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FPGA-based 16-bit 20 MHz device for the inductive measurement of electrical bio-impedance

机译:基于FPGA的16位20 MHz装置,用于电感测量电气生物阻抗

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A novel FPGA based 16-bit 20 MHz real-time electrical impedance measurement device has been developed. While such device can have several applications, then one of the purposes is to measure and monitor the human cardio-respiratory activity signals by inductive magnetic induction based coupling, where a fine resolution in relatively high frequency range is needed. As such a small form-factor device with affordable price and low power consumption is not commercially available, for wearable personal healthcare, the first prototype of such instrumentation device was developed. The solution uses the Altera Max10 FPGA and the external fast operating 16-bit analog-to-digital and digital-to-analog converters (ADC and DAC) with complementary analog components for signal generation, conditioning and handling. The WiFi data communication is based on a separate ESP8285 chip. The overall solution was tested in the frequency range of analog signals up to 20 MHz, getting 4000 measurement results during every second, what is certainly enough for the real-time presenting of impedance waveforms of such physiological processes as breathing and heart beating.
机译:已经开发了一种基于FPGA的16位20MHz实时电阻抗测量装置。虽然这种设备可以具有若干应用,但其中一个目的是通过基于电感磁感应的耦合来测量和监测人体心动呼吸活动信号,其中需要在相对高频范围内进行细分辨率。由于具有实惠价格和低功耗的小型形式因子设备不商业上可用,因此可穿戴个人医疗保健,开发了这种仪器装置的第一个原型。该解决方案使用Altera MAX10 FPGA和外部快速操作16位模数转换器(ADC和DAC),具有用于信号产生,调节和处理的互补模拟组件。 WiFi数据通信基于单独的ESP8285芯片。在模拟信号的频率范围内测试总体溶液,高达20MHz,每秒达到4000个测量结果,肯定足以让这种生理过程的阻抗波形作为呼吸和心脏跳动。

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