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An Analog-Front ROIC with On-Chip Non-Uniformity Compensation for Diode-Based Infrared Image Sensors

机译:一种模型前罗基,用于基于二极管的红外图像传感器的片上不均匀补偿

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摘要

This paper proposes a CMOS front-end readout-integrated circuit (ROIC) with on-chip non-uniformity compensation technique for a diode-based uncooled infrared image sensor. Two techniques are adopted to achieve on-chip non-uniformity compensation: a reference dummy metal line is introduced to alleviate the dominant non-uniformity with IR-drop presented in large pixel array, and a current splitting architecture-based variable current source for diode bias is proposed to compensate other residual non-uniformity. A differential integrator is chosen as the main amplifier of readout circuit for its superior noise performance. For low power design, a pulse-powered row buffer is designed in this work. The proposed ROIC for 384 × 288 diode-based detector array is fabricated with a 0.35- μ m CMOS process. It occupies an area of 4.4 mm × 15 mm, and the power consumption is 180 mW. The measured result shows that with the proposed on-chip non-uniformity compensation, the output voltage variation is greatly reduced from 2.5 V to 60 mV.
机译:本文提出了一种CMOS前端读出集成电路(ROIC),其用于基于二极管的未冷却红外图像传感器的片上的非均匀性补偿技术。采用两种技术实现片上的非均匀性补偿:引入了参考虚拟金属线以缓解在大像素阵列中呈现的IR降的主导的不均匀性,以及用于二极管的电流分割架构的可变电流源提出偏差以补偿其他残留的不均匀性。选择差分积分器作为读出电路的主放大器,用于其卓越的噪声性能。对于低功耗设计,在这项工作中设计了一种脉冲动力的行缓冲器。所提出的384×288二极管的检测器阵列用0.35-μMCMOS工艺制造。它占地面积4.4毫米×15毫米,功耗为180兆瓦。测量结果表明,随着所提出的片上不均匀性补偿,输出电压变化大大降低了2.5 V至60 mV。

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