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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >An ASIC Front End for Planar High-Frequency Contactless Inductive Position Sensors
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An ASIC Front End for Planar High-Frequency Contactless Inductive Position Sensors

机译:平面高频非接触式感应位置传感器的ASIC前端

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摘要

We describe an application-specific integrated circuit (ASIC) front end for readout and control of planar high-frequency contactless inductive position sensors that contain transmitter and receiver coils on a fixed printed circuit board and a moving passive resonant target. Such an inductive position sensor suffers from transmitter-to-receiver signal coupling, which can result in a phase-sensitive offset; hence, an error in the position measurement occurs. For the receiver front end, we consider two analog synchronous mixer demodulators, which we call mixer-1 and mixer-2, and analyze their ability to reject phase-sensitive offsets due to transmitter signal breakthrough. The mathematical analysis is validated with measured results from the fabricated ASIC in a 0.35-mum CMOS process technology. The ASIC front end contains the transmitter driver, the two receiver mixer variants, a frequency divider/shifter, and an amplifier low-pass filter. Measurements from five ASIC samples connected to the sensor show that, with a system gain of 320, the average output offset variation with phase difference from -99 to +117deg is more than 237 mV with mixer-1 compared to less than 7 mV with mixer-2.
机译:我们描述了一种专用集成电路(ASIC)前端,用于读取和控制平面高频非接触式感应位置传感器,该传感器包含固定印刷电路板上的发射器和接收器线圈以及移动的无源谐振目标。这样的电感式位置传感器遭受发射器到接收器信号耦合的困扰,这可能导致相位敏感的偏移。因此,位置测量会发生错误。对于接收器前端,我们考虑两个模拟同步混频器解调器,分别称为混频器1和混频器2,并分析其抑制由于发射机信号突破而引起的相位敏感偏移的能力。通过使用0.35微米CMOS工艺技术制造的ASIC的测量结果验证了数学分析。 ASIC前端包含发送器驱动器,两个接收器混频器变体,一个分频器/移位器和一个放大器低通滤波器。对连接到传感器的五个ASIC样本进行的测量表明,在系统增益为320的情况下,混频器1在相位差为-99至+ 117deg时的平均输出失调变化大于237 mV,而混频器为小于7 mV -2。

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