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公开(公告)号:WO2004070795A2
公开(公告)日:2004-08-19
申请号:PCT/US2004/003253
申请日:2004-02-04
Applicant: II-VI INCORPORATED , SHIVA CONSULTING INC. , SOGNEFEST, Peter, W. , KHANNA, S., Kumar , FERRARO, Fernando, A.
Inventor: SOGNEFEST, Peter, W. , KHANNA, S., Kumar , FERRARO, Fernando, A.
IPC: H01L
CPC classification number: H01L27/14636 , H01B1/22 , H01C17/06526 , H01C17/06586 , H01L24/29 , H01L24/32 , H01L24/75 , H01L24/83 , H01L27/14618 , H01L27/14634 , H01L2224/05568 , H01L2224/16225 , H01L2224/2919 , H01L2224/32225 , H01L2224/48091 , H01L2224/48227 , H01L2224/73204 , H01L2224/73265 , H01L2224/83192 , H01L2224/838 , H01L2224/83951 , H01L2924/00014 , H01L2924/01006 , H01L2924/0103 , H01L2924/01032 , H01L2924/01033 , H01L2924/01047 , H01L2924/0105 , H01L2924/01061 , H01L2924/01078 , H01L2924/01079 , H01L2924/01082 , H01L2924/014 , H01L2924/0665 , H01L2924/0781 , H01L2924/14 , H05K3/323 , H05K2201/0218 , H05K2201/083 , H05K2201/10727 , H05K2203/104 , H01L2924/00 , H01L2224/05599
Abstract: A semiconductor radiation detection crystal (72) converts incident radiation or an incident particle into an electrical signal. A first substrate (74) for conveying the electrical signal to processing electronics (77) is bonded to the crystal (72) via an anisotropic conductive material (10) sandwiched therebetween. The crystal (72) can include an array of pixels (73) which are positioned in opposition with an array of conductive pads (75) formed on the first substrate (74). The anisotropic conductive material (10) forms between each pixel (73) and its corresponding conductive pad (75) an electrical path, with each electrical path isolated from other electrical paths.
Abstract translation: 半导体辐射检测晶体(72)将入射的辐射或入射的微粒转换为电信号。 用于将电信号传送到处理电子器件(77)的第一衬底(74)通过夹在其间的各向异性导电材料(10)结合到晶体(72)。 晶体(72)可以包括与形成在第一衬底(74)上的导电焊盘(75)的阵列相对置的像素阵列(73)。 各向异性导电材料(10)在每个像素(73)和其对应的导电焊盘(75)之间形成电路,每个电路与其他电路隔离。
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公开(公告)号:US20040016911A1
公开(公告)日:2004-01-29
申请号:US10205251
申请日:2002-07-25
Applicant: Shiva Consulting, Inc.
Inventor: S. Kumar Khanna
IPC: H01B001/00 , H01C001/00
CPC classification number: H01L24/29 , H01B1/22 , H01C17/06526 , H01C17/06586 , H01L24/32 , H01L24/83 , H01L2224/2919 , H01L2224/29298 , H01L2224/32225 , H01L2224/83192 , H01L2224/838 , H01L2224/83951 , H01L2924/01006 , H01L2924/01015 , H01L2924/01033 , H01L2924/01047 , H01L2924/01061 , H01L2924/01074 , H01L2924/01079 , H01L2924/01082 , H01L2924/0665 , H01L2924/0781 , H01L2924/14 , H05K3/323 , H05K2201/0218 , H05K2201/10727 , H01L2924/00
Abstract: An anisotropic conductive compound includes an electrically conducting material suspended in a binder. The electrically conducting material includes nickel coated particles having a coating of silver or gold over the nickel coat and/or gold or silver coated nickel particles. In one embodiment, the binder is formed from the reaction product of a catalyst and a compound comprising an aromatic epoxy resin, a dimer fatty acid diglycidyl ester and oxirane. In another embodiment, the binder is formed from the reaction product of a novalac resin, a catalyst and either a heat polymerized aromatic epoxy resin or a phenoxy modified epoxy novalac resin.
Abstract translation: 各向异性导电化合物包括悬浮在粘合剂中的导电材料。 导电材料包括在镍涂层和/或金或银涂覆的镍颗粒上具有银或金的涂层的镍涂覆的颗粒。 在一个实施方案中,粘合剂由催化剂和包含芳族环氧树脂,二聚脂肪酸二缩水甘油酯和环氧乙烷的化合物的反应产物形成。 在另一个实施方案中,粘合剂由诺瓦克树脂,催化剂和热聚合的芳族环氧树脂或苯氧基改性的环氧树脂酚醛树脂的反应产物形成。
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公开(公告)号:US20040016505A1
公开(公告)日:2004-01-29
申请号:US10205515
申请日:2002-07-25
Applicant: Shiva Consulting, Inc.
Inventor: S. Kumar Khanna
IPC: B32B031/16
CPC classification number: H01L24/31 , H01L24/29 , H01L24/83 , H01L2224/29 , H01L2224/2919 , H01L2224/2929 , H01L2224/29355 , H01L2224/29388 , H01L2224/29393 , H01L2224/29439 , H01L2224/29444 , H01L2224/83192 , H01L2224/83222 , H01L2224/838 , H01L2224/83951 , H01L2924/00013 , H01L2924/01005 , H01L2924/01006 , H01L2924/01015 , H01L2924/01033 , H01L2924/01047 , H01L2924/01079 , H01L2924/01082 , H01L2924/0665 , H01L2924/0781 , H01L2924/14 , H05K3/323 , H05K2201/0218 , H05K2201/083 , H05K2201/10727 , H05K2203/104 , H01L2924/00 , H01L2924/00014 , H01L2224/29099 , H01L2224/29199 , H01L2224/29299
Abstract: An anisotropic conductive compound is cured by exposing it to heat while in the presence of an AC magnetic field followed by a static, substantially homogeneous DC magnetic field.
Abstract translation: 各向异性导电化合物通过将其暴露于热而固化,同时在存在AC磁场,然后是静态的,基本上均匀的DC磁场的情况下。
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