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Display device with grille having getter material 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01J-001/72
출원번호 US-0237394 (1999-01-26)
발명자 / 주소
  • Watkins Charles M.
  • Cathey David A.
출원인 / 주소
  • Micron Technology, Inc.
대리인 / 주소
    Hale and Dorr LLP
인용정보 피인용 횟수 : 28  인용 특허 : 27

초록

A field emission display has an anode with a grille made at least in part of a getter material. The grille defines regions that are coated with phosphor to form pixels, and also getters free molecules within a sealed display. The getter material can alternatively be formed directly on at least a par

대표청구항

[ What is claimed is:] [1.] A display device comprising:an anode including:a transparent dielectric layer,a grille formed on the transparent dielectric layer and defining regions thereon,a transparent conductive layer formed over the transparent dielectric layer and the grille,a phosphor coating ove

이 특허에 인용된 특허 (27)

  1. 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), Anode plate for flat panel display having integrated getter.
  2. 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.
  3. Wallace Robert M. (Richardson TX) Gnade Bruce E. (Dallas TX) Kirk Wiley P. (Richardson TX), Anode plate for flat panel display having silicon getter.
  4. Libman Philomena C. (Mt. Prospect IL) Prazak ; III Charles J. (Elmhurst IL), Cataphoretic process for screening color cathode ray tubes.
  5. Giorgi Ettore (Milan ITX), Cathode ray tube with an electrophoretic getter.
  6. Itoh Shigeo (Mobara JPX) Watanabe Teruo (Mobara JPX) Miyamori Makoto (Mobara JPX) Nishimura Norio (Mobara JPX) Itoh Junji (Tsukuba JPX) Kanemaru Seigo (Tsukuba JPX), Field emission element.
  7. Emberson David L. (Purley GB2) Caple Adrian (Purley GB2), Flat cathode ray display tubes with integral getter means.
  8. Casper Stephen L. (Boise ID) Lowrey Tyler A. (Boise ID), Flat panel display in which low-voltage row and column address signals control a much pixel activation voltage.
  9. Kochanski Gregory P. (Dunellen NJ), Flat panel field emission display apparatus.
  10. Travis Jonathan A. (Oak Ridge NJ) Woodard ; III Winfred L. (Midland Park NJ), Getter strip.
  11. Nakayama Akira (Tokyo JPX) Inoue Junichi (Ibaragi JPX) Yamamoto Masanobu (Kanagawa JPX), Image display device with cathode panel and gas absorbing getters.
  12. Greene Richard F. (Charlotte NC) Gray Henry F. (Alexandria VA), Low capacitance field emitter array and method of manufacture therefor.
  13. Jones Gary W. ; Ghosh Amalkumar P. ; Zimmerman Steven M. ; Anandan Munisamy, Matrix getter for residual gas in vacuum sealed panels.
  14. 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), Method of making a field emission device anode plate having an integrated getter.
  15. Kato Yumiko (Mesa AZ) Petersen Ronald O. (Phoenix AZ), Method of making an ultra-high vacuum field emission display.
  16. 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.
  17. 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.
  18. Spindt Charles A. (Menlo Park CA), Method of manufacturing an electric field producing structure including a field emission cathode.
  19. Sandrock Gary D. (Ringwood NJ) Woodward ; III Winfred L. (Midland Park NJ), Method of manufacturing tough and porous getters by means of hydrogen pulverization and getters produced thereby.
  20. Doan Trung T. (Boise ID) Lowrey Tyler A. (Boise ID) Cathey David A. (Boise ID) Rolfson J. Brett (Boise ID), Method to form self-aligned gate structures and focus rings.
  21. Doan Trung T. (Boise ID) Rolfson J. Brett (Boise ID) Lowrey Tyler A. (Boise ID) Cathey David A. (Boise ID), Method to form self-aligned gate structures around cold cathode emitter tips using chemical mechanical polishing technol.
  22. Boffito Claudio (Milan ITX) Barosi Aldo (Milan ITX) Figini Alessandro (Milan ITX), Non-evaporable ternary gettering alloy and method of use for the sorption of water, water vapor and other gases.
  23. Nagano Shinichirou (Hyogo JPX) Yamanaka Takashi (Hyogo JPX) Uchiyama Osamu (Hyogo JPX), Plasma display panel and a process for producing the same.
  24. Bratz V. David (Colorado Springs CO), Pumping tubulation getter.
  25. Giorgi Ettore (Milan ITX), Reinforced insulated heater getter device.
  26. Usuda Osamu (Tatsuno JPX), Semiconductor device having improved electrode pad structure.
  27. Wurtz Howard P. (Santa Barbara CA) Peterson Eugene W. (Santa Barbara CA), Vacuum gettering arrangement.

