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Method for fabricating a multilayered structure and the structures formed by the method 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B32B-031/12
  • B32B-031/26
  • H05K-003/46
출원번호 US-0235081 (1999-01-21)
발명자 / 주소
  • Burdon, Jeremy W.
  • Huang, Rong-Fong
  • Wilcox, David
  • Naclerio, Nicholas J.
출원인 / 주소
  • Motorola, Inc.
대리인 / 주소
    Gilmore, Douglas W.
인용정보 피인용 횟수 : 24  인용 특허 : 69

초록

A method for fabricating a multilayered structure out of sheets of green-tape without the application of high pressures includes the step of applying an adhesive to the sheets of green-tape. Selection of an adhesive with a polymer that decomposes at a higher temperature than the binder present in th

대표청구항

A method for fabricating a multilayered structure out of sheets of green-tape without the application of high pressures includes the step of applying an adhesive to the sheets of green-tape. Selection of an adhesive with a polymer that decomposes at a higher temperature than the binder present in th

이 특허에 인용된 특허 (69)

  1. Natarajan Govindarajan ; Pasco Robert William, Apparatus and method for forming cavity substrates using flexible preform insert.
  2. Ramsey J. Michael, Apparatus and method for performing microfluidic manipulations for chemical analysis and synthesis.
  3. Zanzucchi Peter J. (West Windsor Township ; Mercer County NJ) McBride Sterling E. (Lawrence Township ; Mercer County NJ) Burton Charlotte A. (Brick NJ) Cherukuri Satyam C. (Cranbury NJ), Apparatus and methods for controlling fluid flow in microchannels.
  4. Natarajan Govindarajan ; Patel Niranjan M. ; Smith Kurt A., Apparatus for forming cavity structures using thermally decomposable surface layer.
  5. Hamuro Mitsuro (Kyoto JPX) Nakahara Kunikazu (Kyoto JPX) Higuchi Hirokazu (Kyoto JPX) Watanabe Kenich (Kyoto JPX), Apparatus for laminating ceramic green sheets.
  6. Bethke Shelly J. ; Miesem Ross A. ; Chiou Wayne W. ; Pastor Rickey G., Ceramic composition.
  7. Adelman Robert Leonard (Wilmington DE), Ceramic compositions and articles made therefrom.
  8. Trickett Elizabeth A. (Framingham MA) Assmus Richard C. (Braintree MA), Ceramic monolithic structure having an internal cavity contained therein and a method of preparing the same.
  9. Trickett Elizabeth A. (Framingham MA) Assmus Richard C. (Braintree MA), Ceramic monolithic structure having an internal cavity contained therein and a method of preparing the same.
  10. Harbster Kevin H. (Newark DE) Perrotto Joseph A. (Landenberg PA), Chemical mixing and reaction apparatus.
  11. Zanzucchi Peter John ; Burton Charlotte Anna ; McBride Sterling Edward ; Cherukuri Satyam Choudary ; Chiang William ; Levine Aaron W. ; Moroney ; III Richard Morgan, Electrokinetic pumping.
  12. Zanzucchi Peter John ; Burton Charlotte Anna ; McBride Sterling Edward ; Demers Robert Richard ; Chiang William ; Moroney ; III Richard Morgan, Electrokinetic pumping.
  13. Tominaga Takashi (Osaka JPX) Nishiyama Souji (Osaka JPX) Sakuramoto Takahumi (Osaka JPX) Honda Makoto (Osaka JPX), Glass powder adhesive sheet.
  14. Beall ; George H. ; Chyung ; Kenneth ; Hoda ; Syed N., Glass-ceramics displaying inherent lubricity.
  15. Koripella Chowdary R. ; Moya Adam D. ; Wilcox ; Sr. David, Integrated ceramic exhaust gas sensors.
  16. Ghosh Syamal K. ; Chatterjee Dilip K. ; Furlani Edward P., Integrated ceramic micro-chemical plant.
  17. Ashmead James W. (Middletown DE) Blaisdell Charles T. (Middletown DE) Johnson Melvin H. (Chadds Ford PA) Nyquist Jack K. (Chadds Ford PA) Perrotto Joseph A. (Landenberg PA) Ryley ; Jr. James F. (Drex, Integrated chemical processing apparatus and processes for the preparation thereof.
  18. Chatterjee Dilip K. ; Ghosh Syamal K. ; Furlani Edward P., Integrated micro-ceramic chemical plant with insertable catalytic reaction chambers.
