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Integrated circuit for a chemical-selective sensor with voltage output 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01L-027/04
출원번호 US-0742721 (1985-06-07)
발명자 / 주소
  • Brown Richard B. (Salt Lake City UT)
출원인 / 주소
  • University of Utah (Salt Lake City UT 02)
인용정보 피인용 횟수 : 148  인용 특허 : 0

초록

An integrated circuit for a miniaturized solid-state chemical sensor. The integrated circuit includes a chemical-selective membrane which provides an electric signal in response to contact with a particular chemical or group of chemicals in a fluid. The chemical-selective membrane is attached to the

대표청구항

An integrated circuit for a miniaturized solid-state chemical sensor, said integrated circuit comprising: a semiconductor substrate; a plurality of layers formed on said substrate so as to define a plurality of transistors configured as an amplifier, two of said transistors comprising field-effect i

이 특허를 인용한 특허 (148)

  1. Milgrew, Mark, Active chemically-sensitive sensors.
  2. Milgrew, Mark, Active chemically-sensitive sensors with correlated double sampling.
  3. Milgrew, Mark, Active chemically-sensitive sensors with in-sensor current sources.
  4. Milgrew, Mark J., Active chemically-sensitive sensors with in-sensor current sources.
  5. Milgrew, Mark, Active chemically-sensitive sensors with reset switch.
  6. Milgrew, Mark, Active chemically-sensitive sensors with source follower amplifier.
  7. Weiner, Kurt H.; Chiang, Tony P.; Francis, Aaron; Schmidt, John, Advanced mixing system for integrated tool having site-isolated reactors.
  8. Nobile, John; Roth, Thomas; Rearick, Todd; Schultz, Jonathan; Rothberg, Jonathan; Marran, David, Apparatus and methods for performing electrochemical reactions.
  9. Rothberg, Jonathan; Rearick, Todd, Apparatus for measuring analytes including chemical sensor array.
  10. Lind, Michael A.; Priddy, Kevin L.; Morgan, Gary B.; Griffin, Jeffrey W.; Ridgway, Richard W.; Stein, Steven L., Application specific intelligent microsensors.
  11. Levine, Peter, Array column integrator.
  12. Levine, Peter, Array column integrator.
  13. Johnson, Kim; Jordan, Jeremy; Levine, Peter; Milgrew, Mark, Array configuration and readout scheme.
  14. Fife, Keith; Milgrew, Mark, CCD-based multi-transistor active pixel sensor array.
  15. Levine, Peter; Milgrew, Mark; Rearick, Todd, Capacitive charge pump.
  16. Pourmand, Nader; Karhanek, Miloslav; Davis, Ronald W., Charge perturbation detection method for DNA and other molecules.
  17. Pourmand, Nader; Karhanek, Miloslav; Davis, Ronald W., Charge perturbation detection system for DNA and other molecules.
  18. Rothberg, Jonathan M.; Rearick, Todd, ChemFET sensor including floating gate.
  19. Fife, Keith; Yang, Jungwook, Chemical detection circuit including a serializer circuit.
  20. Johnson, Kim L.; Jordan, Jeremy; Levine, Peter M.; Milgrew, Mark James, Chemical detection device having multiple flow channels.
  21. Fife, Keith G.; Owens, Jordan; Li, Shifeng; Bustillo, James, Chemical device with thin conductive element.
  22. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Chemical sensor array having multiple sensors per well.
  23. Fife, Keith G., Chemical sensor array with leakage compensation circuit.
  24. Li, Shifeng; Bustillo, James; Hinz, Wolfgang, Chemical sensor with conductive cup-shaped sensor surface.
  25. Fife, Keith G.; Owens, Jordan; Li, Shifeng; Bustillo, James, Chemical sensor with consistent sensor surface areas.
  26. Fife, Keith G.; Owens, Jordan; Li, Shifeng; Bustillo, James, Chemical sensor with protruded sensor surface.
  27. Fife, Keith; Bustillo, James; Owens, Jordan, Chemical sensor with protruded sensor surface.
  28. Fife, Keith G.; Owens, Jordan; Li, Shifeng; Bustillo, James, Chemical sensor with sidewall sensor surface.
  29. Fife, Keith G.; Bustillo, James; Owens, Jordan, Chemical sensor with sidewall spacer sensor surface.
  30. Fife, Keith; Bustillo, James; Owens, Jordan, Chemical sensor with sidewall spacer sensor surface.
  31. Fife, Keith G.; Owens, Jordan; Li, Shifeng; Bustillo, James, Chemical sensors with consistent sensor surface areas.
  32. Fife, Keith, Chemically sensitive sensor with lightly doped drains.
  33. Fife, Keith G., Chemically sensitive sensor with lightly doped drains.
  34. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Chemically sensitive sensors with feedback circuits.
