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High temperature superconducting thick films 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01L-039/00
출원번호 US-0425752 (1995-04-19)
발명자 / 주소
  • Arendt Paul N.
  • Wu Xin Di
  • Foltyn Steve R.
출원인 / 주소
  • The Regents of the University of California
대리인 / 주소
    Cottrell
인용정보 피인용 횟수 : 96  인용 특허 : 6

초록

A superconducting article including a flexible polycrystalline metal substrate, a layer of an adhesion layer material upon the surface of the flexible polycrystalline metal substrate, a layer of a cubic oxide material upon the adhesion layer material, the first layer of cubic oxide material deposite

대표청구항

[ What is claimed is:] [14.] A superconducting article comprising:a flexible polycrystalline metal substrate;a layer of a cubic oxide material upon the flexible polycrystalline metal substrate, the layer of cubic oxide material deposited by ion beam assisted deposition using a percentage of light io

이 특허에 인용된 특허 (6)

  1. Iijima Yasuhiro (Tokyo JPX) Tanabe Nobuo (Tokyo JPX), Method of making polycrystalline thin film and superconducting oxide body.
  2. Shiota Takao (Sakura JPX) Hidaka Hiroshi (Tsukuba JPX) Takahashi Koichi (Funabashi JPX) Sato Masahiro (Yotsukaido JPX) Fukuda Osamu (Narashino JPX), Single crystal oxide superconductor and method of producing the same.
  3. Takeshita Takuo (Saitama JPX) Sugihara Tadashi (Saitama JPX), Structure of superconductive wiring having SiAlON buffer layer thereunder.
  4. Woolf Lawrence D. (Carlsbad CA) Elsner Frederick H. (Cardiff CA) Raggio William A. (Del Mar CA), Substrate for ceramic superconductor with improved barrier.
  5. Wu Xin D. (Greenbelt MD) Muenchausen Ross E. (Espanola NM), Superconducting composite with multilayer patterns and multiple buffer layers.
  6. Harshavardhan Kolagani S. (Greenbelt MD) Venkatesan Thirumalai (Washington DC), Superconducting films on alkaline earth fluoride substrate with multiple buffer layers.

이 특허를 인용한 특허 (96)

