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    • 2. 发明授权
    • Mechanical latch locking detection sensors
    • 机械锁定锁定检测传感器
    • US07994940B2
    • 2011-08-09
    • US12807351
    • 2010-09-02
    • Alexander GrichenerChuang-Chia Lin
    • Alexander GrichenerChuang-Chia Lin
    • G08B21/00
    • E05B39/04B64D29/06E05C19/145Y10T292/0948
    • The invention provides a sensor for determining when a latch for securing an engine cowl on an aircraft is secured by detecting the proximity of a latch hook and a latch pin. The sensor includes a resonant circuit configured and adapted to transmit a status signal when the latch is in a secured state. The sensor also includes a means for conveying status information of the latch to a location remote from the latch based on the status signal, the conveying means being operably connected to the resonant circuit. The invention also provides a method of determining when a latch is open or secured by detecting the proximity of a latch hook and a latch pin.
    • 本发明提供了一种传感器,用于通过检测闩锁钩和闩锁销的接近来确定何时用于固定飞机上的发动机罩的闩锁。 所述传感器包括谐振电路,所述谐振电路经配置并适于在所述闩锁处于安全状态时发送状态信号。 传感器还包括用于基于状态信号将闩锁的状态信息传送到远离闩锁的位置的装置,该传送装置可操作地连接到谐振电路。 本发明还提供了一种通过检测闩锁钩和闩锁销的接近来确定闩锁何时打开或固定的方法。
    • 4. 发明授权
    • Wireless surface acoustic wave-based proximity sensor, sensing system and method
    • 无线声表面波接近传感器,感应系统及方法
    • US07834514B2
    • 2010-11-16
    • US11977301
    • 2007-10-24
    • Alexander SpivakChuang-Chia Lin
    • Alexander SpivakChuang-Chia Lin
    • G01B7/00G01R33/038H01L41/12H01L41/00
    • H03K17/94H03K17/95H03K17/97H03K2217/96011
    • The subject invention is related to wireless proximity sensor and sensing system for detecting the position of an object. The system includes a transceiver for providing wireless communication with a passive wireless surface acoustic wave (SAW) proximity sensor. The wireless proximity sensor receives a wireless signal from the transceiver, which powers the SAW device and in turn transmits a signal back to the transceiver that includes information about the position of an object. The wireless proximity sensor uses one or more SAW devices with a sensing element made of magnetostrictive material, in conjunction with one or more magnets and one or more targets that are positioned relative to an object. The movement of the target(s) in relation to the proximity sensor operatively produces a mechanical response due to the shift in the magnetic field of the sensing element. The sensing element in turn enhances the magnetic field of the SAW device to which it is attached, and this information is transmitted to the transceiver as information about the position of an object.
    • 本发明涉及用于检测物体位置的无线接近传感器和感测系统。 该系统包括用于提供与被动无线表面声波(SAW)接近传感器的无线通信的收发器。 无线接近传感器接收来自收发器的无线信号,该无线信号为SAW器件供电,然后将信号发送回收发器,该信号包括关于对象位置的信息。 无线接近传感器使用具有由磁致伸缩材料制成的感测元件的一个或多个SAW器件,其结合一个或多个磁体和相对于物体定位的一个或多个靶。 相对于接近传感器,目标的运动由于感测元件的磁场的移动而可操作地产生机械响应。 感测元件又增强了与其连接的SAW器件的磁场,并将该信息作为关于对象位置的信息传送到收发器。
    • 6. 发明申请
    • Wireless surface acoustic wave-based proximity sensor, sensing system and method
    • 无线声表面波接近传感器,感应系统及方法
    • US20090109048A1
    • 2009-04-30
    • US11977301
    • 2007-10-24
    • Alexander SpivakChuang-Chia Lin
    • Alexander SpivakChuang-Chia Lin
    • G08B21/00
    • H03K17/94H03K17/95H03K17/97H03K2217/96011
    • The subject invention is related to wireless proximity sensor and sensing system for detecting the position of an object. The system includes a transceiver for providing wireless communication with a passive wireless surface acoustic wave (SAW) proximity sensor. The wireless proximity sensor receives a wireless signal from the transceiver, which powers the SAW device and in turn transmits a signal back to the transceiver that includes information about the position of an object. The wireless proximity sensor uses one or more SAW devices with a sensing element made of magnetostrictive material, in conjunction with one or more magnets and one or more targets that are positioned relative to an object. The movement of the target(s) in relation to the proximity sensor operatively produces a mechanical response due to the shift in the magnetic field of the sensing element. The sensing element in turn enhances the magnetic field of the SAW device to which it is attached, and this information is transmitted to the transceiver as information about the position of an object.
    • 本发明涉及用于检测物体位置的无线接近传感器和感测系统。 该系统包括用于提供与被动无线表面声波(SAW)接近传感器的无线通信的收发器。 无线接近传感器接收来自收发器的无线信号,该无线信号为SAW器件供电,然后将信号发送回收发器,该信号包括关于对象位置的信息。 无线接近传感器使用具有由磁致伸缩材料制成的感测元件的一个或多个SAW器件,其结合一个或多个磁体和相对于物体定位的一个或多个靶。 相对于接近传感器,目标的运动由于感测元件的磁场的移动而可操作地产生机械响应。 感测元件又增强了与其连接的SAW器件的磁场,并将该信息作为关于对象位置的信息传送到收发器。
    • 7. 发明授权
    • Mems element having perpendicular portion formed from substrate
    • 具有由基板形成的垂直部分的金属元件
    • US06813412B2
    • 2004-11-02
    • US09915232
    • 2001-07-24
    • Chuang-Chia Lin
    • Chuang-Chia Lin
    • G02B635
    • G02B6/3518B81B3/0051B81B2201/045B81B2203/053B81C1/00214G02B6/3514G02B6/3546G02B6/3566G02B6/357G02B6/3572G02B6/358
    • A microelectromechanical systems (MEMS) element and a MEMS optical switch are described. The MEMS element comprises a crystalline and moveable element is moveably attached to the substrate. The moveable element includes a perpendicular portion oriented substantially perpendicular to a plane of the substrate. The crystal structure of the perpendicular portion and substrate are substantially similar. The moveable element is capable of motion substantially constrained to a plane oriented substantially perpendicular to a plane of the substrate. In at least one position, a part of a perpendicular portion of the moveable element projects beyond a surface of the substrate. The moveable element may be retained in place by a latch. An array of such structures can be implemented to work as an optical switch. The optical switch may comprise a crystalline substrate and one or more moveable elements moveably attached to the substrate. The various embodiments provide for a robust and reliable MEMS elements that may be simply fabricated and densely packed.
    • 描述了微机电系统(MEMS)元件和MEMS光开关。 MEMS元件包括可移动地附接到基底的结晶和可移动元件。 可移动元件包括垂直于基本垂直于基底平面的垂直部分。 垂直部分和基底的晶体结构基本相似。 可移动元件能够基本上约束到基本上垂直于衬底的平面定向的平面的运动。 在至少一个位置中,可移动元件的垂直部分的一部分突出超过衬底的表面。 可移动元件可以通过闩锁保持在适当的位置。 可以实现这种结构的阵列以用作光学开关。 光学开关可以包括结晶衬底和可移动地附接到衬底的一个或多个可移动元件。 各种实施例提供了可以简单地制造和密集包装的鲁棒且可靠的MEMS元件。