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Permanent-magnet switched-flux machine 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H02K-017/42
출원번호 US-0679806 (2007-02-27)
등록번호 US-7385330 (2008-06-10)
발명자 / 주소
  • Trzynadlowski,Andrzej M.
  • Qin,Ling
출원인 / 주소
  • Board of Regents of the Nevada System of Higher Education on Behalf of the University of Nevada, Reno
대리인 / 주소
    Holland & Hart, LLP
인용정보 피인용 횟수 : 39  인용 특허 : 2

초록

A permanent-magnet switched-flux (PMSF) apparatus comprises a plurality of permanent-magnet switched-flux (PMSF) devices, wherein each of the plurality of PMSF devices comprises a ferromagnetic outer rotor coupled to a shaft, wherein the ferromagnetic outer rotor comprises a plurality of permanent-m

대표청구항

The invention claimed is: 1. A permanent-magnet switched-flux (PMSF) device, comprising: a ferromagnetic outer stator mounted to a shaft about a central axis extending axially through the PMSF device; a first plurality of permanent-magnets mounted in a first permanent magnet circle radially outward

이 특허에 인용된 특허 (2)

  1. Esters ; Ernie B., Dynamoelectric machine with inner and outer stators.
  2. Goddijn Bernardus H. A. (Eindhoven NLX), Synchronous motor.

이 특허를 인용한 특허 (39)

  1. Sullivan, Brian J., Devices and methods for magnetic flux return optimization in electromagnetic machines.
  2. Sullivan, Brian J., Devices and methods for magnetic flux return optimization in electromagnetic machines.
  3. Kvam, Michael A.; Sullivan, Brian J.; Duford, James David; Jore, James D.; Jore, Matthew B.; Samsel, David; Smith, James S., Devices and methods for magnetic pole and back iron retention in electromagnetic machines.
  4. Calley, David Gregory; Janecek, Thomas, Electrical devices having tape wound core laminate rotor or stator elements.
  5. Calley, David Gregory, Electrical devices using disk and non-disk shaped rotors.
  6. Calley, David G., Electrical devices using electromagnetic rotors.
  7. Calley, David Gregory, Electrical devices using electronmagnetic rotors.
  8. Calley, David Gregory, Electrical devices with reduced flux leakage using permanent magnet components.
  9. Smith, James S.; Pillsbury, Robert; Sullivan, Brian J., Flux focusing arrangement for permanent magnets, methods of fabricating such arrangements, and machines including such arrangements.
  10. Smith, James S.; Pillsbury, Robert; Sullivan, Brian J., Flux focusing arrangement for permanent magnets, methods of fabricating such arrangements, and machines including such arrangements.
  11. Smith, James S.; Duford, James D.; Jore, James D.; Jore, Lincoln M.; Jore, Matthew B.; Sullivan, Brian J., Methods and apparatus for overlapping windings.
  12. Smith, James S.; Eichinger, Marc W.; Eisen, Stephane A.; Jore, James D.; Kvam, Michael A.; Sullivan, Brian J., Methods and apparatus for segmenting a machine.
  13. Trzynadlowski, Andrzej M.; Qin, Ling, Permanent-magnet switched-flux machine.
  14. Trzynadlowski, Andrzej M.; Qin, Ling, Permanent-magnet switched-flux machine.
  15. Calley, David G.; Janecek, Thomas F., Polyphase transverse and/or commutated flux systems.
  16. Calley, David G.; Janecek, Thomas F., Polyphase transverse and/or commutated flux systems.
  17. Calley, David G.; Janecek, Thomas F., Polyphase transverse and/or commutated flux systems.
  18. Janecek, Thomas, Powdered metal manufacturing method and devices.
  19. Jore, Matthew B.; Duford, James David; Kvam, Michael; Jore, Lincoln M.; Samsel, David; Jore, James D., Segmented stator for an axial field device.
  20. Jore, Matthew B.; Duford, James David; Kvam, Michael; Jore, Lincoln M.; Samsel, David; Jore, James D., Segmented stator for an axial field device.
  21. Oyague, Francisco Javier, Structure for an electromagnetic machine having compression and tension members.
  22. Jore, Matthew B.; Jore, Lincoln; Kvam, Michael A.; Jore, James D.; Samsel, David; Duford, James David; Smith, James S., Systems and methods for improved direct drive generators.
  23. Janecek, Thomas F., Transverse and/or commutated flux system coil concepts.
  24. Calley, David G.; Janecek, Thomas F., Transverse and/or commutated flux system rotor concepts.
  25. Calley, David G.; Janecek, Thomas F., Transverse and/or commutated flux system rotor concepts.
  26. Calley, David G.; Janecek, Thomas F., Transverse and/or commutated flux system stator concepts.
  27. Calley, David G.; Janecek, Thomas F., Transverse and/or commutated flux system stator concepts.
  28. Calley, David G.; Cole, Daniel S; Dyer, John M.; Janecek, Thomas F., Transverse and/or commutated flux systems configured to provide reduced flux leakage, hysteresis loss reduction, and phase matching.
  29. Calley, David G.; Cole, Daniel S; Dyer, John M.; Janecek, Thomas F., Transverse and/or commutated flux systems configured to provide reduced flux leakage, hysteresis loss reduction, and phase matching.
  30. Calley, David G.; Cole, Daniel S.; Dyer, John M.; Janecek, Thomas F.; Reynolds, J. Scott, Transverse and/or commutated flux systems for electric bicycles.
  31. Calley, David G.; Cole, Daniel S.; Dyer, John M.; Janecek, Thomas F.; Williams, Tyler K., Transverse and/or commutated flux systems having laminated and powdered metal portions.
  32. Calley, David G.; Cole, Daniel S.; Dyer, John M.; Janecek, Thomas F., Transverse and/or commutated flux systems having phase offset.
  33. Calley, David G.; Cole, Daniel S; Dyer, John M.; Janecek, Thomas F., Transverse and/or commutated flux systems having phase offset.
  34. Calley, David G.; Cole, Daniel S.; Dyer, John M.; Janecek, Thomas F.; Williams, Tyler K., Transverse and/or commutated flux systems having segmented stator laminations.
  35. Calley, David G.; Cole, Daniel S.; Dyer, John M.; Janecek, Thomas F.; Williams, Tyler K., Transverse and/or commutated flux systems having segmented stator laminations.
  36. Kramer, Michael, Variable attractive force motor and generator.
  37. Kramer, Michael, Variable attractive force motor and generator.
  38. Kramer, Michael, Variable attractive force motor and generator.
  39. Grassman, Derek, Vertical axis wind turbine and generator therefore.
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