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A 10-bit ratio-independent cyclic ADC with offset canceling for a CMOS image sensor

机译:具有CMOS图像传感器偏移补偿功能的10位比例无关循环ADC

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摘要

A 10-bit ratio-independent switch-capacitor (SC) cyclic analog-to-digital converter (ADC) with offset canceling for a CMOS image sensor is presented. The proposed ADC completes an N-bit conversion in 1.5N clock cycles with one operational amplifier. Combining ratio-independent and polarity swapping techniques, the conversion characteristic of the proposed cyclic ADC is inherently insensitive both to capacitor ratio and to amplifier offset voltage. Therefore, the circuit can be realized in a small die area and it is suitable to serve as the column-parallel ADC in CMOS image sensors. A prototype ADC is fabricated in 0.18-μm one-poly four-metal CMOS technology. The measured results indicate that the ADC has a signal-to-noise and distortion ratio (SNDR) of 53.6 dB and a DNL of C+0.12/-0.14 LSB at a conversion rate of 600 kS/s. The standard deviation of the offset variation of the ADC is reduced from 2.5 LSB to 0.5 LSB. Its power dissipation is 250 μW with a 1.8 V supply, and its area is 0.03 × 0.8 mm~2.
机译:提出了一种用于CMOS图像传感器的具有偏移消除功能的10位比例无关开关电容(SC)循环模数转换器(ADC)。拟议的ADC通过一个运算放大器以1.5N个时钟周期完成N位转换。结合比率无关和极性交换技术,所提出的循环ADC的转换特性固有地对电容器比率和放大器失调电压都不敏感。因此,该电路可以在较小的裸片面积中实现,并且适合用作CMOS图像传感器中的列并行ADC。 ADC原型采用0.18μm的一元四金属CMOS技术制造。测量结果表明,在600 kS / s的转换速率下,ADC的信噪比(SNDR)为53.6 dB,DNL为C + 0.12 / -0.14 LSB。 ADC偏移变化的标准偏差从2.5 LSB降低到0.5 LSB。在1.8 V电源下的功耗为250μW,面积为0.03×0.8 mm〜2。

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