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    • 71. 发明授权
    • Timepiece able to indicate the sunrise or sunset anywhere in the world
    • 钟表能够在世界任何地方指出日出或日落
    • US09335739B2
    • 2016-05-10
    • US14862382
    • 2015-09-23
    • The Swatch Group Research and Development Ltd
    • Beat GilomenMichel WilleminDominique Lechot
    • G04B19/26
    • G04B19/26G04B19/226G04B19/262
    • The timepiece comprises means for indicating the sunrise and sunset taking account of seasonal variations. These means comprise a sphere reproducing the terrestrial globe, a shell arranged concentrically to the sphere and arranged to demarcate one portion of the terrestrial globe where it is night from another portion where it is day by indicating the position of the Earth's terminator. The shell can pivot about the globe on two axes perpendicular to each other. The shell is driven by the movement so as to rotate at a rate of one revolution per 24 hours about the polar axis. A disconnecting mechanism is controlled by an annual cam which has a profile representative of the tilt of the Sun with respect to the equatorial plane. The disconnecting mechanism controls the tilt of the shell about the axis by means of a drive shaft concentric to the polar axis.
    • 该钟表包括考虑到季节性变化来指示日出和日落的装置。 这些装置包括再现地球的球体,壳体与球体同心地布置,并且被布置成通过指示地球终结器的位置来将来自其他部分的夜晚的地球的一部分划分到其中。 外壳可以围绕彼此垂直的两个轴线绕球体转动。 壳体由运动驱动,以围绕极轴以每24小时一圈的速度旋转。 断路机构由具有代表太阳相对于赤道平面倾斜的轮廓的年度凸轮来控制。 断开机构通过与极轴同心的驱动轴来控制壳体围绕轴的倾斜。
    • 72. 发明授权
    • Electronic device provided with automatic leak detection means
    • 具有自动泄漏检测装置的电子装置
    • US09310272B2
    • 2016-04-12
    • US14173981
    • 2014-02-06
    • The Swatch Group Research and Development Ltd
    • Michel WilleminJean-Claude MartinChristophe Germiquet
    • G01M3/34G01M3/32G04D7/00G04G21/02G04B37/02
    • G01M3/329G04B37/02G04D7/007G04G21/02
    • The electronic device (1) is provided with an automatic leak detection means, notably for a gas leak, in the case (2) of the device. The automatic leak detection means includes an internal pressure sensor (3), an external pressure sensor (4) and a calculation unit (5) connected to the internal pressure sensor and to the external pressure sensor. The calculation unit, which is a microcontroller, and the internal pressure sensor are arranged inside the case, whereas the external pressure sensor is arranged on an external surface of the case. The microcontroller (5) checks, based on measurements performed by the pressure sensors over time, whether the pressure variation inside the case is different from the pressure variation outside the case to determine whether or not the case has a sufficient degree of sealing.
    • 电子设备(1)在设备的情况(2)中设置有特别用于气体泄漏的自动泄漏检测装置。 自动泄漏检测装置包括内部压力传感器(3),外部压力传感器(4)和连接到内部压力传感器和外部压力传感器的计算单元(5)。 作为微控制器的计算单元和内部压力传感器布置在壳体内部,而外部压力传感器布置在壳体的外表面上。 微控制器(5)基于压力传感器随时间推移的测量,检查壳体内的压力变化是否不同于壳体外的压力变化,以确定壳体是否具有足够的密封度。
    • 73. 发明授权
    • Timepiece able to indicate the sunrise or sunset anywhere in the world
    • 钟表能够在世界任何地方指出日出或日落
    • US09207642B2
    • 2015-12-08
    • US14604901
    • 2015-01-26
    • The Swatch Group Research and Development Ltd
    • Michel WilleminBeat GilomenDominique Lechot
    • G04B19/26
    • G04B19/262G04B19/22G04B19/26
    • The timepiece includes sunrise and sunset indicating means taking account of seasonal variations, said means include a sphere reproducing the terrestrial globe, a shell arranged concentrically to the sphere and arranged to demarcate one portion of the terrestrial globe where it is night from another portion where it is day by indicating the position of the earth's terminator. The sphere is arranged to be driven by the movement so as to rotate at the rate of one revolution per 24 hours about a first axis of rotation oriented parallel to the plane of the dial, and the shell is mounted to pivot about a second axis perpendicular to the plane of the dial. The sunrise and sunset indicating means also include an annual cam arranged to be driven in rotation by the movement at the rate of one revolution per year, the cam having a profile representative of the tilt of the sun relative to the equatorial plane.
