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A Column-Based Two-Stage Analog-to-Digital Converter for Uncooled Microbolometer Arrays

机译:基于列的两级模数转换器,用于非冷却微测辐射热计阵列

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This paper presents a column-based, two-stage, 12-bit analog-to-digital converter structure designed for uncooled microbolometer arrays. On-chip analog-to-digital converters prevent the degradation of sensitive analog output by external noise sources as well as providing a more integrated functionality. Despite these advantages, the area and power constraints limit the usage of high performance converters. This paper presents a new structure that provides a balance between area, power, and performance. The structure is composed of two stages: a tracking ADC stage running at each column during integration and a successive approximation ADC stage which is shared by a number of columns depending on the array size and operation frequency. The tracking ADC operates during the integration time, while the second ADC starts after the integration is completed. The converter includes self-calibration to lower the effect of process variations and digital correction mechanisms to eliminate the need for low-offset comparators. The simulations and theoretical calculations based on the simulation results show that the total power dissipation of the proposed structure will be approximately 73.7 mW and 88.4 mW on a 320×240 array operating at 60 Hz and 384×288 array operating at 50 Hz, respectively.
机译:本文介绍了一种专为非冷却式微辐射热计阵列设计的基于列的两级,12位模数转换器结构。片上模数转换器可防止外部噪声源降低敏感模拟输出的性能,并提供更集成的功能。尽管具有这些优点,但面积和功率限制限制了高性能转换器的使用。本文提出了一种新的结构,该结构在面积,功率和性能之间取得了平衡。该结构由两个阶段组成:一个跟踪ADC阶段,在积分期间在每个列上运行;一个逐次逼近ADC阶段,根据阵列的大小和工作频率,该列由多个列共享。跟踪ADC在积分时间内运行,而第二个ADC在积分完成后启动。该转换器包括自校准以降低过程变化的影响以及数字校正机制,从而消除了对低偏移比较器的需求。仿真和基于仿真结果的理论计算表明,在以60 Hz工作的320×240阵列和以50 Hz工作的384×288阵列上,所提出结构的总功耗分别约为73.7 mW和88.4 mW。

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