A CMOS imager with negative feedback pixel circuits and its applications

M. Ikebe, J. Motohisa
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Abstract

We investigated a negative feedback method for adding functionality to a CMOS image sensor. Our sensor effectively uses the method to set any intermediate voltage into a photodiode capacitance while a pixel circuit is in motion. The negative feedback reset functions as a noise cancellation technique and can obtain intermediate image data during charge accumulation. As an above application, dynamic range compression is achieved by individually selecting pixels and by setting an intermediate voltage or performing quasi-holding with respect to each pixel. Additionally, we achieved duplicated interlaced processing and were able to output frame-difference images without frame buffers. The experimental results obtained with a chip fabricated using a 0.25-μm CMOS process demonstrate that dynamic range compression and intra-frame motion detection are effective applications of negative feedback resetting.
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带有负反馈像素电路的CMOS成像仪及其应用
我们研究了一种负反馈方法来增加CMOS图像传感器的功能。我们的传感器有效地使用该方法在像素电路运动时将任何中间电压设置到光电二极管电容中。负反馈复位作为一种噪声消除技术,可以在电荷积累过程中获得中间图像数据。作为上述应用,通过单独选择像素和通过设置中间电压或相对于每个像素执行准保持来实现动态范围压缩。此外,我们实现了重复隔行处理,并能够在没有帧缓冲区的情况下输出帧差图像。采用0.25 μm CMOS工艺制作的芯片实验结果表明,动态范围压缩和帧内运动检测是负反馈复位的有效应用。
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