Motor structure and dual-axis rotary generator module
The dual-axis rotary generator module integrates a permanent magnet to rotate through both motor and generator copper wire coils, addressing the limitation of separate powering and generation, enabling efficient simultaneous operation.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- THANOMSUP THAWAT
- Filing Date
- 2025-02-17
- Publication Date
- 2026-05-07
AI Technical Summary
Existing motor/generator designs fail to combine a dual-axis rotary mechanism, limiting simultaneous powering and electricity generation capabilities.
A motor structure and dual-axis rotary generator module integrates a permanent magnet that rotates through both motor and generator copper wire coils, sharing the same center, allowing simultaneous powering and electricity generation.
Enables simultaneous powering of the motor and generation of electricity, with the motor copper wire coils operating at 48 volts and 10 amps and generator copper wire coils operating at 380 volts and 86 amps, achieving efficient energy transfer.
Smart Images

Figure TH2025000004_07052026_PF_FP_ABST
Abstract
Description
[0001] MOTOR STRUCTURE AND DUAL-AXIS ROTARY GENERATOR MODULE
[0002] Technical Field
[0003] Mechanical and electrical engineering in parts involving the motor structure and dualaxis rotary generator module. Art
[0004] In reference to Thai Invention Patent Application No. 9701005011, motor / generators have a stator with two sets of stators between magnets. Each stator set has one or more wire coils or conductors used by the motor / generator for electrical contact functions. For example, pins extending from the frame may be connected and removed. Conductors of stators next to magnets may achieve dynamic balance on an axis through hardening. Thin resin rings are connected between magnets and axes, while the axes are rotating. Ultraviolet lights are used to polarize resin. The motor / generator has a magnetic field on the axis with at least three ring rotors functioning as magnets used by the motor / generator for electrical contact functions. For example, pins connected outwardly from the frame may be connected and removable. Conductors of stators next to magnets may create dynamic balance on an axis by hardening only thin resin rings connected between magnets and axes while axes are rotating with ultraviolet light. This has a disadvantage from not being a dual-axis rotary combined in one module. The magnets are not permanent and are incapable of powering the motor and generating electricity simultaneously.
[0005] In the new invention, the motor structure and dual-axis rotary generator module aims to have a motor structure and dual-axis rotary generator combined in one module to allow the permanent rotating magnet to cut through the motor’s copper wire coils and the generator’s copper wire coils while sharing the same center simultaneously, thereby enabling simultaneous powering of the motor and electricity generation.
[0006] Description of Embodiments
[0007] The motor structure and dual-axis rotary generator module has characteristics such that, inside the housing (100), the following magnetic mechanism is installed to cut through wires: The permanent magnet (10) which has characteristics as a permanent magnetic pole is such that the permanent magnet (10) is placed around in a manner symmetrical to the center. Next to the permanent magnet (10), the motor copper wire coils (20) wound around the motor pole in a manner symmetrical to the center is installed. Next to the motor copper wire coils (20), the generator copper wire coils (30) wound around the generator pole in a manner symmetrical to the center is equipped with the permanent magnet (10) rotating through the motor copper wire coils (20) and the generator copper wire coils (30) while sharing the same center simultaneously. At the same time, the motor copper wire coils (20) are smaller in quantity than the generator copper wire coils (30). The motor copper wire coils (20) have a capacity of 48 volts and 10 amps in three phases while the generator copper wire coils (30) have a capacity of 380 volts and 86 amps in three phases.
[0008] The purpose of this intention is to create motor structure and dual-axis rotary generator module to allow the permanent magnet (10) to rotate through the motor copper wire coils (20) and the generator copper wire coils (30) while sharing the same center and simultaneously powering the motor and generating electricity.
[0009] Full Disclosure of Invention
[0010] Figure 1 shows components of the motor structure and dual-axis rotary generator module with characteristics as follows:
[0011] The main housing (100) made from fiber, plastic, etc., has a closed front wall (11) and a closed rear wall (22) to create space for containing the following working components within:
[0012] The driving axle (13), which is a rotating shaft, has a specified length from one side to another and a specified diameter functioning as a point of rotation and a holding base when installing all work devices.