  1. Jenson, Mark L.; Klaassen, Jody J.; Sullivan, Jim, Active wireless tagging system on peel and stick substrate.
  2. Findikoglu, Alp T., Aligned crystalline semiconducting film on a glass substrate and method of making.
  3. Shakespeare,Stuart, Apparatus and method for depositing material onto a substrate using a roll-to-roll mask.
  4. Jacobs, Harlan T.; Jenson, Mark L.; Klaassen, Jody J.; Yan, Jenn-Feng, Battery-operated wireless-communication apparatus and method.
  5. Jacobs, Harlan T.; Jenson, Mark L.; Klassen, Jody J.; Yan, Jenn-Feng, Battery-operated wireless-communication apparatus and method.
  6. Jacobs,Harlan Theodore; Jenson,Mark Lynn; Klaassen,Jody Jon; Yan,Jenn Feng, Battery-operated wireless-communication apparatus and method.
  7. Finkikoglu, Alp T.; Matias, Vladimir, Biaxially oriented film on flexible polymeric substrate.
  8. Groves, James R.; Foltyn, Stephen R.; Arendt, Paul N., Biaxially textured composite substrates.
  9. Norton, David P.; Park, Chan; Goyal, Amit, Buffer architecture for biaxially textured structures and method of fabricating same.
  10. Belouet, Christian, Buffer layer structure based on doped ceria for providing optimized lattice match with a YBCO layer in a conductor.
  11. Goyal, Amit; Wee, Sung-Hun, Buffer layers for REBCO films for use in superconducting devices.
  12. Jia, Quanxi; Foltyn, Stephen R.; Arendt, Paul N.; Groves, James R., Buffer layers on metal alloy substrates for superconducting tapes.
  13. Jia, Quanxi; Foltyn, Stephen R.; Arendt, Paul N.; Groves, James R., Buffer layers on metal alloy substrates for superconducting tapes.
  14. Paranthaman, Mariappan Parans; Sathyamurthy, Srivatsan; Aytug, Tolga; Arendt, Paul N.; Stan, Liliana; Foltyn, Stephen R., Chemical solution deposition method of fabricating highly aligned MgO templates.
  15. Paranthaman, Mariappan Parans; Sathyamurthy, Srivatsan; Aytug, Tolga; Arendt, Paul N; Stan, Liliana; Foltyn, Stephen R, Chemical solution deposition method of fabricating highly aligned MgO templates.
  16. Goyal, Amit; Paranthaman, Mariappan; Wee, Sung-Hun, Chemical solution seed layer for rabits tapes.
  17. Selvamanickam, Venkat, Coated high temperature superconducting tapes, articles, and processes for forming same.
  18. Simpson, John T.; Lewis, Linda A., Composition for forming an optically transparent, superhydrophobic coating.
  19. Findikoglu,Alp T.; Matias,Vladimir, Conductive layer for biaxially oriented semiconductor film growth.
  20. Jenson,Mark Lynn, Continuous processing of thin-film batteries and like devices.
  21. Jenson,Mark Lynn; Klaassen,Jody Jon; Weiss,Victor Henry; Yan,Jenn Feng, Device enclosures and devices with integrated battery.
  22. Groves, James R.; Arendt, Paul N.; Hammond, Robert H., Dual ion beam assisted deposition of biaxially textured template layers.
  23. Schmidt, Wolfgang; Sipos, Gisela; Utz, Bernd, Elongated superconductor structure with a high-Tc superconductor material and a metallic mount, and method for producing the structure.
  24. Fritzemeier, Leslie G.; Thieme, Cornelis Leo Hans; Fleshler, Steven; Scudiere, John D.; Snitchler, Gregory L.; Gamble, Bruce B.; Schwall, Robert E.; Yu, Dingan; Otto, Alexander; Thompson, Elliott D.;, Enhanced high temperature coated superconductors.
  25. Fritzemeier, Leslie G.; Thieme, Cornelis Leo Hans; Fleshler, Steven; Scudiere, John D.; Snitchler, Gregory L.; Gamble, Bruce B.; Schwall, Robert E.; Yu, Dingan; Otto, Alexander; Thompson, Elliott D.;, Enhanced high temperature coated superconductors joined at a cap layer.
  26. Goyal, Amit, Faceted ceramic fibers, tapes or ribbons and epitaxial devices therefrom.
  27. Goyal, Amit, Faceted ceramic fibers, tapes or ribbons and epitaxial devices therefrom.
  28. Laubacher,Daniel B.; Wilker,Charles; Schiano,Jeffrey L., Frequency detection system comprising circuitry for adjusting the resonance frequency of a high temperature superconductor self-resonant coil.
  29. Arendt, Paul N.; Foltyn, Stephen R.; Groves, James R.; Holesinger, Terry G.; Jia, Quanxi, High temperature superconducting thick films.
  30. Selvamanickam, Venkat; Lee, Hee-Gyoun, Ion beam-assisted high-temperature superconductor (HTS) deposition for thick film tape.
  31. Reade, Ronald P.; Berdahl, Paul H.; Russo, Richard E.; Fritzemeier, Leslie G., Ion texturing methods and articles.
  32. Robert K. Williams ; Mariappan Paranthaman ; Thomas G. Chirayil ; Dominic F. Lee ; Amit Goyal ; Roeland Feenstra, Laminate article.
