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    • 85. 发明授权
    • Wireless communication system operating in response in part to time signals from the global position satellite system
    • 无线通信系统部分响应来自全球定位卫星系统的时间信号
    • US07218669B2
    • 2007-05-15
    • US10174376
    • 2002-06-18
    • Pierre BertrandSundararajan SriramEric BiscondiFrank Honore
    • Pierre BertrandSundararajan SriramEric BiscondiFrank Honore
    • H04B1/38
    • H04B1/7073H04B2201/70715
    • A wireless communication system (10). The system comprises a transceiver (20), and the transceiver comprises a code counter (LCSTC 22c) and a clock oscillator (26) for advancing a count in the code counter. The transceiver further comprises circuitry (30) for receiving a time message based on a system time external from the transceiver and circuitry (28) for determining a system time count and for storing the system time count to the code counter in response to the time message. Further, code counter continues to be advanced from the system time count in response to the clock oscillator. The transceiver further comprises circuitry (28) for repeatedly evaluating the count in the code counter, after advancement from the system time count, to ascertain whether the count has drifted to an inaccurate count. Lastly, the transceiver further comprises circuitry (28), responsive to detecting an inaccurate count, for adjusting the inaccurate count to a perceived accurate count.
    • 一种无线通信系统(10)。 该系统包括收发器(20),并且收发器包括用于前进代码计数器中的计数的代码计数器(LCSTC 22c)和时钟振荡器(26)。 收发器还包括电路(30),用于基于来自收发器和电路(28)的外部系统时间接收时间消息,用于确定系统时间计数并且响应于时间消息将系统时间计数存储到代码计数器 。 此外,响应于时钟振荡器,代码计数器继续从系统时间计数中提前。 收发器还包括电路(28),用于在从系统时间计数开始之后重复地评估代码计数器中的计数,以确定计数是否已经偏移到不准确的计数。 最后,收发器还包括响应于检测不准确计数的电路(28),用于将不准确的计数调整为感知到的精确计数。
    • 87. 发明授权
    • Inductive differential pressure sensor
    • 感应差压传感器
    • US4665753A
    • 1987-05-19
    • US673976
    • 1984-11-23
    • Pierre Bertrand
    • Pierre Bertrand
    • G01L13/06G01L9/00G01L13/02G01L7/08G01L9/10
    • G01L13/025G01L9/007
    • A measuring diaphragm (1) separates in a pressure-tight manner two half chambers (9, 10) suitable for being respectively subjected to two pressures to be compared. In a central zone of the diaphragm (1) there are two magnetic cores (118, 127) which are disposed on opposite sides of the diaphragm in respective ones of the half chambers and which are displaced with the diaphragm when the faces of the diaphragm are subjected to different pressures. The cores are movable inside respective simple inductors (132, 133 ), thereby varying their impedances. By measuring this impedance variation it is possible to determine the position of the cores in the associated inductors, and consequently to establish the difference between the pressures being applied to respective faces of the measuring diaphragm (1). The above arrangement provides for automatic zero correction in an inductive differential pressure sensor.
    • 测量隔膜(1)以不透气的方式分离适于分别经受两个压力的两个半室(9,10)进行比较。 在隔膜(1)的中心区域中有两个磁芯(118,127),它们设置在隔膜相应的两个半室中,当隔膜的表面为 受到不同的压力。 芯可在相应的简单电感器(132,133)内移动,从而改变它们的阻抗。 通过测量该阻抗变化,可以确定相关电感器中的芯的位置,从而确定施加到测量膜(1)的各个面的压力之间的差。 上述布置提供了在感应差压传感器中的自动零点校正。