$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Display panel with electrically-controlled waveguide-routing 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G02F-001/295
  • G01N-033/543
출원번호 US-0494918 (2000-01-31)
발명자 / 주소
  • Bischel, William K.
  • Brinkman, Michael J.
  • Deacon, David A. G.
  • DeWath, Edward J.
  • Dyer, Mark J.
  • Field, Simon J.
출원인 / 주소
  • Gemfire Corporation
대리인 / 주소
    Wolfeld, Warren S.Haynes Beffel & Wolfeld LLP
인용정보 피인용 횟수 : 172  인용 특허 : 45

초록

A flat panel display is based on a new switching technology for routing laser light among a set of optical waveguides and coupling that light toward the viewer. The switching technology is based on poled electro-optical structures. The display technology is versatile enough to cover application area

대표청구항

A flat panel display is based on a new switching technology for routing laser light among a set of optical waveguides and coupling that light toward the viewer. The switching technology is based on poled electro-optical structures. The display technology is versatile enough to cover application area

이 특허에 인용된 특허 (45)

  1. Deacon David A. G. (Los Altos CA) Bischel William K. (Menlo Park CA) Brinkman Michael J. (Redwood City CA) Field Simon J. (Menlo Park CA), ATM switch with electrically-controlled waveguide-routing.
  2. Gross Daniel (Carouge CHX) Hewig Gert (Alzenau DEX) Dornhaus Ralf (Hammersbach DEX) Harmer Alan L. (Plan-les-Ouates CHX), Active flat-design video screen.
  3. Heller Michael J. (Encinitas CA) Tu Eugene (San Diego CA), Active programmable electronic devices for molecular biological analysis and diagnostics.
  4. Vo-Dinh Tuan, Advanced synchronous luminescence system for the detection of biological agents and infectious pathogens.
  5. Herron James N. (Salt Lake City UT) Christensen Douglas A. (Salt Lake City UT) Wang Hsu-Kun (Salt Lake City UT) Caldwell Karin D. (Salt Lake City UT) Janatova Vera (Prague CSX) Huang Shao-Chie (Salt , Apparatus and methods for multi-analyte homogeneous fluoro-immunoassays.
  6. Deacon David A. G. (Los Altos CA) Brinkman Michael J. (Redwood City CA) Bischel William K. (Menlo Park CA), Controllable beam director using poled structure.
  7. Green Mino (c/o Department of Electrical Engineering ; Imperial College of Science and Technology London GB2 SW7 2BT), Controllable optical waveguide.
  8. Bischel William K. ; Brinkman Michael J. ; Deacon David A. G. ; De Wath Edward J. ; Dyer Mark J. ; Field Simon J., Display architecture with waveguide routing and out-plane emission.
  9. Bischel William K. (Menlo Park CA) Brinkman Michael J. (Redwood City CA) Deacon David A. G. (Los Altos CA) DeWath Edward J. (Cupertino CA) Dyer Mark J. (San Jose CA) Field Simon J. (Menlo Park CA), Display panel with electrically-controlled waveguide-routing.
  10. Bischel William K. (Menlo Park CA) Brinkman Michael J. (Redwood City CA) Deacon David A. G. (Los Altos CA) DeWath Edward J. (Cupertino CA) Dyer Mark J. (San Jose CA) Field Simon J. (Menlo Park CA), Display panel with electrically-controlled waveguide-routing.
  11. Tarui Hisaki (Hirakata JPX) Matsuyama Takao (Neyagawa JPX) Nakamura Noboru (Hirakata JPX) Nakano Shoichi (Hirakata JPX) Kuwano Yukinori (Katano JPX), Flat display panel.
  12. Nelson Terence J. (New Providence NJ), Flat panel display utilizing leaky lightguides.
  13. Attridge John W. (Woking Surrey GBX), Fluorescent assay and sensor therefor.
  14. Delacourt Dominique (Paris FRX) Papuchon Michel (Villebon Palaiseau FRX) Lallier Eric (Levallois FRX) Armani Florence (Orsay FRX), Frequency doubler including an electrically controlled optical index network.
