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Anode plate for flat panel display having integrated getter 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01J-001/62
  • H01J-017/24
출원번호 US-0258803 (1994-06-10)
발명자 / 주소
  • Wallace Robert M. (Dallas TX) Gnade Bruce E. (Dallas TX) Shen Chi-Cheong (Richardson TX) Levine Jules D. (Dallas TX) Taylor Robert H. (Richardson TX)
출원인 / 주소
  • Texas Instruments Incorporated (Dallas TX 02)
인용정보 피인용 횟수 : 52  인용 특허 : 0

초록

An anode plate 40 for use in a field emission flat panel display device comprises a transparent planar substrate 42 having a plurality of electrically conductive, parallel stripes 46 comprising the anode electrode of the device, which are covered by phosphors 48R, 48G and 48B, and a gettering materi

대표청구항

An anode plate for use in a field emission device, said anode plate comprising: a substantially transparent substrate having spaced-apart, electrically conductive regions on said substrate and luminescent material overlaying said conductors; and gettering material between said conductive regions and

이 특허를 인용한 특허 (52)

  1. Wallace Robert M. (Richardson TX) Anthony John M. (Richardson TX) Gnade Bruce E. (Dallas TX) Cho Chih-Chen (Richardson TX), Anode plate for flat panel display having integrated getter.
  2. Yifan Qian JP; Mamoru Ishizaki JP; Takeshi Itoi JP; Mizuhiro Tani JP; Takao Minato JP; Yuichi Ito JP; Teruhiko Kai JP, Circuit board for organic electroluminescent panel, method of manufacture, and electroluminescent panel.
  3. Charles M. Watkins ; David A. Cathey, Display device with grille having getter material.
  4. Watkins Charles M. ; Cathey David A., Display device with grille having getter material.
  5. Watkins Charles M. ; Cathey David A., Display device with grille having getter material.
  6. Liebeskind, John, Electronic device sealed under vacuum containing a getter and method of operation.
  7. Liebeskind,John, Electronic device sealed under vacuum containing a getter and method of operation.
  8. Potter Michael D, Fabrication process for self-gettering electron field emitter.
  9. Levine Jules D. (Dallas TX), Field emission device high voltage pulse system and method.
  10. Park, Nam-sin; Jin, Sung-hwan; Lee, Hyun-ji, Field emission display having integrated getter arrangement.
  11. Park,Nam sin; Jin,Sung hwan; Lee,Hyun ji, Field emission display manufacturing method having integrated getter arrangement.
  12. Miller Lester D. ; Kautz Allan D., Field service flashable getter for x-ray tubes.
  13. Fritz William C. ; Maslennikov Igor L. ; Duboc ; Jr. Robert M. ; Fahlen Theodore S. ; Hopple George B., Flat panel display with getter in auxiliary chamber.
  14. Lee Keum Sik,KRX, Flat picture tube.
  15. Lee Keum Sik,KRX, Flat picture tube.
  16. Kiyomiya Tadashi,JPX ; Ohoshi Toshio,JPX ; Okita Masami,JPX ; Negishi Eisuke,JPX ; Nakada Satoshi,JPX, Fluorescent screen display device having electrodeposited color coated electrodes.
  17. Arai, Yutaka; Hasegawa, Mitsutoshi; Shigeoka, Kazuya, Getter, air tight chamber and image forming apparatus having getter, and manufacturing method of getter.
  18. Itoh Shigeo,JPX, Hermetic container.
  19. Jeng Shin-Puu (Plano TX) Gnade Bruce E. (Dallas TX), Hydrogen-rich, low dielectric constant gate insulator for field emission device.
  20. Mitsutoshi Hasegawa JP; Ihachiro Gofuku JP; Yasuhiro Hamamoto JP; Kazuya Shigeoka JP; Yutaka Arai JP, Image display apparatus and method for producing the same.
  21. Ono Takeo,JPX ; Sato Yasue,JPX, Image display apparatus and method of activating getter.
  22. Hasegawa,Mitsutoshi; Gofuku,Ihachiro; Tokioka,Masaki; Shigeoka,Kazuya; Miura,Tokutaka, Image display device and method of manufacturing the same.
  23. Ito,Takeo; Oyaizu,Tsuyoshi; Nishimura,Takashi; Koide,Satoshi; Tabata,Hitoshi, Image display unit and method for manufacturing an image display unit.
  24. Ito,Takeo; Oyaizu,Tsuyoshi; Nishimura,Takashi; Koide,Satoshi; Tabata,Hitoshi, Image display unit and production method therefor.
  25. Ihachiro Gofuku JP; Hiroshi Takagi JP; Mitsutoshi Hasegawa JP; Kazuya Shigeoka JP; Yutaka Arai JP, Image-forming apparatus and fabrication method therefor.
