$\require{mediawiki-texvc}$

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.

Fiber-coupled liquid sample analyzer with liquid flow cell

국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G01N-007/10
출원번호 US-0644194 (2000-08-22)
발명자 / 주소
  • Garrett, Mark H.
출원인 / 주소
  • Thermo Finnegan LLC
인용정보 피인용 횟수 : 128  인용 특허 : 20

초록

A liquid sample analyzer with a flow-through liquid waveguide cell is described. The light source is fiber coupled to a liquid waveguide or light pipe. The light pipe can be remotely located and fiber coupled to the spectrometer so that the light source is thermally isolated making the spectrometer

대표청구항

A liquid sample analyzer with a flow-through liquid waveguide cell is described. The light source is fiber coupled to a liquid waveguide or light pipe. The light pipe can be remotely located and fiber coupled to the spectrometer so that the light source is thermally isolated making the spectrometer

이 특허에 인용된 특허 (20)

  1. Kusnetz Jacob, Apparatus and method for detecting chemiluminescent light.
  2. Liu Su Y. (Sarasota FL), Apparatus and method for measuring light absorption in small aqueous fluid samples.
  3. Liu Su-Yi (Sarasota FL), Aqueous fluid core waveguide.
  4. Waska Frank L. (Brea CA) Klein Gerald L. (Orange CA) Johnson Wayne S. (La Habra CA), Capillary electrophoresis detection.
  5. Allington Robert W. (Lincoln NE) Jones John N. (Lincoln NE), Chromatographic flow cell and method of making it.
  6. Munk Miner N. (Sonoma CA), Flow cell and method for making same.
  7. Dourdeville Theodore A. ; Gilby Anthony C. ; DellaRovere Dennis, Flow cell, analyte measurement apparatus and methods related thereto.
  8. Uffenheimer Kenneth F. (Yonkers NY), Liquid sample analyzer with improved optical characteristics.
  9. Nath Guenther (Otto Heilmann Strasse 3 8022 Gruenwald DEX), Liquid-core light guide illuminator apparatus.
  10. Bach David T. (Westborough MA), Liquid/liquid fiber-optic fluorescence detector and absorbance analyzer.
  11. Evens F. Monte (Ponca City OK) Barker Craig T. (Ponca City OK) Ray Charles R. (Blackwell OK), Long path flow cell resistant to corrosive environments for fiber optic spectroscopy.
  12. Chervet Jean-Pierre (Amsterdam NLX) Van Soest Remco E. J. (Bennebroek NLX), Method of and a capillary flow cell for analysing fluid samples.
  13. Liu Su Y. (Sarasota FL), Micro chemical analysis employing flow through detectors.
  14. Anton Klaus (Basel CHX) Dtwyler Peter (Oberwil CHX) Gassmann Ernst (Hofstetten CHX) Jordi Peter E. (Basel CHX) Pericles Nico (Herznach CHX), Micro-flow cell.
  15. Berard Joseph R. (Cranston RI) Burger Robert J. (Newton Centre MA) Melling Peter J. (Sturbridge MA) Moser William R. (Hopkington MA), Optical fiber coupled devices for remote spectroscopy in the infrared.
  16. Gilby Anthony C. (Foxborough MA), Photometric apparatus and process.
  17. Gilby Anthony C. (Foxborough MA) Carson William W. (Hopkinton MA), Photometric apparatus with a flow cell coated with an amorphous fluoropolymer.
  18. Machler Meinrad,DEX, Spectroscopic systems for the analysis of small and very small quantities of substance.
  19. Bender William J. H. (Lancaster PA) Dessy Raymond E. (Blacksburg VA), Surface plasmon resonance sensor.
  20. Erb Judith ; Downward ; IV James, Surface treatment and light injection method and apparatus.

