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首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >A Small-Area and Energy-Efficient 12-bit SA-ADC With Residue Sampling and Digital Calibration for CMOS Image Sensors
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A Small-Area and Energy-Efficient 12-bit SA-ADC With Residue Sampling and Digital Calibration for CMOS Image Sensors

机译:具有残留采样和CMOS图像传感器数字校准功能的小面积,节能型12位SA-ADC

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This brief proposes a small-area and energy-efficient 12-bit successive approximation analog-to-digital converter (SA-ADC) for CMOS image sensors with a column-parallel readout structure. The proposed SA-ADC, which uses only a 6-bit capacitor digital-to-analog converter (DAC) for residue sampling, reduces the capacitor area to 1/64th of that for the 12-bit capacitor DAC and adopts the scaled reference voltages for 12-bit conversion. It also achieves 88% lower switching energy of the capacitor DAC compared with the 12-bit SA-ADC with split capacitor structure. A foreground digital calibration is employed to compensate for the linearity error caused by the inaccurately scaled reference voltages. A test chip, which has 100 readout channels with the proposed SA-ADC, is fabricated using a 0.18- CMOS process. The measurement results show that the proposed SA-ADC with the proposed digital calibration has differential nonlinearity (DNL) of −0.8/+1.7 LSB and integral nonlinearity (INL) of −2.3/+2.4 LSB, and without the calibration, it has DNL of −1/+14.9 LSB and INL of −15.8/+12.7 LSB. In addition, a digital correlated double sampling method improves the standard deviation of the readout channel outputs from 62.1 to 1.4 LSB.
机译:本简介为具有列并行读出结构的CMOS图像传感器提出了一种小面积,高能效的12位逐次逼近模数转换器(SA-ADC)。拟议中的SA-ADC仅使用6位电容器数模转换器(DAC)进行残留采样,将电容器面积减小到12位电容器DAC的1/64,并采用比例基准电压用于12位转换。与具有分离电容器结构的12位SA-ADC相比,它还可以使电容器DAC的开关能量降低88%。采用前台数字校准来补偿由不正确缩放的参考电压引起的线性误差。使用0.18-CMOS工艺制造了一个测试芯片,该芯片具有100个带有建议的SA-ADC的读出通道。测量结果表明,具有拟议数字校准的拟议SA-ADC具有-0.8 / + 1.7 LSB的差分非线性(DNL)和-2.3 / + 2.4 LSB的积分非线性(INL),并且未经校准,具有DNL -1 / + 14.9 LSB和INL -15.8 / + 12.7 LSB。此外,数字相关双采样方法将读出通道输出的标准偏差从62.1改善到1.4 LSB。

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