  35. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Chemically sensitive sensors with sample and hold capacitors.
  36. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Chemically sensitive sensors with sample and hold capacitors.
  37. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Chemically-sensitive array with active and reference sensors.
  38. Milgrew, Mark; Bustillo, James; Rearick, Todd, Chemically-sensitive field effect transistor based pixel array with protection diodes.
  39. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Chemically-sensitive sample and hold sensors.
  40. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Chemically-sensitive sample and hold sensors.
  41. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Chemically-sensitive sensor array calibration circuitry.
  42. Fife, Keith, Column adc.
  43. Mansky, Paul; Bennett, James, Computer readable medium for performing sensor array based materials characterization.
  44. Livache, Thierry; Caillat, Patrice, Device and method for testing sensitive elements on an electronic chip.
  45. Cao, Huazhe; Rogers, David Michael; Qian, Mimi Xuefeng, Device modeling and characterization structure with multiplexed pads.
  46. Wilson, Bary W.; Heister, Earl; Greitzer, Frank L., Diagnostics/prognostics using wireless links.
  47. Kahn,Malcolm R.; Man,Piu Francis; Martin,Glenn, Fluid monitoring systems and methods with data communication to interested parties.
  48. Kahn,Malcolm R.; Martin,Glenn; Man,Piu Francis, Fluid treatment apparatus with input and output fluid sensing.
  49. Lazovsky, David E.; Malhotra, Sandra G.; Boussie, Thomas R., Formation of a masking layer on a dielectric region to facilitate formation of a capping layer on electrically conductive regions separated by the dielectric region.
  50. Lazovsky, David E.; Malhotra, Sandra G.; Boussie, Thomas R., Formation of a masking layer on a dielectric region to facilitate formation of a capping layer on electrically conductive regions separated by the dielectric region.
  51. Lazovsky,David E.; Malhotra,Sandra G.; Boussie,Thomas R., Formation of a masking layer on a dielectric region to facilitate formation of a capping layer on electrically conductive regions separated by the dielectric region.
  52. Fife, Keith G.; Yang, Jungwook, High data rate integrated circuit with power management.
  53. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, High density sensor array without wells.
  54. Rothberg, Jonathan M.; Bustillo, James; Milgrew, Mark James; Schultz, Jonathan; Marran, David; Rearick, Todd; Johnson, Kim L., Integrated sensor arrays for biological and chemical analysis.
  55. Rothberg, Jonathan; Bustillo, James; Milgrew, Mark; Schultz, Jonathan; Marran, David; Rearick, Todd; Johnson, Kim, Integrated sensor arrays for biological and chemical analysis.
  56. Morgenshtein, Arkadiy; Dinnar, Uri; Nemirovsky, Yael, Ion concentration transistor and dual-mode sensors.
  57. Morgenshtein, Arkadiy; Dinnar, Uri; Nemirovsky, Yael, Ion concentration transistor and dual-mode sensors.
  58. Fife, Keith, Ion-sensing charge-accumulation circuits and methods.
  59. Fife, Keith G., Ion-sensing charge-accumulation circuits and methods.
  60. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Low noise chemically-sensitive field effect transistors.
