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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 12 pJ/Pixel Analog-to-Information Converter Based 816 × 640 Pixel CMOS Image Sensor
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A 12 pJ/Pixel Analog-to-Information Converter Based 816 × 640 Pixel CMOS Image Sensor

机译:基于816×640像素CMOS图像传感器的12 pJ /像素模数转换器

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Analog-to-information converters (AICs) take advantage of the limited information bandwidth in high-frequency signals to improve the energy efficiency of front-end data converters. High-resolution image sensors often convey limited information due to the spatial redundancy between neighboring pixels. This paper proposes a mixed-signal AIC which compresses each nonoverlapping 4 × 4 pixel block in a 816 × 640 pixel prototype active-pixel sensor (APS) imager. It combines an energy-efficient charge-pump bit-image processor (BIP) with an area-efficient successive-approximation-register-single-slope (SAR-SS) hybrid analog-to-digital converter (ADC) via a charge-transfer-amplifier (CTA). The AIC is fully dynamic and consumes no static power. The ADC's capacitor array doubles as a computational device for parts of the compression algorithm which reduces its sampling rate by a factor of four. The compressed data contains direct edge information and can be decoded by a very simple receiver. The fabricated prototype consumes 12 pJ per pixel at 111 fps in the image compression mode and 48 pJ per pixel at 28.7 fps in raw data mode (9 b per pixel) under the same clock rate. To the best of our knowledge, this is the most energy-efficient compressive CMOS image sensor ever reported in the literature, thanks to the proposed AIC.
机译:模数转换器(AIC)利用高频信号中有限的信息带宽来提高前端数据转换器的能效。由于相邻像素之间的空间冗余,高分辨率图像传感器经常传达有限的信息。本文提出了一种混合信号AIC,它可以压缩816×640像素原型有源像素传感器(APS)成像器中的每个不重叠的4×4像素块。它通过电荷转移将节能的电荷泵位图像处理器(BIP)与面积有效的逐次逼近寄存器单斜率(SAR-SS)混合模数转换器(ADC)结合在一起-放大器(CTA)。 AIC是完全动态的,不消耗任何静态功率。 ADC的电容器阵列还可以作为部分压缩算法的计算设备,从而将采样率降低四倍。压缩数据包含直接边缘信息,并且可以由非常简单的接收器进行解码。在相同的时钟速率下,所制造的原型在图像压缩模式下以111 fps的速度每像素消耗12 pJ,在原始数据模式下以28.7 fps的速度每像素消耗48 pJ(每个像素9 b)。据我们所知,由于提出了AIC,这是文献中报道过的最节能的压缩CMOS图像传感器。

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