar magnet (C, U, etc.) can cause the rotation speed to change or even stop completely. Different angles between round magnets and rod-shaped magnets (such as C-shaped, U-shaped, etc.) will affect the change in power output. The rotor and circular magnets can rotate continuously on their axis without adding external power. A circular magnet rotates around its axis to continuously generate mechanical energy. Mechanical and electrical energy are generated when: Circular magnets with and without holes rotate near two or more coils. The two coils have C-shaped cores. The two C-shaped core surfaces repeatedly have holes and no holes. The rotating magnetic field generates alternating current in the two coils. This AC power output can be connected to the input of a new type of transformer. (A), The transformer (A) is manufactured in the manner described in claim 21. The output of the transformer further increases the power output of the infinite automatic generator 10. The infinite automatic generator 10 is made of magnets. Infinite Automatic Power Generation 10 is a new type of electric motor.

44. An infinite automatic power generating device 10 for mechanical power generation and as an AC generator, Working continuously and autonomously without the need for external energy, is a novel electric motor, as claimed in claim 25, and a generator, as claimed in claim 43, comprising: An unlimited automatic power generating device as described in claims 25 and 43, using the same (similar) power storage (W / h) as a conventional electric motor and power supply unit, for use in manufacturing the products listed below; Mechanical generators for hydraulic engines, power stations, portable AC power stations. Portable air conditioning power stations for factories, homes and buildings. Mechanical and alternating current generators (motors) for electric and non-electric vehicles, trucks, aircraft, boats, trains, spacecraft, washing machines, electric scooters and electric bicycles. Machinery and AC generators (motors) for (electric) drilling rigs, (electric) helicopters, (electric) drones, electric motors with variable speed and power output; Electric motors and alternators for power stations, Electric motors and alternators for portable generators and spacecraft. According to claims 25 and 43, the unlimited power generation device 10() has the same voltage (V) and power (W / h) as the traditional (rechargeable) batteries, capacitors, motors and power supply units originally used in the above-mentioned products, and is used to manufacture new products that can operate continuously without adding an external power source.

45. The unlimited automatic power generation device 2 is composed of at least (rechargeable) 4=2X 2 batteries. The infinite automatic power generation device 2 is used to generate and / or store DC power or serve as a charging device. The unlimited automatic power generation device 2 is capable of continuously generating direct current without the need for an external power source. The production method of Infinite Automatic Power Generation Device 2 is as follows: Two (rechargeable) batteries W and X, with the same voltage and the same energy storage; for example, 12V, 60A. Two rechargeable batteries W and X are connected in series. Two batteries (or energy storage capacitors) Y and Z have the same voltage but different energy storage powers than batteries W and X; For example, 12V, 40A. Two batteries (or energy storage capacitors) Y and Z are connected in series. The negative terminal of battery X is connected to the negative terminal of battery Z. The positive terminal of battery W is connected to the positive terminal of battery Y. The two O Volts (GRD) of batteries W and X and Y and Z are connected together and connected to two diodes; The cathode of a diode is connected to the negative terminals of batteries X and Z. Connect the anode of the other diode to the positive terminals of batteries W and Y. A switch connects a diode to the positive terminals of batteries W and Y. Another switch connects another diode to the negative terminals of batteries X and Z. The switches are closed when batteries W, X, Y, and Z are being charged. These two switches can be replaced by other similar circuits.

46. ​​Infinite automatic power generation devices 2 and 17, with a voltage range of 1 volt to 50 volts, can be used to manufacture new products. New products can operate continuously without the need for external power supply. The new products have the ability to provide continuous power without the need for external power supply. The construction of the unlimited automatic power generation device 2 is as described in Item 45. The unlimited automatic power generation device 17 is constructed as described in claims 1, 47 and 50. The unlimited automatic power generation devices 2 and 17 have the same voltage (V) as a normal (rechargeable) battery or power supply unit and power storage (W / h). Conventional (rechargeable) batteries or power supply units are used in the products listed below; Mobile phones, laptops, printers, electric drills, flashlights, watches, smart watches, handheld calculators and computers, translators, cameras, electric bicycles. Car and truck batteries, TV sets, electric pumps, toy battery chargers, A, AA and AAA battery chargers, rechargeable A, AA and AAA battery chargers. Electric compressor battery charger, Android battery charger, drone battery charger, robot battery charger, Electric car battery charger, electric aircraft battery charger, electric scooter battery charger, E-bike battery charger. Infinite automatic power generation devices 2 & 17 replace or recharge the (rechargeable) batteries or capacitors and / or power supply units commonly used in the above products. These new products are manufactured using one or more infinite automatic power generation devices. These new products can operate continuously without the need for external power supply, and these new products can be called unlimited automatic power generation devices.

