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    • 13. 发明授权
    • Anisotropic interposer pad
    • 各向异性插入片
    • US5636996A
    • 1997-06-10
    • US600559
    • 1996-02-12
    • David C. JohnsonKeith L. VolzWarren A. BatesFrederick R. DeakCharles P. Brooks
    • David C. JohnsonKeith L. VolzWarren A. BatesFrederick R. DeakCharles P. Brooks
    • H01R13/24H05K3/32H01R9/09
    • H01R13/2414H01R12/52H05K3/325
    • An anisotropic interposer pad (10) disposed between a first surface (11) and a second surface (12) in an electrical interface wherein the interface surfaces (11, 12) are non-compatible metals. The interposer pad (10) is a plastic layer (20) and a plurality of spaced-apart electrically conducting particles (21) are disposed in a random pattern throughout the plastic layer (20). The particles (21) extend between the first side (22) of the plastic layer (20) and the second side (23) of the plastic layer (20). There is no lateral contact between any of the particles (21). The particles (21) are electrically conductive in a direction oriented between the first side (22) and the second side (23) of the plastic layer (20). The particles (21) act as an electrical connection between the first surface (11) and the second surface (12).
    • 设置在电接口中的第一表面(11)和第二表面(12)之间的各向异性插入器焊盘(10),其中界面表面(11,12)是不兼容的金属。 插入垫(10)是塑料层(20),并且多个间隔开的导电颗粒(21)以整个塑料层(20)中的随机图案设置。 颗粒(21)在塑料层(20)的第一侧(22)和塑料层(20)的第二侧(23)之间延伸。 任何颗粒(21)之间没有侧向接触。 颗粒(21)在塑料层(20)的第一侧(22)和第二侧(23)之间取向的方向上导电。 颗粒(21)用作第一表面(11)和第二表面(12)之间的电连接。
    • 14. 发明授权
    • Burn-in socket testing apparatus
    • 老化插座测试仪
    • US5486771A
    • 1996-01-23
    • US363559
    • 1994-12-23
    • Keith L. VolzRobert M. RennRobert D. IrlbeckFrederick R. DeakDavid C. Johnson
    • Keith L. VolzRobert M. RennRobert D. IrlbeckFrederick R. DeakDavid C. Johnson
    • G01R31/26G01R1/04H01R33/76H01R33/97H05K7/10G01R31/02H05K1/02
    • H05K7/1023G01R1/0433
    • This invention is directed to a mechanical, robotically operated burn-in socket testing apparatus for integrated circuit "chips", where such chips, as known in the art, are typically planar electronic devices. The apparatus, operationally mounted to a planar electronic board, such as a mother board, comprises a first frame member for mounting to the mother board, where the first frame member includes electrical means for engaging chip leads and applying electrical current thereto during the burn-in testing. A second frame member is disposed in sliding engagement with the first frame member, where the second frame member is movable from a first position to a second position. Finally, cooperative latching and camming means are provided between the first and second frame members to effect the movement between the first and second positions, and to securely hold the chip during burn-in, where the camming means includes a pivotal member movable from a remote position free of the chip to a position engaging the chip.
    • 本发明涉及用于集成电路“芯片”的机械式机器人操作的老化插座测试装置,其中如本领域已知的这样的芯片通常是平面电子器件。 该装置可操作地安装在诸如母板的平面电子板上,包括用于安装到母板的第一框架构件,其中第一框架构件包括用于接合芯片引线并在燃烧期间向其施加电流的电气装置, 在测试。 第二框架构件设置成与第一框架构件滑动接合,其中第二框架构件可从第一位置移动到第二位置。 最后,协作锁定和凸轮装置设置在第一和第二框架构件之间以实现第一和第二位置之间的移动,并且在老化期间牢固地保持芯片,其中凸轮装置包括可从远程 位置没有芯片到与芯片接合的位置。
    • 15. 发明授权
    • Elastomeric wire to pad connector
    • 弹性线到垫连接器
    • US5199882A
    • 1993-04-06
    • US854111
    • 1992-03-19
    • Warren A. BatesFrederick R. DeakDavid C. JohnsonKeith L. Volz
    • Warren A. BatesFrederick R. DeakDavid C. JohnsonKeith L. Volz
    • H01R9/03H01R13/24H05K3/36
    • H01R13/2414H05K3/365H01R9/03
    • Component package (10) includes component (24) having conductive pads (26) attached to the lid (20) of a housing (30) containing wires (14) of a cable (12) positioned therewithin to be engaged by an elastomeric connector (42) having a resilient core (44) with a thin, dielectric film (46) carrying conductive traces (48) extending over a tab (50) with the housing and lid driving the pads against the connector to interconnect the pads to the traces to the wires upon closure. In one embodiment, the wires (14) are solder coated (16) with a solder reflow effecting a tab to wire connection and in another embodiment, precious metal coatings are employed to allow pressure connection between wire and traces. Alternatively, coatings of conductive inks or conductive adhesives may be used. The conductive traces may be placed on centers appropriate to the particular centers in the array of conductive pads and in the array of wires, such centers being selectively varied.
