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    • 1. 发明授权
    • Linear measuring device and a method of adjusting said device
    • 线性测量装置和调整所述装置的方法
    • US5664336A
    • 1997-09-09
    • US590909
    • 1996-01-24
    • Adriano ZanierAlex Bezinge
    • Adriano ZanierAlex Bezinge
    • G01B21/02G01B5/02G01D5/24G01B11/04
    • G01B5/02
    • A linear measuring device comprising a scale fixed on a supporting structure along which a slide can slide. A transducer connected to the slide permits, in cooperation with the scale, determination of at least one coordinate of a point connected to the slide in a system of coordinates connected to the supporting structure. The transducer is fixed to the slide at three points by a mounting device having at each point a screw engaged in a partially threaded opening of a column and a spring. In acting on one of the screws at each of the said points, the spacing can be changed between the detection device and the slide. The spring keeps the spacing as large as the engagement of the screw in the said opening permits. The detection device is of the capacitive or electro-optical type and is mounted on a transducer support. The slide slides by means of rollers, part of the rollers rolling on guide surfaces belonging to the same plane as the surface of the supporting structure to which the scale is fixed.
    • 一种线性测量装置,其包括固定在支撑结构上的刻度,滑块可沿着支撑结构滑动。 连接到幻灯片的换能器允许与标尺协作地确定连接到支撑结构的坐标系统中连接到滑块的点的至少一个坐标。 传感器通过安装装置在三个点处固定到滑块,每个点处具有接合在柱的部分螺纹开口中的螺钉和弹簧。 在每个所述点上的一个螺钉上作用时,可以在检测装置和载玻片之间改变间隔。 弹簧保持与所述开口中的螺钉的接合允许的间距一样大。 检测装置是电容式或电光型,并安装在换能器支架上。 滑块通过滚子滑动,部分滚子滚动在与表面固定的支撑结构的表面相同的平面上的引导表面上。
    • 2. 发明授权
    • Apparatus for the measurement of linear values
    • 用于测量线性值的装置
    • US5373645A
    • 1994-12-20
    • US82753
    • 1993-06-25
    • Alex BezingeUlf BirknerAdrian OritaAdriano ZanierCharles Zufferey
    • Alex BezingeUlf BirknerAdrian OritaAdriano ZanierCharles Zufferey
    • F16F15/02G01B5/00G01B5/02G01B5/06
    • G01B5/0016G01B5/061
    • The apparatus comprises a bearing plate (1), a slideway (2) and a girder (3) which are perpendicular to the bearing plane of the bearing plate, a slide (4) with tracer head (5) movable along the slideway and a drive plate (7) located in front of the slide and stabilized by guides (8, 9) independent of the slide. The plate (7) and the slide (4) are connected by balancing (10) and damping (11) springs. A drive device by cable (13) and return pulleys (15-18) which is moved by a movement generator (19) is connected to the plate (7) and is entirely supported by the girder (3) and the bearing plate (1). A counterweight (14) inserted in the circuit of the cable (13) balances the weight itself of the movable elements (4, 7). A body (63) for protection against impacts is fastened to the girder (3) and to the bearing plate (1).
