Silicon wafer for probe bonding and probe bonding method using thereof
    243.
    发明授权
    Silicon wafer for probe bonding and probe bonding method using thereof 有权
    用于探针接合的硅晶片和使用其的探针接合方法

    公开(公告)号:US07804312B2

    公开(公告)日:2010-09-28

    申请号:US11569839

    申请日:2005-06-14

    Applicant: Jung-Hoon Lee

    Inventor: Jung-Hoon Lee

    CPC classification number: G01R3/00 G01R1/07342

    Abstract: Disclosed herein are a silicon wafer for probe bonding and a probe bonding method using the same. The silicon wafer for probe bonding is improved in structure to facilitate probe bonding on a probe substrate. The probe bonding method involves bonding supporting beams on the silicon wafer to bumps on the probe substrate. The silicon wafer is formed at a surface thereof with probe tips and supporting beams on an end of each probe tip to have a redetermined arrangement pattern. The silicon wafer is further formed with openings from an upper surface to a lower surface thereof. A portion of each supporting beam opposite to the probe tips protrudes is exposed to the outside through the openings.

    Abstract translation: 这里公开了用于探针接合的硅晶片和使用该硅晶片的探针接合方法。 用于探针接合的硅晶片在结构上得到改善以便于在探针基底上的探针接合。 探针接合方法包括将硅晶片上的支撑束粘合到探针基板上的凸起。 硅晶片在其表面处形成有探针尖端和支撑梁,每个探针尖端的端部具有重新确定的布置图案。 硅晶片还形成有从上表面到下表面的开口。 与探针尖端相反的每个支撑梁的一部分突出通过开口暴露于外部。

    Method for allocating physical hybrid automatic repeat request indicator channel
    244.
    发明授权
    Method for allocating physical hybrid automatic repeat request indicator channel 有权
    分配物理混合自动重发请求指示符通道的方法

    公开(公告)号:US07778148B2

    公开(公告)日:2010-08-17

    申请号:US12361185

    申请日:2009-01-28

    Abstract: A method for allocating a physical hybrid ARQ indicator channel (PHICH) includes allocating a CDM group according to a cyclic prefix type in consideration of a ratio of the numbers of necessary CDM groups according to spreading factors, and allocating a PHICH to the allocated CDM group. The PHICH includes an ACK/NACK signal multiplexed by code division multiplexing (CDM). Therefore, resources for PHICH transmission are efficiently allocated and a transmission structure can be maintained irrespective of a spreading factor.

    Abstract translation: 一种用于分配物理混合ARQ指示符信道(PHICH)的方法包括:根据扩展因子考虑所需CDM组的数量的比例,根据循环前缀类型分配CDM组,并向所分配的CDM组分配PHICH 。 PHICH包括通过码分复用(CDM)复用的ACK / NACK信号。 因此,有效地分配用于PHICH传输的资源,并且可以保持传输结构而不考虑扩频因子。

    Prism sheet, backlight unit and liquid crystal display
    247.
    发明授权
    Prism sheet, backlight unit and liquid crystal display 有权
    棱镜片,背光单元和液晶显示屏

    公开(公告)号:US07710512B2

    公开(公告)日:2010-05-04

    申请号:US11528417

    申请日:2006-09-28

    Applicant: Jung Hoon Lee

    Inventor: Jung Hoon Lee

    Abstract: The present invention relates to a liquid crystal display having excellent brightness without moiré patterns. The present invention also relates to a prism sheet and backlight unit which may improve the brightness of the liquid crystal display while removing the moiré patterns. A prism sheet comprises a protective layer including a base material consisting of a light-transmissive resin; and a plurality of diffusion particles distributed in the protective layer to scatter the light input into the base material; a base film disposed on a surface of the protective layer, wherein the light emitted from the protective layer is input into the base film; and a plurality of linear prisms having a pitch of between about 32 μm and about 38 μm and disposed in parallel on a surface of the base film.

    Abstract translation: 液晶显示器本发明涉及一种具有优异亮度且无莫尔图案的液晶显示器。 本发明还涉及一种棱镜片和背光单元,其可以在去除波纹图案的同时提高液晶显示器的亮度。 棱镜片包括保护层,该保护层包括由透光树脂构成的基底材料; 以及分散在保护层中的多个扩散粒子,以将光输入散射到基底材料中; 设置在保护层的表面上的基膜,其中从保护层发射的光被输入到基膜中; 以及具有在大约32μm和大约38μm之间的间距并且平行设置在基膜的表面上的多个线性棱镜。

    Active RF decoy simulation apparatus
    250.
    发明授权
    Active RF decoy simulation apparatus 有权
    主动RF诱饵仿真设备

    公开(公告)号:US07667634B2

    公开(公告)日:2010-02-23

    申请号:US12267606

    申请日:2008-11-09

    CPC classification number: F41J2/00 G01S7/38 G09B25/02

    Abstract: RF decoy anti-missile testing in a virtual environment through simulating the aviation of a missile, the reflected signal of a target, and an active RF decoy by use of a target motion simulator which implements the moving trajectory of the RF decoy. The RF decoy radiates a reflected signal of the target and also a deception signal through use of a microwave device that transfers the detected signal from the missile and amplifies the received signal so that a repeated delay signal of the RE decoy greater than that of the reflected signal of the target is radiated by the target motion simulator, thereby testing the deceit performance of the decoy.

    Abstract translation: 通过使用实现RF诱饵的移动轨迹的目标运动模拟器,通过模拟导弹的航空,目标的反射信号和有源RF诱饵,在虚拟环境中进行RF诱饵反导弹测试。 RF诱饵通过使用微波装置辐射目标的反射信号和欺骗信号,该微波装置将来自导弹的检测信号传送并放大接收的信号,使RE反刍的重复延迟信号大于被反射的 目标运动模拟器辐射目标信号,从而测试诱饵的欺骗性能。

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