支持大型垂直环绕的模拟计算的图像传感器读出电路

Madhu Latha Reddy Vatte, F. Hassan, J. Carletta, R. Veillette
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引用次数: 2

摘要

提出了一种具有读出电路的对数CMOS图像传感器,该读出电路允许直接计算列中像素的加权平均值。核权通过一组可变增益电流镜中的偏置电压控制。详细描述了电路的拓扑结构和设计。采用1.2°m CMOS技术对电路进行了仿真。仿真结果表明,对于一个33像素的高斯核,由于光电二极管电流的变化,负载的变化导致有效核权值的误差不超过0.88%。垂直平均值的模拟计算消除了在完全在数字硬件中实现二维图像滤波器时通常需要的缓冲存储器的需要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Image sensor readout circuitry supporting the analog computation of large vertical surrounds
A logarithmic CMOS image sensor is proposed with a readout circuit that allows the direct calculation of a weighted average of pixels in a column. The kernel weights are controlled through bias voltages in a set of variable-gain current mirrors. A detailed description of the circuit topology and design is given. The circuitry was simulated using 1.2°m CMOS technology. The simulation shows that inaccuracies in the effective kernel weights due to changes in loading as the photodiode currents for individual pixels vary result in errors of no more than 0.88% in the computed vertical averages for an example 33-pixel Gaussian kernel. The analog computation of the vertical averages eliminates the need for the buffer memory that is ordinarily required when implementing two-dimensional image filters entirely in digital hardware.
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