  33. Beach, David B.; Morrell, Jonathan S.; Paranthaman, Mariappan; Chirayil, Thomas; Specht, Eliot D.; Goyal, Amit, Laminate articles on biaxially textured metal substrates.
  34. Yi-Qun Li ; Jing Zhao, Large temperature coefficient of resistance material.
  35. Tarnowski,Dave J.; Jenson,Mark L., Layered barrier structure having one or more definable layers and method.
  36. Klaassen,Jody J., Lithium/air batteries with LiPON as separator and protective barrier and method.
  37. Klaassen,Jody J., Lithium/air batteries with LiPON as separator and protective barrier and method.
  38. Jenson, Mark L., Low-temperature fabrication of thin-film energy-storage devices.
  39. Rey, Christopher Mark, Magnesium -boride superconducting wires fabricated using thin high temperature fibers.
  40. Laubacher,Daniel B., Metal shield alarm in a nuclear quadrupole resonance/X-ray contraband detection system.
  41. Selvamanickam, Venkat; Lee, Hee-Gyoun, Metalorganic chemical vapor deposition (MOCVD) process and apparatus to produce multi-layer high-temperature superconducting (HTS) coated tape.
  42. Jenson, Mark L.; Klaassen, Jody J., Method and apparatus for integrated-circuit battery devices.
  43. Jenson, Mark L.; Klaassen, Jody J., Method and apparatus for integrated-circuit battery devices.
  44. Jenson,Mark L.; Weiss,Victor H., Method and apparatus for thin-film battery having ultra-thin electrolyte.
  45. Carter, III, Charles F.; Laubacher, Daniel B.; McCambridge, James D.; Wilker, Charles; Sheng, Jiunn, Method and system for adjusting the fundamental symmetric mode of coupled high temperature superconductor coils.
  46. Mannhart, Jochen Dieter, Method for making a superconductor with improved microstructure.
  47. Selvamanickam,Venkat, Method for manufacturing high temperature superconducting conductors using chemical vapor deposition (CVD).
  48. Selvamanickam, Venkat; Lee, Hee-Gyoun, Method for manufacturing high-temperature superconducting conductors.
  49. Alvarez,Robby L.; Laubacher,Daniel B.; Wilker,Charles, Method for reducing the coupling between excitation and receive coils of a nuclear quadrupole resonance detection system.
  50. Schiano, Jeffrey L.; Wilker, Charles, Method for reducing the coupling during reception between excitation and receive coils of a nuclear quadrupole resonance detection system.
  51. Jenson, Mark Lynn, Method of continuous processing of thin-film batteries and like devices.
  52. Amit Goyal ; Donald M. Kroeger ; Mariappan Paranthaman ; Dominic F. Lee ; Roeland Feenstra ; David P. Norton, Method of depositing a protective layer over a biaxially textured alloy substrate and composition therefrom.
  53. Paranthaman, M. Parans; Aytug, Tolga; Christen, David K., Method of depositing an electrically conductive oxide buffer layer on a textured substrate and articles formed therefrom.
  54. Paranthaman, M. Parans; Aytug, Tolga; Christen, David K., Method of depositing an electrically conductive oxide buffer layer on a textured substrate and articles formed therefrom.
  55. David B. Beach ; Jonathan S. Morrell ; Mariappan Paranthaman ; Thomas Chirayil ; Eliot D. Specht ; Amit Goyal, Method of depositing buffer layers on biaxially textured metal substrates.
  56. Rey, Christopher Mark, Method of forming superconducting magnets using stacked LTS/HTS coated conductor.
  57. Maeda,Toshihiko; Izumi,Toru; Hasegawa,Katsuya; Asada,Shigenobu; Izumi,Teruo; Shiohara,Yuh, Method of manufacturing a metal substrate for an oxide superconducting wire.
  58. Matsumoto Kaname,JPX ; Koshizuka Naoki,JPX ; Tanaka Yasuzo,JPX, Method of manufacturing an oxide superconductor wire.
  59. Norton, David P.; Selvamanickam, Venkat, Method of producing biaxially textured buffer layers and related articles, devices and systems.
  60. Selvamanickam,Venkat, Method of producing biaxially textured buffer layers and related articles, devices and systems.
  61. Norton, David Paul; Park, Seh Jin, Method of producing biaxially textured substrates and related articles, devices and systems.
  62. Alvarez,Robby L.; McCambridge,James D., Methods and apparatus for scanning a band of frequencies using an array of high temperature superconductor sensors.
  63. Goyal, Amit; Shin, Junsoo, Nanocomposites for ultra high density information storage, devices including the same, and methods of making the same.
  64. Jia, Quanxi; Arendt, Paul N., Oriented conductive oxide electrodes on SiO2/Si and glass.
