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High current power inductor 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01F-027/24
  • H01F-027/30
  • H01F-017/04
  • H01F-027/255
  • H01F-027/28
  • H01F-027/29
  • H01F-003/14
출원번호 US-0217705 (2014-03-18)
등록번호 US-9558881 (2017-01-31)
발명자 / 주소
  • Liu, Zhuomin
  • Bogert, Robert James
출원인 / 주소
  • COOPER TECHNOLOGIES COMPANY
대리인 / 주소
    Armstrong Teasdale LLP
인용정보 피인용 횟수 : 0  인용 특허 : 118

초록

A surface mount power inductor includes a preformed conductive winding clip and first and second-shaped core pieces. The core pieces may be configured to reduce unbalanced force experienced in the power inductor in certain types of power management circuitry. Reduction in the unbalanced force reduce

대표청구항

1. A surface mount power inductor, comprising: a first shaped-core piece and a second shaped-core piece each fabricated from a magnetically soft powder material, the first shaped-core piece and the second shaped-core piece being separately and independently fabricated from one another;a preformed C-

이 특허에 인용된 특허 (118)

  1. Qu, Dayu, Acoustic noise reduction in power supply inductors.
  2. Senba, Fujio; Hyodo, Nakamaro; Sakane, Tetsushi; Fujii, Jun; Uchiyama, Tomoki; Kida, Shigeru, Apparatus and method for a communication device.
  3. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Kenneth A.; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Array of single-wall carbon nanotubes.
  4. Hannah,Eric C.; Brown,Michael A., Atomic clock.
  5. Takaya, Minoru; Kobuke, Hisashi; Endo, Toshikazu; Takahara, Seiji; Abe, Toshiyuki; Ohkawa, Hiroshige; Sasaki, Masami; Kawabata, Kenichi, COMPOSITE DIELECTRIC MATERIAL, COMPOSITE DIELECTRIC SUBSTRATE, PREPREG, COATED METAL FOIL, MOLDED SHEET, COMPOSITE MAGNETIC SUBSTRATE, SUBSTRATE, DOUBLE SIDE METAL FOIL-CLAD SUBSTRATE, FLAME RETARDAN.
  6. Mandai, Harufumi; Tomono, Kunisaburo, Chip-type inductor.
  7. Billings Robert L. (Richardson TX) Dahringer Donald W. (Glen Ridge NJ) Lyons Alan M. (New Providence NJ), Circuit elements dependent on core inductance and fabrication thereof.
  8. Amagasa Nobutada (Kobe JPX), Coil device.
  9. Shibata, Kazuhiko; Nagasaka, Takashi; Tamura, Junetsu; Kitajima, Yasuhiko; Moro, Hideharu; Chou, Tsutomu; Suzuki, Tsuneo, Coil-embedded dust core and method for manufacturing the same.
  10. Moro, Hideharu; Suzuki, Tsuneo, Coil-embedded dust core and method for manufacturing the same, and coil and method for manufacturing the same.
  11. Schultz,Peter G.; Xiang,Xiao Dong; Goldwasser,Isy; Briceno,Gabriel; Sun,Xiao Dong; Wang,Kai An, Combinatorial synthesis and screening of non-biological polymers.
  12. Liu, Chun-Tiao; Huang, Yi-Min, Configuration and method for manufacturing compact high current inductor coil.
  13. Smalley, Richard E.; Colbert, Daniel T.; Dai, Hongjie; Liu, Jie; Rinzler, Andrew G.; Hafner, Jason H.; Smith, Kenneth A.; Guo, Ting; Nikolaev, Pavel; Thess, Andreas, Continuous fiber of single-wall carbon nanotubes.
  14. Lipkes Zeev ; Crownover Joseph W., Core and coil structure and method of making the same.
  15. Takatori Sunao (Tokyo JPX) Kumagai Ryohei (Tokyo JPX) Matsumoto Koji (Tokyo JPX) Yamamoto Makoto (Tokyo JPX), Data processing system.
  16. Levasseur David James ; Wetzel Richard Miles ; Rigdon Donald Burnell, Digital isolation apparatus and method.
  17. McHenry Michael R., Electroless copper plating.
  18. Takaya, Minoru; Endo, Toshikazu, Electronic parts.
  19. Vranken Roger A. (Eindhoven NLX), Flat electric coil.
  20. Boys John Talbot,NZX ; Green Andrew William,NZX, Flux concentrator for an inductive power transfer system.
  21. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Ken; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Fullerene nanotube compositions.
  22. Yan, Yipeng; Bogert, Robert James, High current amorphous powder core inductor.
  23. Leigh William C. ; Deakins Stephen S., High current ferrite electromagnetic interference supressor and associated method.