이 특허를 인용한 특허 (28)

  1. Rasmussen, Robert T., Black matrix for flat panel field emission displays.
  2. Rasmussen,Robert T., Black matrix for flat panel field emission displays.
  3. Farrar,Paul A.; Geusic,Joseph, Buried conductor patterns formed by surface transformation of empty spaces in solid state materials.
  4. Chen,Chien Hua; McKinnell,James C.; Liebeskind,John, Device having a getter structure and a photomask.
  5. Ramakrishnan, Ed Sundaram; Prakash, Shiva, Electronic device including an organic active layer and process for forming the electronic device.
  6. Forbes, Leonard, Gettering of silicon on insulator using relaxed silicon germanium epitaxial proximity layers.
  7. Forbes, Leonard, Gettering of silicon on insulator using relaxed silicon germanium epitaxial proximity layers.
  8. Forbes, Leonard; Geusic, Joseph E., Gettering using voids formed by surface transformation.
  9. Forbes, Leonard; Geusic, Joseph E., Gettering using voids formed by surface transformation.
  10. Forbes, Leonard; Geusic, Joseph E., Gettering using voids formed by surface transformation.
  11. Forbes,Leonard; Geusic,Joseph E., Gettering using voids formed by surface transformation.
  12. Mitsutoshi Hasegawa JP; Ihachiro Gofuku JP; Yasuhiro Hamamoto JP; Kazuya Shigeoka JP; Yutaka Arai JP, Image display apparatus and method for producing the same.
  13. 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.
  14. Hasegawa, Mitsutoshi; Gofuku, Ihachiro; Hamamoto, Yasuhiro; Shigeoka, Kazuya; Arai, Yutaka, Method for gettering an image display apparatus.
  15. Geusic,Joseph E.; Marsh,Eugene P., Method of forming mirrors by surface transformation of empty spaces in solid state materials.
  16. Geusic,Joseph E.; Marsh,Eugene P., Method of forming mirrors by surface transformation of empty spaces in solid state materials.
  17. Geusic,Joseph E.; Marsh,Eugene P., Method of forming mirrors by surface transformation of empty spaces in solid state materials and structures thereon.
  18. Anil Raj Duggal, Plastic substrates with improved barrier properties for devices sensitive to water and/or oxygen, such as organic electroluminescent devices.
  19. Forbes, Leonard, Semiconductor on insulator structure.
  20. Forbes,Leonard, Semiconductors bonded on glass substrates.
  21. Forbes,Leonard, Silicon oxycarbide substrates for bonded silicon on insulator.
  22. Forbes,Leonard, Strained Si/SiGe/SOI islands and processes of making same.
  23. Forbes,Leonard, Strained Si/SiGe/SOI islands and processes of making same.
  24. Forbes, Leonard; Geusic, Joseph E., Three-dimensional photonic crystal waveguide structure and method.
  25. Forbes,Leonard; Geusic,Joseph E., Three-dimensional photonic crystal waveguide structure and method.
  26. Forbes,Leonard, Ultra-thin semiconductors bonded on glass substrates.
  27. Forbes,Leonard, Ultra-thin semiconductors bonded on glass substrates.
  28. Forbes,Leonard, Wafer gettering using relaxed silicon germanium epitaxial proximity layers.
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