Claims
- 1. A direct current brushless motor device comprising:
a ring-shaped stator assembly having a plurality of circumferentially placed printed circuit coil windings; a rotatable ring-shaped magnetic rotor assembly disposed within said stator assembly said magnetic rotor assembly having supporting structure for a central axis hub; a plurality of permanent magnets circumferentially placed around said rotor assembly said permanent magnets producing a radially-directed magnetic field; and an electronic commutator circuit connected to said printed circuit coil windings whereby electric current is selectively switched by said commutator circuit through said coil windings to generate a rotating magnetic field whereby electromagnetic torque-energy developed by interacting magnetic fields of the rotor and stator assemblies causes rotation of the rotor assembly around the rotor central axis.
- 2. A motor stator coil assembly comprising a ring-shaped band of electrically insulating material having circumferentially placed printed circuit coil windings, said coil windings operative to generate a magnetic field in response to the flow of electrical current through said coil windings, said magnetic field operative to interact with a magnetic field of a rotor assembly of a motor, said interacting magnetic fields causing rotation of said rotor assembly.
- 3. The motor stator coil assembly of claim 2 wherein said printed circuit coil windings comprise a band of flat, spirally wound copper coils electrically interconnected and placed in close proximity to each other.
- 4. The motor stator coil assembly of claim 2 wherein said printed circuit coil windings are connected in series to increase the electrical resistance of the coil windings.
- 5. The motor stator coil assembly of claim 2 wherein said printed circuit coil windings comprise two or more layered bands of aligned and electrically phased coils.
- 6. The motor stator coil assembly of claim 2 further comprising a printed circuit electronic commutator circuit operatively connected to said printed circuit coil windings to selectively switch the flow of electrical current through said coil windings.
- 7. The direct current brushless motor device of claim 1 wherein said electronic commutator circuit comprises a full bridge stator coil drive circuit.
- 8. The direct current brushless motor device of claim 1 wherein said electronic commutator circuit comprises solid state switching devices.
- 9. The direct current brushless motor device of claim 1 wherein said electronic commutator circuit is configured to provide a three-phase stator coil switching sequence.
- 10. The direct current brushless motor device of claim 1 wherein said printed circuit coil windings are coated with a ferrous material to increase the magnetic attraction between said coil windings and said rotor assembly permanent magnets at a rest position of the rotor assembly.
- 11. The direct current brushless motor device of claim 1 wherein said printed circuit coil windings are coated with a ferrous material to increase the magnetic attraction between said coil windings and said rotor assembly permanent magnets at a rest position of the rotor assembly, said ferrous material coating comprising a nickel-gold plating.
- 12. The direct current brushless motor device of claim 1 wherein said ring-shaped stator assembly further comprises a magnetic bridge said bridge comprising a band of ferrous material surrounding said printed circuit coil windings said magnetic bridge operative to connect and concentrate magnetic flux between said printed coil windings of said stator assembly and said rotor assembly permanent magnets.
- 13. The direct current brushless motor device of claim 12 wherein said ring-shaped stator assembly further comprises a magnetic bridge, said bridge comprising a band of ferrous material surrounding said printed circuit coil windings, said band of ferrous material comprising a continuous wire wrapping of one or more layers of ferrous wire, said magnetic bridge operative to connect and concentrate magnetic flux between said printed coil windings of said stator assembly and said rotor assembly permanent magnets.
- 14. The direct current brushless motor device of claim 12 wherein said magnetic bridge is a rotatable assembly mechanically connected to the rotor assembly.
- 15. An integrated axial flow fan device comprising a direct current brushless motor assembly having a ring-shaped stator and a rotatable ring-shaped rotor disposed within said stator, said rotor comprising a central axis hub fan blade assembly whereby electromagnetic torque-energy developed by interacting magnetic fields of the rotor and stator causes rotation of the fan blade assembly around the rotor central axis.
- 16. An integrated fluid impeller device comprising a direct current brushless motor assembly having a ring-shaped stator and a rotatable ring-shaped rotor disposed within said stator, said rotor comprising a central axis hub impeller blade assembly whereby electromagnetic torque-energy developed by interacting magnetic fields of the rotor and stator causes rotation of the impeller blade assembly around the rotor central axis.
- 17. A motor stator coil assembly comprising a ring-shaped band of electrically insulating material having circumferentially placed printed circuit coil windings, said coil windings interconnected in a three-phase circuit and operative to generate a magnetic field in response to the flow of electrical current through said coil windings, said magnetic field operative to interact with a magnetic field of a rotor assembly of a motor, said interacting magnetic fields causing rotation of said rotor assembly.
- 18. A motor stator coil assembly comprising a ring-shaped band substrate of electrically insulating material said substrate having circumferentially placed printed circuit coil windings, said coil windings arranged in layers on each side of said substrate, each layer comprising several pairs of coil windings, each pair of coil windings made as a spiral winding extending from the center of a start coil winding to the center of an end coil winding with the same turn direction of the spiral in relation to each coils center, said layers of coil windings are the same in a transparent view and are shifted linearly such that the center of a start coil winding on one layer is electrically connected to the center of an end coil winding on another layer using via's or copper plated holes, through the substrate.
- 19. The motor stator coil assembly of claim 18 wherein said printed circuit coil windings are electrically connected to a commutator circuit.
- 20. An integrated stator coil and housing assembly for a direct current brushless motor device comprising a ring shaped substrate formed as part of said housing assembly, said substrate having circumferentially placed printed circuit coil windings, said coil windings operative to generate a magnetic field in response to the flow of electrical current through said coil windings, said magnetic field operative to interact with a magnetic field of a rotor assembly of a motor, said interacting magnetic fields causing rotation of said rotor assembly.
- 21. A method of manufacturing a motor stator coil assembly comprising:
forming a ring-shaped band of electrically insulating material; placing printed circuit coil windings on at least one side of said band; and circumferentially arranging said printed circuit coil windings along said band to generate a magnetic field in response to the flow of electrical current through said coil windings, said magnetic field operative to interact with a magnetic field of a rotor assembly of a motor, said interacting magnetic fields causing rotation of said rotor assembly.
- 22. A method of manufacturing a motor stator coil assembly comprising:
forming a ring-shaped band substrate of electrically insulating material; and placing printed circuit coil windings along said substrate, said coil windings circumferentially arranged in layers on each side of said substrate, each layer comprising several pairs of coil windings, each pair of coil windings made as a spiral winding extending from the center of a start coil winding to the center of an end coil winding with the same turn direction of the spiral in relation to each coils center, said layers of coil windings are the same in a transparent view and are shifted linearly such that the center of a start coil winding on one layer is electrically connected to the center of an end coil winding on another layer using via's or copper plated holes through said substrate whereby said printed coil windings generate a magnetic field in response to the flow of electrical current through said coil windings, said magnetic field operative to interact with a magnetic field of a rotor assembly of a motor, said interacting magnetic fields causing rotation of said rotor assembly.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims the benefit of priority of U.S. Provisional Patent Application serial No. 60/311,297, filed Aug. 10, 2001 for Edward Lopatinsky, et al. the entire content of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60311297 |
Aug 2001 |
US |