一个模拟前端IC与调节R-I放大器和CDS CTIA微热计

Jindeok Seo, Gyungtae Kim, Kyomuk Lim, Changho Seok, Hyunho Kim, Seung-Sun Im, Ji-Hoon Kim, Choul‐Young Kim, H. Ko
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引用次数: 7

摘要

为了提高红外焦平面阵列(FPA)微辐射热计读出集成电路(ROIC)的性能,提出了一种模拟前端设计。微辐射热计的模拟前端电路一般由电阻-电流(R-I)变换器和电容跨阻放大器(CTIA)组成。微辐射热计FPA的电阻在吸收红外时发生变化。这些电阻变化通过R-I转换器和ctia转换为输出电压。为了消除vth变化和降低1/f噪声,提出了一种带有电流镜像放大器和相关双采样(CDS) CTIA的新型调节R-I变换器。在1 Hz时,该设计的输出噪声比传统设计低-19.15 dB。该芯片采用标准0.18 μm 1P6M CMOS工艺设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An analog front-end IC with regulated R-I amplifier and CDS CTIA for microbolometer
An analog front-end design that can improve the performance of the readout integrated circuit (ROIC) for the microbolometer infrared (IR) focal plane array (FPA) is presented. The analog front-end circuit for the microbolometer generally consists of the resistance-to-current (R-I) converter and the capacitive transimpedance amplifier (CTIA). The resistances of the microbolometer FPA are changed when absorbing IR. These resistance changes are converted to the output voltages by R-I converters and CTIAs. To eliminate the VTH-variations and to reduce the 1/f noise, a novel regulated R-I converter with current mirror amplifier and a correlated double sampled (CDS) CTIA are proposed. The output noise of the proposed design is -19.15 dB lower than conventional design at 1 Hz. The chip is designed using the standard 0.18 μm 1P6M CMOS process.
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