  15. Pollack Slava A. (Palos Verdes Estate CA), Full color upconversion display.
  16. Lindmayer Joseph (Potomac MD), Infrared sensing device outputting blue-green light.
  17. Bischel William K. ; Brinkman Michael J. ; Deacon David A. G. ; DeWath Edward J. ; Dyer Mark J. ; Field Simon J., Integrated optical device with phosphor in substrate pit.
  18. Kamatani Yasuo (2-12-2 Yokoyama Sagamihara-shi ; Kanagawa 229 JPX), Laser scanning apparatus with interactive optical signal transmitting unit.
  19. Murata Yasushi (Saitama JPX) Matsui Fumio (Saitama JPX), Luminescent screen.
  20. Soane David S. (Piedmont CA) Soane Zoya M. (Piedmont CA), Method and device for moving molecules by the application of a plurality of electrical fields.
  21. Deacon David A. G. (Los Altos CA) Brinkman Michael J. (Redwood City CA) Bischel William K. (Menlo Park CA), Method for controllable optical power splitting.
  22. Baker Anthony P. (New York NY), Method of fabricating a liquid crystal optical cross point switching matrix device.
  23. Paz-Pujalt Gustavo R. (Rochester NY) Chwalek James M. (Rochester NY) Hrycin Anna L. (Rochester NY) Chatterjee Dilip K. (Rochester NY) Hung Liang-Sun (Webster NY), Method of making a device for converting infrared radiation.
  24. Paz-Pujalt Gustavo R. (Rochester NY) Moon Charles R. (Rochester NY) Chwalek James M. (Rochester NY) Tuschel David D. (Rochester NY) Chatterjee Dilip K. (Rochester NY), Method of using multiwavelength upconversion for sample element interrogation in medical diagnostic equipment.
  25. Heller Michael J., Methods for electronic stringency control for molecular biological analysis and diagnostics.
  26. Heller Michael J. (Encinitas CA) Tu Eugene (San Diego CA) Butler William F. (Carlsbad CA), Molecular biological diagnostic systems including electrodes.
  27. Cook Thomas A. ; Slovacek Rudolf E. ; Love Walter F. ; Schulkind Richard L. ; Walczak Irene M., Multiple output referencing system for evanescent wave sensor.
  28. Slovacek Rudolf E. (Norfolk MA) Love Walter F. (Horseheads NY) Schulkind Richard L. (Sharon MA) Walczak Irene M. (Boston MA) Cook Thomas A. (Corning NY), Multiple output referencing system for evanescent wave sensor.
  29. Welch David F. (Palo Alto CA) Scifres Donald R. (San Jose CA) Waarts Robert G. (Palo Alto CA) Hardy Amos A. (Stanford CA) Mehuys David G. (Sunnyvale CA) O\Brien Stephen (Sunnyvale CA), NxN Optical crossbar switch matrix.
  30. Gillette Dean (Rumson NJ), Optical crosspoint switch having mode-conversion facilities.
  31. Nishimura Yukuo (Sagamihara JPX) Asano Toshiaki (Yokohama JPX) Mizusawa Nobutoshi (Yokohama JPX) Kawakami Eigo (Kawasaki JPX) Haruta Masahiro (Funabashi JPX) Noma Takashi (Tokyo JPX) Takagi Hiroshi (, Optical display utilizing thermally formed bubble in a liquid core waveguide.
  32. Deacon David A. G. (Los Altos CA) Brinkman Michael J. (Redwood City CA) Bischel William K. (Menlo Park CA) Field Simon J. (Menlo Park CA), Optical frequency channel selection filter with electronically-controlled grating structures.
  33. Brinkman Michael J. (Redwood City CA) Deacon David A. G. (Los Altos CA) Bischel William K. (Menlo Park CA) Field Simon J. (Menlo Park CA), Optical power splitter with electically-controlled switching structures.
