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Mode-selective read-in integrated circuit with improved input range for infrared scene projectors

机译:模式选择性读入集成电路,具有改进的红外场景投影仪的输入范围

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As infrared (IR) imaging systems are being used more often in military fields, the importance of IR sensor evaluationsystem has emerged. Owing to their non-destructiveness and cost effectiveness, hardware-in-the-loop (HWIL) systemswith IR scene projectors (IRSPs) are now being widely used. IRSPs generate virtual IR scenes to evaluate IR imagingsystems, which has two performance parameters: thermal range and thermal resolution. Specifically, IR scene quality isdetermined by the thermal resolution performance and the input digital depth increment can provide a suitable solution toimprove resolution. However, the input digital depth increment is limited by system noise and setting a sufficient thermalresolution with wide thermal range is difficult. In this paper, a mode-selective read-in integrated circuit (RIIC) with nativetransistor is proposed. The native transistor having almost zero threshold voltage, increases the input range, which helpsto improve noise margin. A prototype of the RIIC was fabricated using a 0.18-μm 1-poly 6-metal CMOS process and itsperformance was estimated from measured data. Thermal resolution below 325 K was less than 30 mK and was 185 mKabove 325 K in high-current mode; with 14-bit digital resolution, the thermal range varied from 270-325 K to 270-990 K.
机译:由于红外线(IR)成像系统在军事领域更频繁地使用,IR传感器评估的重要性系统出现了。由于它们的非破坏性和成本效益,硬件循环(HWIL)系统使用IR场景投影仪(IRSP)现在被广泛使用。 IRSPS生成虚拟IR场景以评估IR成像系统,具有两个性能参数:热范围和热分辨率。具体而言,IR场景质量是由热分辨率性能确定,输入数字深度增量可以提供合适的解决方案改善分辨率。但是,输入数字深度增量受系统噪声的限制,并设置足够的热量具有宽热范围的分辨率难以。本文中,具有本机的模式选择性读入集成电路(RIIC)提出晶体管。具有几乎零阈值电压的本机晶体管增加输入范围,有助于改善噪音余量。使用0.18-μm1-聚6金属CMOS工艺制造毒性原型及其从测量数据估计性能。低于325 k的热分辨率小于30 mk,是185 mk高电流模式以上325 k;具有14位数字分辨率,热范围从270-325 k变化到270-990 K.

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