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Improved Switching Energy Reduction Approach in Low-Power SAR ADC for Bioelectronics

机译:改进了低功耗SAR ADC的切换能量还原方法,用于生物电子学

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摘要

Low-power analog-to-digital converter (ADC) is a crucial part of wearable or implantable bioelectronics. In order to reduce the power of successive-approximation-register (SAR) ADC, an improved energy-efficient capacitor switching scheme of SAR ADC is proposed for implantable bioelectronic applications. With sequence initialization, novel logic control, and capacitive subconversion, 97.6% switching energy is reduced compared to the traditional structure. Moreover, thanks to the top-plate sampling and capacitive subconversion, 87% input-capacitance reduction can be achieved over the conventional structure. A 10-bit SAR ADC with this proposed switching scheme is realized in 65 nm CMOS. With 1.514 KHz differential sinusoidal input signals sampled at 50 KS/s, the ADC achieves an SNDR of 61.4 dB and only consumes power of 450 nW. The area of this SAR ADC IP core is only 136 μm × 176 μm, making it also area-efficient and very suitable for biomedical electronics application.
机译:低功耗模数转换器(ADC)是可穿戴或可植入生物电体的重要组成部分。 为了降低连续近似寄存器(SAR)ADC的功率,提出了一种改进的SAR ADC的节能电容器切换方案,用于可植入的生物电子应用。 通过序列初始化,与传统结构相比,新颖的逻辑控制和电容性分子转换,切换能量为97.6%。 此外,由于顶板采样和电容子转换,可以通过传统结构实现87%的输入电容减少。 具有该提出的切换方案的10位SAR ADC在65nm CMOS中实现。 使用1.514 kHz差分正弦输入信号采样为50 ks / s,ADC实现了61.4 dB的SNDR,只能消耗450 NW的功率。 该SAR ADC IP芯的面积仅为136μm×176μm,也使其效率高,非常适合生物医学电子产品。

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