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Thermo-electric device with each element containing two halves and an intermediate connector piece of differing conducti 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01L-035/28
출원번호 US-0344335 (1989-04-27)
우선권정보 NL-0001093 (1988-04-27)
발명자 / 주소
  • Bijvoets Theodorus (Joh. Strausslaan 36 5583 XX Waaire NLX)
인용정보 피인용 횟수 : 51  인용 특허 : 2

초록

Thermoelectric device having a number of thermoelectric elements electrically connected in series and thermally connected in parallel. Each element is provided with two element halves, electrically connected in series and thermally connected in parallel, of opposite conductivity types. Each element

대표청구항

A thermoelectric device comprising a number of thermoelectric elements electrically connected in series and thermally connected in parallel, said thermoelectric elements each being provided with two element halves, electrically connected in series and thermally connected in parallel, of opposite con

이 특허에 인용된 특허 (2)

  1. Chou Der-Jeou (Troy MI), Thermoelectric device and method of making same.
  2. Verner Dalton R. (Orchard Lake MI) Heath Donald L. (Leonard MI), Thermoelectric devices having improved elements and element interconnects and method of making same.

이 특허를 인용한 특허 (51)

  1. Fleurial Jean-Pierre ; Caillat Thierry F. ; Borshchevsky Alexander, Advanced thermoelectric materials with enhanced crystal lattice structure and methods of preparation.
  2. Poliquin, Eric; Crane, Douglas T.; Jovovic, Vladimir; Dean, Joseph; Kossakovski, Dmitri; LaGrandeur, John Walter, Cartridge-based thermoelectric systems.
  3. Tanielian, Minas H., Dual gap thermo-tunneling apparatus and methods.
  4. Heikal Morgan (Brighton GBX), Heat flow transducer.
  5. LaGrandeur, John; Bell, Lon E., Heater-cooler with bithermal thermoelectric device.
  6. Ranalli, Marco; Adldinger, Martin; Crane, Douglas T., High efficiency thermoelectric generation.
  7. Fleurial Jean-Pierre (Pasadena CA) Caillat Thierry F. (Pasadena CA) Borshchevsky Alexander (Santa Monica CA), High performance thermoelectric materials and methods of preparation.
  8. Harman Theodore C., Lead-chalcogenide superlattice structures.
  9. Koester, David A.; Alley, Randall G., Methods of forming embedded thermoelectric coolers with adjacent thermally conductive fields.
  10. O'Quinn, Brooks; Venkatasubramanian, Rama; Siivola, Edward, Methods of forming thermoelectric devices including conductive posts and/or different solder materials and related methods and structures.
  11. Alley, Randall G.; Koester, David A., Methods of forming thermoelectric devices including electrically insulating matrices between conductive traces.
  12. Bharathan, Jayesh; Koester, David A.; Alley, Randall G.; Venkatasubramanian, Rama; Addepalli, Pratima; Shen, Bing; Watkins, Cynthia, Methods of forming thermoelectric devices using islands of thermoelectric material and related structures.
  13. Liu, Chun-Kai; Cheng, Jen-Hau, Micro thermoelectric device and manufacturing method thereof.
  14. Parise Ronald J., Nighttime solar cell.
  15. Venkatasubramanian,Rama; Siivola,Edward; Colpitts,Thomas; O'Quinn,Brooks, Phonon-blocking, electron-transmitting low-dimensional structures.
  16. Chen, Gang, Potential amplified nonequilibrium thermal electric device (PANTEC).
  17. Fleurial Jean-Pierre ; Caillat Thierry F. ; Borshchevsky Alexander, Semiconductor apparatus utilizing gradient freeze and liquid-solid techniques.
  18. Dresselhaus Mildred S. ; Harman Theodore C. ; Cronin Stephen B. ; Koga Takaaki ; Sun Xiangzhong ; Wang Kang L., Si/SiGe superlattice structures for use in thermoelectric devices.
  19. Theodore C. Harman ; Mildred S. Dresselhaus ; David L. Spears ; Michael P. Walsh ; Stephen B. Cronin ; Xiangzhong Sun ; Takaaki Koga, Superlattice structures for use in thermoelectric devices.
  20. Harman Theodore C., Superlattice structures particularly suitable for use as thermoelectric materials.