  34. Brinkman Michael J. (Redwood City CA) Deacon David A. G. (Los Altos CA) Bischel William K. (Menlo Park CA) Field Simon J. (Menlo Park CA), Optical power splitter with electrically-controlled switching structures.
  35. Nishimoto Hiroshi (Tokyo JPX), Optical waveguide circuit with intersections.
  36. Rockwell ; III Marshall A. (303 Grenola St. Pacific Palisades CA 90272), Optical waveguide display system.
  37. Rockwell ; III Marshall A. (303 Grenola St. Pacific Palisades CA 90272), Optical waveguide display system.
  38. Bischel William K. ; Deacon David A.G. ; Cockroft Nigel J. ; Hehlen Markus P. ; Wagner David K. ; Tompane Richard B. ; Field Simon J., Optically integrating pixel microstructure.
  39. Bischel William K. ; Brinkman Michael J. ; Deacon David A. G. ; DeWath Edward J. ; Dyer Mark J. ; Field Simon J., Phosphor RE-radiation in integrated optics.
  40. Schumann, Hans-Joachim; hlschlager, Hans; Kampfer, Helmut, Photographic recording process.
  41. Lindmayer Joseph (Potomac MD), Photoluminescent materials for outputting yellow-green light.
  42. Yamazaki Kikuo (Kanagawa JPX) Kitada Akira (Kanagawa JPX), Radiation image converting material.
  43. Thomas Nils I. (Roanoke VA), Thin film phosphor screen structure.
  44. Herron James N. ; Christensen Douglas A. ; Caldwell Karin D. ; Janatova Vera,CZX ; Huang Shao-Chie ; Wang Hsu-Kun, Waveguide immunosensor with coating chemistry and providing enhanced sensitivity.
  45. McFarlane Ross A. (Thousand Oaks CA) Lui Mark (Thousand Oaks CA), Wavelength conversion waveguide and fabrication method.

이 특허를 인용한 특허 (172)

  1. Osterhout, Ralph F.; Haddick, John D.; Lohse, Robert Michael; Cella, Charles; Nortrup, Robert J.; Nortrup, Edward H., AR glasses with event and sensor triggered AR eyepiece interface to external devices.
  2. Osterhout, Ralph F.; Haddick, John D.; Lohse, Robert Michael; Cella, Charles; Nortrup, Robert J.; Nortrup, Edward H., AR glasses with event and sensor triggered control of AR eyepiece applications.
  3. Osterhout, Ralph F.; Haddick, John D.; Lohse, Robert Michael; Cella, Charles; Nortrup, Robert J.; Nortrup, Edward H., AR glasses with event and user action control of external applications.
  4. Pannell,Christopher N., Acoustic transducers having localized ferroelectric domain inverted regions.
  5. Hue, David, Adaptive optical filter for spectacle lenses.
  6. Haddick, John D.; Osterhout, Ralph F.; Lohse, Robert Michael, Adjustable extension for temple arm.
  7. Sampsell, Jeffrey B., Angle sweeping holographic illuminator.
  8. Hue, David; Fleury, Benoist, Anti-glare 3D glasses.
  9. Chui, Clarence; Kothari, Manish, Apparatus and system for writing data to electromechanical display elements.
  10. Popovich, Milan Momcilo; Waldern, Jonathan David, Contact image sensor using switchable bragg gratings.
  11. Sampsell, Jeffrey B.; Tyger, Karen; Mathew, Mithran, Controller and driver features for bi-stable display.
  12. Hue, David; Fleury, Benoist, Data-display glasses comprising an anti-glare screen.
  13. Hue, David; Fleury, Benoist, Data-display glasses comprising an anti-glare screen.
  14. Bita, Ion; Xu, Gang; Wang, Lai; Mienko, Marek; Gruhlke, Russell Wayne, Decoupled holographic film and diffuser.
  15. Bita, Ion; Xu, Gang; Wang, Lai; Mienko, Marek; Gruhlke, Russell Wayne, Decoupled holographic film and diffuser.
  16. Gally, Brian J.; Cummings, William J., Device and method for wavelength filtering.
  17. Miles, Mark W., Device for modulating light with multiple electrodes.
  18. Fleury, Benoist, Device for nighttime motor vehicle driving assistance.
  19. Fleury, Benoist, Device for nighttime motor vehicle driving assistance.
  20. Bita, Ion; Xu, Gang; Mienko, Marek; Wang, Lai; Gruhlke, Russell W., Devices and methods for enhancing brightness of displays using angle conversion layers.
