会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 61. 发明授权
    • Specimen optical information recognizing device and its recognizing method
    • 标本光信息识别装置及其识别方法
    • US07999929B2
    • 2011-08-16
    • US11659132
    • 2005-08-01
    • Ken TsukiiJie XuKenichi KimuraSatoshi Sugiyama
    • Ken TsukiiJie XuKenichi KimuraSatoshi Sugiyama
    • G01N21/00
    • G01N21/6452G01N21/253G01N2201/08
    • A specimen optical information recognizing device includes a specimen containing section containing a specimen to be measured, a specimen measuring section having a light source for outputting light for observing the specimen, a photodetecting section for collecting optical information from the specimen, and an optical waveguide for propagating light between the specimen containing and the specimen measuring sections. The optical information on the specimen may be recognized by measuring values under at least two measurement conditions. The specimen optical information recognizing device includes a measurement auxiliary liquid interposed between the end of the optical waveguide and the specimen. A longitudinal cross section of the specimen containing section may be of a recessed shape, and the aperture depth of the recessed portion may be greater than the aperture diameter. A through hole may be provided at least in a part near the bottom of the specimen containing section.
    • 样本光学信息识别装置包括:包含待测试样本的检体容纳部,具有用于输出用于观察样本的光的光源的检体测定部;检体的光信息的光检测部;光检测部 在载体和样品测量部分之间传播光。 可以通过在至少两个测量条件下测量值来识别样品上的光学信息。 样本光学信息识别装置包括介于光波导的端部和样本之间的测量辅助液体。 试样容纳部的纵截面可以是凹形,凹部的开口深度可以大于孔直径。 至少在样本容纳部的底部附近的部分设置通孔。
    • 65. 发明授权
    • Method for handoff from packet switching domain to circuit switching domain and equipment thereof
    • 从分组交换域到电路交换域切换的方法及其设备
    • US07522585B2
    • 2009-04-21
    • US11499925
    • 2006-08-07
    • Wenyu LiuFang YouJie Xu
    • Wenyu LiuFang YouJie Xu
    • H04L12/66
    • H04W36/0022
    • The present invention discloses a method for handoff from a PS domain to a CS domain, including: the MS obtaining a handoff number and initiating a CS domain session request by taking the handoff number as a called number; a network side associating the CS domain session request to an original session of the MS and notifying the MS to finish an air interface handoff; the MS notifying the network side to finish a network side handoff. The present invention also discloses a CS domain access network simulating entity, a PS domain access network and an MS thereof. By adopting the solution, it is not necessary to modify existing network cells in the CS domain network, and the routing process is simplified. It is not necessary for handoff control layer entities to simulate original services of the CS domain. There is no new requirement for functions of the MGCF entity.
    • 本发明公开了一种从PS域切换到CS域的方法,包括:MS通过将切换号码作为被叫号码获得切换号码并发起CS域会话请求; 网络侧将CS域会话请求与MS的原始会话相关联,并通知MS完成空中接口切换; MS通知网络端完成网络侧切换。 本发明还公开了CS域接入网模拟实体,PS域接入网及其MS。 通过采用该方案,不需要修改CS域网中现有的网元,简化路由过程。 切换控制层实体不需要模拟CS域的原始业务。 MGCF实体的功能没有新的要求。
    • 67. 发明申请
    • Scheme for use in testing software for computer entertainment systems
    • 用于计算机娱乐系统测试软件的方案
    • US20070082741A1
    • 2007-04-12
    • US11247059
    • 2005-10-11
    • Jie Xu
    • Jie Xu
    • A63F13/00
    • A63F13/80A63F13/10A63F13/77
    • Scheme for use in testing software for computer entertainment systems allows the operations that are entered by the user into the system's manual controller (or “game pad”) to be recorded. A test version of a software title includes code that initializes a library that is configured to record controller data for testing purposes. The controller data from the manual controller is received in a host and is then stored. The captured controller data can then be used to reproduce the bug or other flaw. The library may also be configured to retrieve controller data from storage for testing purposes to implement a playback function. The retrieved controller data is sent to an operating system for the entertainment system to emulate controller input data when running the game or other software.
    • 用于计算机娱乐系统测试软件的方案允许将用户输入的操作记录到系统的手动控制器(或“游戏键盘”)中。 软件标题的测试版本包括初始化配置为记录控制器数据以进行测试的库的代码。 来自手动控制器的控制器数据被接收在主机中,然后被存储。 捕获的控制器数据可用于重现错误或其他缺陷。 库还可以被配置为从存储器检索控制器数据用于实现回放功能的测试目的。 检索到的控制器数据被发送到娱乐系统的操作系统,以在运行游戏或其他软件时模拟控制器输入数据。
    • 69. 发明授权
    • Semiconductor wafer cleaving method and apparatus
    • 半导体晶片切割方法和装置
    • US06513694B1
    • 2003-02-04
    • US09634963
    • 2000-08-08
    • Jie XuKenji Suzuki
    • Jie XuKenji Suzuki
    • H01L2178
    • H01L21/67092B28D5/0011B28D5/0023B28D5/0052H01L21/78Y10T225/18Y10T225/325Y10T225/357
    • The invention provides a semiconductor wafer cleaving method and apparatus which are used to obtain an ideal vertical cleaved plane of semiconductor wafers. A semiconductor wafer (1) having a scribing mark (2) inscribed on the surface is set on fulcrum members (6a and 6b). The fulcrum members (6a and 6b) are left-right symmetrical centering around the scribing mark (2) and parallel to the scribing mark (2). Fulcrum members (4a and 4b) are disposed left-right symmetrically centering around the scribing mark (2) and in parallel to the scribing mark (2) on the upper side of the semiconductor wafer (1). The fulcrum members (4a and 4b) are disposed outside the fulcrum members (6a and 6b). Load is applied from the fulcrum members (4a and 4b) side, wherein fulcrum forces are caused to operate from the respective fulcrum members (4a, 4b, 6a and 6b) onto the semiconductor wafer (1). A shearing force becomes zero in an area of the semiconductor wafer (1) between the fulcrum members (6a and 6b), wherein the maximum main stress of bending tension is actuated in a direction orthogonal to the perpendicular plane of the scribing mark (2), thereby cleaving the semiconductor wafer (1).
    • 本发明提供半导体晶片切割方法和装置,其用于获得半导体晶片的理想垂直切割平面。 将具有刻印在表面上的划刻标记(2)的半导体晶片(1)设置在支点(6a和6b)上。 支点构件(6a和6b)以划线标记(2)为中心并平行于划线标记(2)左右对称。 支点构件(4a和4b)以划线标记(2)为中心并与半导体晶片(1)的上侧上的划线标记(2)平行地左右对称地布置。 支点构件(4a和4b)设置在支点构件(6a和6b)的外侧。 从支点构件(4a和4b)侧施加载荷,其中使支点从相应的支点构件(4a,4b,6a和6b)操作到半导体晶片(1)上。 在支点构件(6a和6b)之间的半导体晶片(1)的区域中的剪切力变为零,其中弯曲张力的最大主应力在与划线标记(2)的垂直平面垂直的方向上被致动, ,从而切割半导体晶片(1)。