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An Ultra-Low-Energy Analog Comparator for A/D Converters in CMOS Image Sensors

机译:用于CMOS图像传感器中A / D转换器的超低功耗模拟比较器

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This paper proposes a new solution of an ultra-low-energy analog comparator, dedicated to slope analog-to-digital converters (ADC), particularly suited for CMOS image sensors (CISs) featuring a large number of ADCs. For massively parallel imaging arrays, this number may be as high as tens-hundreds of thousands ADCs. As each ADC includes an analog comparator, the number of these comparators in CIS is always high. Detailed analysis shows that power dissipation of a comparator contributes significantly to a total power consumption of an ADC. Thus, minimization of the comparator energy consumption during the analog-to-digital (A/D) conversion of an image frame is crucial for design of CMOS image sensors. Compared to classical dynamic or continuous-time comparators operating in the slope ADC, under the same bias conditions, the proposed comparator shows a 2-3 orders of magnitude reduction of the power consumption. In addition, the proposed topology shows a simple and compact layout and does not require a power-down mechanism. The circuit has been simulated in detail for a 0.18-mu m CMOS technology under two different power supply voltages of 1.8 and 1 V. While implemented in a 12-bit slope ADC of a massively parallel CIS, operating at a speed 1000 fps, the energy required for A/D conversion is 0.5 pJ.
机译:本文提出了一种超低功耗模拟比较器的新解决方案,该解决方案专用于斜率模数转换器(ADC),特别适用于具有大量ADC的CMOS图像传感器(CIS)。对于大规模并行成像阵列,此数字可能高达数十万个ADC。由于每个ADC都包含一个模拟比较器,因此CIS中这些比较器的数量始终很高。详细的分析表明,比较器的功耗极大地影响了ADC的总功耗。因此,在图像帧的模数(A / D)转换期间使比较器能耗最小化对于CMOS图像传感器的设计至关重要。与在斜率ADC中运行的传统动态或连续时间比较器相比,在相同的偏置条件下,该比较器显示出功耗降低了2-3个数量级。此外,所提出的拓扑结构显示了简单紧凑的布局,并且不需要掉电机制。该电路已针对0.18微米CMOS技术在1.8和1 V的两种不同电源电压下进行了详细仿真。在大规模并行CIS的12位斜率ADC中实现时,该芯片以1000 fps的速度运行, A / D转换所需的能量为0.5 pJ。

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