DocumentCode :
60731
Title :
A 515 nW, 0–18 dB Programmable Gain Analog-to-Digital Converter for In-Channel Neural Recording Interfaces
Author :
Rodriguez-Perez, Alberto ; Delgado-Restituto, Manuel ; Medeiro, Fernando
Author_Institution :
Inst. of Microelectron. of Seville, Sevilla, Spain
Volume :
8
Issue :
3
fYear :
2014
fDate :
Jun-14
Firstpage :
358
Lastpage :
370
Abstract :
This paper presents a low-area low-power Switched-Capacitor (SC)-based Programmable-Gain Analog-to-Digital Converter (PG-ADC) suitable for in-channel neural recording applications. The PG-ADC uses a novel implementation of the binary search algorithm that is complemented with adaptive biasing techniques for power saving. It has been fabricated in a standard CMOS 130 nm technology and only occupies 0.0326 mm2. The PG-ADC has been optimized to operate under two different sampling modes, 27 kS/s and 90 kS/s. The former is tailored for raw data conversion of neural activity, whereas the latter is used for the on-the-fly feature extraction of neural spikes. Experimental results show that, under a voltage supply of 1.2 V, the PG-ADC obtains an ENOB of 7.56 bit (8-bit output) for both sampling modes, regardless of the gain setting. The amplification gain can be programmed from 0 to 18 dB. The power consumption of the PG-ADC at 90 kS/s is 1.52 μW with a FoM of 89.49 fJ/conv, whereas at 27 kS/s it consumes 515 nW and obtains a FoM of 98.31 fJ/conv .
Keywords :
CMOS integrated circuits; analogue-digital conversion; bioelectric potentials; biomedical electronics; feature extraction; medical signal detection; medical signal processing; neurophysiology; signal sampling; CMOS technology; PG-ADC; adaptive biasing techniques; amplification gain; binary search algorithm; feature extraction; gain 0 dB to 18 dB; gain setting; in-channel neural recording interfaces; low-area low-power switched-capacitor; neural activity; neural spikes; power 1.52 muW; power 515 nW; power consumption; power saving; programmable gain analog-to-digital converter; raw data conversion; sampling modes; size 130 nm; voltage 1.2 V; Capacitance; Capacitors; Clocks; Electronics packaging; Gain; Linearity; Switches; Analog-to-digital converter (ADC); binary search algorithm; biomedical; low-power; low-voltage; mismatch; programmable gain amplifier (PGA); successive approximation; switched-capacitor (SC) circuits;
fLanguage :
English
Journal_Title :
Biomedical Circuits and Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
1932-4545
Type :
jour
DOI :
10.1109/TBCAS.2013.2270180
Filename :
6570548
Link To Document :
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