  21. Gruhlke, Russell Wayne; Gally, Brian James; Mienko, Marek; Bita, Ion; Xu, Gang, Display device having front illuminator with turning features.
  22. Gruhlke, Russell Wayne; Bita, Ion; Mienko, Marek; Xu, Gang, Display device with diffractive optics.
  23. Miles, Mark W., Display devices comprising of interferometric modulator and sensor.
  24. Martin, Russel Allyn; Aflatooni, Koorosh, Display having an embedded microlens array.
  25. Hwang, Cha-Won; Lee, Sang-Mi, Display panel and optical filter which control transmittance color and reflection color.
  26. Kothari, Manish; Khazeni, Kasra, Display with integrated photovoltaic device.
  27. Kothari, Manish; Khazeni, Kasra, Display with integrated photovoltaic device.
  28. Hue, David; El Idrissi, Hafid; Monchy, Etienne, Driving assistance method and device.
  29. Sampsell, Jeffrey B.; Gruhlke, Russell W.; Mienko, Mark; Xu, Gang; Bita, Ion, Dual film light guide for illuminating displays.
  30. Hong, John H.; Ma, Jian J.; Lee, Chong U.; Chang, Tallis Y.; Yun, Jay C.; Daley, Robert Sean; Kim, Frederick D., Dynamic zone plate augmented vision eyeglasses.
  31. Lipson, Michal; Schmidt, Bradley; Pradhan, Sameer; Xu, Qianfan, Electro-optic modulation.
  32. Sato, Masahiro, Electro-optic modulator.
  33. Sato,Masahiro, Electro-optic modulator with particular diffused buffer layer.
  34. Osterhout, Ralph F.; Haddick, John D.; Lohse, Robert Michael; Border, John N.; Miller, Gregory D.; Stovall, Ross W., Eyepiece with uniformly illuminated reflective display.
  35. Bita, Ion; Xu, Gang; Narayanan, Kollengode S.; Gruhlke, Russell W.; Mienko, Marek; Wang, Lai, Front light devices and methods of fabrication thereof.
  36. Miller, Gregory D.; Border, John N.; Osterhout, Ralph F., Grating in a light transmissive illumination system for see-through near-eye display glasses.
  37. Dougherty, David J.; Kissa, Karl, High confinement waveguide on an electro-optic substrate.
  38. Gruhlke, Russell Wayne; Martin, Russel Allyn, Holographic brightness enhancement film.
  39. Bita, Ion; Xu, Gang, Illumination apparatus and methods.
  40. Meir, Noam; Fine, Eran, Illumination apparatus and methods of forming the same.
  41. Meir, Noam; Fine, Eran, Illumination apparatus and methods of forming the same.
  42. Shani, Yosi; Arbiv, Dafna B.; Schiffmann, Baruch; Badihi, Avner; Fine, Eran; Segal, Gadi, Illumination apparatus confining light by total internal reflection and methods of forming the same.
  43. Shani, Yosi; Fine, Eran; Schiffmann, Baruch; Arbiv, Dafna B.; Badihi, Avner; Segal, Gadi, Illumination apparatus confining light by total internal reflection and methods of forming the same.
  44. Shani, Yosi; Fine, Eran; Schiffmann, Baruch; Arbiv, Dafna Bortman; Badihi, Avner, Illumination apparatus confining light by total internal reflection and methods of forming the same.