    • 组件封装(10)包括具有附接到壳体(30)的盖(20)的导电焊盘(26)的部件(24),该壳体包含电缆(12)的导线(14),所述导线(14)定位在其中以由弹性体连接器 42),其具有弹性芯(44),所述弹性芯(44)具有薄的绝缘膜(46),所述介电膜承载导电迹线(48),所述绝缘膜承载导电迹线(48),所述导电迹线延伸在突片(50)上,所述壳体和盖将所述垫驱动抵靠所述连接器, 电线关闭。 在一个实施例中,电线(14)被焊接涂覆(16),其中焊料回流实现突片到电线连接,并且在另一个实施例中,使用贵金属涂层来允许电线和迹线之间的压力连接。 或者,可以使用导电油墨或导电粘合剂的涂层。 导电迹线可以放置在适合于导电焊盘阵列中的特定中心的中心上,并且在导线阵列中,这样的中心是有选择地变化的。
    • 17. 发明授权
    • Computer docking system
    • 电脑对接系统
    • US5310358A
    • 1994-05-10
    • US995615
    • 1992-12-22
    • David C. JohnsonRobert M. RennKeith L. VolzFrederick R. Deak
    • David C. JohnsonRobert M. RennKeith L. VolzFrederick R. Deak
    • G06F1/16H01R13/193H01R13/627H01R13/635
    • G06F1/1632H01R13/193H01R13/6275H01R12/714H01R13/635H01R2201/06
    • A computer docking system (10, 10') has a computer (11, 11') provided with a guide housing (12, 12') within which a device (13, 13') is slidably inserted. In one embodiment, the device (13) carries a pair of manually-releasable spring-loaded latches (24, 25) pivotally mounted thereon about respective axes which are substantially perpendicular to the direction which the device (13) is slidably inserted into the guide housing (12) for engagement with respective hooks (36) on the computer (11). In another embodiment, the latches (51, 52) are pivotably mounted on the guide housing (12') about respective axes which are substantially parallel to the direction in which the device (13') is slidably inserted into the guide housing (12'). The guide housing (12') includes a fixed bottom portion (44) on which the latches (51, 52) are pivotably mounted, and further includes a spring-loaded movable top portion (45) receiving the device (13') and ultimately nested telescopically within the fixed bottom portion (44). In each embodiment, a substantially zero insertion force ("ZIF") is achieved between at least one flexible electrical connector (41, 57, 58) and a circuit pad (43, 60, 61) as the device (13, 13') is inserted into the guide housing (12, 12').
    • 计算机对接系统(10,10')具有设置有引导壳体(12,12')的计算机(11,11'),其中可滑动地插入设备(13,13')。 在一个实施例中,装置(13)携带一对手动可释放的弹簧加载的闩锁(24,25),其围绕相应的轴线可枢转地安装在其上,大致垂直于装置(13)可滑动地插入引导件 壳体(12),用于与计算机(11)上的相应钩(36)接合。 在另一个实施例中,闩锁(51,52)围绕相应的轴可枢转地安装在引导壳体(12')上,该轴线基本上平行于装置(13')可滑动地插入引导壳体(12')的方向, )。 引导壳体(12')包括固定的底部部分(44),闩锁(51,52)可枢转地安装在该固定底部部分上,并且还包括接收装置(13')的弹簧加载的可动顶部部分(45) 嵌套在固定底部部分(44)内。 在每个实施例中,在至少一个柔性电连接器(41,57,58)和作为装置(13,13')之间的电路板(43,60,61)之间实现基本为零的插入力(“ZIF”), 被插入到引导壳体(12,12')中。
    • 18. 发明授权
    • Interface system for angularly-converging printed circuit boards
    • 用于角度汇聚印刷电路板的接口系统
    • US5306161A
    • 1994-04-26
    • US994862
    • 1992-12-22
    • Keith L. VolzRobert M. RennFrederick R. DeakDavid C. Johnson
    • Keith L. VolzRobert M. RennFrederick R. DeakDavid C. Johnson
    • H01R12/62H01R12/70H01R12/71H01R13/03H01R24/84H01R9/09
    • H01R12/7005H01R12/62H01R12/71H01R13/03H01R23/27
    • A pair of printed circuit boards (11, 12) angularly converge towards each other about a pivot axis (13). Each of the boards (11, 12) carries a connector housing (16). The connector housings (16) are identical, but are inverted end-to-end with respect to each other, such that a plurality of hermaphroditic guide fingers (19) on one of the connector housings (16) will mesh with a complementary plurality of guide fingers (19) on the other connector housing (16). The meshing engagement of the guide fingers (19) provides a guide means and a stop means between the connector housings (16) and hence between the printed circuit boards (11, 12). Each of the identical connector housings (16) further has a flexible electrical connector (17), and the flexible electrical connectors (17) engage each other when the printed circuit boards (11, 12) are fully converged. Inclined surfaces (21, 22) on the meshing guide fingers (19) provide a self-alignment feature as the printed circuit boards (11, 12) and the connector housings (16) thereon are angularly converged. Preferably, each connector housing (16) has spaced-apart pairs of bifurcated latching fingers (23) such that the connector housing (16) is "snapped" on to its respective printed circuit board (11, 12).
    • 一对印刷电路板(11,12)围绕枢转轴线(13)彼此成角度地会聚。 每个板(11,12)承载连接器壳体(16)。 连接器壳体16是相同的,但是相对于彼此端对端地倒置,使得其中一个连接器壳体(16)上的多个阴阳导引指(19)将与互补的多个 另一连接器壳体(16)上的引导指(19)。 引导指(19)的啮合接合在连接器壳体(16)之间并因此在印刷电路板(11,12)之间提供引导装置和止动装置。 每个相同的连接器壳体(16)还具有柔性电连接器(17),并且当印刷电路板(11,12)完全收敛时,柔性电连接器(17)彼此接合。 啮合引导指(19)上的倾斜表面(21,22)提供自对准特征,因为其上的印刷电路板(11,12)和连接器壳体(16)成角度地会聚。 优选地,每个连接器壳体(16)具有间隔开的分叉闩锁指(23)对,使得连接器壳体(16)“卡扣”在其相应的印刷电路板(11,12)上。