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Detection System for Capacitive Plantar Pressure Monitoring

机译:电容性植物压力监测检测系统

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摘要

This study presents a detection system with a prototype acquisition module and display interface for capacitive plantar pressure monitoring. The detection system mainly focuses on a system-level design (not a system on chip). The prototype acquisition module consists of commercial ICs and self-designed chips: A capacitance-to-voltage converter (CVC) and a 10-bit fully differential successive approximation register analog-to-digital converter are fabricated by the TSMC 0.18 mu m 1P6M 3.3 V process. The feature of the CVC is selectable for the detection points from 1 to 64, which is controlled by the digital codes of a field-programmable gate array (FPGA). It also has the embedded functions of crosstalk attenuation (CA) for cross-type capacitive sensors and a self-separated input signal for capacitive plantar pressure monitoring. The CA can effectively reduce parasitic capacitances and influences of the temperature and relative humidity of the environment: An MxN array only requires M + N tracks of I/O ports to reduce detected complexity. The measured results shown on the display interfaces reveal the positions and amplitudes (voltage swings) of the corresponding capacitances. The conversion time for one capacitance is 0.4 ms, and the maximum conversion time for 64 capacitances is 25.6 ms. A handmade cross-type capacitive array and a cross-type capacitive plantar pressure sensor are used to demonstrate the detection system.
机译:本研究介绍了一种具有原型采集模块的检测系统,以及用于电容性Plantar压力监测的显示界面。检测系统主要专注于系统级设计(不是芯片上的系统)。原型采集模块由商业IC和自动芯片组成:电容到电压转换器(CVC)和10位全差分连续近似寄存器模数转换器由TSMC 0.18 mu M 1p6m 3.3制造v过程。 CVC的特征可选择从1到64的检测点,其由现场可编程门阵列(FPGA)的数字代码控制。它还具有串扰衰减(CA)的嵌入式功能,用于跨型电容传感器和用于电容性Plantar压力监测的自分离输入信号。 CA可以有效地减少寄生电容和环境的温度和相对湿度的影响:MXN阵列仅需要I / O端口的M + N轨道以降低检测到的复杂性。显示接口上显示的测量结果显示了相应电容的位置和幅度(电压摇摆)。一个电容的转换时间为0.4ms,64个电容的最大转换时间为25.6毫秒。手工制作的跨型电容阵列和跨型电容性植物压力传感器用于展示检测系统。

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