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Input device which allows button input operation and coordinate input operation to be performed in the same operation plane 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G09G-005/00
  • G06K-011/06
출원번호 US-0922110 (2001-08-03)
우선권정보 JP-0243779 (2000-08-11)
발명자 / 주소
  • Kato, Katsumi
  • Hagiwara, Yasuji
  • Soma, Masahiro
  • Sato, Tadamitsu
출원인 / 주소
  • Alps Electric Co., Ltd.
대리인 / 주소
    Brinks Hofer Gilson & Lione
인용정보 피인용 횟수 : 108  인용 특허 : 5

초록

An input device includes a pressure-sensitive or capacitive planar input unit with an indicator sheet which has input sections being secured to the surface of the planar input unit. A tactile feedback generator is provided at the back side of the planar input unit. The tactile feedback generator inc

대표청구항

An input device includes a pressure-sensitive or capacitive planar input unit with an indicator sheet which has input sections being secured to the surface of the planar input unit. A tactile feedback generator is provided at the back side of the planar input unit. The tactile feedback generator inc

이 특허에 인용된 특허 (5)

  1. Blankenship Joseph H. ; Rush ; Jr. Ronald A., Detachable convertible mouse-trackball pointing device for use with a computer.
  2. Fujita Toshihiro,JPX ; Okamoto Akito,JPX ; Shioji Takuya,JPX ; Inaoka Keisuke,JPX ; Nishiki Tomonori,JPX ; Kawakami Masahiko,JPX, Display unit with touch panel.
  3. Louis B. Rosenberg ; James R. Riegel, Haptic feedback for touchpads and other touch controls.
  4. Molne Anders L., Touch-sensitive panel with selector.
  5. Jukka Sirola FI; Tapani Jokinen FI, Wireless communication device and a method of manufacturing a wireless communication device.

이 특허를 인용한 특허 (108)