    • 该装置包括与支承板的轴承平面垂直的支承板(1),滑道(2)和梁(3),具有可沿着滑道移动的示踪头(5)的滑块(4)和 驱动板(7)位于滑块的前面,并且与导轨(8,9)独立于滑块稳定。 板(7)和滑块(4)通过平衡(10)和阻尼(11)弹簧连接。 通过电缆(13)的驱动装置和由运动发生器(19)移动的返回滑轮(15-18)连接到板(7),并且由梁(3)和支承板(1)完全支撑 )。 插入电缆(13)的电路中的配重(14)平衡可移动元件(4,7)的重量本身。 用于防止冲击的主体(63)固定到梁(3)和支承板(1)上。
    • 5. 发明授权
    • Portable precision electronic caliper
    • 便携式精密电子卡尺
    • US06332278B1
    • 2001-12-25
    • US09435353
    • 1999-11-08
    • Alex BezingeJean-Luc Bolli
    • Alex BezingeJean-Luc Bolli
    • G01B702
    • G01B3/205
    • Portable precision caliper comprising a slide (2) and a shaft (1) each fitted with a jaw (10, respectively 20). The slide is further equipped with electronic means (11) which enable the distance between the jaws (10, 20) to be displayed on an electronic display (12). The electronic means are powered by a battery (110, 111). The shaft (2) is fitted with a magnetized scale (21) with a period of magnetization &lgr;. The electronic means (11) include a sensor (112) equipped with an array of magnetoresistive electrodes disposed opposite said scale (21). The resistance values of the magnetoresistive electrodes are a sinusoidal function of the longitudinal position of the sensor (112) along the scale (21). The set of magnetoresistive electrodes includes at least certain sets of magnetoresistive electrodes formed of at least 8 electrodes connected in series, so as to increase the electric resistance of the sets and to reduce the electricity consumption of the whole device.
    • 便携式精密卡钳包括滑动件(2)和轴(1),每个轴装有钳口(10,分别为20)。 滑块还装备有电子装置(11),其能够使钳口(10,20)之间的距离显示在电子显示器(12)上。 电子装置由电池(110,111)供电。 轴(2)装有磁化标尺(21),磁化周期为lambd。 电子装置(11)包括配备有与所述标尺(21)相对布置的磁阻电极阵列的传感器(112)。 磁阻电极的电阻值是沿着刻度(21)的传感器(112)的纵向位置的正弦函数。 磁阻电极组至少包括由至少8个串联连接的电极形成的一组磁阻电极,从而增加了组的电阻并降低整个装置的电力消耗。
    • 7. 发明授权
    • Electro-optical device comprising a controlled laser diode
    • 电光装置包括受控激光二极管
    • US5668826A
    • 1997-09-16
    • US611632
    • 1996-03-06
    • Alex BezingeChristophe MoserPierre ThomannAlain Jornod
    • Alex BezingeChristophe MoserPierre ThomannAlain Jornod
    • H01S3/13H01S5/022H01S5/024H01S5/0687H03L7/26G01B9/02G02B6/00H04B10/04
    • H01S5/02212H01S5/0687H03L7/26H01S3/1303H01S5/005H01S5/02415
    • The laser diode (11) of the electro-optical device (10) is frequency-controlled with the aid of a control module (40) comprising a rubidium cell (41) and an optical sensor (42), as well as a further module (43) for controlling the injection current and/or the temperature of the laser diode. A controlling light beam (18) is conveyed by means of a multi-mode optical fiber (14) to the rubidium cell. The optical sensor measures the intensity of the light beam transmitted by the rubidium cell and supplies a signal used by the further module for regulating the injection current and/or the temperature of the laser diode so as to stabilize the frequency of the light (16) emitted. The optical fiber is coupled to the laser module in such a way as to collect part of the light (16, 21) emitted by the front face of the laser diode and reflected by a lens (12) in front of the laser diode. The diode-lens assembly is heat controlled. Feedback in the laser diode and the power supplied to the laser diode are reduced, and the control device is simplified. The device finds application particularly in interferometry, atomic frequency oscillators, spectroscopy, and fiber optics data transmission.
    • 电光装置(10)的激光二极管(11)借助于包括铷电池(41)和光传感器(42)的控制模块(40)以及另一模块 (43),用于控制激光二极管的注入电流和/或温度。 控制光束(18)通过多模光纤(14)传送到铷电池。 光学传感器测量由铷电池传输的光束的强度,并提供由另外的模块使用的用于调节激光二极管的注入电流和/或温度的信号,以便稳定光(16)的频率, 发射。 光纤以这样的方式耦合到激光器模块,以便收集由激光二极管的正面发射并由激光二极管前面的透镜(12)反射的一部分光(16,21)。 二极管透镜组件是热控制的。 减少了激光二极管的反馈和提供给激光二极管的功率,简化了控制装置。 该器件特别适用于干涉测量,原子频率振荡器,光谱学和光纤数据传输。