이 특허를 인용한 특허 (128)

  1. Yu, Young-June; Wober, Munib, Active pixel sensor with nanowire structured photodetectors.
  2. Yu, Young-June; Wober, Munib, Active pixel sensor with nanowire structured photodetectors.
  3. Yu, Young-June; Wober, Munib, Active pixel sensor with nanowire structured photodetectors.
  4. Schmidt,Holger; Hawkins,Aaron Roe, Apparatus for optical measurements on low-index non-solid materials based on arrow waveguides.
  5. Schmidt,Holger; Hawkins,Aaron Roe, Apparatus for optical measurements on low-index non-solid materials based on arrow waveguides.
  6. Wober, Munib, Array of nanowires in a single cavity with anti-reflective coating on substrate.
  7. Wober, Munib, Array of nanowires in a single cavity with anti-reflective coating on substrate.
  8. Jaffe, Claudia B.; Jaffe, Steven M.; Jones, Michieal L., Bioanalytical instrumentation using a light source subsystem.
  9. Jaffe, Claudia B.; Jaffe, Steven M.; Jones, Michieal L., Bioanalytical instrumentation using a light source subsystem.
  10. Jaffe, Claudia B.; Jaffe, Steven M.; Jones, Michieal L., Bioanalytical instrumentation using a light source subsystem.
  11. Jaffe, Claudia B.; Jaffe, Steven M.; Jones, Michieal L., Bioanalytical instrumentation using a light source subsystem.
  12. Hillendahl,James W.; Waldbeser,David E., Biochemical assay detection in a liquid receptacle using a fiber optic exciter.
  13. Hillendahl,James W.; Waldbeser,David E., Biochemical assay detection in a liquid receptacle using a fiber optic exciter.
  14. Hillendahl,James W.; Waldbeser,David E., Biochemical assay detection using a fiber optic exciter.
  15. Pampaloni, Francesco; Stelzer, Ernst H. K.; Mattheyer, Christian, Capillary cell, arrangement and method for accommodating, positioning and examining a microscopic specimen.
  16. Dasgupta, Purnendu K, Cavity enhancement methods, systems and devices, and methods of measuring same.
  17. Tedesco, James M.; Slater, Joseph B., Cost-effective Raman probe assembly for single-use bioreactor vessels.
  18. Mueller, Jochen; Kraiczek, Karsten; Beigel, Bertram, Coupling for conduits sealed in a recess of a housing.
  19. Wober, Munib, Determination of optimal diameters for nanowires.
  20. Wober, Munib, Determination of optimal diameters for nanowires.
  21. Wober, Munib, Determination of optimal diameters for nanowires.
  22. Schmidt, Holger; Measor, Philip; Kuehn, Sergei, Device for light-based particle manipulation on waveguides.
  23. Iwata,Yosuke; Mori,Motoaki; Asakawa,Naoki, Elution test method and apparatus.
  24. Goto, Yusuke; Kamahori, Masao; Ishige, Yu; Sasaki, Hiroshi; Akiyama, Hideyuki; Kubo, Shintaro, Flow cell and liquid analyzer.
  25. Hanlon, Gregory; Neal, Timothy; Edwards, Richard; DiCesare, Joseph L.; Aikens, David M., Flow cell assembly for liquid sample analyzer.
  26. Hanlon, Gregory; Neal, Timothy; Edwards, Richard; DiCesare, Joseph L.; Aikens, David M., Flow cell assembly for liquid sample analyzer.
  27. Hanlon, Gregory; Neal, Timothy; Edwards, Richard; DiCesare, Joseph L.; Aikens, David M., Flow cell assembly for liquid sample analyzer.
  28. Hobbs, Steven E., Flow cell for optical analysis of a fluid.
  29. DiCesare, Joseph L.; Jin, Feng; Neal, Timothy P.; Aikens, David, Flow cell modules and liquid sample analyzers and methods including same.
  30. DiCesare, Joseph L.; Jin, Feng; Neal, Timothy P.; Aikens, David, Flow cell modules and liquid sample analyzers and methods including same.
  31. Hanlon, Gregory; Neal, Timothy; Edwards, Richard, Flow cell modules and liquid sample analyzers and methods including same.