  45. Bita, Ion; Mienko, Marek; Xu, Gang; Gruhlke, Russell W., Illumination device with built-in light coupler.
  46. Bita, Ion; Patel, Sapna; Chan, Clayton Ka Tsun; Ganti, SuryaPrakash; Arbuckle, Brian W., Illumination devices and methods of fabrication thereof.
  47. Bita, Ion; Patel, Sapna; Chan, Clayton Ka Tsun; Ganti, SuryaPrakash; Arbuckle, Brian W., Illumination devices and methods of fabrication thereof.
  48. Wang, Chia-Jean; Amirparviz, Babak, Image waveguide with mirror arrays.
  49. Wang, Chia-Jean; Amirparviz, Babak, Image waveguide with mirror arrays.
  50. Trezza, John, Integrated arrays of modulators and lasers on electronics.
  51. Trezza,John, Integrated arrays of modulators and lasers on electronics.
  52. Gally, Brian J.; Xu, Gang; Bita, Ion; Mienko, Marek; Gruhlke, Russell, Integrated front light diffuser for reflective displays.
  53. Mienko, Marek; Xu, Gang; Bita, Ion; Wang, Lai; Gruhlke, Russell W., Integrated front light solution.
  54. Sampsell, Jeffrey B., Integrated modulator illumination.
  55. Nir,David, Integrated optical switching device.
  56. Lasiter, Jon Bradley, Interconnect structure for MEMS device.
  57. Miles,Mark W., Interferometric modulation of radiation.
  58. Xu, Gang; Lewis, Alan; Gally, Brian; Mienko, Mark, Internal optical isolation structure for integrated front or back lighting.
  59. Xu, Gang; Lewis, Alan; Gally, Brian; Mienko, Mark, Internal optical isolation structure for integrated front or back lighting.
  60. Van Brocklin,Andrew L.; Anderson,Daryl E., Large area display and method of manufacturing same.
  61. Border, John N.; Bietry, Joseph; Haddick, John D.; Lohse, Robert Michael, Light control in head mounted displays.
  62. Deladurantaye, Pascal; Cournoyer, Alain; Taillon, Yves; Petit, Stéphane; Deladurantaye, Marc, Light coupling between a light source and an optical waveguide.
  63. Chui, Clarence, Light guide including optical scattering elements and a method of manufacture.
  64. Wang, Lai; Burstedt, Douglas Carl; Narayanan, Kollengode S.; Li, Kebin; Bita, Ion; Mienko, Marek; Gruhlke, Russell Wayne, Light guide with diffusive light input interface.
  65. Gruhlke, Russell Wayne; Mienko, Marek, Light with bi-directional propagation.
  66. Sampsell, Jeffrey B., Linear solid state illuminator.
  67. Lewis, Alan G.; Mignard, Marc Maurice; Chui, Clarence; Van Lier, Wilhelmus Johannes Robertus; Todorovich, Mark M.; Cummings, William, Low voltage driver scheme for interferometric modulators.
  68. Osterhout, Ralph F.; Lohse, Robert Michael, Method and apparatus for biometric data capture.
  69. Popovich, Milan Momcilo; Waldern, Jonathan David, Method and apparatus for contact image sensing.
  70. Wang, Chun Ming; Tung, Ming Hau; Ganti, Surya Prakash, Method and apparatus for providing back-lighting in an interferometric modulator display device.
