Design of a 0.005mm2 8.5ENoB 14.9 fJ/conv-step SAR ADC for Biomedical Application
Yuan Ma, Xuecheng Wang, Milin Zhang
Abstract
Yuan Ma, Xuecheng Wang, Milin Zhang
Abstract
This paper presents a differential 62. 5kS/s, 300nW,8bit successive approximation register (SAR) analog-to-digital converters (ADC) in 40nm CMOS technology occupying a silicon area of $0.005\mathrm{m}\mathrm{m}^{2}$. An algorithm that calculates the impact of capacitor mismatch errors and parasitic effects on performance for multi-structure comparison and area optimization has been proposed. The measured FOM of the proposed ADC is 14.9fJ/c-s at 62. 5kS/s with Effective number of bits (ENoB) of 8. 3bits, spurious free dynamic range (SFDR) of 63.34 dB and total harmonic distortion (THD) of 60.9 dB are achieved.
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This paper presents a differential 62. 5kS/s, 300nW,8bit successive approximation register (SAR) analog-to-digital converters (ADC) in 40nm CMOS technology occupying a silicon area of $0.005\mathrm{m}\mathrm{m}^{2}$. An algorithm that calculates the impact of capacitor mismatch errors and parasitic effects on performance for multi-structure comparison and area optimization has been proposed. The measured FOM of the proposed ADC is 14.9fJ/c-s at 62. 5kS/s with Effective number of bits (ENoB) of 8. 3bits, spurious free dynamic range (SFDR) of 63.34 dB and total harmonic distortion (THD) of 60.9 dB are achieved.
Key concepts: Spurious-free dynamic range, Effective number of bits, Successive approximation ADC, Total harmonic distortion, Capacitor, Dynamic range, Converters, CMOS