    • 该钟表包括日出和日落,表示考虑到季节性变化的手段,所述装置包括再现地球的球体,壳体与球体同心地布置,并被布置成将夜晚的地球的一部分划分到其中的另一部分 是指示地球终结者的位置的一天。 该球被布置成被运动驱动,从而围绕平行于表盘的平面定向的第一旋转轴以每24小时一圈的速度旋转,并且该壳被安装成围绕第二轴垂直地枢转 到表盘的平面。 日出和日落指示装置还包括每年以一转的速度由运动驱动的年度凸轮,凸轮具有代表太阳相对于赤道平面倾斜的轮廓。
    • 78. 发明申请
    • CHIP CARD WITH A MEASURING CIRCUIT THAT HAS A SENSOR, AND METHOD OF MAKING THE CHIP CARD
    • 具有传感器的测量电路的芯片卡和制作芯片卡的方法
    • US20100201393A1
    • 2010-08-12
    • US12699335
    • 2010-02-03
    • Victorio QuerciaMichel Willemin
    • Victorio QuerciaMichel Willemin
    • G01R31/02
    • G06K19/077G06K19/0717
    • The chip card (11) includes at least one integrated circuit (11) fitted with a memory unit, in which personal data and/or at least one chip card identification code and/or configuration parameters can be stored. The integrated circuit is enclosed in an insulating material (3) that forms said card. The chip card (1) also includes connecting means (2) for communicating with an electronic instrument. These connecting means are electrically connected to corresponding contact pads of the integrated circuit. The chip card further includes a measuring circuit with a sensor for measuring a physical parameter so as to provide at least one output signal relating to the measurement (SD) of the physical parameter. The measuring circuit containing a sensor is arranged in a rigid case to define an electronic module (10), which is enclosed in the insulating material (3) that forms said chip card. The measuring circuit includes a movement sensor (C) for detecting a shock or for measuring an acceleration, and a sensor interface connected to the sensor for supplying a physical parameter measurement signal. The measuring circuit is electrically connected through the module case to external connection terminals on the case.
    • 芯片卡(11)包括装配有存储单元的至少一个集成电路(11),其中可以存储个人数据和/或至少一个芯片卡标识码和/或配置参数。 集成电路封装在形成所述卡的绝缘材料(3)中。 芯片卡(1)还包括用于与电子仪器通信的连接装置(2)。 这些连接装置电连接到集成电路的相应接触焊盘。 芯片卡还包括具有用于测量物理参数的传感器以便提供与物理参数的测量(SD)有关的至少一个输出信号的测量电路。 包含传感器的测量电路布置在刚性壳体中以限定电子模块(10),其被封装在形成所述芯片卡的绝缘材料(3)中。 测量电路包括用于检测冲击或用于测量加速度的移动传感器(C),和连接到传感器的用于提供物理参数测量信号的传感器接口。 测量电路通过模块外壳与壳体上的外部连接端子电连接。
    • 79. 发明授权
    • Electronic interface circuit for a capacitive sensor for measuring a physical parameter, and method for activating the electronic circuit
    • 用于测量物理参数的电容式传感器的电子接口电路,以及用于激活电子电路的方法
    • US07532016B2
    • 2009-05-12
    • US11686552
    • 2007-03-15
    • Sylvain GrosjeanMichel Willemin
    • Sylvain GrosjeanMichel Willemin
    • G01R27/26
    • G01P15/125G01D5/24
    • An electronic interface circuit of a capacitive sensor usable for measuring a physical parameter, wherein the sensor includes two differential mounted capacitors whose common electrode moves relative to each fixed electrode in order to alter capacitive value of each capacitor. The electronic circuit includes a charge transfer amplifier unit connected to the common electrode, a first integrator unit for integrating charges supplied by the charge transfer amplifier, a first excitation unit arranged between the output of the first integrator unit and the sensor for polarizing each fixed electrode of the capacitors to a determined voltage value, a second integrator unit for integrating the charges supplied by the charge transfer amplifier, and a second excitation unit arranged between the output of the second integrator unit and the sensor for polarizing each fixed electrode of the capacitors at an opposite voltage value to the voltage value controlled by the first excitation unit.
    • 一种用于测量物理参数的电容传感器的电子接口电路,其中传感器包括两个差分安装的电容器,其公共电极相对于每个固定电极移动,以改变每个电容器的电容值。 电子电路包括连接到公共电极的电荷传输放大器单元,用于积分由电荷传输放大器提供的电荷的第一积分器单元,布置在第一积分器单元的输出和用于偏置每个固定电极的传感器之间的第一激励单元 的第二积分器单元,用于对由电荷传输放大器提供的电荷进行积分的第二积分器单元和布置在第二积分器单元的输出端和传感器之间的第二激励单元,用于使电容器的每个固定电极偏振 与由第一激励单元控制的电压值相反的电压值。