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    • 81. 发明申请
    • OPTICAL COUPLER FOR NON-INVASIVE SPECTROPHOTOMETRIC PATIENT MONITORING
    • 光纤耦合器用于非入门光谱测量患者监测
    • US20100317949A1
    • 2010-12-16
    • US12483610
    • 2009-06-12
    • Eric V. CHAMNESSWei Zhang
    • Eric V. CHAMNESSWei Zhang
    • A61B5/1455
    • A61B5/14552A61B5/14553
    • Flexible, low-cost, physically robust optical coupling patches for use in spectrophotometric patient monitoring, and methods of fabrication thereof, are described. The optical coupling patch comprises a flexible base layer having a skin-contacting surface and a first aperture formed therethrough that establishes an optical interface with a skin surface when the base layer is placed against the skin surface. The optical coupling patch further comprises an elastomeric waveguiding member laterally disposed on a surface of the base layer opposite the skin-contacting surface. The optical coupling patch guides optical radiation between a laterally propagating state at a first location laterally distal from the first aperture and a generally vertically propagating state at the first aperture.
    • 描述了用于分光光度患者监测的柔性,低成本,物理上坚固的光耦合贴片及其制造方法。 光学耦合贴片包括具有皮肤接触表面的柔性基底层和穿过其形成的第一孔,当基底层抵靠皮肤表面放置时,其与皮肤表面建立光学界面。 光学耦合贴片还包括横向设置在与皮肤接触表面相对的基底层的表面上的弹性体波导构件。 光耦合贴片在第一位置处的横向传播状态之间引导光辐射,并且在第一孔处大致垂直传播状态。
    • 83. 发明申请
    • METHOD, DEVICE, AND SYSTEM FOR AUTHENTICATION
    • 用于认证的方法,设备和系统
    • US20100293603A1
    • 2010-11-18
    • US12846190
    • 2010-07-29
    • Wei ZhangLiang GuWenliang LiangYuhua Chen
    • Wei ZhangLiang GuWenliang LiangYuhua Chen
    • G06F21/00H04W4/00
    • H04L63/08H04L63/0892H04L63/162H04W12/06H04W84/12
    • A method for authentication includes: a Gateway Mobile Station (G-MS) receives an authentication trigger message from a host, and sends the authentication trigger message to an authentication server through an Ethernet Convergence Sublayer (Eth-CS) to trigger authentication. A network system includes a G-MS, which is connected to a host and an authentication server in communicable mode. The G-MS is configured to: receive an authentication trigger message from the host and send the authentication trigger message to the authentication server through the Eth-CS. The authentication server is configured to: receive the authentication trigger message that the G-MS sends through the Eth-CS, and authenticate the host. A G-MS includes: a receiving unit, configured to receive an authentication trigger message from the host; and a sending unit, configured to send the authentication trigger message received by the receiving unit to the authentication server through the Eth-CS.
    • 一种认证方法包括:网关移动台(G-MS)从主机接收认证触发消息,并通过以太网收敛子层(Eth-CS)将认证触发消息发送给认证服务器,以触发认证。 网络系统包括连接到主机的G-MS和可通信模式的认证服务器。 G-MS配置为:从主机接收认证触发消息,并通过Eth-CS向认证服务器发送认证触发消息。 认证服务器配置为:接收G-MS通过Eth-CS发送的认证触发消息,并对主机进行认证。 G-MS包括:接收单元,被配置为从主机接收认证触发消息; 以及发送单元,被配置为通过所述Eth-CS将由所述接收单元接收到的所述认证触发消息发送到所述认证服务器。
    • 87. 发明授权
    • Silicon micromechanical gyroscope
    • 硅微机械陀螺仪
    • US07805994B2
    • 2010-10-05
    • US11906200
    • 2007-09-29
    • Fuxue ZhangWei Zhang
    • Fuxue ZhangWei Zhang
    • G01P9/04G01C19/00
    • G01C19/5769G01C19/5726
    • The present invention relates to a novel silicon micromechanical gyroscope, which is used in control technology field to measure pose measurement of a rotating body, such as aerobat, motor tire and drilling platform, wherein the novel silicon micromechanical gyroscope main includes a sensing element and a signal process circuit. The sensing element further comprises a silicon slice frame, a silicon slice, an upper electrode ceramics plate and a bottom electrode ceramics plate. The signal process circuit further comprises a signal detecting bridge circuit used as bridge arm of the capacitor sensing element, and a SCM signal process circuit with data process module. The novel silicon micromechanical gyroscope is able to replace a drive force from the drive conformation with a rotating force from the rotation of the rotating body so as to achieve a novel silicon micromechanical gyroscope without a drive conformation. The novel silicon micromechanical gyroscope without a drive conformation to mostly achieve purposes like minify in craft, simply in structure and reduced in volume so as to effectively lower cost and save energy.
    • 本发明涉及一种新型的硅微机械陀螺仪,其用于控制​​技术领域,用于测量旋转体的姿态测量,如旋转体,如马来西亚,马达轮胎和钻井平台,其中新型硅微机械陀螺仪主要包括感测元件和 信号处理电路。 感测元件还包括硅片框,硅片,上电极陶瓷板和底电极陶瓷板。 信号处理电路还包括用作电容器感测元件的桥臂的信号检测桥电路和具有数据处理模块的SCM信号处理电路。 新型硅微机械陀螺仪能够利用来自旋转体的旋转的旋转力代替来自驱动构造的驱动力,从而实现不具有驱动构造的新型硅微机械陀螺仪。 新型硅微机械陀螺仪无驱动构型,主要实现工艺简化,结构简单,体积减小等目的,有效降低成本,节约能源。