$\require{mediawiki-texvc}$

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.

Solar cell interconnection by discrete conductive regions 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01L-027/14
  • H01L-031/18
출원번호 US-0730239 (1985-05-03)
발명자 / 주소
  • Turner Gary B. (Canoga Park CA) Morel Don L. (Agoura Hills CA) Gay Robert R. (Granada Hills CA) Halani Arvind (Canoga Park CA) Tarrant Dale E. (Chatsworth CA)
출원인 / 주소
  • Atlantic Richfield Company (Los Angeles CA 02)
인용정보 피인용 횟수 : 101  인용 특허 : 0

초록

Cells of a thin film solar module having opposed upper and lower electrodes are connected in series by a plurality of discrete conductive regions extending between each upper electrode and the lower electrode of an adjoining cell. In a preferred embodiment, the opposite electrodes of adjoining cells

대표청구항

A thin film solar module comprising: a plurality of first electrode pads on a substrate, each first electrode pad comprising a conductive metal oxide film and a metallic portion in electrical contact therewith; at least one semiconductive layer deposited over the first electrode pads to establish a

이 특허를 인용한 특허 (101)

  1. Farris, III, Chester A., Affixing method and solar decal device using a thin film photovoltaic.
  2. Alexander, Paul; Aragon, Steven, Apparatus and method utilizing forced convection for uniform thermal treatment of thin film devices.
  3. Doering, Kenneth B.; Wieting, Robert D., Apparatus for manufacturing thin film photovoltaic devices.
  4. Farris, III, Chester A.; Brown, Albert S., Application specific solar cell and method for manufacture using thin film photovoltaic materials.
  5. Alexander, Paul, Bell jar extraction tool method and apparatus for thin film photovoltaic materials.
  6. Lee, Howard W. H., Bulk chloride species treatment of thin film photovoltaic cell and manufacturing method.
  7. Lee, Howard W. H., Bulk metal species treatment of thin film photovoltaic cell and manufacturing method.
  8. Lee, Howard W. H., Bulk sodium species treatment of thin film photovoltaic cell and manufacturing method.
  9. Lee, Howard W. H., Bulk sulfide species treatment of thin film photovoltaic cell and manufacturing method.
  10. Lee, Howard W. H., Chloride species surface treatment of thin film photovoltaic cell and manufacturing method.
  11. Luch, Daniel, Collector grid and interconnect structures for photovoltaic arrays and modules.
  12. Luch, Daniel, Collector grid and interconnect structures for photovoltaic arrays and modules.
  13. Luch, Daniel, Collector grid and interconnect structures for photovoltaic arrays and modules.
  14. Luch, Daniel; Luch, Daniel Randolph, Collector grid and interconnect structures for photovoltaic arrays and modules.
  15. Luch, Daniel; Luch, Daniel Randolph, Collector grid and interconnect structures for photovoltaic arrays and modules.
  16. Luch, Daniel; Luch, Daniel Randolph, Collector grid and interconnect structures for photovoltaic arrays and modules.
  17. Luch, Daniel; Luch, Daniel Randolph, Collector grid and interconnect structures for photovoltaic arrays and modules.
  18. Luch, Daniel; Luch, Daniel Randolph, Collector grid and interconnect structures for photovoltaic arrays and modules.
  19. Luch, Daniel; Luch, Daniel Randolph, Collector grid and interconnect structures for photovoltaic arrays and modules.
  20. Luch, Daniel, Collector grid, electrode structures and interconnect structures for photovoltaic arrays and methods of manufacture.
  21. Luch, Daniel, Collector grid, electrode structures and interrconnect structures for photovoltaic arrays and methods of manufacture.
  22. Buquing, Miljon T., Consumable adhesive layer for thin film photovoltaic material.
  23. Lee, Howard W. H., Copper species surface treatment of thin film photovoltaic cell and manufacturing method.
  24. Morooka, Masahiro; Suzuki, Yusuke; Ogura, Reiko, Functional device.
  25. Posthuma, Niels; Flamand, Giovanni; Poortmans, Jef; van der Heide, Johan, Germanium solar cell and method for the production thereof.
  26. Lee, Howard W. H., High efficiency photovoltaic cell and manufacturing method free of metal disulfide barrier material.
  27. Wieting, Robert D., Humidity control and method for thin film photovoltaic materials.
  28. Wieting, Robert D., In chamber sodium doping process and system for large scale cigs based thin film photovoltaic materials.
  29. Grimmer Derrick P. (White Bear Lake MN) Paulson Kenneth R. (North St. Paul MN) Gilbert James R. (St. Paul MN), Interconnected semiconductor devices.
