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Low FPN High Gain Capacitive Transimpedance Amplifier for Low Noise CMOS Image Sensors

机译:低FPN高增益电容式跨阻抗,用于低噪声CMOS图像传感器

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In this paper we introduce a low fixed pattern noise (LFPN) capacitive transimpedance amplifier (CTIA) for active pixel CMOS image sensors (APS) with high switchable gain and low read noise. The LFPN CTIA APS uses a switched capacitor voltage divider feedback circuit to achieve high sensitivity, low gain FPN, and low read noise. This paper discusses the operation of the LFPN CTIA APS, and presents a theoretical analysis of its gain FPN and read noise. We do not analyze the effect of 1/f noise, since it is typically much smaller than the thermal and shot noise effects. Monte Carlo simulation of gain FPN and SPICE simulation of read noise are also presented. For a 0.35μm CMOS LFPN CTIA at room temperature and an output data rate of 16Mpixel/sec, we show that the pixel amplifier gain FPN is less than 0.0064, where FPN is defined as the ratio of standard deviation to mean. The read noise and dynamic range are less than 3 electrons RMS and greater than 90dB respectively. We find that theory and simulated results match closely.
机译:在本文中,我们引入了具有高可切换增益和低读取噪声的有源像素CMOS图像传感器(APS)的低固定图案噪声(LFPN)电容式转载放大器(CTIA)。 LFPN CTIA APS使用开关电容分频器反馈电路来实现高灵敏度,低增益FPN和低读取噪声。本文讨论了LFPN CTIA AP的运行,并提出了其增益FPN和读取噪声的理论分析。我们没有分析1 / f噪声的效果,因为它通常比热和射击噪声效应小得多。还介绍了GAIN FPN的Monte Carlo仿真和读取噪声的Spice仿真。对于0.35μm的CMOS LFPN CTIA,在室温下和16mpixel / sec的输出数据速率,我们表明像素放大器增益FPN小于0.0064,其中FPN定义为标准偏差的比率。读取噪声和动态范围分别小于3个电子RMS和大于90dB。我们发现理论和模拟结果密切匹配。

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