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    • 1. 发明授权
    • Decoupling apparatus for use with integrated circuit tester
    • 用于集成电路测试仪的去耦装置
    • US4835464A
    • 1989-05-30
    • US145668
    • 1988-01-14
    • Bradley D. SlyeDavid A. Johnson
    • Bradley D. SlyeDavid A. Johnson
    • G01R1/073
    • G01R1/07342Y10S439/912
    • An apparatus for decoupling one contact (40) of an integrated circuit device (12) from a primary power source provided by a tester. The apparatus includes a rack mount (58) applied over each of two pluralities of probe fingers (16) which, together with other structure, provide electronic communication between the contacts (40) of the device (12) being tested and the primary power soruce. Each of the mounts (58) has a plurality of recesses (60) formed therein for receipt of various chip capacitors (92) and shorting elements (94). The recesses (60) pass fully through their respective rack mounts (58), and a contact strip (78) is positioned in an overlying relationship to a corresponding rack mount (58) to secure the chip capacitors (92) and shorting elements (94), selectively inserted into the various recesses (60), in operative electronic engagement with probe fingers (16) corresponding to the recesses (60) in which the various capacitors (92) and shorting elements (94) are received. Projections (86) extending from the contract strips (78) are provided for this purpose. Electronic communication between the various pins (40) is completed by providing a decoupling strap (82) bridging a gap between opposite, facing contact strips (78).
    • 一种用于将集成电路装置(12)的一个触点(40)与由测试器提供的主电源分离的装置。 该装置包括一个应用在两个多个探针(16)中的每一个上的机架安装件(58),其与其它结构一起提供被测试装置(12)的触点(40)和主功率引导 。 每个安装件(58)具有形成在其中的多个凹部(60),用于接收各种片状电容器(92)和短路元件(94)。 凹槽(60)完全通过其相应的机架安装件(58),并且接触片(78)以相对于机架安装件(58)的上限关系定位,以固定片状电容器(92)和短路元件(94) ),与各个电容器(92)和短路元件(94)所接收的凹槽(60)相对应的探针(16)可操作地电连接,选择性地插入各种凹槽(60)中。 为此,提供从合约条(78)延伸的投影(86)。 通过提供桥接在相对的面对的接触片(78)之间的间隙的去耦带(82)来完成各个引脚(40)之间的电子通信。
    • 8. 发明申请
    • Curved Lenses Configured to Decode Three-Dimensional Content
    • 曲面镜片配置解码三维内容
    • US20120247653A1
    • 2012-10-04
    • US13454982
    • 2012-04-24
    • David A. JohnsonJames Pritts
    • David A. JohnsonJames Pritts
    • B29D11/00
    • G02B5/305G02B27/2228G02C7/12Y10T156/1026
    • Curved lenses configured to decode three dimensional content and method of fabricating the same. The lenses comprise a polyvinylalcohol polarizer film or similar type of material laminated with triacetate or similar type material on one or both sides, wherein the polarizer film has a polarizing efficiency equal to or exceeding 99% and a transmittance percentage equal to or exceeding 35% and a retarder film (e.g., norbornene copolymer resin) laminated on a front surface of the polyvinylalcohol polarizer film laminated with triacetate and aligned to produce a desired circular polarization responsive to specified retardation wavelengths. Thermoforming and press polishing techniques may be used to fabricate/curve the blanks into lenses. The lenses (optical elements) may be used in an injection molding process to add thickness.
    • 构造成解码三维内容的弯曲透镜及其制造方法。 透镜包括在一侧或两侧上与三乙酸酯或类似材料层压的聚乙烯醇偏光膜或类似类型的材料,其中偏振膜具有等于或超过99%的偏振效率和等于或超过35%的透光率百分比, 层叠在与三乙酸酯层叠的聚乙烯醇偏光膜的前表面上的缓凝剂膜(例如降冰片烯共聚物树脂),并对准以响应于指定的延迟波长产生期望的圆形极化。 热成型和压制抛光技术可用于制造/将坯料曲线成镜片。 透镜(光学元件)可以用于注射成型工艺以增加厚度。