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Gas sensor 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01N-027/26
출원번호 US-0119602 (1993-09-10)
우선권정보 DE-4230690 (1992-09-14)
발명자 / 주소
  • Gumbrecht Walter (Herzogenaurach DEX) Schelter Wolfgang (Uttenreuth DEX) Lang Siegrun (Erlangen DEX)
출원인 / 주소
  • Siemens Aktiengesellschaft (Munich DEX 03)
인용정보 피인용 횟수 : 55  인용 특허 : 0

초록

A planar gas sensor, in particular a pCO2 or pO2 sensor, has the following components: a pH sensor located on a flat substrate, or at least one noble metal electrode located on the substrate; a reference electrode adjacent to the pH sensor or noble metal electrode; an electrolyte layer, covering the

대표청구항

A planar gas sensor comprising: A substantially flat substrate; A pH sensor or at least one noble metal electrode located on the substrate; A reference electrode adjacent to the pH sensor or noble metal electrode; An electrolyte layer, covering the reference electrode and the pH sensor or noble meta

이 특허를 인용한 특허 (55)

  1. Dimeo, Jr., Frank; Chen, Philip S. H.; Neuner, Jeffrey W.; Welch, James; Stawasz, Michele; Baum, Thomas H.; King, Mackenzie E.; Chen, Ing-Shin; Roeder, Jeffrey F., Apparatus and process for sensing fluoro species in semiconductor processing systems.
  2. Dimeo, Jr.,Frank; Chen,Philip S. H.; Neuner,Jeffrey W.; Welch,James; Stawacz,Michele; Baum,Thomas H.; King,Mackenzie E.; Chen,Ing Shin; Roeder,Jeffrey F., Apparatus and process for sensing fluoro species in semiconductor processing systems.
  3. Dimeo, Jr.,Frank; Chen,Philip S. H.; Neuner,Jeffrey W.; Welch,James; Stawasz,Michele; Baum,Thomas H.; King,Mackenzie E.; Chen,Ing Shin; Roeder,Jeffrey F., Apparatus and process for sensing fluoro species in semiconductor processing systems.
  4. Chen,Philip S. H.; Chen,Ing Shin; Dimeo, Jr.,Frank; Neuner,Jeffrey W.; Welch,James; Roeder,Jeffrey F., Apparatus and process for sensing target gas species in semiconductor processing systems.
  5. Yang, Kaiyuan; Wei, Ning; Kaylor, Rosann; Chidebelu-Eze, Chibueze Obinna; Atanassov, Zdravko Savov, Assay devices that utilize hollow particles.
  6. Cohen, David; Kaylor, Rosann; Sayre, Curtis, Biomolecule diagnostic device.
  7. Sayre, Curtis; Cohen, David; Kaylor, Rosann, Biomolecule diagnostic devices.
  8. Sayre,Curtis; Cohen,David; Kaylor,Rosann, Biomolecule diagnostic devices and method for producing biomolecule diagnostic devices.
  9. Cohen,David; Kaylor,Rosann, Diffraction-based diagnostic devices.
  10. Cohen,David; Kaylor,Rosann, Diffraction-based diagnostic devices.
  11. Cohen,David; Kaylor,Rosann, Diffraction-based diagnostic devices.
  12. Kaylor,Rosann; Cohen,David; Sayre,Curtis, Diffraction-based diagnostic devices.
  13. Sayre,Curtis; Kaylor,Rosann; Cohen,David, Diffraction-based diagnostic devices.
  14. Gumbrecht Walter,DEX ; Montag Bernhard,DEX ; Kress Reinhard,DEX, Electrochemical sensor.
  15. Merz, Matthias; Ponomarev, Youri Victorovitch, Electrochemical sensor.
  16. Boga,Rameshbabu; Chidebelu Eze,Chibueze Obinna; Kaylor,Rosann M.; Song,Xuedong, Enhanced diffraction-based biosensor devices.
  17. Song,Xuedong; Kaylor,Rosann; Feaster,Shawn; Yang,Kaiyuan, Fluidics-based assay devices.
  18. Everhart Dennis S. ; Kaylor Rosann M. ; Jones Mark L., Gel sensors and method of use thereof.
  19. Humbert, Aurelie; Daamen, Roel; Ponomarev, Youri Victorovitch, Integrated circuit and manufacturing method.
  20. Soccol, Dimitri; Ponomarev, Youri Victorovitch; van Steenwinckel, David, Integrated circuit arrangement, device and gas detection method.
  21. Brinz,Thomas; Lewis,Jane, Measuring device having a plurality of potentiometric electrode pairs situated on a substrate.
  22. Song, Xuedong; Kaylor, Rosann Marie Matthews, Membrane-based assay devices.
  23. Song,Xuedong; Kaylor,Rosann, Membrane-based assay devices.
  24. Song, Xuedong; Kaylor, Rosann; Knotts, Michael; Wei, Ning, Membrane-based assay devices that utilize time-resolved fluorescence.