  19. Chatterjee Dilip K. ; Ghosh Syamal K. ; Furlani Edward P., Integrated micro-ceramic chemical plant with insertable micro-filters.
  20. Chatterjee Dilip K. ; Ghosh Syamal K. ; Furlani Edward P., Integrated micro-ceramic chemical plant with insertable reaction chambers and micro-filters.
  21. Dai Xunhu ; Forst Donald W., Low-loss PZT ceramic composition cofirable with silver at a reduced sintering temperature and process for producing same.
  22. Haertling Carol (Santa Ana CA) Shapiro Andrew A. (Orange CA) Goodman Charles A. (Garden Grove CA) Pond Ramona G. (Downey CA) Washburn Robert D. (Malibu CA) McClanahan Robert F. (Valencia CA) Gonzalez, Low-temperature-cofired-ceramic (LTCC) tape structures including cofired ferromagnetic elements, drop-in components and.
  23. Karr Scott P. (Baltimore MD), Method and apparatus of producing cavities in LTCC substrates.
  24. Cherukuri Satyam C. (Cranbury NJ) Demers Robert R. (Cranbury NJ) Fan Zhong H. (Middlesex NJ) Levine Aaron W. (Lawrenceville NJ) McBride Sterling E. (Lawrence Township ; Mercer County NJ) Zanzucchi Pe, Method and system for inhibiting cross-contamination in fluids of combinatorial chemistry device.
  25. Cawley James D. ; Heuer Arthur H. ; Newman Wyatt S., Method for constructing three dimensional bodies from laminations.
  26. Inasaka Jun (Tokyo JPX), Method for fabricating a ceramic multi-layer substrate.
  27. Natarajan Govindarajan (Pleasant Valley NY) Bezama Raschid J. (Mahopac NY) Knickerbocker John U. (Hopewell Junction NY), Method for forming cavities without using an insert.
  28. Natarajan Govindarajan (Pleasant Valley NY) Patel Niranjan M. (Wappingers Falls NY) Smith Kurt A. (Poughkeepsie NY), Method for forming cavity structures using thermally decomposable surface layer.
  29. Bezama Raschid Jose ; Knickerbocker John Ulrich ; Natarajan Govindarajan ; Zhou Joseph Gang, Method for forming multiple cavity products.
  30. Hamuro Mitsuro (Kyoto JPX) Nakahara Kunikazu (Kyoto JPX) Higuchi Hirokazu (Kyoto JPX) Watanabe Kenich (Kyoto JPX), Method for laminating ceramic green sheets.
  31. Schmeckenbecher Arnold Friedrich (Poughkeepsie NY), Method for metallizing ceramic green sheets.
  32. Okawa Yasuo (Nagoya JPX) Chikaoka Yasuji (Aichi-ken JPX) Sakaida Atsuo (Gifu-ken JPX) Suzuki Yoshihumi (Ena JPX) Ikezaki Yoshiyuki (Nagoya JPX), Method for producing a layered piezoelectric element.
  33. Okawa Yasuo,JPX ; Chikaoka Yasuji,JPX ; Sakaida Atsuo,JPX ; Suzuki Yoshihumi,JPX ; Ikezaki Yoshiyuki,JPX, Method for producing a layered piezoelectric element.
  34. Mikeska Kurt R. (Wilmington DE) Schaefer Daniel T. (Newark DE), Method for reducing shrinkage during firing of ceramic bodies.
  35. Kawabata Shoichi (Nagaokakyo JPX) Wakatsuki Hiromichi (Nagaokakyo JPX) Sakai Norio (Nagaokakyo JPX) Okada Keiichi (Nagaokakyo JPX), Method of fabricating ceramic laminated electronic component.
  36. Bloechle Donald P. (Rockaway NJ) Kalliat Mohanan P. (Richmond VA) Mazeika William A. (Mechanicsville VA), Method of fabricating multilayer structures with nonplanar surfaces.
  37. Natarajan Govindarajan ; Pasco Robert W. ; Perry Charles H. ; Peterson Vincent P., Method of forming cavity substrates using compressive pads.
  38. Alexander John H. (Goletta CA), Method of making ceramic article with cavity using LTCC tape.
  39. Chiao Yi-Hung (Midland MI), Method of making co-fired, multilayer substrates.
  40. Tsukada Mineharu (Kawasaki JPX) Omote Koji (Kawasaki JPX), Method of manufacturing a laminated piezoelectric actuator.
  41. Saitoh Tsuyoshi (Kyoto JPX) Kawabata Shoichi (Kyoto JPX) Sakai Norio (Kyoto JPX), Method of manufacturing cavitied ceramic multilayer block.
  42. Kohno Yoshiaki (Kyoto JPX) Sakai Norio (Kyoto JPX), Method of manufacturing ceramic laminate.
  43. Kohno Yoshiaki (Kyoto JPX) Sakai Norio (Kyoto JPX), Method of manufacturing ceramic laminate.