  32. Hanlon, Gregory; Neal, Timothy; Edwards, Richard, Flow cell modules and liquid sample analyzers and methods including same.
  33. Hanlon, Gregory; Neal, Timothy; Edwards, Richard, Flow cell modules and liquid sample analyzers and methods including same.
  34. Gerner, Yuri; Sims, Carl W.; Thielen, Thomas, Flow cells utilizing photometric techniques.
  35. Gerner,Yuri; Sims,Carl W.; Thompson,Jonathan, Fluid analysis apparatus.
  36. Gerner,Yuri; Sims,Carl W.; Thompson,Jonathan, Fluid analysis apparatus.
  37. Jeannotte, Anthony C.; Leason, John A.; Murphy, Charles T., Fluidic coupler assembly with conical ferrule.
  38. Tan, Michael; Mathai, Sagi; Rosenberg, Paul, Free-space optical interconnect with asymmetric light pipes.
  39. Wober, Munib, Full color single pixel including doublet or quadruplet Si nanowires for image sensors.
  40. Wober, Munib, Full color single pixel including doublet or quadruplet si nanowires for image sensors.
  41. Goodnow, Timothy T.; He, Lei, Glucose measurement device and methods using RFID.
  42. Schmidt,Holger; Hawkins,Aaron Roe; Deamer,David W., Integrated electrical and optical sensor for biomolecule analysis with single molecule sensitivity.
  43. Schmidt,Holger; Hawkins,Aaron Roe, Integrated sensor with electrical and optical single molecule sensitivity.
  44. Hanlon, Gregory; Neal, Timothy, Lamp temperature management systems and methods for liquid chromatography analyzers.
  45. Hanlon, Gregory; Neal, Timothy, Lamp temperature management systems and methods for liquid chromatography analyzers.
  46. Seo, Kwanyong; Wober, Munib; Steinvurzel, Paul; Schonbrun, Ethan; Dan, Yaping; Crozier, Kenneth, Light absorption and filtering properties of vertically oriented semiconductor nano wires.
  47. Seo, Kwanyong; Wober, Munib; Steinvurzel, Paul; Schonbrun, Ethan; Dan, Yaping; Crozier, Kenneth B., Light absorption and filtering properties of vertically oriented semiconductor nano wires.
  48. Brukilacchio, Thomas J., Light emitting diode illumination system.
  49. Brukilacchio, Thomas J., Light emitting diode illumination system.
  50. Brukilacchio, Thomas J., Light emitting diode illumination system.
  51. Brukilacchio, Thomas J., Light emitting diode illumination system.
  52. Brukilacchio, Thomas J., Light emitting diode illumination system.
  53. Brukilacchio, Thomas J.; Conner, Arlie R., Light emitting diode illumination system.
  54. Brukilacchio, Thomas J.; Conner, Arlie R., Light emitting diode illumination system.
  55. Brukilacchio, Thomas J.; Conner, Arlie R., Light emitting diode illumination system.
  56. Brukilacchio, Thomas J.; Conner, Arlie R., Light emitting diode illumination system.
  57. Brukilacchio, Thomas J.; Conner, Arlie R., Light emitting diode illumination system.
  58. Conner, Arlie R., Light emitting diode illumination system.
  59. Gilby, Anthony C., Light-guiding flowcells with minimal stray light.
  60. Jaffe, Claudia B.; Jaffe, Steven M.; Conner, Arlie R., Lighting design of high quality biomedical devices.
  61. Jaffe, Claudia B.; Jaffe, Steven M.; Conner, Arlie R., Lighting design of high quality biomedical devices.
  62. Jaffe, Claudia B.; Jaffe, Steven M.; Conner, Arlie R., Lighting design of high quality biomedical devices.
  63. Jaffe, Claudia B.; Jaffe, Steven M.; Conner, Arlie R., Lighting design of high quality biomedical devices.
  64. Jaffe, Claudia B.; Jaffe, Steven M.; Conner, Arlie R., Lighting design of high quality biomedical devices.
  65. Schmidt,Holger; Hawkins,Aaron Roe, Low loss hollow core optical waveguide.
  66. Duane, Peter; Yu, Young-June; Wober, Munib, Manufacturing nanowire photo-detector grown on a back-side illuminated image sensor.
