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A 6-bit, two-step, successive approximation logarithmic ADC for biomedical applications

机译:用于生物医学应用的6位,两步,逐次逼近对数aDC

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摘要

This paper presents the design and realization of a novel low-power 6-bit successive approximation logarithmic ADC for biomedical applications. A two-step successive approximation method is proposed to obtain a piecewise-linear approximation of the desired logarithmic transfer function. The proposed ADC has been designed and simulated using process parameters from a standard 0.35 ??m 2P4M CMOS technology with a single 1.8 V power supply voltage. Simulation results show that, at a sampling rate of 25 kS/s, the proposed ADC consumes 4.36 ??W to 14.6 ??W (proportional to input amplitudes). The proposed ADC achieves 18.6 pJ/conversion-step, maximum INL of 0.45 LSB, an ENOB of 4.97-bits, and SNDR of 31.7 dB with 1 V full-scale input range.
机译:本文介绍了一种用于生物医学应用的新型低功耗6位逐次逼近对数ADC的设计和实现。提出了一种两步逐次逼近方法,以获得所需对数传递函数的分段线性逼近。拟议的ADC是使用标准的0.35?m 2P4M CMOS技术和1.8V单电源电压的工艺参数设计和仿真的。仿真结果表明,在25 kS / s的采样率下,拟议的ADC功耗为4.36 W至14.6 W(与输入幅度成比例)。拟议的ADC在1 V满量程输入范围内时,可实现18.6 pJ /转换步长,0.45 LSB的最大INL,4.97位的ENOB和31.7 dB的SNDR。

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