  71. Mignard, Marc, Method and apparatus for providing brightness control in an interferometric modulator (IMOD) display.
  72. Mignard, Marc, Method and apparatus for providing brightness control in an interferometric modulator (IMOD) display.
  73. Jones,Richard, Method and apparatus providing an output coupler for an optical beam.
  74. Jones,Richard, Method and apparatus providing an output coupler for an optical beam.
  75. Jones,Richard, Method and apparatus providing an output coupler for an optical beam.
  76. Kothari, Manish, Method and device for compensating for color shift as a function of angle of view.
  77. Kothari, Manish, Method and device for compensating for color shift as a function of angle of view.
  78. Miles, Mark W., Method and device for modulating light.
  79. Miles, Mark W., Method and device for modulating light.
  80. Miles, Mark W., Method and device for modulating light.
  81. Miles,Mark W., Method and device for modulating light.
  82. Miles, Mark W., Method and device for modulating light with multiple electrodes.
  83. Liu, Jian; Djordjev, Kostadin; Mignard, Marc Maurice, Method and structure capable of changing color saturation.
  84. Miles, Mark W., Method and system for interferometric modulation in projection or peripheral devices.
  85. Miles, Mark W., Method and system for interferometric modulation in projection or peripheral devices.
  86. Chui, Clarence; Kothari, Manish, Method and system for writing data to MEMS display elements.
  87. Chui, Clarence; Kothari, Manish, Method and system for writing data to MEMS display elements.
  88. Chui, Clarence; Kothari, Manish, Method and system for writing data to MEMS display elements.
  89. Chui, Clarence; Kothari, Manish, Method and system for writing data to electromechanical display elements.
  90. Johs, Blaine D.; Hale, Jeffrey S., Method of determining substrate etch depth.
  91. Sutherland, Ying; Sutherland, Fraser William Havern, Method of performing a minimally-invasive intervention.
  92. Sampsell, Jeffrey B., Methods and devices for lighting displays.
  93. Kornilovich, Pavel; Cumbie, Michael W., Modulated signal resonators.
  94. Miles, Mark W., Moveable micro-electromechanical device.
  95. Gollier, Jacques; Harris, James Micheal, Multi-component wavelength conversion devices and lasers incorporating the same.
  96. Tsuda, Hiroyuki; Yasumoto, Mitsuhiro, Multimode interference waveguide type optical switch.
  97. Nguyen, Ian A.; Levola, Tapani; Bohn, David D., NED polarization system for wavelength pass-through.
  98. Ishii, Akira; Tanaka, Takehito; Doi, Masaharu; Hasegawa, Tetsu, Optical device.
  99. Ishii, Akira; Tanaka, Takehito; Doi, Masaharu; Hasegawa, Tetsu, Optical device.
  100. Ishii, Akira; Tanaka, Takehito; Doi, Masaharu; Hasegawa, Tetsu, Optical device.
  101. Gally, Brian J.; Cummings, William J., Optical films for controlling angular characteristics of displays.
  102. Karras, Thomas W., Optical focal plane data coupler.
  103. Miller, Gregory D.; Border, John N.; Osterhout, Ralph F., Optical imperfections in a light transmissive illumination system for see-through near-eye display glasses.
  104. Hu, Hung-Lieh; Lee, Chun-Hsing; Yeh, Jen-Hao; Huang, Sheng-Ho; Chen, Yuan-Ching; Huang, Yu-Ming, Optical interactive panel and display system with optical interactive panel.
  105. Kondo,Takayuki, Optical interconnection circuit between chips, electrooptical device and electronic equipment.
  106. Lin, Wen-Jian, Optical interference type of color display having optical diffusion layer between substrate and electrode.
  107. Lin,Wen Jian, Optical interference type of color display having optical diffusion layer between substrate and electrode.
  108. Bita, Ion; Xu, Gang; Mienko, Marek; Gruhlke, Russell W., Optical loss structure integrated in an illumination apparatus.
  109. Van Ostrand, Daniel K.; King, Carey; Gobeli, Garth, Optical microstructures for light extraction and control.
  110. Van Ostrand, Daniel K.; King, Carey; Gobeli, Garth, Optical microstructures for light extraction and control.
  111. Van Ostrand,Dan; King,Carey; Gobell,Garth, Optical microstructures for light extraction and control.
  112. Shin, Dong-jae; Na, Kyoung-won; Suh, Sung-dong; Ha, Kyoung-ho; Kim, Seong-gu; Ji, Ho-chul; Joe, In-sung; Bok, Jin-kwon; Kang, Pil-kyu, Optical modulator formed on bulk-silicon substrate.
