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Micromachined poly-SiGe bolometer arrays for infrared imaging and spectroscopy

机译:用于红外成像和光谱学的微加工聚SiGe热辐射计阵列

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摘要

The state-of-the-art characteristics of micromachined polycrystalline SiGe microbolometer arrays are reported. An average NETD of 85 mK at a time constant of 14 ms is already achievable on typical self-supported 50 μm pixels in a linear 64-element array. In order to reach these values, the design optimization was performed based on the performance characteristics of linear 32-, 64- and 128-element arrays of 50-, 60- and 75-μm-pixel bolometers on several detector lots. The infrared and thermal modeling accounting for the read-out properties and self-heating effect in bolometers resulted in improved designs and competitive NETD values of 80 mK on 50 μm pixels in a 160x128 format at standard frame rates and f-number of 1. In parallel, the TCR-to-1/f noise ratio and the mechanical design of the pixels were improved making poly-SiGe a good candidate for a low-cost uncooled thermal array. The technological CMOS-based process possesses an attractive balance between characteristics and price, and allows the micromachining of thin structures, less than 0.2 μm. The resistance and TCR non-uniformity with σ/μ better than 0.2% combined with 99.93% yield are demonstrated. The first lots of fully processed linear arrays have already come from the IMEC process line and the results of characterization are presented. Next year, the first linear and small 2D arrays will be introduced on the market.
机译:报告了微加工的多晶SiGe微辐射热计阵列的最新技术特征。在线性的64元素阵列中,典型的自支撑50μm像素已经可以在14 ms的时间常数处获得85 mK的平均NETD。为了达到这些值,在多个检测器批次上,基于50、60和75μm像素辐射热计的线性32、64和128元素阵列的性能特征,进行了设计优化。红外和热建模考虑了辐射热测量计的读出特性和自热效应,从而改进了设计,并以160x128格式在标准帧速率和f值为1的情况下,在50μm像素上具有80 mK的竞争性NETD值。同时,改善了TCR与1 / f的噪声比和像素的机械设计,使poly-SiGe成为低成本非冷却热阵列的理想选择。基于CMOS的技术工艺在特性和价格之间具有吸引人的平衡,并且允许对小于0.2μm的薄结构进行微加工。证明了σ/μ优于0.2%的电阻和TCR不均匀性,以及99.93%的产率。经过充分处理的线性阵列的第一批已经来自IMEC生产线,并给出了表征结果。明年,第一个线性和小型2D阵列将投放市场。

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