  24. Yan, Yipeng; Bogert, Robert James; Ouyang, Guo; Cheng, Zhigang, High current magnetic component and methods of manufacture.
  25. Shafer Timothy M. ; Jelkin Brett W., High current, low profile inductor.
  26. Sasaki Yoshinori (Akita JPX) Watanabe Toshio (Akita JPX) Yokoyama Isao (Akita JPX), Impedance element mounted on a pc board.
  27. Takaya,Minoru; Endo,Toshikazu, Inductance element, laminated electronic component, laminated electronic component module and method for producing these element, component and module.
  28. Takatori Sunao (Tokyo JPX) Kumagai Ryohei (Tokyo JPX) Matsumoto Koji (Tokyo JPX) Yamamoto Makoto (Tokyo JPX), Inductively coupled neural network.
  29. Liu,Chun Tiao; Chen,Stanely; Hsieh,Roger; Huang,Yimin; Chuang,Wei Ching, Inductor.
  30. Uriu,Eiichi; Makino,Osamu; Chiba,Hironobu; Yokota,Chisa, Inductor and method for producing the same.
  31. Shafer,Timothy M.; Jelkin,Brett W., Inductor coil.
  32. Shafer, Timothy M.; Jelkin, Brett W., Inductor coil and method for making same.
  33. Shafer,Timothy M.; Jelkin,Brett W., Inductor coil and method for making same.
  34. Shafer Timothy M., Inductor coil structure.
  35. Tsutsumi,Takashi; Ohya,Hidenobu; Suzuki,Shinichi; Fukuda,Teruyuki; Yasuda,Minoru, Ink jet printer and image recording method.
  36. Zhang, Yide; Wang, Shihe; Xiao, Danny, Insulator coated magnetic nanoparticulate composites with reduced core loss and method of manufacture thereof.
  37. Ushiro Tomoaki (Nagaokakyo JPX) Kawabata Toshio (Nagaokakyo JPX) Kono Daiji (Nagaokakyo JPX) Oshima Hisato (Nagaokakyo JPX), Laminated chip common mode choke coil.
  38. Kobayashi Takashi (Nagaokakyo JPX) Takeuchi Hiroyuki (Nagaokakyo JPX) Tamada Minoru (Nagaokakyo JPX), Lamination type inductor.
  39. Kobayashi Takashi (Nagaokakyo JPX) Tamada Minoru (Nagaokakyo JPX) Yamanaka Yoshifumi (Nagaokakyo JPX) Takeuchi Hiroyuki (Nagaokakyo JPX), Lamination type inductor.
  40. Renn,Michael J.; King,Bruce H.; Essien,Marcelino; Giridharan,Manampathy G.; Sheu,Jyh Cherng, Laser processing for heat-sensitive mesoscale deposition.
  41. Yoshida, Shoji; Kenmotsu, Hidetaka; Mizushima, Takao; Ikarashi, Kazuaki; Naito, Yutaka, Low-loss magnetic powder core, and switching power supply, active filter, filter, and amplifying device using the same.
  42. Yoshida, Shoji; Mizushima, Takao; Naito, Yutaka, Low-loss magnetic powder core, and switching power supply, active filter, filter, and amplifying device using the same.
  43. Haertling Carol (Santa Ana CA) Shapiro Andrew A. (Orange CA) Goodman Charles A. (Garden Grove CA) Pond Ramona G. (Downey CA) Washburn Robert D. (Malibu CA) McClanahan Robert F. (Valencia CA) Gonzalez, Low-temperature-cofired-ceramic (LTCC) tape structures including cofired ferromagnetic elements, drop-in components and.
  44. Junichi Kato JP; Osamu Inoue JP; Seiichi Nakatani JP; Koichi Hirano JP; Toshiyuki Asahi JP, Magnetic element and method of manufacturing the same.
  45. Maruko,Nobuhiro; Yoshida,Mitsunobu; Watanabe,Hiroshi; Ono,Takashi; Nogi,Hidenobu; Nakata,Tomoyuki, Magnetic substrate, laminate of magnetic substrate and method for producing thereof.
  46. Wang,Xingwu; Greenwald,Howard J., Magnetically shielded assembly.
  47. Wang,Xingwu; Greenwald,Howard J.; Miller,Ronald E.; Helfer,Jeffrey L.; Gray,Robert, Magnetically shielded assembly.
  48. Wang,Xingwu; Greenwald,Howard J.; Miller,Ronald E.; Helfer,Jeffrey L.; Gray,Robert, Magnetically shielded assembly.
  49. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Kenneth A.; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Membrane comprising an array of single-wall carbon nanotubes.