  67. Cyr, Douglas R.; Farrow, Roger L., Method for multiplexed optical detection including a multimode optical fiber in which propagation modes are coupled.
  68. Trainer, Michael, Methods and apparatus for determining particle characteristics by measuring scattered light.
  69. Siepmann,Friedrich W.; Gahr,Achim, Methods and apparatus for determining the content materials of a liquid employing a piston movable within a measuring chamber.
  70. Seo, Kwanyong; Steinvurzel, Paul; Schonbrun, Ethan; Wober, Munib; Crozier, Kenneth B., Methods for fabricating and using nanowires.
  71. Jeannotte, Anthony; Gilby, Anthony C.; Dourdeville, Theordore A.; DellaRovere, Dennis; Leason, John, Methods of making and using an apparatus and devices for placing light and sample in photo-emitting or absorbing device.
  72. Jeannotte, Anthony; Gilby, Anthony C.; Dourdeville, Theodore; DellaRovere, Dennis; Leason, John, Methods of making and using an apparatus and devices for placing light and sample in photo-emitting or absorbing devices.
  73. Cyr,Douglas R.; Farrow,Roger L.; Arnold,Don W., Microfluidic detection device having reduced dispersion and method for making same.
  74. Cyr,Douglas R.; Farrow,Roger L.; Arnold,Don W., Microfluidic detection device having reduced dispersion and method for making same.
  75. Reiter, Cyril, Microphotometer.
  76. Wober, Munib, Nano structured LEDs.
  77. Yu, Young-June; Wober, Munib, Nano wire based passive pixel image sensor.
  78. Yu, Young-June; Wober, Munib; Duane, Peter, Nanowire array based solar energy harvesting device.
  79. Wober, Munib, Nanowire arrays comprising fluorescent nanowires.
  80. Wober, Munib, Nanowire arrays comprising fluorescent nanowires and substrate.
  81. Yu, Young-June; Wober, Munib, Nanowire photo-detector grown on a back-side illuminated image sensor.
  82. Yu, Young-June; Wober, Munib, Nanowire photo-detector grown on a back-side illuminated image sensor.
  83. Yu, Young-June; Wober, Munib, Nanowire photo-detector grown on a back-side illuminated image sensor.
  84. Yu, Young-June; Wober, Munib, Nanowire photo-detector grown on a back-side illuminated image sensor.
  85. Yu, Young-June; Wober, Munib, Nanowire structured color filter arrays and fabrication method of the same.
  86. Yu, Young-June; Wober, Munib, Nanowire structured photodiode with a surrounding epitaxially grown P or N layer.
  87. Yu, Young-June; Wober, Munib, Nanowire structured photodiode with a surrounding epitaxially grown P or N layer.
  88. Koerperick, Edwin John; Olesberg, Jonathon Todd; Evans, Christine Esther; Arnold, Mark Allen; Small, Gary Wray, Near-infrared optical interfaces for disposable bioprocessing vessels.
  89. Steuerwald, Ralf; Steinmueller, Dirk; Heffels, Camiel, Online analyzer.
  90. Gilby, Anthony C., Opaque additive to block stray light in teflon AF light-guiding flowcells.
  91. Koerperick, Edwin John; Olesberg, Jonathon Todd; Evans, Christine Esther; Arnold, Mark Allen; Brower, Gregory Allan, Optical cell with disposable fluid cartridge.
  92. O'Connor,Stephen D.; Dantsker,Eugene; Karp,Christoph D., Optical devices with fluidic systems.
  93. Wober, Munib, Optical waveguides in image sensors.
  94. Wober, Munib, Optical waveguides in image sensors.
  95. Erickson, David; Chung, Aram J.; Jung, Erica E., Optofluidic apparatus, method, and application.
  96. Hobbs, Steven E.; Duong, Hau H., Parallel detection chromatography systems.
  97. Yu, Young-June; Wober, Munib, Passivated upstanding nanostructures and methods of making the same.
  98. Ivaldi, Juan C.; St. Cyr, Paul L.; Chow, Eugene; Werner, Mark C., Photonic measurement instrument using fiber optics.
