Electricity generation by rotatory motion using gear system
A gear-based system converts rotary motion into electricity, addressing resource limitations by enabling self-sustained power generation for diverse applications.
Patent Information
- Application Number
- PCT/IN2025/050069
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-01-22
- Filing Date
- 2025-01-22
- Publication Date
- 2025-07-31
AI Technical Summary
Existing methods for electricity generation require wide-ranging resources like fuel, water, or open space, limiting their applicability and accessibility.
A mechanism utilizing a gear system comprising motors, gears, bearings, and MOSFETs to convert rotary motion into electricity, enabling self-sustained electricity generation without external force.
Facilitates electricity generation anywhere, including in automobiles and industrial settings, reducing the need for continuous fuel input and providing a compact, efficient power source.
Smart Images

Figure IN2025050069_31072025_PF_FP_ABST
Abstract
Description
ELECTRICITY GENERATION BY ROTATORY MOTION USING GEAR SYSTEMField of The Invention
[0001] The present invention relates to generate electricity for use of anywhere by using motors, alternator, small & big round gears, straight gear holder with straight gear, gear shaft, bearings, little rubber-flywheel, N-Type-MOSFET, heat sink, Diode, switches, wires, move direction indicator.BACKGROUND
[0002] There are already different type of method is available to generate electricity, like Hydropower, Solar power, Wind power, Nuclear power, Thermal power, Biomass power, Geothermal power, Tidal power, Wave power, Fuel cell.
[0003] Hydropower uses the kinetic energy of flowing water to spin a turbine that generates electricity.
[0004] Solar power uses the light energy from the sun to generate electricity using solar cells or solar panels
[0005] Wind power uses the kinetic energy of wind to spin a windmill or a wind turbine that generates electricity.
[0006] Nuclear power uses the energy released from splitting atoms (Nuclearfission) to heat water and produce steam. The steam then drives a turbine that generates electricity.
[0007] Thermal power uses heat from burning fossil fuel such as coal, natural gas, or oil to boil water and produce steam. The steam then drives a turbine that generates electricity.
[0008] Biomass power uses organic matter, such as wood, crops, or waste, to produce heat or gas that can be used to generate electricity.
[0009] Geothermal power uses the heat energy from the earth interior to heat water and produce steam. The steam then drives a turbine that generates electricity.
[0010] Tidal power uses the dams or barrages to create artificial basins or lagoons where water flow use for movement drives turbine that generate electricity.
[0011] Wave power uses floating or submerged devices that rise and fall with the waves or harness the change in air pressure or water pressure caused by the waves and generate electricity.
[0012] Fuel cell is an electrochemical cell that generates electrical energy from fuel via an electrochemical reaction. Fuel cells require a continuous input of fuel and an oxidizing agent (often hydrogen and oxygen) to sustain the reaction that generate the electricity.
[0013] Hence, there need wide range of fuel, water or open space for air, to generate electric power or electricity.OBJECTIVE OF THIS INVENTION
[0014] An objective of this invention is provide a way to generate electricity by using some object, use for large scale & minimum scale.BRIEF DESCRIPTION
[0015] In accordance with an embodiment of the present disclosure, an method forgenerate electric power for all time by utilizing minimum outer force, on the time of start the machine. The apparatus include 4 motors, 1 alternator, 5 small & 3 big (round) gears, 1 straight gear holder with 1 straight gear, 2 gear shaft, 9 bearings, 10 little rubber-flywheel, 5 little flywheel shaft, 4 N-Type MOSFET, 4 heat sink, 1 Diode, 1 switches, wires, 1 move to start handle with indicator, 1 spring. These all materials can joint with each other in specific format and generate electricity for use of everywhere.[0016) To further clarify the advantages and features of the present disclosure, a more explicit description of the disclosure will follow by reference to specific embodiments thereof, which are illustrated in the appended figures. It is to be appreciated that these figures depict typical embodiments of the disclosure and are therefor not to be considered limiting in scope. The disclosure will be described and explained with additional details with the appended figures.DESCRIPTION OF THE DRAWINGS
[0017] The disclosure will be described and explained with additional specificity and detail with the accompanying figure in which:
[0018] Fig. 1 is a schematic representation of an apparatus for generate electricity power by using some object.
[0019] Fig. 1 is a schematic representation without wire connection.
[0020] Fig. 2 is a schematic representation of straight gear holder for straight gear.
[0021] Fig. 3 is schematic representation of MOSFET and heat sink.
