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    • 15. 发明申请
    • DUAL-AXIS TILT ACUATOR FOR MICROMIRROR ARRAY
    • 用于微型磁盘阵列的双轴倾斜电机
    • WO2004066363A3
    • 2004-10-14
    • PCT/US2004003560
    • 2004-01-23
    • CORNING INCTAYLOR WILLIAMBERNSTEIN JONATHANBRAZZLE JOHN D
    • TAYLOR WILLIAMBERNSTEIN JONATHANBRAZZLE JOHN D
    • G02B26/08B81B3/00
    • G02B26/0841G02B26/0833G02B26/085
    • An array of movable MEMS mirror devices is provided being electromagnetically actuated in one axis and using an additional set of coils, or a single coil, positioned off of the main axis of rotation to achieve a second axis of rotation while allowing for a very high linear mirror fill factor (>80 %). This second set of coils, or second electrically wired coil, is capable of generating the necessary torque about an axis that is perpendicular to the major axis of rotation. A second embodiment is provided using electromagnetic actuation in one axis of rotation, which typically has larger rotation angles than the second axis, and electrostatic actuation in the second axis of rotation. Electrostatic pads can be used to sense rotation. When staggering adjacent pixels a center array of mirrors with no coils or electrodes provides increased radius of curvature and reducing undesirable cross-talk between adjacent mirror devices.
    • 提供了可移动的MEMS反射镜装置的阵列,其在一个轴线上被电磁致动,并且使用一组额外的线圈或单个线圈,其位于主旋转轴线之外,以实现第二旋转轴线,同时允许非常高的线性 镜面填充因子(> 80%)。 该第二组线圈或第二电线线圈能够围绕垂直于主旋转轴的轴产生必要的扭矩。 提供了一个第二实施例,其使用一个旋转轴线中的电磁致动器,其通常具有比第二轴线更大的旋转角度,以及在第二旋转轴线中的静电致动。 静电垫可用于感测旋转。 当交错相邻像素时,没有线圈或电极的反射镜的中心阵列提供增加的曲率半径并减少相邻镜器件之间的不期望的串扰。
    • 16. 发明申请
    • METHOD AND SYSTEM FOR DETECTING WHEN A GOLF CLUB IS A PRE-DETERMINED DISTANCE FROM AN AREA
    • 当高尔夫俱乐部是从地区确定的距离时检测的方法和系统
    • WO2006124091A3
    • 2009-04-09
    • PCT/US2006006430
    • 2006-02-24
    • BLUE MARLIN LLCBERNSTEIN JONATHANHERBST FREDERICK
    • BERNSTEIN JONATHANHERBST FREDERICK
    • H04Q5/22G08B13/14
    • G08B21/24
    • A device periodically transmits a request to the RFID tag affixed to each golf club in the set of golf clubs. If a golf club is within a pre-determined distance from the device, the RFID tag affixed to the golf club will respond to the request. If the golf club is not within the pre-determined distance from the device, the RFID tag affixed to the golf club will not issue a response. The failure of a golf club to respond within a specified time interval will result in the display of a message on the device indicating that a golf club is unaccounted for. The device can transmit a signal to a handheld device wearable on a golf course reporting the missing golf club directly to the owner of the golf club who is wearing the handheld device.
    • 设备周期性地向位于该组高尔夫球杆中的每个高尔夫球杆的RFID标签发送请求。 如果一个高尔夫球杆距设备的预定距离内,则贴在高尔夫球杆上的RFID标签将会响应该请求。 如果高尔夫球杆不在与设备的预定距离内,则固定在高尔夫球杆上的RFID标签将不会发出响应。 高尔夫球杆在指定的时间间隔内发生故障将导致在设备上显示一条消息,指示高尔夫球杆下落不明。 该设备可以将信号发送到在高尔夫球场上佩戴的手持设备,该高尔夫球场直接向身着手持设备的高尔夫球杆的所有者直接报告缺失的高尔夫球杆。
    • 20. 发明申请
    • MICRO-SCALE RESONANT DEVICES AND METHODS OF USE
    • 微尺度谐振器件及其使用方法
    • WO2006121920A2
    • 2006-11-16
    • PCT/US2006017516
    • 2006-05-05
    • BETH ISRAEL HOSPITALBERNSTEIN JONATHANROSEN JONATHAN JFRANGIONI JOHN VLENKINSKI ROBERT E
    • BERNSTEIN JONATHANROSEN JONATHAN JFRANGIONI JOHN VLENKINSKI ROBERT E
    • A47C20/04
    • A61K49/0032A61K49/18A61N1/08
    • The invention relates to micro-resonant devices (MRDs) that generate resonance at radio frequencies not present in an animal or human body, or present at low, background levels in the body. These individual, often monolithic devices, can be located in three-dimensional space and tracked anywhere in a target area, e.g., in a human or animal body, or within a cell within a body, using a conventional magnetic resonance imaging (MRI) scanner or other transducers, e.g., radiofrequency transducers. The MRDs generate high sensitivity contrast in conventional clinical MRI scanners, have a diameter of anywhere from a few nanometers to 1000 microns, and can in some embodiments be manufactured using Micro-Electro-Mechanical Systems (MEMS) technology. The devices are optionally coated to isolate them from the environment, and this coating can be a biocompatible coating for medical and biotechnology uses.
    • 本发明涉及在体内不存在于动物或人体内或存在于体内低背景水平的射频产生共振的微振荡装置(MRD)。 这些单独的,通常是整体的装置可以位于三维空间中,并使用传统的磁共振成像(MRI)扫描仪在目标区域的任何地方(例如在人体或动物体内)或身体内的细胞内进行跟踪 或其他换能器,例如射频换能器。 MRD在常规临床MRI扫描仪中产生高灵敏度对比度,其直径可以从几纳米到1000微米,并且在一些实施例中可以使用微机电系统(MEMS)技术制造。 该装置可选地涂覆以将其与环境隔离,并且该涂层可以是用于医疗和生物技术用途的生物相容性涂层。