  26. Curtin,Christopher J.; Haven,Duane A.; Hopple,George B.; Pan,Lawrence S.; Maslennikov,Igor L.; Nystrom,Michael J.; Liu,Jun Gordon; Gluck,Randolph S.; Kosugi,Tomoo; Dunphy,James C.; Morris,David L., Light-emitting and electron-emitting devices having getter regions.
  27. Porter, John D.; Pearson, Roger A.; Kajiwara, Kazuo; Kato, Haruo; Pan, Lawrence S.; Pei, Shiyou; Fahlen, Theodore S., Light-emitting device having light-emissive particles partially coated with light-reflective or/and getter material.
  28. Cummings, William J.; Pan, Lawrence S.; Spindt, Christopher J.; Hopple, George B.; Stanners, Colin D.; Dunphy, James C.; Pei, Shiyou; Fahlen, Theodore S., Light-emitting device having light-reflective layer formed with, or/and adjacent to, material that enhances device performance.
  29. Pothoven Floyd R. ; Cooper Anthony J. ; Maslennikov Igor L., Local energy activation of getter typically in environment below room pressure.
  30. Jones Gary W. ; Ghosh Amalkumar P. ; Zimmerman Steven M. ; Anandan Munisamy, Matrix getter for residual gas in vacuum sealed panels.
  31. Hasegawa, Mitsutoshi; Gofuku, Ihachiro; Hamamoto, Yasuhiro; Shigeoka, Kazuya; Arai, Yutaka, Method for gettering an image display apparatus.
  32. Kiyomiya Tadashi,JPX ; Ohoshi Toshio,JPX ; Okita Masami,JPX ; Negishi Eisuke,JPX ; Nakada Satoshi,JPX, Method for manufacturing a fluorescent screen display.
  33. Kato Yumiko (Mesa AZ) Cisneros Ralph (Tempe AZ), Method of conditioning emitters of a field emission display.
  34. Vickers Kenneth G. (Whitesboro TX) Yan Henry S. (Richardson TX) Wachtler Kurt P. (Richardson TX), Method of fabricating a color field emission flat panel display tetrode.
  35. Park,Dug jin; Park,Hai Sung; Ahn,Byung Chul, Method of fabricating liquid crystal display.
  36. Ramamoorthi,Sriram; Chen,Zhizhang; Liebeskind,John; Enck,Ronald L.; Shih,Jennifer, Method of making a getter structure.
  37. Jeng Shin-Puu ; Gnade Bruce E., Method of making a hydrogen-rich, low dielectric constant gate insulator for field emission device.
  38. Liu David Nan-Chou (Fong-Yuan TWX) Huang Jammy Chin-Ming (Taipei TWX) Tyan Jyh-Haur (Hsinchu TWX), Method of manufacturing a flat panel field emission display having auto gettering.
  39. Liu David Nan-Chou,TWX ; Huang Jammy Chin-Ming,TWX ; Tyan Jyh-Haur,TWX, Method of manufacturing a flat panel field emission display having auto gettering.
  40. Liu David Nan-Chou,TWX ; Huang Jammy Chin-Ming,TWX ; Tyan Jyh-Haur,TWX, Method of manufacturing a flat panel field emission display having auto gettering.
  41. Hasegawa,Mitsutoshi; Gofuku,Ihachiro; Tokioka,Masaki; Shigeoka,Kazuya; Miura,Tokutaka, Method of manufacturing image display device by stacking an evaporating getter and a non-evaporating getter on an image display member.
  42. Cho Steven T. ; Maslennikov Igor L. ; Curtin Christopher J. ; Conte Alfred S., Multi-compartment getter-containing flat-panel device.
  43. Cho Steven T. ; Maslennikov Igor L. ; Curtin Christopher J. ; Conte Alfred S., Multi-compartment getter-containing flat-panel device.
  44. Conte, Andrea; Moraja, Marco, Multilayer getter structures and methods for making same.
  45. Conte,Andrea; Moraja,Marco, Multilayer getter structures and methods for making same.
  46. Ingle Arthur J. ; Rowell Charles ; Chalamala Babu ; Petersen Ronald O. ; Amrine Craig ; Stainer Matthew, Node plate for field emission display.
  47. Auch,Mark; Guenther,Ewald; Chua,Soo Jin, Patterning of electrodes in OLED devices.
  48. Kim, Tae Yun; Kyon, Young Kook, Plasma display panel with a getter material.
  49. Junri Ishikura JP; Ihachiro Gofuku JP; Mitsutoshi Hasegawa JP, Process for forming non-evaporative getter and method of producing image forming apparatus.
  50. Potter Michael D, Self-gettering electron field emitter.
  51. Ramamoorthi,Sriram; Chen,Zhizhang; Liebeskind,John; Enck,Ronald L.; Shih,Jennifer, Vacuum device having a getter.
  52. Ramamoorthi, Sriram; Chen, Zhizhang; Liebeskind, John; Enck, Ronald L.; Shih, Jennifer, Vacuum device having non-evaporable getter component with increased exposed surface area.
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