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    • 11. 发明授权
    • Radio frequency identification (RFID) tag and manufacturing methods thereof
    • 射频识别(RFID)标签及其制造方法
    • US08919655B2
    • 2014-12-30
    • US13884969
    • 2011-03-14
    • Chen LiYong WangShoumian Chen
    • Chen LiYong WangShoumian Chen
    • G06K19/02G06K19/077
    • G06K19/07771G06K19/0775G06K19/07775
    • A radio frequency identification (RFID) device is disclosed. The RFID device includes a silicon substrate having a top side and a bottom side. The RFID device also includes a plurality of circuitry layers formed on the top side of the substrate, and the plurality of circuitry layers include at least a core circuitry and an on-chip antenna. Further, the RFID device includes a plurality of deep openings formed in the substrate on the bottom side under the plurality of circuitry layers. The plurality of deep openings are arranged in an array and through a substantial portion of the substrate, and a remaining portion of the substrate unreached by the plurality of deep openings separates the plurality of deep openings and the plurality of circuitry layers.
    • 公开了射频识别(RFID)设备。 RFID装置包括具有顶侧和底侧的硅衬底。 RFID设备还包括形成在衬底的顶侧上的多个电路层,并且多个电路层至少包括核心电路和片上天线。 此外,RFID装置包括在多个电路层下方的底侧上的基板中形成的多个深开口。 多个深开口以阵列布置并且穿过基底的大部分,并且未被多个深开口未被接触的基底的剩余部分分离出多个深开口和多个电路层。
    • 15. 发明授权
    • Smart card watch
    • 智能卡手表
    • US08235586B2
    • 2012-08-07
    • US12736307
    • 2009-03-25
    • Chen LiLucas Alexander Karl Scheybal
    • Chen LiLucas Alexander Karl Scheybal
    • G04B37/00
    • G04G21/00G04G17/08G04G21/04
    • A smart card watch comprises a watch head (1) and straps (2). A timepiece device and a smart card device are provided in the watch head (1), and a card slot (126) is provided on the side of the watch head (1). People can easily carry the smart card (153) with the watch which cannot be lost easily and they can conveniently change smart cards having different functions any time and anywhere they want. The smart card has great functions and can be used and operated easily. Furthermore, the timepiece device and the smart card device are installed in separate sealed chambers, a first chamber (14) and a second chamber (15) in the watch head (1), thus the timepiece device can be well protected such that it has a prolonged endurance and an ensured working stability. Even if the backcover (13) is opened to repair the smart card device, the normal operation of the timepiece device and the water-tightness of the first chamber (14) are not affected. Besides, the watch head (1) is further provided with a port (154), in particular USB port, which can get access to the service provider's websites via an external computer for electronic data communication and data updates of related services.
    • 智能卡手表包括手表头(1)和带子(2)。 在钟表头(1)中设置有钟表装置和智能卡装置,并且在手表头(1)的一侧设置卡槽(126)。 人们可以轻松地携带智能卡(153),手表不容易丢失,他们可以随时随地方便地更换具有不同功能的智能卡。 智能卡功能强大,易于使用和操作。 此外,钟表装置和智能卡装置安装在手表头(1)中的分离的密封室,第一室(14)和第二室(15)中,因此钟表装置可以被良好地保护,使得其具有 延长耐力和确保工作稳定性。 即使打开后盖(13)来修理智能卡装置,钟表装置的正常操作和第一室(14)的防水性也不受影响。 此外,手表头(1)还设有端口(154),特别是USB端口,其可以经由外部计算机访问服务提供商的网站,用于电子数据通信和相关服务的数据更新。
    • 17. 发明申请
    • VGPU: A real time GPU emulator
    • VGPU:实时GPU模拟器
    • US20100214301A1
    • 2010-08-26
    • US12391066
    • 2009-02-23
    • Jinyu LiChen LiGang ChenXin Tong
    • Jinyu LiChen LiGang ChenXin Tong
    • G06T1/00
    • G06T1/20
    • An exemplary method for emulating a graphics processing unit (GPU) includes executing a graphics application on a host computing system to generate commands for a target GPU wherein the host computing system includes host system memory and a different, host GPU; converting the generated commands into intermediate commands; based on one or more generated commands that call for one or more shaders, caching one or more corresponding shaders in a shader cache in the host system memory; based on one or more generated commands that call for one or more resources, caching one or more corresponding resources in a resource cache in the host system memory; based on the intermediate commands, outputting commands for the host GPU; and based on the output commands for the host GPU, rendering graphics using the host GPU where output commands that call for one or more shaders access the one or more corresponding shaders in the shader cache and where output commands that call for one or more resources access the one or more corresponding resources in the resource cache. Other methods, devices and systems are also disclosed.
    • 用于模拟图形处理单元(GPU)的示例性方法包括在主计算系统上执行图形应用以生成目标GPU的命令,其中主计算系统包括主机系统存储器和不同的主机GPU; 将生成的命令转换为中间命令; 基于一个或多个生成的命令来调用一个或多个着色器,将一个或多个对应的着色器缓存在所述主机系统存储器中的着色器高速缓存中; 基于调用一个或多个资源的一个或多个生成的命令,高速缓存所述主机系统存储器中的资源高速缓存中的一个或多个相应的资源; 基于中间命令,输出主机GPU的命令; 并且基于用于主机GPU的输出命令,使用主机GPU渲染图形,其中调用一个或多个着色器的输出命令访问着色器高速缓存中的一个或多个对应的着色器,以及其中调用一个或多个资源访问的输出命令 资源高速缓存中的一个或多个相应的资源。 还公开了其它方法,装置和系统。
    • 20. 发明申请
    • Method for optimizing groove structure of friction plate of wet type friction engagement apparatus
    • 湿式摩擦接合装置摩擦片槽结构优化方法
    • US20050224310A1
    • 2005-10-13
    • US11062107
    • 2005-02-18
    • Chen LiJin Takahashi
    • Chen LiJin Takahashi
    • F16D13/64F16D13/74F16D65/12F16D69/00
    • F16D65/12F16D13/64F16D13/648F16D13/74F16D2069/004
    • The object of the present invention is to provide an optimizing method for a groove structure of a friction disk of a wet-type friction engaging element, which can reduce drag torque by increasing outgoing flow of lubricating oil on the friction surface and increasing the content of air in the lubricating oil. The optimizing method for a groove structure of a friction disk of a wet-type friction engagement element comprising a sectoral inner section 12 of a groove 10 widening inwardly formed on the surface of a friction member of the wet-type friction engaging element, wherein the outgoing flow per groove area is calculated based on the entrance angle (opening angle) θ of the inner section 12 and the ratio h/w of the full length w of the groove 10 to the length h of the inner section; and then a range of the entrance angle (opening angle) θ of the inner section and the ratio h/w of the full length w of the groove to the length h of the inner section is determined where the outgoing flow per groove area is at least a certain value.
    • 本发明的目的是提供一种用于湿式摩擦接合元件的摩擦盘的槽结构的优化方法,其可以通过增加摩擦表面上的润滑油的流出量来增加阻力矩,并且增加其含量 润滑油中的空气。 湿式摩擦接合元件的摩擦盘的槽结构的优化方法包括在湿式摩擦接合元件的摩擦构件的表面上向内扩大的槽10的扇形内部部分12,其中, 基于内部部分12的入射角(开口角)θ和凹槽10的全长w的比率h / w与内部部分的长度h计算出每个凹槽面积的流出量; 然后确定内部部分的入口角(开口角)θ以及槽的全长w与内部部分的长度h之比h / w的范围,其中每个沟槽区域的流出处于 至少一定价值。