47. Infinite automatic generators 2 and 17, with a voltage range from 1 volt to 750 volts, It can be used to manufacture new products. The new products can operate continuously without an external power supply, and the new products have the ability to provide continuous direct current without an external power supply. New products can operate continuously without the need for external power supply. The new products have the ability to provide continuous power without the need for external power supply. The construction of the unlimited automatic power generation device 2 is as described in Item 45. The infinite automatic power generation device 17 is constructed as described in claims 1, 47 and 50. The unlimited automatic power generation devices 2 and 17 have the same voltage (V) as conventional (rechargeable) batteries or power supply units. and energy storage (W / h). Conventional (rechargeable) batteries or power supply units are used in the products listed below; Batteries and chargers for electric bicycles, batteries and chargers for cars, trucks, planes, boats and trains. Batteries for lighting, radio, television, mobile phone batteries, electric pumps, Chargers, batteries and chargers for toys, batteries and chargers for electric compressors, batteries and chargers for robots, batteries and chargers for drones, chargers for electric vehicles, Electric aircraft batteries and chargers, electric scooter batteries and chargers, Wind turbine batteries and chargers, solar, hydro and hydrogen power station batteries and chargers. Wind turbine energy storage batteries and chargers, factory robot batteries and chargers, power station generators, Power station charger, robot and android battery, Unlimited automatic power generation device 2 & 17 replaces or charges the commonly used ones in the above products (rechargeable) Batteries or capacitors and / or power supply units. These new products can operate continuously without the need for external power supply, and these new products can be called unlimited automatic power generation devices. These new products are manufactured using one or more unlimited automatic power generation devices.

48. The construction of the unlimited automatic power generation device 19 includes: For example, at least 4 (rechargeable) batteries, Voltage ranges from 1V to 750V. (V), 5 NPN transistors, 3 PNP transistors, 11 diodes, 3 capacitors, 13 resistors, and an infinite automatic generator 19 are used to generate and / or store alternating current. The infinite automatic generator 19 alternates the direct currents of the two infinite automatic generators 17 . The infinite automatic power generation device 19 is capable of continuously generating alternating current without adding an external power source.

49. The structure of the unlimited automatic power generation device 18 is as described in claim 1. The infinite automatic power generation device 18 is made of the following materials: At least two reverse fast switching diodes connected in parallel are used and maintained across the high voltage insulator. The infinite automatic power generation device 18 has an anode with a metal ring and a cathode with a pointed tip. An electron beam in the air is generated between the cathode and the anode, and the infinite automatic power generation device 18 is used as a DC power generator.

50. The infinite automatic power generation device 17 is constructed as described in claim 1. The structure of the unlimited automatic power generation device 17 includes: As an example, 2 or 3 (rechargeable) batteries are connected in series. Between the two batteries is; Connect the cathode of one or two diodes, the negative terminal of an (electrolytic) capacitor, and the emitter of an (NPN) transistor to the negative terminal of a battery. Connect the collector of the NPN transistor to the anode of one or two diodes, the positive terminal of the electrolytic capacitor, and the positive terminal of another battery. Connect a resistor to the base of the (NPN) transistor. The other end of the resistor is connected to the positive terminal of the capacitor. The positive terminal of the rechargeable battery is connected to the positive terminal of the first battery in the series connection. The negative terminal of another battery is connected to the negative terminal of the battery for charging. The diode, capacitor and transistor can be replaced by multiple parallel diodes. The cathode of these parallel diodes is connected to the negative terminal of one battery, and the anode of these parallel diodes is connected to the positive terminal between the two series-connected (rechargeable) batteries. These parallel diodes can be fabricated on an integrated circuit. Another integrated circuit, including a diode, a capacitor, and a transistor, can also be used between at least two series-connected batteries.

51. One or more unlimited automatic power generation devices 19 according to claim 48; One or more infinite automatic generators 6 and / or infinite automatic generators 19 can be connected in parallel to generate more electricity.