[0013] Figure 2 shows an image with the interior of the housing (100) equipped with the magnetic mechanism cutting through wire coils as follows:
[0014] The permanent magnet (10), which has characteristics as a permanent magnetic pole with 24 pieces of permanent magnets (10) placed around in a manner symmetrical to the center, is used to create a magnetic field through wire coils. The permanent magnet (10) is attached to the driving axle (13) and capable of moving along the driving axle (13) The number of permanent magnets (10) is equal to the number of generator copper wire coils Figure 3 shows an image where, next to the permanent magnet (10), the motor copper wire coil (20) wound around the motor pole by using one copper wire to form 12 wire coils in a manner symmetrical to the center is installed. Each wire coil is wound 10 rounds. The motor copper wire coils (20) are fixed to the fiber housing (40).
[0015] Figure 4 shows an image where, next to the motor copper wire coils (20), the generator copper wire coils (30) wound around the generator pole by using four copper wires to form 24 or more wire coils in a manner symmetrical to the center is installed. Each wire coil is wound 150 rounds. The generator copper wire coils (30) are fixed to the fiber housing (40).
[0016] Figure 5 shows an image where the motor copper wire coils (20) and the generator copper wire coils (30) have equal diameters and are installed to share the same center. The permanent magnets (10) rotate through the motor copper wire coils (20) and the generator copper wire coils (30) while sharing the same center simultaneously and having the front closed wall (11) and the rear closed wall (12) as seals.
[0017] Where the number of motor copper wire coils (20) is less than the number of generator copper wire coils (30).
[0018] Where the motor copper wire coils (20) are wound for a smaller number of rounds than those of generator copper wire coils (30).
[0019] Where the motor copper wire coils (20) and the generator copper wire coils (30) have equal or unequal diameters, one or the other.
[0020] The electrical system of the motor copper wire coils (20) and the generator copper wire coils (30) has the following characteristics:
[0021] The motor copper wire coils (20) have an energy capacity of 48 volts and 10 amps in a three-phase alternating current.
[0022] The generator copper wire coils (30) have an energy capacity of 380 volts and 86 amps in a three-phase alternating current.
[0023] The motor copper wire coils (20) have less voltage and amperage than the generator copper wire coils (30). Figure 6 shows an image of the electrical system of the motor copper wire coils (20) and the generator copper wire coils (30) with the following characteristics:
[0024] The motor copper wire coils (20) that are a motor pole and the generator copper wire coils (30) that are a generator pole have alternating north (N) and south (S) poles in opposite positions to prevent short-circuiting of the magnetic fields of the motor copper wire coils (20) and the generator copper wire coils (30).
[0025] Figure 7 shows an image of the working system of the motor copper wire coils (20) and the generator copper wire coils (30) with the following steps of work:
[0026] Step 1 (1): Incoming electricity is distributed to the motor copper wire coils (20) as the starting power for rotating the permanent magnets (10) and rotating the driving axle (13).
[0027] Step 2 (2): Drive the driving axle (13) and the permanent magnets (10) for a distance until the specified stable speed is achieved. The motor copper wire coils (20) have Servomechanism 1 (21) to control voltage to be regular.
[0028] Step 3 (3): Open the working circuit of the generator copper wire coils (30). The motor copper wire coils (30) have Servomechanism 2 (22) to control voltage to be regular.
[0029] Step 4 (4): The electricity distribution and generation circuit of the generator copper wire coils (30) have a set of capacitors (23) functioning to stabilize and reduce outgoing power surges.
[0030] Step 5 (5): Next to the capacitor (23) is a connection to the load (50) for use.
[0031] Figure 1 shows a side section image of the motor structure and dual-axis rotary generator module in this invention.
[0032] Figure 2 shows an image of the permanent magnets (10) in this invention.
[0033] Figure 3 shows an image next to the permanent magnets (10) in this invention.
[0034] Figure 4 shows an image next to the motor copper wire coils (20) in this invention.
[0035] Figure 5 shows an image of the motor copper wire coils (20) and the generator copper wire coils (30) installed to share the same center in this invention.
[0036] Figure 6 shows an image of the electricity system with the north pole (N) and the south pole (S) of the motor copper wire coils (20) and the generator copper wire coils (30) in this invention. Figure 7 shows an image of the working system of the motor copper wire coils (20) and the generator copper wire coils (30) in this invention.
[0037] Best Invention Method
[0038] As stated in the Full Disclosure of Invention.
