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    • 1. 发明授权
    • Radio telephone timepiece including a SIM card
    • 收音机电话钟包括SIM卡
    • US06224254B1
    • 2001-05-01
    • US09466843
    • 1999-12-20
    • Nicolas Georges HayekWilhelm SalathéRudolf DingerJean-Jacques BornDominique Dubugnon
    • Nicolas Georges HayekWilhelm SalathéRudolf DingerJean-Jacques BornDominique Dubugnon
    • G04B4700
    • G04G21/04G04B47/00G06K7/003H04B1/3816H04B1/385
    • The present invention relates to a radio telephone watch (1) intended to be used in a mobile communication system, said watch (1) including a case (2) and a wristband (3) allowing said watch (1) to be worn on the wrist. According to the present invention, this watch further includes a casing (4; 8; 104), associated with a first strand (31) of said wristband (3), capable of receiving, in a removable manner, a SIM card (10) allowing access to said mobile communication system, an electronic module (5) arranged in said watch case (2) and allowing access to data stored in said SIM card (10), and electric connection means (6) between said SIM card (10) and said electronic module (5), integrated in said first strand (31) of the wristband (3). According to the present invention, a device (7; 9) assuring the fastening of said wristband (3) is further advantageously associated with said casing (4; 8; 104).
    • 本发明涉及一种旨在用于移动通信系统的无线电话表(1),所述手表(1)包括壳体(2)和腕带(3),允许所述手表(1)佩戴在所述手表 腕。 根据本发明,该手表还包括与所述腕带(3)的第一股(31)相关联的壳体(4; 8; 104),能够以可拆卸的方式接收SIM卡(10) 允许访问所述移动通信系统,布置在所述表壳(2)中并允许访问存储在所述SIM卡(10)中的数据的电子模块(5)以及所述SIM卡(10)之间的电连接装置(6) 和所述电子模块(5),其集成在腕带(3)的所述第一股线(31)中。根据本发明,确保所述腕带(3)的紧固的装置(7; 9)进一步有利地与 所述壳体(4; 8; 104)。
    • 5. 发明授权
    • Piezoelectric motor
    • 压电电机
    • US06744176B2
    • 2004-06-01
    • US10209897
    • 2002-08-02
    • Rudolf Dinger
    • Rudolf Dinger
    • H02N212
    • H02N2/001H02N2/103
    • The present invention concerns a piezoelectric motor of the type including: a stator (2); a rotor (20) capable of moving in rotation in a plane (Pdm) called the mean movement plane perpendicular to a geometrical rotational axis (X1) on which the rotor (20) is centred; coupling means (8) for driving the rotor (20) arranged between the stator (2) and said rotor (20); piezoelectric means (12) capable of being electrically excited to impart a vibratory movement onto the coupling means (8); transmission means (40) able to transmit the vibratory movement from the coupling means (8) to the rotor (20) in order to drive said rotor (20) in rotation about its axis (X1), and holding means (44) for applying the rotor (20) onto the coupling means (8), characterised in that the coupling means (8) are arranged freely about the geometrical rotational axis (X1) on which they are centred, and in that the coupling means (8) rest on the stator (2) via support means (10) shaped to convert the vibratory movement of the points (P) in the contact region between the coupling means (8) and the rotor (20) into a substantially elliptical forward or backward movement, essentially perpendicular to the plane of the rotor (20).
