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    • 21. 发明申请
    • Methods and Apparatuses of touch-fingerprinting Display
    • 触摸指纹显示的方法和设备
    • US20150109214A1
    • 2015-04-23
    • US14059592
    • 2013-10-22
    • Weidong ShiYang Lu
    • Weidong ShiYang Lu
    • G06F3/044
    • G06F3/044G06F3/0412G06F3/042G06K9/00013
    • The present invention describes methods and apparatuses for sensing touches and/or fingerprint images with an integrated touch-fingerprinting display comprising, a pattern of display pixels wherein said display pixels are controllable components of an electronic display, a pattern of fingerprint imaging cells, a display driver coupled with the display pixels wherein said display driver can control states of the display pixels, and a fingerprint readout circuit coupled with the fingerprint imaging cells. Furthermore, a computing apparatus can display a user interface on a touch-fingerprinting display, detect touches from a user, and then scan one or multiple fingerprint images from the user. In further embodiments, the computing apparatus can compute a biometric token based on the scanned fingerprint data and use the biometric token as identity proof to access a local resource or networked resource.
    • 本发明描述了利用集成的触摸指纹显示器来感测触摸和/或指纹图像的方法和装置,其包括:显示像素的图案,其中所述显示像素是电子显示器的可控组件,指纹图像单元的图案,显示器 驱动器与显示像素耦合,其中所述显示驱动器可以控制显示像素的状态,以及与指纹图像单元耦合的指纹读出电路。 此外,计算装置可以在触摸指纹显示器上显示用户界面,检测来自用户的触摸,然后从用户扫描一个或多个指纹图像。 在另外的实施例中,计算设备可以基于所扫描的指纹数据计算生物特征令牌,并使用生物识别令牌作为身份证明来访问本地资源或网络资源。
    • 22. 发明申请
    • Method and Apparatuses of Transparent Fingerprint Imager Integrated with Touch Display Device
    • 透明指纹成像仪与触摸显示设备集成的方法与设备
    • US20140218327A1
    • 2014-08-07
    • US13757993
    • 2013-02-04
    • Weidong ShiYang Lu
    • Weidong ShiYang Lu
    • G06F3/044
    • G06F3/044G06F3/041G06K9/00006G06K9/0004
    • The present invention describes a transparent fingerprint imaging apparatus wherein said apparatus comprises, a plurality of column lines, a plurality of scan lines, a plurality of data lines, and a plurality of fingerprint capacitance sensing cells wherein a fingerprint capacitance sensing cell further comprises, a fingerprint capacitor comprising a transparent capacitance detecting electrode and a transparent capacitance-detecting dielectric layer, a transparent reference capacitor coupled with said fingerprint capacitor with one electrode connecting to the fingerprint capacitor, and an amplification transparent TFT (thin-film transistor) wherein the gate electrode of the amplification transparent TFT connects to the transparent capacitance detecting electrode, one terminal of said amplification transparent TFT connects to a data line and the other terminal connects to a scan line.
    • 本发明描述了一种透明指纹成像装置,其中所述装置包括多条列线,多条扫描线,多条数据线和多条指纹电容感测单元,其中指纹电容感测单元进一步包括: 包括透明电容检测电极和透明电容检测电介质层的指纹电容器,与所述指纹电容器耦合的透明参考电容器,其中一个电极连接到指纹电容器,以及放大透明TFT(薄膜晶体管),其中栅电极 放大透明TFT连接到透明电容检测电极,所述放大透明TFT的一个端子连接到数据线,另一个端子连接到扫描线。
    • 23. 发明申请
    • Methods and Apparatus for Managing Service Access Using a Touch-Display Device Integrated with Fingerprint Imager
    • 使用与指纹成像仪集成的触摸显示设备来管理服务访问的方法和装置
    • US20140129843A1
    • 2014-05-08
    • US13667235
    • 2012-11-02
    • Weidong ShiTao FengYang Lu
    • Weidong ShiTao FengYang Lu
    • G06F21/32
    • G06F21/32
    • The present invention with an apparatus enables biometric based access control to services and/or resources that comprises a crypto processor, a biometric processor, a fingerprint controller, a frame hash engine, a display repeater and/or a display controller, a touch-panel controller and a biometric touch-display panel. The frame hash engine and/or the display controller computes a frame hash of the frame displayed on the biometric touch-display panel. When a fingerprint is captured, in the registration scenario, the biometric processor extracts biometric identity and stores it in a service biometric credential repository identity, and submits a registration proof to the server; in the service access scenarios, the biometric processor verifies user identity by matching fingerprint, and submits an access identity to the server.