  21. Bell, Lon E.; LaGrandeur, John, System and method for climate control within a passenger compartment of a vehicle.
  22. Bell, Lon E.; LaGrandeur, John, System and method for distributed thermoelectric heating and cooling.
  23. LaGrandeur, John; Poliquin, Eric; Kossakovski, Dmitri; Jovovic, Vladimir, Systems and methods for reducing current and increasing voltage in thermoelectric systems.
  24. Gutkin Timofei, Thermal generator and method of producing same.
  25. Siivola, Edward P.; Mahadevan, Ramaswamy, Thermoelectric (TE) devices/structures including thermoelectric elements with exposed major surfaces.
  26. Li, John H., Thermoelectric composite semiconductor.
  27. Li, John H., Thermoelectric composite semiconductor.
  28. Kanatzidis, Mercouri G.; Androulakis, John; Sootsman, Joseph R., Thermoelectric compositions and process.
  29. Marc, Michel, Thermoelectric device.
  30. Goenka, Lakhi Nandlal, Thermoelectric device efficiency enhancement using dynamic feedback.
  31. Venkatasubramanian,Rama; Siivola,Edward P., Thermoelectric devices utilizing double-sided Peltier junctions and methods of making the devices.
  32. Kondoh, Yoshiomi, Thermoelectric effect device, energy direct conversion system, and energy conversion system.
  33. Venkatasubramanian, Rama, Thermoelectric generators for solar conversion and related systems and methods.
  34. Bell, Lon E.; Diller, Robert W., Thermoelectric heat pump.
  35. Bell, Lon E.; Diller, Robert W., Thermoelectric heat pump.
  36. Bell, Lon E.; Diller, Robert W., Thermoelectric heat pump.
  37. Heremans, Joseph P.; Jaworski, Christopher M.; Jovovic, Vladimir; Harris, Fred, Thermoelectric materials having porosity.
  38. Bell, Lon E.; Crane, Douglas Todd, Thermoelectric power generating systems utilizing segmented thermoelectric elements.
  39. Bell, Lon E.; Crane, Douglas Todd, Thermoelectric power generator for variable thermal power source.
  40. Bell, Lon E.; Crane, Douglas Todd, Thermoelectric power generator for variable thermal power source.
  41. Caillat, Thierry; Fleurial, Jean-Pierre; Borshchevsky, Alexander; Snyder, G. Jeffrey; Zoltan, Andrew; Zoltan, Leslie, Thermoelectric unicouple used for power generation.
  42. Caillat, Thierry; Zoltan, Andrew; Zoltan, Leslie; Snyder, Jeffrey, Thermoelectric unicouple used for power generation.
  43. Bell, Lon E., Thermoelectrics utilizing convective heat flow.
  44. Venkatasubramanian, Rama; Alley, Randall G.; Addepalli, Pratima; Reddy, Anil J.; Siivola, Edward P.; O'Quinn, Brooks C.; Coonley, Kip D.; Posthill, John; Colpitts, Thomas, Thin film thermoelectric devices for hot-spot thermal management in microprocessors and other electronics.
  45. Venkatasubramanian, Rama; Alley, Randall G.; Addepalli, Pratima; Reddy, Anil J.; Siivola, Edward P.; O'Quinn, Brooks C.; Coonley, Kip D.; Posthill, John; Colpitts, Thomas, Thin film thermoelectric devices for hot-spot thermal management in microprocessors and other electronics.
  46. Venkatasubramanian,Rama, Thin-film thermoelectric cooling and heating devices for DNA genomic and proteomic chips, thermo-optical switching circuits, and IR tags.
  47. Chen, Baoxing, Wafer scale thermoelectric energy harvester.
  48. Chen, Baoxing; McGuinness, Patrick M.; Lane, William Allan; Cornett, Jane, Wafer scale thermoelectric energy harvester.
  49. Lane, William Allan; Chen, Baoxing, Wafer scale thermoelectric energy harvester.
  50. Cornett, Jane; Chen, Baoxing; Lane, William Allan; McGuinness, Patrick M.; Berney, Helen, Wafer scale thermoelectric energy harvester having interleaved, opposing thermoelectric legs and manufacturing techniques therefor.
  51. Cornett, Jane; Chen, Baoxing; Lane, William Allan; McGuinness, Patrick M.; Berney, Helen, Wafer scale thermoelectric energy harvester having trenches for capture of eutectic material.
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