  1. Walsh, Paul; Klein, Hans W.; O'Donoghue, Keith; Anderson, Erik; Hancioglu, Erhan; Rohilla, Gajender, Active integrator for a capacitive sense array.
  2. Wright, David G.; Grivna, Edward L.; Sartore, Ronald H., Apparatus and method for detecting a touch-sensor pad gesture.
  3. Qin, Zheng; Peng, Tao, Apparatus and method for recognizing a gesture on a sensing device.
  4. Peng, Tao; Qin, Zheng, Apparatus and method for recognizing a tap gesture on a touch sensing device.
  5. Peng, Tao; Qin, Zheng, Apparatus and method for recognizing a tap gesture on a touch sensing device.
  6. Peng, Tao; Qin, Zheng, Apparatus and method for recognizing a tap gesture on a touch sensing device.
  7. Peng, Tao; Qin, Zheng, Apparatus and method for reducing average scan rate to detect a conductive object on a sensing device.
  8. Peng, Tao; Qin, Zheng, Apparatus and method for reducing average scan rate to detect a conductive object on a sensing device.
  9. Peng, Tao; Qin, Zheng, Apparatus and method for reducing average scan rate to detect a conductive object on a sensing device.
  10. GuangHai, Li, Apparatus for detecting conductive material of a pad layer of a sensing device.
  11. Marwah, Rahul; Shaw, Timothy C.; Lane, David M.; Whitt, III, David Otto; Kim, Young Soo; Ishihara, James Alec; Emerton, Neil; Longo, Sheila A., Backlighting a fabric enclosure of a flexible cover.
  12. XiaoPing, Jiang; GuangHai, Li, Bidirectional slider with delete function.
  13. Hua, Liu; XiaoPing, Jiang, Capacitance sensing matrix for keyboard architecture.
  14. Hua, Liu; XiaoPing, Jiang, Capacitance sensing matrix for keyboard architecture.
  15. Kremin, Viktor, Capacitance to code converter with sigma-delta modulator.
  16. Kremin, Viktor, Capacitance to code converter with sigma-delta modulator.
  17. Kremin, Viktor, Capacitance to code converter with sigma-delta modulator.
  18. Maharyta, Andriy; Kremin, Viktor, Capacitance to frequency converter.
  19. Maharyta, Andriy; Kremin, Viktor, Capacitance to frequency converter.
  20. Sato, Tadamitsu, Capacitive coordinate detection device.
  21. Kremin, Viktor; Ryshtun, Andriy, Capacitive field sensor with sigma-delta modulator.
  22. Ryshtun, Andriy; Kremin, Victor, Capacitive field sensor with sigma-delta modulator.
  23. Ono,Shuzo, Capacitive input device.
  24. Bolender, Robert J.; Rubenson, Benjamin C., Capacitive sensing device for use in a keypad assembly.
  25. Tanemura, Tetsuo, Capacitive sensing using non-integer excitation.
  26. Makovetskyy, Mykhailo, Capacitive-matrix keyboard with multiple touch detection.
  27. Maharita, Andrey, Charge accumulation capacitance sensor with linear transfer characteristic.
  28. Lutz, III, Moshe R.; Dietz, Paul Henry, Classifying the intent of user input.
  29. Perek, David R.; Schwager, Michael A.; Drasnin, Sharon; Seilstad, Mark J., Computing device and an apparatus having sensors configured for measuring spatial information indicative of a position of the computing devices.
  30. Villain, Jean-Christophe, Control device comprising a movable upper panel for actuating a switching breaker.
  31. Philipp,Harald, Control panel.
  32. Jung, James; Han, Sang Chul, Depressable touch sensor.
  33. Grivna, Edward L.; Konstas, Jason; Brasek, Carl, Detecting multiple simultaneous touches on a touch-sensor device.
  34. Li, Guanghai, Discriminating among activation of multiple buttons.
  35. Li, Guanghai, Discriminating among activation of multiple buttons.
  36. Grivna, Edward L.; Wright, David G.; Sartore, Ronald H., Feedback mechanism for user detection of reference location on a sensing device.
  37. Grivna, Edward L.; Wright, David G.; Sartore, Ronald H., Feedback mechanism for user detection of reference location on a sensing device.
  38. Grivna, Edward L.; Wright, David G.; Sartore, Ronald H., Feedback mechanism for user detection of reference location on a sensing device.
  39. Whitt, III, David Otto; Wahl, Eric Joseph; Vandervoort, David C.; Pleake, Todd David; Huala, Rob; Schneider, Summer L.; McLaughlin, Robyn Rebecca Reed; Mickelson, Matthew David; Pelley, Joel Lawrence; Shaw, Timothy C.; Groene, Ralf; Wang, Hua; Stoumbos, Christopher Harry; Aagaard, Karsten, Flexible hinge and removable attachment.