  113. Russo, Peter N.; Jew, Jeffrey L.; Moffitt, Paul R., Optical phased array using stacked parallel plate wave guides and method of fabricating arrays of stacked parallel plate waveguides.
  114. Yoshida, Kazuki, Optical position detecting device and display device with position detecting function.
  115. Yoshida, Kazuki, Optical position detecting device and display device with position detecting function.
  116. Nunoya,Nobuhiro; Shibata,Yasuo; Fujiwara,Naoki; Kikuchi,Nobuhiro; Tomori,Yuichi, Optical semiconductor device and optical semiconductor integrated circuit.
  117. Nunoya,Nobuhiro; Shibata,Yasuo; Fujiwara,Naoki; Kikuchi,Nobuhiro; Tomori,Yuichi, Optical semiconductor device and optical semiconductor integrated circuit.
  118. Sutherland, Ying; Sutherland, Fraser William Havern; Targell, John, Optical switch.
  119. Hong, John; Ma, Jian; Lee, Chong; Chang, Tallis; Yun, Jay; Daley, Robert Sean; Kim, Frederick, Optics display system with dynamic zone plate capability.
  120. Dudoff, Greg; Trezza, John, Opto-electronic device integration.
  121. Dudoff, Greg; Trezza, John, Opto-electronic device integration.
  122. Dudoff, Greg; Trezza, John, Opto-electronic device integration.
  123. Dudoff, Greg; Trezza, John, Opto-electronic device integration.
  124. Ho, Seng-Tiong; Yi, Fei; Marks, Tobin J., Organic electro-optic modulators with transparent conducting electrodes and related device structures.
  125. Ho, Seng-Tiong; Yi, Fei; Marks, Tobin J., Organic electro-optic modulators with transparent conducting electrodes and related device structures.
  126. Ho, Seng-Tiong; Yi, Fei; Marks, Tobin J., Organic electro-optic modulators with transparent conducting electrodes and related device structures.
  127. Miles,Mark W., Photonic MEMS and structures.
  128. Shani, Yosi; Kosoburd, Tania; Badehi, Pierre Avner; Bortman-Arbiv, Dafna; Segal, Gadi; Mishustin, Inna; Malyanker, Yigal, Planar remote phosphor illumination apparatus.
  129. Meir, Noam; Fine, Eran, Planar white illumination apparatus.
  130. Meir, Noam; Fine, Eran, Planar white illumination apparatus.
  131. Keszler, Douglas A.; Wang, Wei, Process to form aqueous precursor and aluminum oxide film.
  132. Trezza, John, Redundant optical device array.
  133. Sutherland, Ying; Sutherland, Fraser William Havern, Retractor.
  134. Miller, Gregory D., See-through display with an optical assembly including a wedge-shaped illumination system.
  135. Border, John N.; Bietry, Joseph; Osterhout, Ralph F., See-through near-eye display glasses including a curved polarizing film in the image source, a partially reflective, partially transmitting optical element and an optically flat film.
  136. Border, John N.; Haddick, John D.; Lohse, Robert Michael; Osterhout, Ralph F., See-through near-eye display glasses including a modular image source.
  137. Border, John N.; Haddick, John D.; Osterhout, Ralph F., See-through near-eye display glasses including a partially reflective, partially transmitting optical element.
  138. Border, John N.; Osterhout, Ralph F., See-through near-eye display glasses including an auto-brightness control for the display brightness based on the brightness in the environment.
  139. Border, John N.; Bietry, Joseph; Osterhout, Ralph F., See-through near-eye display glasses wherein image light is transmitted to and reflected from an optically flat film.
  140. Border, John N.; Osterhout, Ralph F., See-through near-eye display glasses with a fast response photochromic film system for quick transition from dark to clear.
  141. Border, John N.; Haddick, John D.; Osterhout, Ralph F., See-through near-eye display glasses with a light transmissive wedge shaped illumination system.