  44. Mori Haruhiko,JPX, Method of manufacturing multilayer ceramic component.
  45. Ogawa Mamoru (Kyoto JPX) Todo Tatsuya (Kyoto JPX) Mizukami Miyuki (Kyoto JPX), Method of manufacturing multilayer ceramic electronic component.
  46. Toudo Tatsuya (Nagaokakyo JPX) Nakagawa Tadahiro (Nagaokakyo JPX) Nomura Toshiyuki (Nagaokakyo JPX) Mori Haruhiko (Nagaokakyo JPX) Nojiri Shigehiro (Nagaokakyo JPX), Method of press-molding ceramic green sheet laminate.
  47. Takeuchi Yukihisa (Aichi-ken JPX) Kimura Koji (Nagoya JPX), Method of producing a piezoelectric/electrostrictive actuator.
  48. Thaler Barry Jay ; Quinn Robert Leon ; Braun Paul Leonard ; Zanzucchi Peter J. ; Burton Charlotte A. ; McBride Sterling E. ; Demers Robert R., Method of producing micro-electrical conduits.
  49. Kamahori Masao (Saitama JPX), Micro-reactor device for minute sample analysis.
  50. Faris Sadeg M. (24 Pocantico River Rd. Pleasantville NY 10570) Jain Kanti (18 Algonquian Trail Briarcliff Manor NY 10510), Microchannel plate technology.
  51. Faris Sadeg M. (Pleasantville NY) Jain Kanti (Briarcliff Manor NY), Microchannel plate technology.
  52. Wegeng Robert S. ; Drost M. Kevin ; Call Charles J. ; Birmingham Joseph G. ; McDonald Carolyn Evans ; Kurath Dean E. ; Friedrich Michele, Microcomponent chemical process sheet architecture.
  53. Wegeng Robert S. (Richland WA) Drost M. Kevin (Richland WA) McDonald Carolyn E. (Richland WA), Microcomponent sheet architecture.
  54. Biegelsen David K. ; Jackson Warren B. ; Cheung Patrick C. P. ; Yim Mark H. ; Berlin Andrew A., Microdevice valve structures to fluid control.
  55. Loewy Zvi ; Kumar Rajan, Microfluidic method for nucleic acid amplification.
  56. Aoki Shigenori (Atsugi JPX) Imanaka Yoshihiko (Atsugi JPX), Multilayer ceramic copper circuit board.
  57. Bravo Pedro L. (Altadena CA) Klyachman Roman (Mission Viejo CA), Multilayer ceramic tape substrate having cavities formed in the upper layer thereof and method of fabricating the same b.
  58. Takahashi Sadayuki (Tokyo JPX) Yonezawa Masatomo (Tokyo JPX) Ochi Atsushi (Tokyo JPX) Yano Takeshi (Tokyo JPX) Hamatsuki Takeshige (Tokyo JPX) Fukui Izumu (Tokyo JPX), Multilayer electrostrictive element which withstands repeated application of pulses.
  59. Zanzucchi Peter J. (Lawrenceville NJ) Cherukuri Satyam C. (Cranbury NJ) McBride Sterling E. (Lawrenceville NJ), Partitioned microelectronic and fluidic device array for clinical diagnostics and chemical synthesis.
  60. Zanzucchi Peter John ; Cherukuri Satyam Choudary ; McBride Sterling Edward ; Judd Amrit Kaur, Partitioned microelectronic device array.
  61. Gauci John P. (Putnam Valley NY) Kline Thomas A. (Wappingers Falls NY), Process for forming open-centered multilayer ceramic substrates.
  62. Tominaga Takashi (Osaka JPX) Sakuramoto Takahumi (Osaka JPX) Nishiyama Souji (Osaka JPX) Kamei Kiyohiro (Osaka JPX) Kobayashi Yoshiki (Osaka JPX) Uemura Gosei (Osaka JPX), Process for producing a multilayered ceramic structure using an adhesive film.
  63. Nanataki Tsutomu,JPX ; Nakao Shigeki,JPX, Process for production of ceramic member having fine throughholes.
  64. Takeuchi, Yukihisa, Process of manufacturing ceramic circuit board.
  65. Mase Syunzo (Aichi JPX) Soejima Shigeo (Nagoya JPX), Process of manufacturing electrochemical device.
  66. Ghosh Syamal K. ; Chatterjee Dilip K. ; Furlani Edward P., Reaction chamber for an integrated micro-ceramic chemical plant.
  67. Koste Walter W. (Wappinger Falls NY) Urfer Ernest N. (Hopewell Junction NY), Recessed metallurgy for dielectric substrates.
  68. Johnson Gary W. (14351 Miro Ct. Irvine CA 92714) Vitriol William A. (1505 W. Rene Dr. Anaheim CA 92802), Sensor elements in multilayer ceramic tape structures.
  69. Bailey Alex ; Starling Ronnie ; Chino John ; Gupta Tapan, Template type cavity-formation device for low temperature cofired ceramic (LTCC) sheets.