  65. Reade, Ronald P.; Berdahl, Paul H.; Russo, Richard E., Particle beam biaxial orientation of a substrate for epitaxial crystal growth.
  66. Goyal, Amit; Shin, Junsoo, Polycrystalline ferroelectric or multiferroic oxide articles on biaxially textured substrates and methods for making same.
  67. Iijima, Yasuhiro; Kimura, Mariko; Saitoh, Takashi, Polycrystalline thin film and method for preparing thereof, and superconducting oxide and method for preparation thereof.
  68. Face,Dean W., Process for making high temperature superconductor devices each having a line oriented in a spiral fashion.
  69. Alvarez,Robby L.; Laubacher,Daniel B., Q-damping circuit including a diode acting as a resistor for damping a high temperature superconductor self-resonant coil in a nuclear quadrupole resonance detection system.
  70. McCambridge,James D., Q-damping circuit including a high temperature superconductor coil for damping a high temperature superconductor self-resonant coil in a nuclear quadrupole resonance detection system.
  71. Williams Robert K. ; Paranthaman Mariappan ; Chirayil Thomas G. ; Lee Dominic F. ; Goyal Amit ; Feenstra Roeland, Rare earth zirconium oxide buffer layers on metal substrates.
  72. Read, John B.; Sweeney, Daniel C., Rugged, gel-free, lithium-free, high energy density solid-state electrochemical energy storage devices.
  73. Sweeney, Daniel C.; Read, John B., Rugged, gel-free, lithium-free, high energy density solid-state electrochemical energy storage devices.
  74. Alvarez,Robby L.; McCambridge,James D., Scanning a band of frequencies using an array of high temperature superconductor sensors tuned to different frequencies.
  75. Alvarez,Robby L.; McCambridge,James D., Scanning a band of frequencies using an array of high temperature superconductor sensors tuned to the same frequency.
  76. Foltyn, Stephen R.; Jia, Quanxi; Arendt, Paul N.; Holesinger, Terry G.; Wang, Haiyan, Segmented superconducting tape having reduced AC losses and method of making.
  77. Jenson,Mark L.; Klaassen,Jody J.; Sullivan,Jim; Lemaire,Charles A.; Billion,Richard E., Solid state MEMS activity-activated battery device and method.
  78. Jenson, Mark L.; Klaassen, Jody J.; Sullivan, Jim; Lemaire, Charles A.; Billion, Richard E., Solid state activity-activated battery device and method.
  79. Arendt, Paul N.; Foltyn, Stephen R.; Groves, James R.; Jia, Quanxi, Substrate structure for growth of highly oriented and/or epitaxial layers thereon.
  80. Usoskin, Alexander; Freyhardt, Herbert; Harten, Friedrich, Superconducting element.
  81. Selvamanickam,Venkat; Hazelton,Drew W.; Qiao,Yunfei, Superconductive articles having density characteristics.
  82. Paranthaman,Mariappan P.; Aytug,Tolga, Superconductors on iridium substrates and buffer layers.
  83. Aytug, Tolga; Simpson, John T.; Christen, David K., Superhydrophobic transparent glass (STG) thin film articles.
  84. Reeves, Jodi L.; Qiao, Yunfei, Tape manufacturing system.
  85. Reeves,Jodi L.; Qiao,Yunfei, Tape manufacturing system.
  86. Honjo, Tetsuji; Fuji, Hiroshi; Nakamura, Yuichi; Izumi, Teruo; Araki, Takeshi; Yamada, Yutaka; Hirabayashi, Izumi; Shiohara, Yuh; Iijima, Yasuhiro; Takeda, Kaoru, Tape-formed oxide superconductor.
  87. Chen,Xin; Wu,Naijuan; Ignatiev,Alex, Thin film solid oxide fuel cell and method for forming.
  88. Chen,Xin; Wu,Naijuan; Ignatiev,Alex; Zhou,Yuxiang, Thin film solid oxide fuel cell with lithographically patterned electrolyte and anode layers.
  89. Klaassen, Jody J., Thin-film batteries with polymer and LiPON electrolyte layers and method.
  90. Jenson,Mark L., Thin-film battery devices and apparatus for making the same.
  91. Jenson,Mark Lynn; Weiss,Victor Henry, Thin-film battery having ultra-thin electrolyte.
  92. Jenson,Mark Lynn; Weiss,Victor Henry, Thin-film battery having ultra-thin electrolyte and associated method.
  93. Laubacher,Daniel B.; McCambridge,James D.; Wilker,Charles, Use of multiple sensors in a nuclear quadropole resonance detection system to improve measurement speed.
  94. Laubacher,Daniel B.; McCambridge,James D.; Wilker,Charles, Use of two or more sensors in a nuclear quadrupole resonance detection system to improve signal-to-noise ratio.
  95. Laubacher,Daniel B.; McCambridge,James D.; Wilker,Charles, Use of two or more sensors to detect different nuclear quadrupole resonance signals of a target compound.
  96. Goyal, Amit, [100] or [110] aligned, semiconductor-based, large-area, flexible, electronic devices.
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