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Design of large dynamic range, low-power, high-precision ROIC for quantum dot infrared photo-detector

机译:大动态范围,低功耗,高精度ROIC的量子点红外光电探测器设计

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摘要

Hybrid infrared (IR) focal plane arrays consist of an array of IR photodetectors, bump-bonded to a silicon CMOS readout integrated circuit (ROIC) chip. Design and optimisation of ROIC for quantum dot IR detectors is a multidimensional problem. The major design challenge is to select appropriate readout circuit topology to meet the large dynamic range requirement of quantum dot IR photo-detectors within the area dictated by the matched pixel size. Proposed is an efficient design optimisation for ROIC. The optimisation is based on a proposed decision matrix, which leads to a decision merit for ROIC design. Four main specifications, i.e. charge handling capacity, noise, power dissipation and detector bias voltage variations, have been considered. Various architectures have been compared using circuit design, simulation and implementation. The targeted ROIC specifications for a test chip containing a 4 ?? 4 array are: 5 Me?? charge handling capacity, 30 ?? 30 ;C;m maximum pixel size, snapshot mode of operation, variable integration time, 5 megapixels/s (Mpps) readout rate and readout noise of 600e?? at ambient temperature. Also presented is a design with 5 Me?? charge handling capacity, which has not been reported for 180 nm CMOS process earlier.
机译:混合红外(IR)焦平面阵列由IR光电探测器阵列组成,凸点结合到硅CMOS读出集成电路(ROIC)芯片上。量子点红外探测器的ROIC的设计和优化是一个多维问题。主要的设计挑战是选择合适的读出电路拓扑,以满足在由匹配像素尺寸决定的区域内量子点IR光电探测器的大动态范围要求。提出了对ROIC的有效设计优化。该优化基于提议的决策矩阵,从而得出了ROIC设计的决策优点。考虑了四个主要规格,即电荷处理能力,噪声,功耗和检测器偏置电压变化。使用电路设计,仿真和实现对各种架构进行了比较。包含4Ω的测试芯片的目标ROIC规范4个数组是:5 Me?电荷处理能力,30 ?? 30; C; m最大像素大小,快照操作模式,可变积分时间,5兆像素/秒(Mpps)的读出速率和600e?的读出噪声?在环境温度下。还介绍了一个5 Me的设计??电荷处理能力,此前尚未报道过180 nm CMOS工艺。

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