  30. Wieting, Robert D., Large scale chemical bath system and method for cadmium sulfide processing of thin film photovoltaic materials.
  31. Farris, III, Chester A., Laser separation method for manufacture of unit cells for thin film photovoltaic materials.
  32. Wieting, Robert D., Manufacturing method for patterning CIGS/CIS solar cells.
  33. Lee, Howard W. H., Metal species surface treatment of thin film photovoltaic cell and manufacturing method.
  34. Ramanathan, Kannan; Wieting, Robert D., Method and device for cadmium-free solar cells.
  35. Lee, Howard W. H.; Mikulec, Frederic Victor; Gao, Bing Shen; Huang, Jinman, Method and material for processing iron disilicide for photovoltaic application.
  36. Mikulec, Frederic Victor; Gao, Bing Shen; Lee, Howard W. H., Method and material for purifying iron disilicide for photovoltaic application.
  37. Farris, III, Chester A., Method and structure for forming module using a powder coating and thermal treatment process.
  38. Tandon, Ashish; Wieting, Robert D.; Schmizberger, Jurg; Alexander, Paul, Method and structure for processing thin film PV cells with improved temperature uniformity.
  39. Lee, Howard W. H., Method and structure for thin film photovoltaic cell using similar material junction.
  40. Lee, Howard W. H., Method and structure for thin film photovoltaic materials using bulk semiconductor materials.
  41. Lee, Howard W. H., Method and structure for thin film photovoltaic materials using bulk semiconductor materials.
  42. Lee, Howard W. H., Method and structure for thin film photovoltaic materials using semiconductor materials.
  43. Wieting, Robert D., Method and structure for tiling industrial thin-film solar devices.
  44. Lee, Howard W. H.; Farris, III, Chester A., Method and system for large scale manufacture of thin film photovoltaic devices using multi-chamber configuration.
  45. Lee, Howard W. H.; Farris, III, Chester A., Method and system for large scale manufacture of thin film photovoltaic devices using multi-chamber configuration.
  46. Lee, Howard W. H.; Farris, III, Chester A., Method and system for large scale manufacture of thin film photovoltaic devices using multi-chamber configuration.
  47. Lee, Howard W. H.; Farris, III, Chester A., Method and system for large scale manufacture of thin film photovoltaic devices using multi-chamber configuration.
  48. Lee, Howard W. H.; Farris, III, Chester A., Method and system for large scale manufacture of thin film photovoltaic devices using multi-chamber configuration.
  49. Lee, Howard W. H.; Farris, III, Chester A., Method and system for large scale manufacture of thin film photovoltaic devices using single-chamber configuration.
  50. Farris, III, Chester A., Method and system for laser separation for exclusion region of multi-junction photovoltaic materials.
  51. Weiting, Robert D., Method and system for recycling processing gas for selenization of thin film photovoltaic materials.
  52. Grimmer Derrick P. (White Bear Lake MN) Paulson Kenneth R. (North St. Paul MN) Gilbert James R. (St. Paul MN), Method for fabricating an interconnected array of semiconductor devices.
  53. Patterson, Frank, Method for improved patterning accuracy for thin film photovoltaic panels.
  54. Lee, Howard W. H.; Farris, III, Chester A., Method for large scale manufacture of thin film photovoltaic devices using multi-chamber configuration.
  55. Huang, Jinman; Lee, Howard W. H., Method for manufacture of semiconductor bearing thin film material.
  56. Arnold, Don R.; Guentzel, Jeff L.; Hefti, Larry D.; Pitt, Franna S.; Ramsey, Gregory L., Method for providing stop-off on a workpiece.
  57. Wieting, Robert D., Method of manufacture of sodium doped CIGS/CIGSS absorber layers for high efficiency photovoltaic devices.
  58. Ono Masayoshi (Hyogo JPX), Method of manufacturing a photovoltaic device.
  59. Lee, Howard W. H., Methods for infusing one or more materials into nano-voids of nanoporous or nanostructured materials.
  60. Oswald, Robert S.; Liu, Shengzhong, Partially transparent photovoltaic modules.
  61. Wieting, Robert D., Patterned thin film photovoltaic module.
  62. Wieting, Robert D., Patterning electrode materials free from berm structures for thin film photovoltaic cells.
  63. Arai, Yasuyuki, Photoelectric conversion device.
  64. Gaudiana, Russell; Montello, Alan; Montello, Edmund, Photovoltaic module architecture.
  65. Li, Lian; Montello, Alan; Montello, Edmund; Gaudiana, Russell, Photovoltaic module architecture.