Claims
Claims1 . The motor structure and dual-axis rotary generator module had characteristics as follows:The main housing (100) made from fiber or plastic has a closed front wall (1 1) and a closed rear wall (22) to create space for containing working components within consisting of:The driving axle (13), which is a rotating shaft, has a specified length from one side to another and a specified diameter functioning as a point of rotation and a holding base when installing all work devices.Special characteristics are as follows:The interior of the housing (1 00) is equipped with the magnetic mechanism cutting through wire coils as follows:The permanent magnet (10), which has characteristics as a permanent magnetic pole with permanent magnets (10) placed around in a manner symmetrical to the center, is used to create a magnetic field through wire coils. The permanent magnet (1 0 ) is attached to the driving axle (13) and capable of moving along the driving axle (13).Next to the permanent magnet (10), the motor copper wire coil (20) wound around the motor pole in a manner symmetrical to the center is installed.Next to the motor copper wire coils (20), the generator copper wire coils (30) wound around the generator pole in a manner symmetrical to the center is installed.The motor copper wire coils (20) and the generator copper wire coils (30) have equal diameters and are installed to share the same center. The permanent magnets (1 0 ) rotate through the motor copper wire coils (2 0 ) and the generator copper wire coils (3 0 ) while sharing the same center simultaneously and having the front closed wall (1 1 ) and the rear closed wall (12) as sealsThe number of motor copper wire coils (2 0 ) is less than the number of generator copper wire coils (30).
2. The motor structure and dual-axis rotary generator module in Claim 1 is such thatthe permanent magnet (10) has characteristics as a permanent magnetic pole with 24 pieces of permanent magnets (10). The number of permanent magnets (10) is equal to the number of generator copper wire coils (30).
3. The motor structure and dual-axis rotary generator module in Claim 1 is such that next to the permanent magnet (10), the motor copper wire coils (20) wound around the motor pole by using one copper wire to form 12 or more wire coils in a manner symmetrical to the center is installed4. The motor structure and dual-axis rotary generator module in Claim 3 is such that each wire coil is wound 1 0 rounds. The motor copper wire coils (30) are fixed to the fibre housing (40).
5. The motor structure and dual-axis rotary generator module in Claim 1 is such that, next to the motor copper wire coils (20), the generator copper wire coils (30) wound around the generator pole by using four copper wires to form 2 4 or more wire coils in a manner symmetrical to the center are installed. Each wire coil is wound 1 50 rounds. The generator copper wire coils (30) are fixed to the fibre housing (40).
6. The motor structure and dual-axis rotary generator module in Claim 1 is such that the motor copper wire coils (20 ) are wound for a smaller number of rounds than those of generator copper wire coils (30).
7. The motor structure and dual-axis rotary generator module in Claim 6 is such that the motor copper wire coils (2 0 ) and the generator copper wire coils (3 0 ) have equal or unequal diameters, one or the other.
8. The motor structure and dual-axis rotary generator module in Claims 1 -7 is such that the electrical system of the motor copper wire coils (20) and the generator copper wire coils (30) has the following characteristics:The motor copper wire coils (20) have an energy capacity of 48 volts and 10 amps in a three-phase alternating current.The generator copper wire coils (3 0 ) have an energy capacity of 3 80 volts and 86 amps in a three-phase alternating current.The motor copper wire coils (20) have less voltage and amperage than the generator copper wire coils (30).
9. The motor structure and dual-axis rotary generator module in Claims 1 -8 is such that the electrical system of the motor copper wire coils (20) and the generator copper wire coils (30) have characteristics where the motor copper wire coils (20) that are a motor pole and the generator copper wire coils (30) that are a generator pole have alternating north (N) and south (S) poles in opposite positions to prevent short-circuiting of the magnetic fields of the motor copper wire coils (20) and the generator copper wire coils (30).
10. The motor structure and dual-axis rotary generator module in Claims 1-9 is such that the working system of the motor copper wire coils (20) and the generator copper wire coils (30) have the following steps of work:Step 1 (1 ): Incoming electricity is distributed to the motor copper wire coils (20) as the starting power for rotating the permanent magnets (10) and rotating the driving axle (13).Step 2 (2): Drive the driving axle (13) and the permanent magnets (10) for a distance until the specified stable speed is achieved. The motor copper wire coils (2 0 ) have Servomechanism 1 (21) to control voltage to be regular.Step 3 (3 ) : Open the working circuit of the generator copper wire coils (3 0 ) . The motor copper wire coils (30) have Servomechanism 2 (22) to control voltage to be regular.Step 4 (4): The electricity distribution and generation circuit of the generator copper wire coils (3 0 ) have a set of capacitors (23 ) functioning to stabilize and reduce outgoing power surges.Step 5 (5): Next to the capacitor (23) is a connection to the load (50) for use.
Citation Information
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