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3D-Printing of inverted pyramid suspending architecture for pyroelectric infrared detectors with inhibited microphonic effect

机译:热电红外探测器受抑制的微音效应的倒金字塔悬挂结构的3D打印

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摘要

A sensitive chip with ultralow dielectric loss based on Mn doped PMNT (71/29) has been proposed for high-end pyroelectric devices. The dielectric loss at 1 kHz is 0.005%, one order lower than the minimum value reported so far. The detective figure of merit (Fa) is up to 92.6 x 10(-5) Pa-1/2 at 1 kHz and 53.5 x 10(-5) Pa-1/2 at 10 Hz, respectively. In addition, an inverted pyramid suspending architecture for supporting the sensitive chip has been designed and manufactured by 3D printing technology. The combination of this sensitive chip and the proposed suspending architecture largely enhances the performance of the pyroelectric detectors. The responsivity and specific detectivity are 669,811 V/W and 3.32 x 10(9) cm Hz(1/2)/W at 10 Hz, respectively, 1.9 times and 1.5 times higher than those of the highest values in literature. Furthermore, the microphonic effect can be largely inhibited according to the theoretical and experimental analysis. This architecture will have promising applications in high-end and stable pyroelectric infrared detectors. (C) 2016 Elsevier B.V. All rights reserved.
机译:已经提出了基于锰掺杂的PMNT(71/29)的具有超低介电损耗的敏感芯片用于高端热释电器件。 1 kHz时的介电损耗为0.005%,比目前报道的最小值低一个数量级。品质因数(Fa)在1 kHz时高达92.6 x 10(-5)Pa-1 / 2,在10 Hz时高达53.5 x 10(-5)Pa-1 / 2。此外,已经通过3D打印技术设计和制造了用于支撑敏感芯片的倒金字塔形悬吊架构。该敏感芯片和所提出的悬挂架构的组合大大提高了热释电探测器的性能。在10 Hz时的响应度和比检测率分别为669,811 V / W和3.32 x 10(9)cm Hz(1/2)/ W,分别比文献中的最高值高1.9倍和1.5倍。此外,根据理论和实验分析,可以大大抑制麦克风的效果。该架构将在高端且稳定的热释电红外探测器中具有广阔的应用前景。 (C)2016 Elsevier B.V.保留所有权利。

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