  40. McCormack, Mark Thomas; Master, Raj N.; Lane, Michael Joseph; Darbha, Krishna; Groene, Ralf; Ishihara, James Alec; Fischer, Joshua James, Graphic formation via material ablation.
  41. Siddiqui, Kabir; Groene, Ralf; Aagaard, Karsten; Reed, Anthony Christian; Cummings, Stephan Alexander; Jensen, Darryl I.; Gault, Joseph B., Hinge for component attachment.
  42. Sato, Tadamitsu, Image-processing apparatus.
  43. Sato,Tadamitsu; Kato,Katsumi; Hagiwara,Yasuji; Soma,Masahiro, Input apparatus for performing input operation corresponding to indication marks and coordinate input operation on the same operational plane.
  44. Inoue, Takefumi; Tatehata, Naoki, Input device.
  45. Sato,Tadamitsu; Itoh,Akihisa; Shigetaka,Hiroshi, Input device capable of button input and coordinate input on the same operating surface.
  46. Soma, Masahiro, Input device having coordinate-inputting unit and switching unit.
  47. Kato, Katsumi; Hagiwara, Yasuji; Soma, Masahiro; Sato, Tadamitsu, Input device which allows button input operation and coordinate input operation to be performed in the same operation plane.
  48. Hsieh, Lin-Hsiang, Input device with transmission element actuated switch.
  49. Sato,Tadamitsu, Inputting method and device with a flat input having sensor capable of coordinate touch input wherein display is switchable based on touch pressure.
  50. Baumbach, Jason G., Integrated button activation sensing and proximity sensing.
  51. Baumbach, Jason G., Integrated normal sensing and proximity sensing on a multi-dimensional sensor array.
  52. Honmatsu, Yoshifumi; Takeda, Yasunori; Nakanishi, Yutaka, Key sheet.
  53. Hua, Liu; Jiang, XiaoPing, Low pin count solution using capacitance sensing matrix for keyboard architecture.
  54. Khazeni, Kasra; Berget, Damien; Reynolds, Joseph Kurth, Method and apparatus for improving capacitive sensing detection.
  55. Whitt, III, David Otto; Mickelson, Matthew David; Pelley, Joel Lawrence; Teredesai, Amey M.; Shaw, Timothy Carlyle; Beall, Christopher Strickland; Stoumbos, Christopher Harry, Method of manufacturing an input device.
  56. Mahartya, Andriy, Methods and circuits for measuring mutual and self capacitance.
  57. Maharyta, Andriy, Methods and circuits for measuring mutual and self capacitance.
  58. Maharyta, Andriy, Methods and circuits for measuring mutual and self capacitance.
  59. Maharyta, Andriy, Methods and circuits for measuring mutual and self capacitance.
  60. Maharyta, Andriy, Methods and circuits for measuring mutual and self capacitance.
  61. Reynolds, J. Kurth, Methods and systems for detecting a position-based attribute of an object using digital codes.
  62. Reynolds, J. Kurth, Methods and systems for detecting a position-based attribute of an object using digital codes.
  63. Reynolds, J. Kurth, Methods and systems for detecting a position-based attribute of an object using digital codes.
  64. Reynolds, J. Kurth, Methods and systems for detecting a position-based attribute of an object using digital codes.
  65. Reynolds, J. Kurth, Methods and systems for detecting a position-based attribute of an object using digital codes.
  66. Reynolds, J. Kurth, Methods and systems for detecting a position-based attribute of an object using digital codes.
  67. Reynolds, J. Kurth, Methods and systems for detecting a position-based attribute of an object using digital codes.
  68. Day, Shawn P., Methods and systems for implementing modal changes in a device in response to proximity and force indications.
  69. Day, Shawn P., Methods and systems for implementing modal changes in a device in response to proximity and force indications.
  70. Lee, Yun Sun; Hsu, Chin Feng, Multi-action capacitive switch and methods of use.
  71. XiaoPing, Jiang, Multi-function slider in touchpad.
  72. Kremin, Viktor; Maharita, Andriy, Multi-functional capacitance sensing circuit with a current conveyor.
  73. Kremin, Viktor; Maharyta, Andriy, Multi-mode capacitive sensing device and method with current conveyor.
