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Dynamic response analysis of pyroelectric sensitive element for thermal imaging

机译:热成像热电学敏感元件的动态响应分析

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摘要

Temperature distributions under periodic thermal excitations and the responsivity of a pyroelectric device consisting of a cover layer, infrared absorber, metal contact, sensitive pyroelectric element, interconnecting column, and bulk silicon are found. Some results of numerical thermal modeling and analysis of exact expressions for a few extreme cases are presented. Pyroelectric responses of real structures are compared with the response of a single pyroelectric element in air as a limiting case of maximum sensitivity. The analytical approximations and numerical simulation show that the frequency response of the multilayered structure consists of different parts with simple frequency dependencies. In the region of high frequencies of light modulation, the responsivity is proportional to Ω-1, at low frequencies ∼ Ω-0.5, and, in the region of intermediate frequencies, the voltage responsivity is independent of frequency.
机译:发现温度分布在周期性热激发和由覆盖层,红外吸收器,金属接触,敏感的热电元件,互连柱和散装硅的热电装置的响应性。提出了几种极端情况的数值热建模和分析的一些结果。将真实结构的热电响应与空气中的单个热电元件的响应进行了比较,作为最大灵敏度的限制情况。分析近似和数值模拟表明,多层结构的频率响应由具有简单频率依赖性的不同部件组成。在光调制的高频率区域中,响应性在低频〜ω-0.5处与ω-1成比例,并且在中间频率区域中,电压响应度与频率无关。

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