首页> 外文会议>9th European Space Mechanisms and Tribology Symposium, Sep 19-21, 2001, Liege, Belgium >MAGNETORESISTIVE POSITION SENSOR FOR CRYOGENIC SPACE APPLICATIONS
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MAGNETORESISTIVE POSITION SENSOR FOR CRYOGENIC SPACE APPLICATIONS

机译:低温空间应用的磁阻位置传感器

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A sensor for detection of angular and linear position in the cryovacuum has been developed. The encoder scheme comprises four magnetoresistors biased by the collimated field of a moving magnet arranged in a closed magnetic circuit. The pairs of mutually variable magnetoresistors are connected in an electrical bridge circuit. Sensor readout via DC measurement avoids electromagnetic interference and allows low pass filtering for high precision measurements of up to 18 Bit resolution. In addition, the device features a large bandwidth for sensing rapid movements in the kHz range. Electromagnetic finite element simulations have been conducted in order to optimize the static and dynamical system performance. Test results are presented, demonstrating high angular resolution of ~ 1.5 arcsec together with low power dissipation ~ 150 μW over a wide operating temperature range (2 K - 300 K). Such a sensor will be applied in the focal plane chopper of the PACS instrument aboard ESAs HERSCHEL Infrared Space Telescope, meeting the stringent requirements regarding cryovibration and thermal cycling. The overall performance and compact dimensions suit the sensor principle for many applications in the field of cry-omechanics.
机译:已经开发出一种用于检测冷冻袋中的角度和线性位置的传感器。编码器方案包括四个磁阻,这些磁阻被布置在闭合磁路中的移动磁体的准直场偏置。成对的相互可变的磁阻在电桥电路中连接。通过直流测量的传感器读数避免了电磁干扰,并允许低通滤波以实现高达18位分辨率的高精度测量。此外,该器件具有较大的带宽,可感应kHz范围内的快速移动。为了优化静态和动态系统性能,进行了电磁有限元模拟。给出的测试结果表明,在较宽的工作温度范围(2 K-300 K)内,角分辨率高达〜1.5 arcsec,功耗低至〜150μW。这种传感器将被应用在ESA HERSCHEL红外太空望远镜上的PACS仪器的焦平面斩波器中,满足有关冷冻和热循环的严格要求。整体性能和紧凑的尺寸适合于传感器原理,适用于低温机械领域的许多应用。

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