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New fully digital programmable gain amplifier scheme with reduced clipping noise for complementary metal oxide semiconductor image sensor

机译:新型的全数字可编程增益放大器方案,可降低削波噪声,用于互补金属氧化物半导体图像传感器

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We propose a fully digital programmable gain amplifier scheme that overcomes the clipped noise analog-to-digital converter (ADC) for complementary metal-oxide semiconductor (CMOS) image sensors. Adopting the new digital programmable gain amplifier (DPGA) scheme, it obtains low noise and low power usage, has a small size, and high robust gain characteristic. To reduce the clipping noise, one new current controling the reference voltage of a 9-bit flash ADC is brought about in this work. Using the fully digital amplification scheme with reduced clipping noise ADC solves almost all the problems of the conventional analog programmable gain amplifier (APGA) scheme, which has large noise, large power, and big chip size due to APGA, and two analog autozero loop (both clamping circuit loop and offset correction loop) circuits. Based on a 0.18-μm CMOS image sensor process, one product of video graphic array (VGA) format CMOS image sensor is fabricated. The silicon test shows a 68-dB dynamic range with the power consumption of 80 mW at 24 MHz and the total noise of about 2 mV (at 30 fps and 27 deg).
机译:我们提出了一种全数字可编程增益放大器方案,该方案克服了用于互补金属氧化物半导体(CMOS)图像传感器的削波噪声模数转换器(ADC)。采用新型数字可编程增益放大器(DPGA)方案,它具有低噪声,低功耗,小尺寸和高鲁棒性的增益特性。为了降低削波噪声,这项工作带来了一个控制9位闪存ADC参考电压的新电流。使用具有减少削波噪声的全数字放大方案ADC可以解决传统模拟可编程增益放大器(APGA)方案的几乎所有问题,该方案具有较大的噪声,较大的功率,并且由于APGA而具有较大的芯片尺寸,并且具有两个模拟自动归零环路(钳位电路回路和失调校正回路)电路。基于0.18μmCMOS图像传感器工艺,制造了一种视频图形阵列(VGA)格式CMOS图像传感器产品。硅测试显示了68dB的动态范围,在24 MHz时的功耗为8​​0 mW,总噪声约为2 mV(在30 fps和27 deg时)。

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