  61. Fife, Keith, Matched pair transistor circuits.
  62. Beauchemin, Mark, Method and apparatus for identifying defects in a chemical sensor array.
  63. Pace,Salvatore J.; Youngblood, III,James H., Method and apparatus for quantitative analysis.
  64. Fife, Keith G.; Yang, Jungwook, Method and system for delta double sampling.
  65. Fife, Keith G.; Yang, Jungwook, Method and system for delta double sampling.
  66. Fife, Keith; Yang, Jungwook, Method and system for delta double sampling.
  67. Mansky, Paul, Method for conducting sensor array-based rapid materials characterization.
  68. Paul Mansky ; James Bennett, Method for conducting sensor array-based rapid materials characterization.
  69. Rothberg, Jonathan M.; Hinz, Wolfgang, Methods and apparatus for detecting molecular interactions using FET arrays.
  70. Rothberg, Jonathan M; Hinz, Wolfgang, Methods and apparatus for detecting molecular interactions using FET arrays.
  71. Rothberg, Jonathan; Hinz, Wolfgang, Methods and apparatus for detecting molecular interactions using FET arrays.
  72. Rothberg, Jonathan; Hinz, Wolfgang, Methods and apparatus for detecting molecular interactions using FET arrays.
  73. Rothberg, Jonathan; Hinz, Wolfgang, Methods and apparatus for detecting molecular interactions using FET arrays.
  74. Rothberg, Jonathan; Hinz, Wolfgang, Methods and apparatus for detecting molecular interactions using FET arrays.
  75. Rothberg, Jonathan; Hinz, Wolfgang, Methods and apparatus for detecting molecular interactions using FET arrays.
  76. Rothberg, Jonathan; Hinz, Wolfgang, Methods and apparatus for detecting molecular interactions using FET arrays.
  77. Rearick, Todd, Methods and apparatus for high speed operation of a chemically-sensitive sensor array.
  78. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Methods and apparatus for high-speed operation of a chemically-sensitive sensor array.
  79. Rearick, Todd; Davey, Melville; Beauchemin, Mark, Methods and apparatus for measuring analytes.
  80. Rearick, Todd; Davey, Melville; Beauchemin, Mark, Methods and apparatus for measuring analytes.
  81. Rothberg, Jonathan M; Bustillo, James M.; Milgrew, Mark J.; Schultz, Jonathan C.; Marran, David; Rearick, Todd M; Johnson, Kim L., Methods and apparatus for measuring analytes.
  82. Rothberg, Jonathan; Hinz, Wolfgang; Davidson, John; van Oijen, Antoine; Leamon, John; Huber, Martin, Methods and apparatus for measuring analytes.
  83. Rothberg, Jonathan; Rearick, Todd, Methods and apparatus for measuring analytes.
  84. Rothberg, Jonathan M.; Hinz, Wolfgang, Methods and apparatus for measuring analytes using large scale FET arrays.
  85. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L., Methods and apparatus for measuring analytes using large scale FET arrays.
  86. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L., Methods and apparatus for measuring analytes using large scale FET arrays.
  87. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L., Methods and apparatus for measuring analytes using large scale FET arrays.
  88. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  89. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  90. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  91. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  92. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  93. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  94. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  95. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  96. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  97. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James M., Methods and apparatus for measuring analytes using large scale FET arrays.
  98. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James M., Methods and apparatus for measuring analytes using large scale FET arrays.
  99. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James M.; Leamon, John H.; Schultz, Jonathan, Methods and apparatus for measuring analytes using large scale FET arrays.
  100. Rothberg, Jonathan M.; Hinz, Wolfgang; Johnson, Kim L.; Bustillo, James; Leamon, John; Schultz, Jonathan, Methods and apparatus for measuring analytes using large scale FET arrays.
  101. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  102. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  103. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  104. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Methods and apparatus for measuring analytes using large scale FET arrays.
  105. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James; Leamon, John; Schultz, Jonathan, Methods and apparatus for measuring analytes using large scale FET arrays.
  106. Inman, Christina E.; Mastroianni, Alexander; Hinz, Wolfgang; Li, Shifeng; Benson, Scott C., Methods and systems for point of use removal of sacrificial material.
  107. Inman, Christina; Mastroianni, Alexander; Hinz, Wolfgang; Li, Shifeng; Benson, Scott, Methods and systems for point of use removal of sacrificial material.
  108. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Methods for calibrating an array of chemically-sensitive sensors.
  109. Chiang, Tony P.; Lazovsky, David E.; Boussie, Thomas R.; Gorer, Alexander, Methods for discretized processing of regions of a substrate.
  110. Bustillo, James; Schultz, Jonathan; Rearick, Todd; Milgrew, Mark, Methods for manufacturing high capacitance microwell structures of chemically-sensitive sensors.
  111. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Methods for manufacturing low noise chemically-sensitive field effect transistors.
