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    • 3. 发明授权
    • Multifunctional multichip system for wireless sensing
    • 多功能多芯片无线传感系统
    • US07391325B2
    • 2008-06-24
    • US11331722
    • 2006-01-13
    • Cornel P. CobianuIon GeorgescuJames D. CookViorel V. Avramescu
    • Cornel P. CobianuIon GeorgescuJames D. CookViorel V. Avramescu
    • G08B13/14
    • G06K19/0723G06K19/0716
    • A multifunctional multichip system can operate in a passive mode by using at least one antenna to receive electromagnetic energy and using that energy to perform system functions. The system includes a sensor, an impedance matching circuit and an RFID module. The sensor produces a sensor signal containing a measurement. The RFID can produce an identification signal containing identification information. Alternatively, the RFID chip can be used in an addressing mode wherein the system only produces a signal in response to an addressing signal containing addressing information. The addressing signal is received from the electromagnetic field. In either mode, the sensor signal is coupled from the antenna into the electromagnetic field from which a receiver can obtain it. The signal can contain the identification information as well as the measurement. A matching network minimizes the effects of impedance mismatches between the system elements.
    • 多功能多芯片系统可以通过使用至少一个天线来接收电磁能并使用该能量来执行系统功能,以无源模式操作。 该系统包括传感器,阻抗匹配电路和RFID模块。 传感器产生包含测量值的传感器信号。 RFID可以产生包含识别信息的识别信号。 或者,RFID芯片可以以寻址模式使用,其中系统仅响应于包含寻址信息的寻址信号产生信号。 从电磁场接收寻址信号。 在任一模式中,传感器信号从天线耦合到电磁场中,接收器可从该电磁场获得它。 该信号可以包含识别信息以及测量。 匹配网络可以最大限度地减少系统元件之间阻抗失配的影响。
    • 7. 发明申请
    • Large area distributed sensor
    • 大面积分布传感器
    • US20080001741A1
    • 2008-01-03
    • US11477257
    • 2006-06-29
    • Cornel P. CobianuIon GeorgescuViorel-Georgel Dumitru
    • Cornel P. CobianuIon GeorgescuViorel-Georgel Dumitru
    • G08B13/14G08B21/00
    • G08B13/128B60R25/1004G08B13/1454
    • A wireless monitoring system and method. A distributed electrical circuit can be printed on a dielectric film for wrapping pallets or containers in a logistic chain, wherein the distributed electrical circuit (e.g., a Wheatstone Bridge) detects a rupture of the film through an electrical resistance change of one or more elements of the distributed electrical circuit. The electrical resistance change is indicative of a potential tampering event. An electronic module can be provided that conditions and processes a signal transmitted from the distributed electrical circuit and thereafter transmits the signal wirelessly via an antenna to a monitoring station. Additionally, a monitoring station can be implemented, which communicates with a network and the electronic module, and permits a user in real time to receive data concerning the potential tampering event.
    • 一种无线监控系统及方法。 分布式电路可以印刷在用于将托盘或容器包裹在逻辑链中的电介质膜上,其中分布式电路(例如,惠斯通电桥)通过一个或多个元件的电阻变化来检测膜的破裂 分布式电路。 电阻变化表示潜在的篡改事件。 可以提供一种电子模块,其对从分布式电路发送的信号进行调节和处理,然后经由天线将信号无线发送到监控站。 此外,可以实现与网络和电子模块进行通信并且允许用户实时地接收关于潜在篡改事件的数据的监控站。
    • 8. 发明授权
    • Integrated MEMS 3D multi-sensor
    • 集成MEMS三维多传感器
    • US07784344B2
    • 2010-08-31
    • US11947603
    • 2007-11-29
    • Ioan PavelescuIon GeorgescuDana Elena GuranCornel P. Cobianu
    • Ioan PavelescuIon GeorgescuDana Elena GuranCornel P. Cobianu
    • G01P15/125G01P15/08
    • G01P15/125G01D21/02G01P15/18G01P2015/082
    • Apparatus, methods, and systems for sensing acceleration and magnetic fields in all three axes from a first capacitive bridge sensor having a first proof mass; and a second capacitive bridge sensor having a second proof mass located within the first proof mass. The second proof mass is coupled to the first proof mass by springs that permit movement in the second axis. Sensing of the remaining axis of interest may be done by a third and fourth capacitive bridge configured similar to that of the first and second capacitive bridge sensors. The third and fourth capacitive bridge sensors may be oriented 90 degrees off of the first and second capacitive bridge. An alternative is to locate a third capacitive bridge within the second proof mass.
    • 用于感测来自具有第一检测质量的第一电容桥式传感器的所有三个轴上的加速度和磁场的装置,方法和系统; 以及第二电容桥式传感器,其具有位于所述第一检验质量块内的第二检验质量块。 第二检测质量体通过允许在第二轴线上移动的弹簧联接到第一检验质量块。 感兴趣的剩余轴可以通过配置成类似于第一和第二电容桥式传感器的第三和第四电容性桥接来实现。 第三和第四电容桥式传感器可以取向于第一和第二电容桥90度。 另一种选择是在第二个检测质量块内定位第三个电容桥。
    • 9. 发明申请
    • INTEGRATED MEMS 3D MULTI-SENSOR
    • 集成MEMS 3D多传感器
    • US20090139330A1
    • 2009-06-04
    • US11947603
    • 2007-11-29
    • Ioan PavelescuIon GeorgescuDana Elena GuranCornel P. Cobianu
    • Ioan PavelescuIon GeorgescuDana Elena GuranCornel P. Cobianu
    • G01P15/125
    • G01P15/125G01D21/02G01P15/18G01P2015/082
    • Apparatus, methods, and systems for sensing acceleration and magnetic fields in all three axes from a first capacitive bridge sensor having a first proof mass; and a second capacitive bridge sensor having a second proof mass located within the first proof mass. The second proof mass is coupled to the first proof mass by springs that permit movement in the second axis. The of sense the remaining axis of interest may be done by a third and fourth capacitive bridge configured similar to that of the first and second capacitive bridge sensors. The third and fourth capacitive bridge sensors may be oriented 90 degrees off of the first and second capacitive bridge. An alternative is to locate a third capacitive bridge within the second proof mass.
    • 用于感测来自具有第一检测质量的第一电容桥式传感器的所有三个轴上的加速度和磁场的装置,方法和系统; 以及第二电容桥式传感器,其具有位于所述第一检验质量块内的第二检验质量块。 第二检测质量体通过允许在第二轴线上移动的弹簧联接到第一检验质量块。 感测的剩余轴可以由配置为类似于第一和第二电容桥式传感器的第三和第四电容性桥接来实现。 第三和第四电容桥式传感器可以取向于第一和第二电容桥90度。 另一种选择是在第二个检测质量块内定位第三个电容桥。