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首页> 外文期刊>Measurement Science & Technology >An integrated signal conditioner for high-frequency inductive position sensors
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An integrated signal conditioner for high-frequency inductive position sensors

机译:用于高频感应​​式位置传感器的集成信号调节器

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This paper describes the design, implementation and evaluation of a signal conditioner application-specific integrated circuit (ASIC) for high-frequency inductive non-contact position sensors. These sensors employ a radio frequency technology based on an antenna planar arrangement and a resonant target, have a high inherent resolution (0.1percent of antenna length) and can measure target position over a wide distance range (<0.1 mm to > 10 m). However, due to the relatively high-frequency excitation (1 MHz typically) and to the specific layouts of these sensors, there is unwanted capacitive coupling between the transmitter and receiver coils; this type of distortion reduces linearity and resolution. The ASIC, which is the first generation of its kind for this type of sensor, employs a differential mixer topology which suppresses the capacitive coupling offsets. The system architecture and circuit details are presented. The ASIC was fabricated in a 0.6 (mu)m high-voltage CMOS technology occupying an area of 8 mm~(2). It dissipates about 30 mA from a 24 V power supply. The ASIC was tested with a high-frequency inductive position sensor (with an antenna length of 10.8 cm). The measured input-referred offset due to transmitter crosstalk is on average about 22 (mu)V over a wide phase difference variation (-99 deg to +117 deg) between the transmitter and demodulating signals.
机译:本文介绍了用于高频感应​​式非接触式位置传感器的信号调节器专用集成电路(ASIC)的设计,实现和评估。这些传感器采用基于天线平面布置和谐振目标的射频技术,具有很高的固有分辨率(天线长度的0.1%),并且可以在较宽的距离范围(<0.1 mm至> 10 m)内测量目标位置。但是,由于相对较高的频率激励(通常为1 MHz)以及这些传感器的特定布局,因此在发射器线圈和接收器线圈之间存在不必要的电容耦合;这种失真会降低线性度和分辨率。 ASIC是此类传感器的第一代产品,它采用差分混频器拓扑结构来抑制电容性耦合失调。给出了系统架构和电路细节。 ASIC是用0.6μm的高压CMOS技术制造的,占地8 mm〜(2)。它从24 V电源消耗大约30 mA的电流。 ASIC用高频感应位置传感器(天线长度为10.8 cm)进行了测试。在发射机和解调信号之间的宽相位差变化(-99度到+117度)中,由于发射机串扰而导致的测量输入参考偏移平均约为22μV。

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