  112. Bustillo, James; Li, Shifeng, Methods for manufacturing well structures for low-noise chemical sensors.
  113. Levine, Peter, Methods for operating an array column integrator.
  114. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Methods for operating an array of chemically-sensitive sensors.
  115. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Methods for operating chemically sensitive sensors with sample and hold capacitors.
  116. Rothberg, Jonathan; Hinz, Wolfgang; Johnson, Kim; Bustillo, James, Methods for operating chemically-sensitive sample and hold sensors.
  117. Knollenberg,Brian A.; Rodier,Daniel; Waisanen,Scott, Molecular contamination monitoring system and method.
  118. Lazovsky,David E.; Chiang,Tony P.; Keshavarz,Majid, Molecular self-assembly in substrate processing.
  119. Kahn,Malcolm R.; Man,Piu Francis; Martin,Glenn, Multi-sensor system for fluid monitoring with selective exposure of sensors.
  120. Fife, Keith, One-transistor pixel array.
  121. Fife, Keith, One-transistor pixel array.
  122. Fife, Keith, One-transistor pixel array with cascoded column circuit.
  123. Fife, Keith, One-transistor pixel array with cascoded column circuit.
  124. Chiu, Wei-Ta, Operational amplifier.
  125. Chiang, Tony P.; Lazovsky, David E.; Malhotra, Sandra G., Processing substrates using site-isolated processing.
  126. Putnam, Jonathan; Li, Shifeng, Self-aligned well structures for low-noise chemical sensors.
  127. Stager Mark P. ; Yee Abraham F. ; Padmanabhan Gobi R., Semiconductor chip package with interconnect layers and routing and testing methods.
  128. Moritz,Werner; Szeponik,Jan, Semiconductor type hydrogen sensor, detection method and hydrogen detecting device.
  129. Mansky, Paul; Bennett, James, Sensor array for rapid materials characterization.
  130. Paul Mansky ; James Bennett, Sensor array for rapid materials characterization.
  131. Mansky, Paul; Bennett, James, Sensor array-based system and method for rapid materials characterization.
  132. Bailey, Douglas S.; Kubicek, Steven, Sensor for detecting hydrocarbons.
  133. Bailey, Douglas S.; Kubicek, Steven, Sensor for detecting hydrocarbons.
  134. Rosenblatt David, Solid state electrochemical sensors.
  135. Fresco, Zachary; Lang, Chi-I; Malhotra, Sandra G.; Chiang, Tony P.; Boussie, Thomas R.; Kumar, Nitin; Tong, Jinhong; Duong, Anh, Substrate processing including a masking layer.
  136. Weiner, Kurt H.; Chiang, Tony P.; Pinto, Gustavo A., System and method for increasing productivity of combinatorial screening.
  137. Jordan, Jeremy; Rearick, Todd, System for reducing noise in a chemical sensor array.
  138. Jordan, Jeremy; Rearick, Todd, System for reducing noise in a chemical sensor array.
  139. Jordan, Jeremy; Rearick, Todd, System for reducing noise in a chemical sensor array.
  140. Jordan, Jeremy; Rearick, Todd, System for reducing noise in a chemical sensor array.
  141. Kahn,Malcolm R.; Michalak,Uwe; Papageorgiou,Dimitris, Systems and methods for fluid quality sensing, data sharing and data visualization.
  142. Chiang, Tony P.; Lazovsky, David E.; Boussie, Thomas R.; McWaid, Thomas H.; Gorer, Alexander, Systems for discretized processing of regions of a substrate.
  143. Bustillo, James; Rearick, Todd; Hinz, Wolfgang; Fife, Keith, Titanium nitride as sensing layer for microwell structure.
  144. Fife, Keith G.; Johnson, Kim L.; Milgrew, Mark James, Two-transistor pixel array.
  145. Fife, Keith; Johnson, Kim; Milgrew, Mark, Two-transistor pixel array.
  146. Fife, Keith; Johnson, Kim; Milgrew, Mark, Two-transistor pixel array.
  147. Holm-Kennedy, James, Ultrasensitive biosensors.
  148. Rearick, Todd; Milgrew, Mark James; Schultz, Jonathan; Papalias, Chris; Johnson, Kim L., Windowed sequencing.
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