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DESIGN AND IMPLEMENTATION OF A HIGH ACCURACY INTERPOLATION ENCODER IC FOR MAGNETIC SENSOR

机译:高精度磁传感器插值编码器IC的设计与实现

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The magnetic encoder (ME) always employs sensor passing through periodic and equal distance grating and then generates periodic quadrature scaling signals for displacement measurement. The phase is relative to the movement. To improve encoder accuracy or resolution, electronic interpolation technique had been developed to subdivide the phase of quadrature scaling signals. According to the trends, this paper proposed a specific method with excellent noise immunity characteristic and a complete calibration process to improve the accuracy of the system. The designed circuit is taped-out using TSMC 0.18-μm CMOS process, where the active area is 1643 μm x 1676μm. The chip has the specification of 3.3 V supply voltage, 20 MHz clock frequency, and 0.0859 mW power consumption. The accuracy of the measurement system is 1.065um.
机译:磁编码器(ME)始终使用穿过周期性和等距光栅的传感器,然后生成周期性正交缩放信号以进行位移测量。相位是相对于运动的。为了提高编码器的精度或分辨率,已经开发了电子插值技术来细分正交缩放信号的相位。根据趋势,提出了一种具有优异的抗噪声性能和完整的校准过程的特定方法,以提高系统的精度。设计的电路使用TSMC0.18-μmCMOS工艺进行分带,有效面积为1643μmx1676μm。该芯片的规格为3.3 V电源电压,20 MHz时钟频率和0.0859 mW功耗。测量系统的精度为1.065um。

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