2018Unpublished venueRequires access

A 12-Bit ENOB 8MHz BW Noise-Shaping SAR ADC Using High-Speed Switches

Zhiyuan Dai, Hang Hu, Yongzhen Chen, Fan Ye, Junyan Ren

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Abstract

Successive approximation register Analog-to-digital converter (SAR ADC) with a passive noise-shaping modulator is an appropriate choice to increase the ENOB and save power consumption compared with conventional SAR ADC. This paper proposed a third-order noise-shaping SAR ADC with high speed switches in modulators to complete the charge sharing for reducing the time cost of noise shaping process in one sampling cycle and used a foreground calibration to calibrate the value of the capacitors in DAC array. The whole ADC can realize 12.11-Bit ENOB in 8MHz bandwidth (BW).

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What this paper is about

Successive approximation register Analog-to-digital converter (SAR ADC) with a passive noise-shaping modulator is an appropriate choice to increase the ENOB and save power consumption compared with conventional SAR ADC. This paper proposed a third-order noise-shaping SAR ADC with high speed switches in modulators to complete the charge sharing for reducing the time cost of noise shaping process in one sampling cycle and used a foreground calibration to calibrate the value of the capacitors in DAC array. The whole ADC can realize 12.11-Bit ENOB in 8MHz bandwidth (BW).

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Available abstract

Successive approximation register Analog-to-digital converter (SAR ADC) with a passive noise-shaping modulator is an appropriate choice to increase the ENOB and save power consumption compared with conventional SAR ADC. This paper proposed a third-order noise-shaping SAR ADC with high speed switches in modulators to complete the charge sharing for reducing the time cost of noise shaping process in one sampling cycle and used a foreground calibration to calibrate the value of the capacitors in DAC array. The whole ADC can realize 12.11-Bit ENOB in 8MHz bandwidth (BW).

Key concepts: Effective number of bits, Successive approximation ADC, Noise shaping, Capacitor, Electronic engineering, Noise (video), Computer science, Bandwidth (computing)

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