  99. Yu, Young-June; Wober, Munib, Polarized light detecting device and fabrication methods of the same.
  100. Ashmead,James William; Tang,Sau Lan, Polymeric microfabricated fluidic device suitable for ultraviolet detection.
  101. Goodnow, Timothy T.; He, Lei (Lawrence), RF tag on test strips, test strip vials and boxes.
  102. Goodnow, Timothy T.; He, Lei (Lawrence), RF tag on test strips, test strip vials and boxes.
  103. Goodnow, Timothy T.; He, Lei (Lawrence), RF tag on test strips, test strip vials and boxes.
  104. Goodnow, Timothy T.; He, Lei (Lawrence), RF tag on test strips, test strip vials and boxes.
  105. Xia, Hua; Thomas, Sean; Perkins, David L.; Maida, John L., Self-diagnosing composite slickline cables.
  106. Tang, Cha Mei; Amstulz, III, Platte T, Sensitive emission light gathering and flow through detection system.
  107. Tut, Turgut; Duane, Peter; Yu, Young-June; Ye, Winnie N.; Wober, Munib; Crozier, Kenneth B., Silicon nitride light pipes for image sensors.
  108. Wober, Munib; Yu, Young-June, Solar blind ultra violet (UV) detector and fabrication methods of the same.
  109. Yu, Young-June; Wober, Munib, Solar blind ultra violet (UV) detector and fabrication methods of the same.
  110. Yu, Young-June; Wober, Munib, Solar blind ultra violet (UV) detector and fabrication methods of the same.
  111. Jaffe, Steven M.; Jaffe, Claudia B.; Tylinski, George S., Solid state continuous white light source.
  112. Jaffe, Steven M.; Jaffe, Claudia B.; Tylinski, George S., Solid state continuous white light source.
  113. Jaffe, Steven M.; Jaffe, Claudia B.; Tylinski, George S., Solid state continuous white light source.
  114. Jaffe, Steven M.; Jaffe, Claudia B.; Tylinski, George S., Solid state continuous white light source.
  115. Jaffe, Claudia B.; Jaffe, Steven M.; Tylinski, George S., Solid state light source for photocuring.
  116. Dijken, Durandus Kornelius; Hikmet, Rifat Ata Mustafa; Van Der Tempel, Leendert; Van Bommel, Ties, Solid state lighting device.
  117. Jaffe, Claudia B.; Jaffe, Steven M.; Larsen, David, System and method for controlled intensity illumination in a bioanalysis or other system.
  118. Jaffe, Claudia B; Jaffe, Steven M; Larsen, David, System and method for controlled intensity illumination in a bioanalysis or other system.
  119. Jaffe, Claudia B.; Jaffe, Steven M.; Larsen, David, System and method for metered dosage illumination in a bioanalysis or other system.
  120. Jaffe, Claudia B.; Jaffe, Steven M.; Larsen, David, System and method for metered dosage illumination in a bioanalysis or other system.
  121. Gerner, Yuri; Sims, Carl W.; Thompson, Jonathan, System for assembling a fluid analysis apparatus.
  122. Hall, David R.; Davis, Stephen C.; Larsen, Joshua D.; Reynolds, Jared M., Urine specimen capture slit.
  123. Yu, Young-June; Wober, Munib, Vertical pillar structured infrared detector and fabrication method for the same.
  124. Yu, Young-June; Wober, Munib, Vertical pillar structured photovoltaic devices with mirrors and optical claddings.
  125. Wober, Munib; Wendling, Thomas P. F. H., Vertical waveguides with various functionality on integrated circuits.
  126. Wober, Munib; Wendling, Thomas P. H. F., Vertical waveguides with various functionality on integrated circuits.
  127. Wober, Munib; Wendling, Thomas P. H. F., Vertical waveguides with various functionality on integrated circuits.
  128. Yu, Young-June; Duane, Peter; Wober, Munib, Vertically structured passive pixel arrays and methods for fabricating the same.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

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

선택된 텍스트