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A 0.3-V 0.705-fJ/Conversion-Step 10-bit SAR ADC with a Shifted Monotonic Switching Procedure in 90-nm CMOS
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A 0.3-V 0.705-fJ/Conversion-Step 10-bit SAR ADC with a Shifted Monotonic Switching Procedure in 90-nm CMOS

Sung-En HsiehChih-Cheng Hsieh
IEEE Transactions on Circuits and Systems II: Express Briefs, 卷.63(12), 頁碼.1171-1175
12/2016

摘要

Low power successive approximation register (SAR) analog-to-digital converter (ADC) switching power Electrical and Electronic Engineering
This brief presents a 0.3-V energy-efficient 10-bit successive approximation register analog-to-digital converter. A shifted monotonic switching procedure is proposed to achieve an average digital-to-analog converter switching energy of 63.75 CV2. Two redundant bits are implemented with error tolerance of ±12 mV for dynamic comparator offset and common-mode reference (Vcm) sensitivity. The prototype is designed and fabricated in a 90-nm CMOS with a core size of 250 μm × 50 μm (0.0125 mm 2 ). At 250 KS/s and Nyquist rate input, it consumes 52.3 nW at 0.3-V supply with an achieved signal-to-noise-and-distortion ratio of 51.21 dB and a resulting figure of merit of 0.705 fJ/conv.-step.

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