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    • 1. 发明授权
    • Optically controlled MEMS switch and method of using the same
    • 光控MEMS开关及其使用方法
    • US08749237B2
    • 2014-06-10
    • US13004757
    • 2011-01-11
    • Joseph Alfred IannottiEric FivelandWilliam Platt
    • Joseph Alfred IannottiEric FivelandWilliam Platt
    • G01V3/00
    • B81B7/008G01R33/3657G01R33/3692H01H59/0009H03K17/785
    • The present embodiments are directed towards the optical control of switching an electrical assembly. For example, in an embodiment, an electrical package is provided. The electrical package generally includes a micro electromechanical systems (MEMS) device configured to interface with an electrical assembly, the MEMS device being operable to vary the electrical assembly between a first electrical state and a second electrical state, a MEMS device driver in communication with the MEMS device and being operable to produce high voltage switching logic from an electrical signal, and an optical detector in communication with the MEMS device driver and configured to produce the electrical signal from an optical signal produced by a light source in response to an applied current-based electrical control signal.
    • 本实施例涉及切换电组件的光学控制。 例如,在一个实施例中,提供电气封装。 电气封装通常包括配置成与电气组件接口的微机电系统(MEMS)装置,MEMS装置可操作以在第一电状态和第二电状态之间改变电组件,与所述电气组件通信的MEMS装置驱动器 MEMS器件并且可操作以从电信号产生高压开关逻辑,以及与MEMS器件驱动器通信的光学检测器,并且被配置为响应于所施加的电流信号产生由光源产生的光信号的电信号, 基于电控制信号。
    • 4. 发明申请
    • Hook connector with plastic fire relief
    • 钩子连接器与塑料防火
    • US20060260244A1
    • 2006-11-23
    • US11130529
    • 2005-05-17
    • William PlattYu Lin
    • William PlattYu Lin
    • E04B9/00
    • E04B9/08E04B9/068E04B9/122Y10S52/05
    • A connector for a cross beam that hooks into a slot in a main beam in the grid of a suspended ceiling. The connector has a plastic encasement that forms abutments about a metallic core. The abutments position the connector within the slot, and prevent further entry of the connector into the slot, under normal conditions. The plastic abutments melt away during a fire, so that the beam can expand longitudinally to relieve stresses in the beam, without the beam buckling. Ridges on the bottom of the metallic core prevent pullback of the connector from the slot, during a fire, to prevent the ceiling from sagging or drooping.
    • 用于横梁的连接器,其钩挂在悬吊天花板网格中的主梁中的槽中。 该连接器具有塑料外壳,该塑料外壳围绕金属芯形成邻接。 接头将连接器定位在槽内,并在正常条件下防止连接器进入槽中。 塑料基座在火灾期间熔化,使得梁可以纵向膨胀以减轻梁中的应力,而不会使梁弯曲。 在金属芯底部的脊梁可以防止连接器在起火期间从插槽中拉回,以防止天花板下垂或下垂。
    • 6. 发明申请
    • BUILT IN TEST FOR MEMS VIBRATORY TYPE INERTIAL SENSORS
    • 建立MEMS振动式惯性传感器的测试
    • US20050268716A1
    • 2005-12-08
    • US11160062
    • 2005-06-07
    • Albert HrovatRandolph HartmanThomas SavardWilliam Platt
    • Albert HrovatRandolph HartmanThomas SavardWilliam Platt
    • G01C19/56G01P15/08
    • G01C19/5719
    • The present invention provides a MEMS vibratory type inertial sensor that has some level of built in test to help improve the reliability by helping to identify erroneous or misleading data provided by the inertial sensor. In one illustrative embodiment, a test signal is injected into one or more of the inputs of the MEMS vibratory type inertial sensor, where the test signal produces a test signal component at one or more of the MEMS vibratory type inertial sensor outputs. The test signal component is then monitored at one or more of the outputs. If the test signal component matches at least predetermined characteristics of the original test signal, it is more likely that the MEMS vibratory type inertial sensor is operating properly and not producing erroneous or misleading data. In some embodiments, the test signal is provided and monitored during the normal functional operation of the MEMS vibratory type inertial sensor, thereby providing on-going built in test.
    • 本发明提供一种具有一定程度的内置测试的MEMS振动型惯性传感器,以通过帮助识别由惯性传感器提供的错误或误导数据来提高可靠性。 在一个说明性实施例中,将测试信号注入到MEMS振动型惯性传感器的一个或多个输入中,其中测试信号在一个或多个MEMS振动型惯性传感器输出端产生测试信号分量。 然后在一个或多个输出端监测测试信号分量。 如果测试信号分量与原始测试信号的至少预定特性匹配,则MEMS振动式惯性传感器更可能正常运行并且不产生错误或误导性的数据。 在一些实施例中,在MEMS振动型惯性传感器的正常功能操作期间提供和监视测试信号,从而提供正在进行的内置测试。