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  2. Pinchot, James M., Collimator fabrication.
  3. Pinchot,James M., Collimator fabrication.
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  5. Xiong, Renqiang; Bernard, John Michael, Compact interaction chamber with multiple cross micro impinging jets.
  6. Manole,Dan M.; Coffey,Donald L.; Moore,Michael J., Compact refrigeration system for providing multiple levels of cooling.
  7. Parce, John Wallace; Knapp, Michael R.; Chow, Calvin Y. H.; Bousse, Luc J., Controlled fluid transport in microfabricated polymeric substrates.
  8. Jacobson,Rena Y.; Gupta,Tapan K.; Fisher, III,John S.; Curbean,Andrea, Fabrication of LTCC T/R modules with multiple cavities and an integrated ceramic ring frame.
  9. Khadilkar, Chandrashekhar S.; Sridharan, Srinivasan; Seman, Paul S.; Shaikh, Aziz S., Layered contact structure for solar cells.
  10. Burdon, Jeremy W.; Huang, Rong Fong, Low pressure laminated ceramic devices and method.
  11. Natarajan, Govindarajan, Manufacturing a microfluid mixer.
  12. Roosen,Andreas; Schr��der,Andreas; Z��llner,Stephan, Method for joining ceramic green bodies using a transfer tape and conversion of bonded green body into a ceramic body.
  13. Kuipers, Winfred, Method for producing a functional unit and corresponding functional unit.
  14. Kuipers, Winfried, Method for the production of a flame ionization detector and corresponding flame ionization detector.
  15. Jacobson,Rena Y.; Gupta,Tapan K., Method of fabricating structures using low temperature cofired ceramics.
  16. Khadilkar, Chandrashekhar S.; Sridharan, Srinivasan; Shaikh, Aziz S., Method of making multilayer structures using tapes on non-densifying substrates.
  17. Khadilkar, Chandrashekhar S.; Sridharan, Srinivasan; Shaikh, Aziz S., Method of making multilayer structures using tapes on non-densifying substrates.
  18. Hayama, Masaaki; Miura, Kazuhiro; Hashimoto, Akira; Yasuho, Takeo, Method of manufacturing multilayer ceramic wiring board and conductive paste for use.
  19. Peterson,Kenneth A., Method of using sacrificial materials for fabricating internal cavities in laminated dielectric structures.
  20. Pinchot,James M., Micro-reactor fabrication.
  21. Natarajan, Govindarajan, Microfluid mixer, methods of use and methods of manufacture thereof.
  22. Pinchot, James M., Processing apparatus fabrication.
  23. Chen,Chien Hua; John,Bradley Charles; Groh,Mike, Self-aligned coating on released MEMS.
  24. Natarajan, Govindarajan, Using a microfluid mixer.
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