    • 本发明涉及一种类型的压电电动机,包括:定子(2);转子(20),其能够在称为与几何旋转轴线(X1)垂直的平均运动平面的平面(Pdm)中旋转运动,在该平面上垂直于几何旋转轴线 转子(20)为中心;用于驱动设置在定子(2)和所述转子(20)之间的转子(20)的联接装置(8);能够被电激励以使振动运动 联接装置(8);能够将振动从联接装置(8)传递到转子(20)的传动装置(40),以驱动所述转子(20)围绕其轴线(X1)旋转,并保持 用于将所述转子(20)施加到所述联接装置(8)上的装置(44),其特征在于,所述联接装置(8)围绕它们所在的几何旋转轴线(X1)自由布置,并且所述联接装置 装置(8)通过支撑装置(10)搁置在定子(2)上,形成为转换振动的运动 联接装置(8)和转子(20)之间的接触区域中的点(P)成基本上垂直于转子(20)的平面的向前或向后的大致椭圆运动。
    • 8. 发明申请
    • METHOD OF MANUFACTURING A MICROMECHANICAL PART
    • 制造微生物部件的方法
    • US20100006540A1
    • 2010-01-14
    • US12501009
    • 2009-07-10
    • Rudolf DingerThierry Ravenel
    • Rudolf DingerThierry Ravenel
    • B44C1/22
    • B81C99/008B81B2201/035B81C1/00674B81C2201/112G04B13/02G04D3/0069Y10T29/49579
    • The invention relates to a method of manufacturing (1) a mechanical part (51) including the following steps:a) providing (3) a substrate (53) made of micro-machinable material;b) etching (5), with help of photolithography, a pattern (50) that includes said part through said entire substrate;According to the invention, the method further includes the following steps:c) mounting (7) said etched substrate on a support (55′) so as to leave the top and bottom surfaces of said substrate accessible;d) depositing (9, C′) a coating of better tribological quality than said micro-machinable material on the outer surface of said part e) releasing (11) the part from the substrate. The invention concerns the field of timepiece manufacture.
    • 本发明涉及一种制造(1)机械部件(51)的方法,包括以下步骤:a)提供(3)由可微加工材料制成的基底(53); b)借助于光刻法蚀刻(5)包括通过所述整个基板的所述部分的图案(50); 根据本发明,该方法还包括以下步骤:c)将所述蚀刻的衬底安装(7)到支撑体(55')上,以使所述衬底的顶表面和底表面可接近; d)在所述部件的外表面上沉积(9,C')比所述可微加工材料更好的摩擦质量的涂层(e)将部件从基材上释放(11)。 本发明涉及钟表制造领域。
    • 10. 发明授权
    • Highly stable frequency generator
    • 高稳定频率发生器
    • US5719827A
    • 1998-02-17
    • US544892
    • 1995-10-18
    • Minh-Tam DiepEmil ZellwegerRudolf DingerPierre-Andre Farine
    • Minh-Tam DiepEmil ZellwegerRudolf DingerPierre-Andre Farine
    • G04G99/00G04F5/10H03B5/32H03L1/02H03L7/181H04B1/26H04B5/04G04C11/02G04B17/20
    • H03L1/026
    • A highly stable frequency generator (G) comprises an oscillator (10) for generating a first frequency (F1), and further comprises a time base (BT) providing a time stable frequency signal which is independent of the temperature, and a feedback circuit arranged to provide a first number of pulses (n.sub.T) coming from the oscillator (10) to a comparing circuit (13), a circuit (14) for providing a reference number of pulses (N.sub.T) to said comparing circuit (13), and a circuit (13,15,16) providing a correction signal (Sc) as a function of the difference (.DELTA.) between the first number (n.sub.T) and the reference number (N.sub.T), the generator (G) further comprising a correction circuit (17) of the oscillation frequency (F1) of said first oscillator (10), this correction circuit being controlled by said control signal (Sc).
    • 高度稳定的频率发生器(G)包括用于产生第一频率(F1)的振荡器(10),并且还包括提供独立于温度的时间稳定频率信号的时基(BT)和布置成 提供从振荡器(10)到比较电路(13)的第一数量的脉冲(nT),用于向所述比较电路(13)提供参考数量的脉冲(NT)的电路(14),以及 电路(13,15,16)提供作为第一数量(nT)和参考数量(NT)之间的差值(DELTA)的函数的校正信号(Sc),发生器(G)还包括校正电路 17),所述第一振荡器(10)的振荡频率(F1),该校正电路由所述控制信号(Sc)控制。