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A Fully Digital Readout Employing Extended Counting Method to Achieve Very Low Quantization Noise

机译:使用扩展计数方法的全数字读出,以实现极低的量化噪声

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This paper presents a digital ROIC for staring type arrays with extending counting method to realize very low quantization noise while achieving a very high charge handling capacity. Current state of the art has shown that digital readouts with pulse frequency method can achieve charge handling capacities higher than 3Ge' with quantization noise higher than 1000e~-. Even if the integration capacitance is reduced, it cannot be lower than 1-3 fF due to the parasitic capacitance of the comparator. For achieving a very low quantization noise of 200 electrons in a power efficient way, a new method based on measuring the time to measure the remaining charge on the integration capacitor is proposed. With this approach SNR of low flux pixels are significantly increased while large flux pixels can store electrons as high as 2.33Ge~-. A prototype array of 32×32 pixels with 30um pitch is implemented in 90nm CMOS process technology for verification. Simulation results are given for complete readout.
机译:本文提出了一种具有扩展计数方法的星型阵列数字ROIC,以实现非常低的量化噪声,同时又实现了非常高的电荷处理能力。当前的现有技术表明,采用脉冲频率方法的数字读出可以实现高于3Ge'的电荷处理能力,并且其量化噪声高于1000e-。即使积分电容减小,由于比较器的寄生电容,积分电容也不能低于1-3 fF。为了以省电的方式实现200个电子的极低量化噪声,提出了一种基于测量时间来测量积分电容器上剩余电荷的新方法。通过这种方法,低通量像素的SNR显着提高,而大通量像素可以存储高达2.33Ge〜-的电子。在90nm CMOS工艺技术中实现了间距为30um的32×32像素的原型阵列,以进行验证。仿真结果给出了完整的读数。

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