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A compact 4-to-8-bit nonbinary SAR ADC based on 2 bits per cycle DAC architecture

机译:基于每周期2位DAC架构的紧凑型4至8位非二进制SAR ADC

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A compact programmable-resolution successive approximation register (SAR) analog to digital converter (ADC) for biosignal acquisition system is presented. The ADC features a programmable 4-to-8-bit DAC that makes the ADC programmable with 2 bits evaluated in each clock cycle. At low resolution with relaxed noise and linearity requirements, use of an increased clock speed improves energy efficiency. A single DAC architecture is used to generate references for 2 bits per cycle evaluation for all resolutions. Nonbinary switched capacitor circuits, least sensitive to parasitics, are proposed for the use in DAC for reference generation.The choice of architecture and circuit design are presented with mathematical analysis. The post-layout simulation of designed ADC in 90 nm CMOS process has 1.2 MS/s sampling rate at 8-bit mode with a power consumption of 185 μ achieving an ENOB of 7.6. The active area of designed ADC is 0.06 mm2. The DAC resolution scaling and the use of variable sampling rate maximize efficiency at lower resolutions. Therefore, figure of merit (FOM) is degraded only by a factor of 4.7 for resolution scaling from 8 to 4 bits. This is a significant improvement over 16× degradation expected from 8-bit to 4-bit resolution scaling by truncating the bits.
机译:介绍了一种用于生物信号采集系统的紧凑型可编程分辨率逐次逼近寄存器(SAR)模数转换器(ADC)。 ADC具有可编程的4到8位DAC,使ADC可以在每个时钟周期中用2位评估值进行编程。在低分辨率下,对噪声和线性的要求宽松,使用提高的时钟速度可提高能效。单个DAC体系结构用于为所有分辨率的每个周期评估生成2位基准。提出了一种对寄生效应最不敏感的非二进制开关电容电路,以用于DAC进行参考生成。通过数学分析,给出了架构和电路设计的选择。在90 nm CMOS工艺中设计ADC的布局后仿真在8位模式下具有1.2 MS / s的采样率,功耗为185μ,实现了ENOB为7.6。设计的ADC的有效面积为0.06 mm2。 DAC分辨率缩放和可变采样率的使用可在较低分辨率下最大化效率。因此,对于将分辨率从8位缩放到4位,品质因数(FOM)仅降低4.7倍。通过截断比特,这是对从8位分辨率缩放到4位分辨率的16倍降级的显着改进。

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