  50. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Ken; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Method for cutting fullerene nanotubes.
  51. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Kenneth A.; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Method for cutting nanotubes.
  52. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Ken; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Method for forming a patterned array of single-wall carbon nanotubes.
  53. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Kenneth A.; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Method for forming an array of single-wall carbon nanotubes in an electric field and compositions thereof.
  54. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Kenneth A.; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Method for forming composites of sub-arrays of single-wall carbon nanotubes.
  55. Smalley, Richard E.; Colbert, Daniel T.; Dai, Hongjie; Liu, Jie; Rinzler, Andrew G.; Hafner, Jason H.; Smith, Kenneth A.; Guo, Ting; Nikolaev, Pavel; Thess, Andreas, Method for growing continuous fiber.
  56. Smalley, Richard E.; Colbert, Daniel T.; Dai, Hongjie; Liu, Jie; Rinzler, Andrew G.; Hafner, Jason H.; Smith, Kenneth A.; Guo, Ting; Nikolaev, Pavel; Thess, Andreas, Method for growing single-wall carbon nanotubes utlizing seed molecules.
  57. Shafer,Timothy M.; Jelkin,Brett W., Method for making a high current low profile inductor.
  58. Shafer,Timothy M.; Jelkin,Brett W., Method for making a high current low profile inductor.
  59. Timothy M. Shafer ; Brett W. Jelkin, Method for making a high current, low profile inductor.
  60. Timothy M. Shafer, Method for making inductor coil structure.
  61. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Ken; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Method for producing a catalyst support and compositions thereof.
  62. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Kenneth A.; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Method for producing a catalyst support and compositions thereof.
  63. Uriu, Eiichi; Makino, Osamu; Chiba, Hironobu; Yokota, Chisa, Method for producing a lamination ceramic chi.
  64. Uriu Eiichi,JPX ; Makino Osamu,JPX ; Chiba Hironobu,JPX ; Yokota Chisa,JPX, Method for producing an inductor.
  65. Takaya, Minoru; Endo, Toshikazu; Sasaki, Masami, Method for producing multilayer substrate and electronic part, and multilayer electronic part.
  66. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Ken; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Method for producing self-assembled objects comprising fullerene nanotubes and compositions thereof.
  67. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Kenneth A.; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Method for producing self-assembled objects comprising single-wall carbon nanotubes and compositions thereof.
  68. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Ken; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Method for purification of as-produced fullerene nanotubes.
  69. Smalley, Richard E.; Colbert, Daniel T.; Dai, Hongjie; Liu, Jie; Rinzler, Andrew G.; Hafner, Jason H.; Smith, Kenneth A.; Guo, Ting; Nikolaev, Pavel; Thess, Andreas, Method for purification of as-produced single-wall carbon nanotubes.
  70. Hiroshi Harada JP, Method for the preparation of soft magnetic ferrite powder and method for the production of laminated chip inductor.
  71. Chen Wei-Fan,TWX, Method of fabricating on-chip inductor.
  72. Ahn,Kie Y.; Forbes,Leonard, Method of forming an inductor.
  73. Williams K. Barry A. (Duxbury MA), Method of making a multilayer electrical coil.
  74. Choi,Myoung Hui; Hong,Soon Gyu; Jang,Sang Eun, Method of making chip type power inductor.
  75. Bando Masahiro,JPX, Method of manufacturing a chip transformer.
  76. Uchikoba, Fumio; Tatemori, Tomoyuki, Method of manufacturing a multi-layer ferrite chip inductor array.
  77. Kumeji Yasushi,JPX ; Nishimura Seiichi,JPX ; Nakajima Yoshinobu,JPX ; Itou Makoto,JPX, Method of manufacturing an electronic component.
  78. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Ken; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Methods for producing composites of fullerene nanotubes and compositions thereof.
  79. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Kenneth A.; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Methods for producing composites of single-wall carbon nanotubes and compositions thereof.
  80. Belter Robert, Modular capacitor/inductor structure.
  81. Hirano,Koichi; Yoshida,Tsunenori; Nakatani,Seiichi, Module incorporating a capacitor, method for manufacturing the same, and capacitor used therefor.
  82. Hirano,Koichi; Yoshida,Tsunenori; Nakatani,Seiichi, Module incorporating a capacitor, method for manufacturing the same, and capacitor used therefor.
  83. Walters Michael M. (Endwell NY), Monolithic magnetic device with printed circuit interconnections.
  84. Garvey, James F.; Tompa, Gary S.; MacDonald, Stuart G.; DeLeon, Robert L., Multi-component substances and processes for preparation thereof.
