A 1 V 10 bit 25 kS/s VCO-based ADC for implantable neural recording

X. Tong, Jie Wang
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引用次数: 1

Abstract

A differential-input A/D converter (ADC) based on voltage-controlled oscillator (VCO) is proposed for implantable bioelectronics. Two single-ended VCO-based ADCs are matched and combined to support differential input, hence suppressing the common-mode interference and even harmonics distortion. A 10-bit binary subtraction circuit, which is utilized to process the digital output of two matched ADCs, generates the final digital output. The subtraction circuit is realized with Domino logic gates for further reduction in power consumption and chip area. Designed with 0.18 μm CMOS process, the 10 bit 25 kS/s VCO-based ADC can operate under 1 V power supply. The active area of this ADC is 270 μm × 100 μm, much smaller than a successive-approximation-register (SAR) ADC with similar performance.
用于植入式神经记录的1 V 10位25 kS/s vco型ADC
提出了一种用于植入式生物电子学的基于压控振荡器(VCO)的差分输入A/D转换器。两个单端基于vco的adc匹配并组合以支持差分输入,从而抑制共模干扰,甚至谐波失真。一个10位二进制减法电路,用来处理两个匹配的adc的数字输出,产生最终的数字输出。减法电路采用Domino逻辑门实现,进一步降低了功耗和芯片面积。该ADC采用0.18 μm CMOS工艺设计,可在1 V电源下工作,功耗为10位25 kS/s。该ADC的有效面积为270 μm × 100 μm,远小于具有相同性能的逐次逼近寄存器(SAR) ADC。
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