Logo image
A 160 nW 25 kS/s 9-bit SAR ADC for neural signal recording applications
Conference proceeding

A 160 nW 25 kS/s 9-bit SAR ADC for neural signal recording applications

Anh Tuan Do, Chun Kit Lam, Yung Sern Tan, Kiat Seng Yeo, Jia Hao Cheong, Xiaodan Zou, Lei Yao, Kuang Wei Cheng and Minkyu Je
2012 IEEE 10th International New Circuits and Systems Conference, pp.525-528
06/2012

Abstract

Arrays Capacitors Clocks Logic gates Power demand Switches Transistors
This paper presents a 9-bit 25 kS/s SAR ADC in 0.18 μm CMOS technology for neural signal recording applications. The ADC is powered by a single supply voltage of 1V to comply with other digital processing units on the same chip. The proposed ADC has one common-mode DC input of 0.5V thus offering a full-range sampling with only one pair of PMOS input transistors in the latched comparator. A versatile digital interface block is implemented to translate external control signals to internally useful Sample-and-Hold (S/H) commands, allowing a flexible S/H duration to match with the driving strength of the input buffer. To realize an ultra low-power performance, all digital blocks and the comparator are carefully optimized. At the same time, split-cap architecture with an attenuation cap is used to minimize area and to further reduce the power consumption. Our simulation shows that the proposed SAR archives 8.5 ENOB while consuming only 160 nW.

Metrics

1 Record Views

Details

Logo image