DocumentCode
640409
Title
An efficient implementation of self timed audio Sigma-Delta Modulator
Author
Deshmukh, Aaradhana A. ; Deshmukh, R.B. ; Patrikar, R.M.
Author_Institution
VNIT, Nagpur, India
fYear
2013
fDate
15-16 Aug. 2013
Firstpage
27
Lastpage
31
Abstract
This paper presents Self Timed First Order Sigma-Delta Modulator for audio applications. Implementation completely avoids sampling clock and thus no clock related issues like quantization noise, jitter etc. Analog circuit complexity reduces due to self timed, input activity dependent sampling. So leads to minimum power consumption. Overall it provides asynchronous sampling. Compared to synchronous counterpart the quantizer provides variable resolution and less power consumption. The proposed design shows Asynchronous Sigma-Delta Modulator (ASDM) with tuning of hysteresis level externally. Probably this is the first ASDM scheme which uses Schmitt Trigger with tunable hysteresis. Depending on input signal speed we can externally set the resolution, without corrupting inband spectrum. Performance is improved by implementation with effective switching rate. It enables the control on dynamic power consumption. Design implemented in UMC CMOS technology for ±1.2V using Cadence Design System for 5KHz-20KHz signal frequency range. Extensive simulations show that with Over Cycling Ratio (OCR) 100, modulator achieves maximum SNDR 110dB, SFDR 76dB with power dissipation 153μW.
Keywords
CMOS integrated circuits; modulators; sigma-delta modulation; trigger circuits; ASDM; SNDR; Schmitt trigger; UMC CMOS technology; analog circuit complexity; asynchronous sampling; asynchronous sigma-delta modulator; dynamic power consumption; first order sigma-delta modulator; frequency 5 kHz to 20 kHz; hysteresis level; over cycling ratio; power 153 muW; power dissipation; self timed audio sigma-delta modulator; Educational institutions; Hysteresis; Modulation; Noise; Optical character recognition software; Sigma-delta modulation; Voltage control; Asynchronous Sigma-Delta Modulator (ASDM); Hysteresis level; Schmitt Trigger(ST);
fLanguage
English
Publisher
ieee
Conference_Titel
Micro-Nanoelectronics, Technology and Applications (EAMTA), 2013 7th Argentine School of
Conference_Location
Buenos Aires
Type
conf
Filename
6621073
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