    • 具有装置的本发明使得能够对包括密码处理器,生物测定处理器,指纹控制器,帧散列引擎,显示中继器和/或显示控制器的服务和/或资源进行基于生物特征的访问控制,触摸面板 控制器和生物识别触摸显示面板。 帧散列引擎和/或显示控制器计算显示在生物测定触摸显示面板上的帧的帧散列。 当捕获指纹时,在注册场景中,生物识别处理器提取生物识别身份并将其存储在服务生物认证证书库身份中,并向服务器提交注册证明; 在服务访问场景中,生物特征处理器通过匹配指纹验证用户身份,并向服务器提交访问标识。
    • 24. 发明授权
    • Sanitary ware of environmental protection type
    • 环保型卫生洁具
    • US08656525B2
    • 2014-02-25
    • US12854657
    • 2010-08-11
    • Weidong Shi
    • Weidong Shi
    • E03D11/02E03D11/18
    • E03D9/00E03D9/005E03D2201/40
    • A sanitary ware of environmental protection including a sanitary ware body; wherein a sewage cavity is provided at the bottom of the sanitary ware body, and a sewage draining exit is arranged on the bottom of the sewage cavity; a liquid channel and a foam channel that are not in communication with each other are provided on the sanitary ware body, and the liquid channel and the foam channel are ceramic structure integrally formed in the sanitary ware body; the sanitary ware body is further provided with a water inlet and a foam inlet, the water inlet is in communication with the liquid channel; the liquid channel is provided with liquid outlets; a deodorizing device adapted to be closed and opened is provided at the bottom of the sewage draining exit.
    • 一种卫生洁具,包括卫生洁具体; 其中在所述卫生洁具主体的底部设有污水腔,并且在所述污水腔的底部设置污水排放口; 在卫生洁具体上设置有不相通的液体通道和泡沫通道,液体通道和泡沫通道是陶瓷结构,整体地形成在卫生洁具体内; 卫生洁具体还设有入水口和泡沫入口,进水口与液体通道连通; 液体通道设有液体出口; 在污水排出口的底部设有适于封闭打开的除臭装置。
    • 26. 发明申请
    • METHOD AND APPARATUS FOR PERFORMING ANONYMOUS SOURCE ROUTING
    • 用于执行无源源路由的方法和装置
    • US20080056136A1
    • 2008-03-06
    • US11470291
    • 2006-09-06
    • Bogdan O. CarbunarMichael D. PearceWeidong ShiYang Yu
    • Bogdan O. CarbunarMichael D. PearceWeidong ShiYang Yu
    • H04J3/14H04J1/16H04L12/56
    • H04L45/00H04L45/34
    • During operation, each client device will be provided with a list of addresses for all nodes within a network. The addresses for all nodes will be unique to a particular client device such that {address(node 1), address(node 2), . . . address(node n)} for a first client does not equal {address(node 1), address(node 2), . . . address(node n)} for a second client. Each client's address for a particular node will preferably only be known by the client and a naming server. When sending a message to a destination node, a client device will create a source route consisting of the unique addresses. Because each client's address for a particular node will only be known to itself and the naming server, anyone who intercepts the route will not know what nodes along the route are used for routing the message.
    • 在操作期间,将为每个客户端设备提供网络中所有节点的地址列表。 所有节点的地址对于特定的客户端设备将是唯一的,使得{地址(节点1),地址(节点2),。 。 。 地址(节点n)}不等于{address(节点1),地址(节点2))。 。 。 地址(节点n)}。 特定节点的每个客户端的地址最好仅由客户端和命名服务器知道。 当向目标节点发送消息时,客户端设备将创建由唯一地址组成的源路由。 因为特定节点的每个客户端的地址只能自己和命名服务器知道,所以拦截路由的任何人都不知道沿路由的哪些节点用于路由该消息。