  85. Dadafshar, Majid, Multi-layer and user-configurable micro-printed circuit board.
  86. Kawabata Toshio (Uji JPX) Tomono Kunisaburo (Kyoto JPX), Multi-layer chip coil.
  87. Abel David A., Multi-layer transformer apparatus and method.
  88. Abel David Alan ; Grabow Jay Emil ; Levasseur David James ; Rigdon Donald Burnell ; Wetzel Richard Miles, Multi-layer transformer having electrical connection in a magnetic core.
  89. Majid Dadafshar, Multi-layer, multi-functioning printed circuit board.
  90. Swanberg Melvin E. (Claremont CA), Multi-phase printed circuit board tachometer.
  91. Tashiro Kouji (Chiba JPX) Kaneko Akira (Chiba JPX), Multilayered inductor.
  92. Cheng, Chuan Tsai, Multiple coupling and non-coupling inductor.
  93. Tran,Bao, NANO IC packaging.
  94. Tran,Bao, NANO IC packaging.
  95. Tran,Bao, NANO-electronic memory array.
  96. Tran,Bao Q., NANO-electronics.
  97. Tran,Bao, Nano-electronic memory array.
  98. Nakayama,Shogo; Orita,Takeshi; Uriu,Eiichi; Oishi,Kazuo; Washizaki,Tomoyuki; Nishimura,Koji; Matsumura,Kazutoshi, Noise filter and electronic device using noise filter.
  99. Meyer Dennis R. (17830 2nd. Ave. Plymouth MN 55447), Noise suppressor.
  100. Ahn, Kie Y.; Forbes, Leonard, Open pattern inductor.
  101. Ahn, Kie Y.; Forbes, Leonard, Open pattern inductor.
  102. Ahn,Kie Y.; Forbes,Leonard, Open pattern inductor.
  103. Ahn,Kie Y.; Forbes,Leonard, Open pattern inductor.
  104. Hiraoka, Toshiro; Hotta, Yasuyuki; Asakawa, Koji; Matake, Shigeru, Passive element component and substrate with built-in passive element.
  105. Iha, Michiaki; Kubota, Masahiro; Watanabe, Shizuharu, Photosensitive thick film composition and electronic device using the same.
  106. Mizoguchi, Tetsuhiko; Sato, Toshiro; Sahashi, Masashi; Hasegawa, Michio; Tomita, Hiroshi; Sawabe, Atsuhito, Planar magnetic element.
  107. Wittenbreder Ernest H., Planar stacked layer inductors and transformers.
  108. Schultz, Peter G.; Xiang, Xiao-Dong; Goldwasser, Isy; Briceño, Gabriel; Sun, Xiao-Dong, Polymer arrays from the combinatorial synthesis of novel materials.
  109. Nakano, Atsuyuki; Nakahata, Isao, Powder for magnetic ferrite, magnetic ferrite, multilayer ferrite components and production method thereof.
  110. Dadafshar, Majid; Michel, Francisco, Precision inductive devices and methods.
  111. Schultz,Peter G.; Xiang,Xiaodong; Goldwasser,Isy; Brice{hacek over (n)}o,Gabriel; Sun,Xiao Dong; Wang,Kai An, Preparation and screening of crystalline inorganic materials.
  112. Schultz, Peter G.; Xiang, Xiaodong; Goldwasser, Isy; Briceno, Gabriel; Sun, Xiao-Dong; Wang, Kai-An, Preparation and screening of crystalline zeolite and hydrothermally-synthesized materials.
  113. Zillman ; Jack H., Process for making electrical components having dielectric layers comprising particles of a lead oxide-germanium dioxid.
  114. Wang, Xingwu; Greenwald, Howard J.; Helfer, Jeffrey L.; Gray, Robert W., Protective assembly.
  115. Herman R. Person ; Thomas L. Veik ; Jeffrey T. Adelman, Structure of making a thick film low value high frequency inductor.
  116. Huang Philip M. (Plantation FL) Neumann John J. (North Lauderdale FL) Holley ; Jr. John L. (Lake Worth FL), Surface mountable inductor.
  117. Ma,Xinqing; Zhang,Yide; Ge,Shihui; Zhang,Zongtao; Yan,Dajing; Xiao,Danny T., Thick film magnetic nanoparticulate composites and method of manufacture thereof.
  118. Riggio, Christopher Allen; Buske, Jeffrey Michael; Thompson, David R.; Stahle, Lyle J.; Hunter, Nathan J.; Woodland, Garth Blair, Two-stage converter using low permeability magnetics.
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