  25. Song, Xuedong, Membrane-based lateral flow assay devices that utilize phosphorescent detection.
  26. Song, Xuedong, Membrane-based lateral flow assay devices that utilize phosphorescent detection.
  27. Battefeld, Manfred; Bittner, Klaus; Golitz, Andreas; Hahn, Markus; Kussmann, Michael; Stellmach-Hanulok, Aurelia, Method for determining parameters of a gas-selective electrode.
  28. Song, Xuedong, Method for extending the dynamic detection range of assay devices.
  29. Abraham-Fuchs Klaus,DEX ; Gumbrecht Walter,DEX ; Hierold Christofer,DEX ; Scheiter Thomas,DEX, Method for manufacturing a combination of a pressure sensor and an electrochemical sensor.
  30. Cohen, David; Kaylor, Rosann; Sayre, Curtis, Method for producing biomolecule diagnostic devices.
  31. Wei, Ning, Method of reducing the sensitivity of assay devices.
  32. Yang, Kaiyuan; Wei, Ning; Kaylor, Rosann; Chidebelu-Eze, Chibueze Obinna; Atanassov, Zdravko Savov, Methods of making assay devices utilizing hollow particles.
  33. Kaylor,Rosann Marie; Yang,Difei; Atanassov,Zdravko Savov; Knotts,Michael Eugene, Methods to view and analyze the results from diffraction-based diagnostics.
  34. Hower, Robert W.; Brown, Richard B., Micromachined device for receiving and retaining at least one liquid droplet, method of making the device and method of using the device.
  35. Hower,Robert W.; Brown,Richard B., Microsensor with a well having a membrane disposed therein.
  36. Dimeo, Jr.,Frank; Chen,Philip S. H.; Chen,Ing Shin; Neuner,Jeffrey W.; Welch,James, Nickel-coated free-standing silicon carbide structure for sensing fluoro or halogen species in semiconductor processing systems, and processes of making and using same.
  37. Song, Xuedong; Boga, RameshBabu; Chidebelu Eze, Chibueze Obi, One-step enzymatic and amine detection technique.
  38. Dennis S. Everhart ; Mark L. Jones ; Rosann Marie Kaylor, Optical diffraction biosensor.
  39. sukhani, Optical diffraction biosensor.
  40. Everhart Dennis S. ; Kaylor Rosann M. ; McGrath Kevin, Patterned binding of functionalized microspheres for optical diffraction-based biosensors.
  41. McGrath, Kevin; Kaylor, Rosann M.; Everhart, Dennis S., Patterned deposition of antibody binding protein for optical diffraction-based biosensors.
  42. Song, Xuedong; Wei, Ning; Sayre, Curt, Polyelectrolytic internal calibration system of a flow-through assay.
  43. Lehmann, Mirko, Process for examining membrane enclosed biocompartments.
  44. Lehmann,Mirko, Process for examining membrane enclosed biocompartments.
  45. Kaylor, Rosann; Yang, Difei; Knotts, Michael, Reading device, method, and system for conducting lateral flow assays.
  46. Wei, Ning; Huang, Yanbin; Yang, Kaiyuan, Reduction of the hook effect in assay devices.
  47. Wei, Ning; Huang, Yanbin, Reduction of the hook effect in membrane-based assay devices.
  48. Wei,Ning; Huang,Yanbin, Reduction of the hook effect in membrane-based assay devices.
  49. Song,Xuedong; Kaylor,Rosann, Self-calibration system for a magnetic binding assay.
  50. Kruglick, Lewis; Kruglick, Ezekiel, Sensing of gaseous leakage into body for early detection of colorectal anastomotic leakage.
  51. Brinz, Thomas; Lewis, Jane; Heppel, Claus, Sensor for determining gases and method for manufacturing the sensor.
  52. Kaylor,Rosann Marie; Yang,Difei; Atanassov,Zdravko Savov; Knotts,Michael Eugene, Systems to view and analyze the results from diffraction-based diagnostics.
  53. Rosann M. Kaylor ; Abraham B. Choi ; Chibueze Obinna Chidebelu-Eze ; Michael Heinrich Herbert Grunze DE, Use of wicking agent to eliminate wash steps for optical diffraction-based biosensors.
  54. Koji Akioka JP; Akira Sanjoh JP, pH sensor and pH measurement method employing the same.
  55. Schoning Michael Josef,DEX ; Zander Willi,DEX ; Schubert Jurgen,DEX ; Beckers Lutz,DEX ; Schaub Axel Michael,DEX ; Kordos Peter,DEX ; Luth Hans,DEX, pH-sensitive microsensor and a method of manufacturing a pH-sensitive microsensor.
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