[0022] Fig. 1H1 is handle & Indicatorfor move to start machineS1 , S2, S3 & S4 is indicate shaft which connect 'start handle' and 'gear holder'B1, B2, B3, B4, B5, B6, B7 & B8 is indicate to bearingG1 is indicate to 'straight gear' hold with straight gear holderG2, G4, G6, G8 & G9 is indicate to 'small gear'S5 & S6 is indicate to 'gear shaft'RB1 is indicate to 'rubber flywheel with little flywheel shaftG3, G5 & G7 is indicate to 'big gear'M1 , M2, M3 & M4 is DC motorA1 is indicate to AC alternator1 , 4, 5, 8 & 10 is indicate to negative (-) terminal2, 3, 6, 7 & 9 is indicate to positive (+) terminalPS is indicate to power switch
[0023] Fig. 2H1 is handle & Indicatorfor move to start machineS1 , S2, S3 & S4 is indicate shaft which connect 'start handle' and 'gear holder'RB1 is 'little rubber-flywheel' with 'shaft'GPH is gear panel hole for 'fix screw' with gear, to panelGP 'gear panel'SP is indicate to spring
[0024] Fig. 3N is indicate to 'N-type MOSFET'G is Gate' of MOSFETS is 'Source' of MOSFETD is 'Drain' of MOSFETHS is Heat sink
[0025] Further, those skilled in the art will appreciate that elements in the figures are illustrated for simplicity and may not have necessarily been drawn to scale. Furthermore, in terms of construction of the machine, one or more components of the machine may have been represented in the figure by conventional symbols, and thefigures mayshowonlythose specific details that are pertinent to understanding the embodiments of the presentdisclosure so as not to obscure the figures with details that will be readily apparent to those skilled in the art having the benefit of the description herein.DETAILED DESCRIPTION
[0026] To promote an understanding of the principal of the discloser, references will now be made to the embodiment illustrated in the figures and specific language will be used to describe them. It will nevertheless be understood that no limitation of the scope of the disclosure is thereby intended. Such alterations and further modifications in the illustrated system, and such further applications of the principles of the disclosure as would normally occur to those skilled in the art are to be construed as being within the scope of the present disclosure.
[0027] the term "comprises", " comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a processor method that comprises a list of step does not include only those steps but may include other steps not expressly listed or inherent to such a process or method. Similarly, one or more device or sub-system or elements or structures or components preceded by "comprises... a" does not without more constraints, preclude the existence of other devices, sub-systems, elements, structures, components, additional devices, additional sub-system additional elements, additional structures, or additional components. Appearances of the phrase "in an embodiment", "in another embodiment" and similar language throughout this specifications may, but not necessarily do, all refer to the same embodiment.
[0027] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this disclosure belongs. The system, methods, and examples provide herein are only illustrative and not intended to be limiting.
[0028] In the specification and the claims, reference will be made to a number of terms which shall be defined to have the following meanings. The singular forms "a", "an", and "the" include plural references unless the context clearly dictates otherwise.Mechanically Fix 'a big gear' & 'two bearings' in a shaft, Mechanically Fix 'a small gear' in 'three Motors', Mechanically Fix 'a big gear' in 'one motor', Mechanically Fix'a small gear' in' a AC alternator', Mechanically Fix "a big & a small gears" in a gear shaft, Mechanically Joint '4 shafts' with gear holder to handle, Mechanically Fix a handle on top point of "attached shafts to gear holder", Mechanically Fix one or two spring to come back gear holder after release handle, Mechanically Attach a straight gear with gear holder" by screw, Mechanically Attach "a motor" (fixed with small gear) to big gear (which fixed in a shaft with two bearings), Mechanically Attach 'a motor' (which is fix with small gear), to 'big gear' (which is fixed in a shaft with a big gear & two bearings), Mechanically Attach in another side of a big gear (which is fixed in a shaft with a big gear and two bearings), with "a AC alternator", Mechanically Joint "big gear (which is fixed in a motor)", to " small gear (which is fixed in a motor and connected with two bearing, &a biggear), Mechanically Attach "small gear" (Which is fixed in a shaft with a big gear & a small gears) to "strait gear", Mechanically Attach "big gear" (which is fixed in a shaft with a small & a big gears) to "small gear" (which is fixed in a motor),MAKE WIRE CONNECTIONElectrically Connect "terminal 2" to "terminal 3" with "2 N Type MOSFET" Electrically Connect "terminal 2" to "terminal 3" with "2 N Type MOSFET",We can Replace 4 MOSFET with 1 DIODE, For More Efficient ResultElectrically Connect "terminal 2" to "terminal 3" with '1 DIODE" in Forward Bias, Electrically Connect "terminal 1" to "terminal 4', Now DIODE Will Stop "Reverse Current" Which Generates By Motor M2.Electrically Connect "terminal 5" to "terminal 8", Electrically Connect "terminal 6" to "terminal 7", ElectricallyJoint a power ON / OFF switch in connection of terminal 6 to terminal 7, Now make sure (check) power switch is, ON, Move handle in given direction on handle, Release handle after "full move of handle", Machine will generate electricity in easy steps is ready for external use1. AN APPARATUS (10) WHICH IS GENERATE ELECTRICITY BY ROTARY MOTION COMPRISING:Characterized in that a straight gear mechanically coupled with gear holder, wherein the small gear is adopted