  66. Montello, Alan; Oliver, Kevin; Chittibabu, Kethinni G., Photovoltaic module architecture.
  67. Montello, Alan; Oliver, Kevin; Chittibabu, Kethinni G., Photovoltaic module architecture.
  68. Yang, Frank; Wieting, Robert, Pin striped thin film solar module for cluster lamp.
  69. Yang, Frank; Wieting, Robert, Pin striped thin film solar module for cooler.
  70. Yang, Frank; Wieting, Robert, Pin striped thin film solar module for garden lamp.
  71. Yang, Frank; Wieting, Robert, Pin striped thin film solar module for laptop personal computer.
  72. Yang, Frank; Wieting, Robert, Pin striped thin film solar module for recreational vehicle.
  73. Yang, Frank; Wieting, Robert, Pin striped thin film solar module for street lamp.
  74. Nishi Kazuo,JPX ; Hosokawa Makoto,JPX ; Isobe Yukihiro,JPX ; Ninomiya Hideaki,JPX, Planar solar cell array and production method of the same.
  75. Lee, Howard W. H., Processing method for cleaning sulfur entities of contact regions.
  76. Alexander, Paul; Schmitzberger, Jurg; Tandon, Ashish; Wieting, Robert D., Quartz boat method and apparatus for thin film thermal treatment.
  77. Lee, Howard W. H., Sodium species surface treatment of thin film photovoltaic cell and manufacturing method.
  78. Luch, Daniel, Substrate and collector grid structures for integrated photovoltaic arrays and process of manufacture of such arrays.
  79. Luch, Daniel, Substrate and collector grid structures for integrated series connected photovoltaic arrays and process of manufacture of such arrays.
  80. Luch, Daniel, Substrate and collector grid structures for integrated series connected photovoltaic arrays and process of manufacture of such arrays.
  81. Luch, Daniel, Substrate and collector grid structures for integrated series connected photovoltaic arrays and process of manufacture of such arrays.
  82. Luch, Daniel, Substrate and collector grid structures for integrated series connected photovoltaic arrays and process of manufacture of such arrays.
  83. Luch, Daniel, Substrate and collector grid structures for integrated series connected photovoltaic arrays and process of manufacture of such arrays.
  84. Luch,Daniel, Substrate and collector grid structures for integrated series connected photovoltaic arrays and process of manufacture of such arrays.
  85. Luch, Daniel, Substrate and collector grid structures for integrated series connected photovoltaic arrays and process of manufacturing of such arrays.
  86. Daniel Luch, Substrate structures for integrated series connected photovoltaic arrays and process of manufacture of such arrays.
  87. Luch, Daniel, Substrate structures for integrated series connected photovoltaic arrays and process of manufacture of such arrays.
  88. Luch, Daniel, Substrate structures for integrated series connected photovoltaic arrays and process of manufacture of such arrays.
  89. Lee, Howard W. H., Sulfide species treatment of thin film photovoltaic cell and manufacturing method.
  90. Wieting, Robert D., System and method for transferring substrates in large scale processing of CIGS and/or CIS devices.
  91. Wieting, Robert D., Thermal management and method for large scale processing of CIS and/or CIGS based thin films overlying glass substrates.
  92. Wieting, Robert D., Thermal management and method for large scale processing of CIS and/or CIGS based thin films overlying glass substrates.
  93. Wieting, Robert D., Thermal management and method for large scale processing of CIS and/or CIGS based thin films overlying glass substrates.
  94. Wieting, Robert D., Thermal management and method for large scale processing of CIS and/or CIGS based thin films overlying glass substrates.
  95. Wieting, Robert D., Thermal pre-treatment process for soda lime glass substrate for thin film photovoltaic materials.
  96. Lee, Howard W. H., Thin film metal oxide bearing semiconductor material for single junction solar cell devices.
  97. Dickson Charles R. (Trenton NJ) Johnson Barry J. (Cream Ridge NJ) Gerhardt David B. (Solebury PA), Thin film semiconductor solar cell array and method of making.
  98. Glenn Gregory S., Welded wire termination device and method.
  99. Glenn Gregory S., Welded wire termination device and method for constructing a solar array.
  100. Wieting, Robert D., Zinc oxide film method and structure for CIGS cell.
  101. Wieting, Robert D., Zinc oxide film method and structure for cigs cell.
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