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A block-parallel signal processing system for CMOS image sensor with three-dimensional structure

机译:具有三维结构的CMOS图像传感器的块并联信号处理系统

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In this paper, we describe the fundamental study of the block-parallel analog signal processing elements which includes CMOS image sensor, correlated double sampling (CDS) array, and analog-to-digital converter (ADC) array. To realize high-speed image capturing sensor, we have proposed a blockparallel signal processing with three-dimensional (3-D) structure. In proposed system, one block consists of 3 stacked layers which are 100 pixels image sensor, CDS circuit, and one ADC. Each circuit layer is vertically stacked and electrically connected by through-Si vias (TSVs), which can improve sensor performance. On the other hand, the block-parallel system requires ADC with extremely low-power and small circuit area, ADC is required. Therefore, the trade-off among area, power dissipation and conversion speed is important factor, and critical challenge. ADC designed in the test chip for functional evaluation employed the time interleaved charge-redistribution successive approximation (SAR) method. The proposed 9-bit ADC was designed in 90-nm CMOS technology, and achieved power dissipation less than 0.5mW with supply voltage of 1.0V and 4 MS/s conversion rate. The circuit area is 100 ×100 μm2.
机译:在本文中,我们描述了包括CMOS图像传感器,相关的双采样(CDS)阵列和模数转换器(ADC)阵列的块平行模拟信号处理元件的基本研究。为了实现高速图像捕获传感器,我们已经提出了具有三维(3-D)结构的方框扩展信号处理。在提出的系统中,一个块由3个堆叠层组成,该层是100像素图像传感器,CDS电路和一个ADC。每个电路层垂直堆叠并通过通过SI通孔(TSV)电连接,这可以提高传感器性能。另一方面,块并行系统需要具有极低功耗和小电路区域的ADC,ADC是必需的。因此,面积,功耗和转换速度之间的权衡是重要因素和危急挑战。 ADC在测试芯片中设计的功能评估采用时间交织充电再分配连续近似(SAR)方法。所提出的9位ADC采用90-NM CMOS技术设计,并实现低于0.5MW的功耗,电源电压为1.0V和4ms / S转换率。电路面积为100×100μm 2

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