  74. Whitt, III, David Otto; Wahl, Eric Joseph; Vandervoort, David C.; Pleake, Todd David; Huala, Rob; Schneider, Summer L.; McLaughlin, Robyn Rebecca Reed; Mickelson, Matthew David; Pelley, Joel Lawrence; Shaw, Timothy C.; Groene, Ralf; Wang, Hua; Stoumbos, Christopher Harry; Aagaard, Karsten, Multiple position input device cover.
  75. Whitt, III, David Otto; Wahl, Eric Joseph; Vandervoort, David C.; Pleake, Todd David; Huala, Rob; Schneider, Summer L.; McLaughlin, Robyn Rebecca Reed; Mickelson, Matthew David; Pelley, Joel Lawrence; Shaw, Timothy Caryle; Groene, Ralf; Wang, Hua; Stoumbos, Christopher Harry; Aagaard, Karsten, Multiple position input device cover.
  76. Fuller, Thomas; Peterson, Jon; Tsui, Ted; Park (Tony Park), Seok Pyong, Multiple touch detection.
  77. Park, Seok-Pyong; Seguine, Ryan D., Multiple touch detection.
  78. Soma,Masahiro; Takata,Masahiro, Multistep switch having capacitive type sensor.
  79. Wright, David G.; Kolokowsky, Steven; Grivna, Edward L., Predictive touch surface scanning.
  80. Bruwer, Frederick Johannes, Pressure dependent capacitive sensing circuit switch construction.
  81. Shaw, Timothy C.; Belesiu, Jim Tom; Dietz, Paul Henry; Stoumbos, Christopher Harry; Mathias, Dennis J., Pressure sensitive key normalization.
  82. Shaw, Timothy Carlyle; Belesiu, Jim Tom; Dietz, Paul Henry; Stoumbos, Christopher Harry; Mathias, Dennis J., Pressure sensitive key normalization.
  83. Peng, Tao; Li, Guanghai, Preventing unintentional activation of a touch-sensor button caused by a presence of conductive liquid on the touch-sensor button.
  84. Walsh, Paul; Zhang, Zheyao; Kremin, Viktor, Receive demodulator for capacitive sensing.
  85. Walsh, Paul; Zhang, Zheyao; Kremin, Viktor, Receive demodulator for capacitive sensing.
  86. Wright, David G., Reducing sleep current in a capacitance sensing system.
  87. Wright, David G., Reducing sleep current in a capacitance sensing system.
  88. Yodfat, Ofer; Neta, Avraham; Haim-Langford, Daphine, Remote control for drug infusion pump.
  89. XiaoPing, Jiang; Hua, Liu, Sensing device.
  90. Roberson, Jeremy; Schwartz, Adam, Sensor device and method for estimating noise in a capacitive sensing device.
  91. Qin, Zheng; Peng, Tao, Setting a discharge rate and a charge rate of a relaxation oscillator circuit.
  92. Beck, Douglas; Schoepflin, Todd; Goh, Chun Beng; Strande, Hakon; Xue, Raymond Cheng Hui, Shifted lens camera for mobile computing devices.
  93. Drasnin, Sharon, System and method for accessory device architecture that passes via intermediate processor a descriptor when processing in a low power state.
  94. Hargreaves, Kirk; Schwartz, Adam; Reynolds, Joseph Kurth; Washburn, Clyde, System and method for signaling in sensor devices.
  95. Hirshberg, David, System and method for user interface.
  96. Moyal, Nathan; Olson, Dana, System and method to measure capacitance of capacitive sensor array.
  97. Schwartz, Adam, Systems and methods for determining user input using simultaneous transmission from multiple electrodes.
  98. Roberson, Jeremy; Schwartz, Adam, Systems and methods for sensor devices having a non-commensurate number of transmitter electrodes.
  99. Washburn, Clyde; Bohannon, Eric; Knausz, Imre; Hargreaves, Kirk, Systems and methods for signaling and interference detection in sensor devices.
  100. Washburn, Clyde; Bohannon, Eric; Knausz, Imre; Hargreaves, Kirk, Systems and methods for signaling and interference detection in sensor devices.
  101. Karpin, Oleksandr; Hutnyk, Volodymyr, Touch identification for multi-touch technology.
  102. Peterson, Jonathan R.; Birch, Robert Michael, Touch sensing.
  103. Peterson, Jonathan; Birch, Robert, Touch sensing.
  104. Caldwell,David W., Touch sensor with integrated decoration.
  105. Peng, Tao; Qin, Zheng, Touch-sensor with shared capacitive sensors.
  106. Wright, David G., Two circuit board touch-sensor device.
  107. Panay, Panos C.; Drasnin, Sharon; McCormack, Michael D.; Inman, John E.; Seixeiro, Steve; Reed, Anthony Christian; Groene, Ralf; Johnson, Jeffrey Jay, User experience adaptation.
  108. Ostrovsky, Michael; Lombardi, Alfred; Tansi Glickman, Selin; Samartano, Cheryl, Wall mounted programmable timer system.
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