  142. Border, John N.; Haddick, John D.; Osterhout, Ralph F., See-through near-eye display glasses with a small scale image source.
  143. Border, John N.; Haddick, John D.; Osterhout, Ralph F., See-through near-eye display glasses with a small scale image source.
  144. Border, John N.; Haddick, John D.; Lohse, Robert Michael; Osterhout, Ralph F., See-through near-eye display glasses with the optical assembly including absorptive polarizers or anti-reflective coatings to reduce stray light.
  145. Sampsell, Jeffrey Brian; Miles, Mark W.; Chui, Clarence; Kothari, Manish, Separable modulator.
  146. Sampsell,Jeffrey Brian; Miles,Mark W.; Chui,Clarence; Kothari,Manish, Separable modulator.
  147. Baar, Kenneth W., Shaped frontlight reflector for use with display.
  148. Shani, Yosi, Slim waveguide coupling apparatus and method.
  149. Shani, Yosi; Kosburd, Tania; Arbiv, Dafna Bortman, Slim waveguide coupling apparatus and method.
  150. Chui, Clarence; Sampsell, Jeffrey B.; Cummings, William J.; Tung, Ming-Hau, Spatial light modulator with integrated optical compensation structure.
  151. Chui, Clarence; Sampsell, Jeffrey B.; Cummings, William J.; Tung, Ming-Hau, Spatial light modulator with integrated optical compensation structure.
  152. Chui, Clarence; Sampsell, Jeffrey B.; Cummings, William J.; Tung, Ming-Hau, Spatial light modulator with integrated optical compensation structure.
  153. Zimmermann, Micha; Meir, Noam, Sub-assembly and methods for forming the same.
  154. Hamamoto, Kiichi, Super-luminescent light emitting diode.
  155. Sutherland, Ying; Sutherland, Fraser William Havern; Targell, John, Surgical retractor.
  156. Haddick, John D.; Osterhout, Ralph F., System and method for delivering content to a group of see-through near eye display eyepieces.
  157. Bita, Ion; Xu, Gang; Mienko, Mark; Gruhlke, Russell Wayne, System and method for reducing visual artifacts in displays.
  158. Haddick, John D.; Osterhout, Ralph F.; Lohse, Robert Michael, System and method for social networking gaming with an augmented reality.
  159. Sampsell, Jeffrey B., System and method of reducing color shift in a display.
  160. Sampsell, Jeffrey B.; Tyger, Karen; Mathew, Mithran, System with server based control of client device display features.
  161. Gruhike, Russell Wayne; Mienko, Mark; Xu, Gang; Bita, Ion, Systems and methods of providing a light guiding layer.
  162. Gruhike, Russell Wayne; Mienko, Mark; Xu, Gang; Bita, Ion, Systems and methods of providing a light guiding layer.
  163. Chui, Clarence, Systems and methods using interferometric optical modulators and diffusers.
  164. Tsai, Chien-Chung; Hsu, Kuang-Yu; Lin, Yen-Sheng; Huang, Sheng-Lung, Three-dimensional optical coherence tomography confocal imaging apparatus.
  165. Faska, Tom; Dudoff, Greg, Topside active optical device apparatus and method.
  166. Jensen, Jørgen Korsgaard, Touch-sensitive device and method for detection of touch.
  167. Rausch, Tim, Transducer assembly for thermally assisted writing and read back in data storage devices.
  168. Tseng, Ling-Yuan; Liao, Cheng-Hsing; Kusada, Atsuo, Tunable liquid crystal lens module.
  169. Park,Sahng Gi; Park,Moon Ho; Lee,Ji Myon; Oh,Su Hwan; Kim,Kyong Hon, Tunable semiconductor laser and method thereof.
  170. Meir, Noam; Fine, Eran, Waveguide sheet containing in-coupling, propagation, and out-coupling regions.
  171. Amirparviz, Babak, Waveguide with embedded mirrors.
  172. Tani, Minori; Asai, Keiichiro; Yamaguchi, Shoichiro, Wavelength converting devices.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로