to rotate corresponding to a rotary motion provided by the straight gear; a straight gear positioned concentrically with small gear through two or more bearings, if straight gear will move, so, small gear and big gear will also move (due to small gear and big gear is fixed in a shaft with two bearings, and small gear is connected to straight gear) Big gear will rotate and provide rotary motion to a small gear for a few moment (20), which is fixed to a motor and motor will generate and provide DC current, to the second motor which is fixed with a big gear (de motor is connected with Four N Type MOSFET:2 in Positive wire & 2 in Negative wire, de motor is connected with 1 DICDE)(30), big gear is fixed in DC motor(40), when motor will adopted DC current and provide rotary motion to big gear which is joint to a small gear(50)Small gear will be adopt rotary motion, (and small gear is already connected to a shaft which have a big gear and two bearings, so big gear and shaft will adopt rotary motion) (60), Big gear is joint to a DC motor and a AC alternator(70) DC motor will generate current for provide to DC motor (through a switch) which have a small gear and connected to shaft with a big gear, and big gear will provide rotary motion in AC alternator (through small gear witch is connected to big gear and fix in AC alternator) (80).AC alternator is Generate current without use of DC input in rotor..This machine will be beneficiary for nature and human being (1) human can use everywhere this machine for electricity Generate purpose (2). Human can save the nature using this machine in automobiles (3), industrial use of this machine(4), electrical measurement can use this machine for easy to operate (5), all electrical things will automated by using this machine (6), All robotic & robots can use this machine for remove charging bother(7), all vehicles will remove charging bother(8), everywhere we can use of this machine(9)2. The apparatus (10) as claimed in claim 1, wherein rotate shaft with gear and as DC motor generate & other DC motor is adapted to rotate gear via shaft.3. The apparatus (20), (30), (40) & (50)as claimed in claim 1 , wherein rotate motion is providing by M2 via M1 and straight gear in Fig. 1 of drawing.4. The apparatus (60), (70) & (80) as claimed in claim 1 , wherein generate electricity in simple steps.5. The apparatus (70) & (80) claimed in claim 1 , wherein motor is Re- generate DC current and provide to DC motors6. The apparatus (80) as claimed in claim 1 , wherein AC alternator is generate current in simple steps.7. The apparatus (50), (60) & (70) is claimed in claim 1 , wherein connect big gear of DC motor to Small gear of DC motor to Provide rotary motion and generate electricity
Claims
1 . AN APPARATUS (10) WHICH IS GENERATE ELECTRICITY BY ROTARY MOTION COMPRISING:Characterized in that a straight gear mechanically coupled with gear holder, wherein the small gear is adopted to rotate corresponding to a rotary motion provided by the straight gear; a straight gear positioned concentrically with small gear through two or more bearings, if straight gear will move, so, small gear and big gear will also move (due to small gear and biggear is fixed in a shaft with two bearings, and small gear is connected to straight gear) Big gear will rotate and provide rotary motion to a small gear for a few moment (20), which is fixed to a motor and motor will generate and provide DC current, to the second motor which is fixed with a big gear (de motor is connected with Four N Type MOSFET:2 in Positive wire & 2 in Negative wire, de motor is connected with 1 DIODE)(30), big gear is fixed in DC motor(40), when motor will adopted DC current and provide rotary motion to big gear which is joint to a small gear(50)Small gear will be adopt rotary motion, (and small gear is already connected to a shaft which have a big gear and two bearings, so big gear and shaft will adopt rotary motion) (60), Big gear is joint to a DC motor and a AC alternator(70) DC motor will generate current for provide to DC motor (through a switch) which have a small gear and connected to shaft with a big gear, and big gear will provide rotary motion in AC alternator (through small gear witch is connected to big gear and fix in AC alternator) (80).AC alternator is Generate current without use of DC input in rotor..This machine will be beneficiary for nature and human being (1 ) human can use everywhere this machine for electricity Generate purpose (2). Human can save the nature using this machine in automobiles (3), industrial use of this machine(4), electrical measurement can use this machine for easy to operate(5), all electrical things will automated by using this machine (6), All robotic & robots can use this machine for remove charging bother(7), all vehicles will remove charging bother(8), everywhere we can use of this machine(9)2. The apparatus (10) as claimed in claim 1 , wherein rotate shaft with gear and as DC motor generate & other DC motor is adapted to rotate gear via shaft.
3. The apparatus (20), (30), (40) & (50)as claimed in claim 1 , wherein rotate motion is providing by M2 via M1 and straight gear in Fig. 1 of drawing.
4. The apparatus (60), (70) & (80) as claimed in claim 1 , wherein generate electricity in simple steps.
5. The apparatus (70) & (80) claimed in claim 1 , wherein motor is Re- generate DC current and provide to DC motors6. The apparatus (80) as claimed in claim 1 , wherein AC alternator is generate current in simple steps.
7. The apparatus (50), (60) & (70) is claimed in claim 1 , wherein connect big gear of DC motor to Small gear of DC motor to Provide rotary motion and generate electricity
Citation Information
Patent Citations
Wind power generator
KR1020020072823A
IN1867MU2009A