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Area-optimized RVDT/LVDT Signal Conditioner Based-on CORDIC

机译:面积优化的RVDT / LVDT信号调节器基于Cordic

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This paper proposes a new area-optimized signal conditioner (SC) structure, which obtains the angular or the linear position information from a rotary variable differential transformer (RVDT) or a linear variable differential transformer (LVDT) sensor output signal, respectively, based on coordinate rotation digital computer (CORDIC) algorithm. In the proposed signal conditioner a Costas loop is modified by replacing both one low-pass filter, two multipliers and a threshold block that are used to determine the sign of the signal conditioner output and a narrowband loop filter and a multiplier that are used to calculate a loop error signal with a CORDIC block, which results in a smaller area. The proposed signal conditioner shows a better linearity performance since the CORDIC block directly calculate the loop error that is equal to the phase error between the sensor output and the local carrier signals unlike the conventional Costas loop where the loop error is approximated by evaluating a sine function whose the argument is the phase error. The proposed signal conditioner that is implemented by using a standard CMOS technology achieves the reduction of 44.1% in the total area and the linearity performance comparable to that of a state-of-the-art commercial signal conditioner of which the maximum linearity error is 0.01% of full scale output.
机译:本文提出了一种新的区域优化信号调节器(SC)结构,其分别基于的旋转可变差分变压器(RVDT)或线性可变差分变压器(LVDT)传感器输出信号获得角度或线性位置信息。坐标旋转数字计算机(CORDIC)算法。在所提出的信号调节器中,通过替换一个低通滤波器,两个乘法器和阈值块来修改Costas循环,该阈值用于确定信号调节器输出的符号和窄带环路滤波器和用于计算的乘法器具有Cordic块的循环错误信号,导致较小的区域。所提出的信号调节器示出了更好的线性性能,因为CORDIC块直接计算等于传感器输出和本地载波信号之间的相位误差的环路误差,而不是通过评估正弦函数来近似循环误差的传统COSTAS循环。谁的论点是相位错误。通过使用标准CMOS技术实现的所提出的信号调节器实现了总面积的减少44.1%,与最大线性误差为0.01的最先进的商业信号调节器的线性性能。满量程输出的百分比。

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