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高性能制冷型红外焦平面读出电路研究进展

杜雪飞 牛育泽 黄兆丰 卓毅 邝永变 王锦春 张雅聪 鲁文高 陈中建

航空兵器2026,Vol.33Issue(2):31-43,13.
航空兵器2026,Vol.33Issue(2):31-43,13.DOI:10.12132/ISSN.1673-5048.2025.0195

高性能制冷型红外焦平面读出电路研究进展

A Survey on High-Performance Cooled Infrared Focal Plane Array Readout Circuits

杜雪飞 1牛育泽 2黄兆丰 2卓毅 1邝永变 3王锦春 3张雅聪 1鲁文高 1陈中建1

作者信息

  • 1. 北京大学 集成电路学院,北京 100871
  • 2. 北京领丰视芯科技有限责任公司,北京 100083
  • 3. 中国空空导弹研究院,河南 洛阳 471009||红外探测器技术航空科技重点实验室,河南 洛阳 471009
  • 折叠

摘要

Abstract

Infrared imaging technology,as a core technology in modern information-based equip-ment systems,has been widely applied in military reconnaissance,target surveillance,security moni-toring,aerospace exploration,and precision guidance.As a key component of infrared imaging sys-tems,the focal plane readout array plays a crucial role in determining the quality of the acquired infra-red images,and research on its architecture and technical routes has become an important driving force for performance improvement in infrared imaging systems.In recent years,with the continuous expansion of infrared detector array scales and the increasing demand for intelligent processing and fast response in imaging systems,the design of cooled infrared focal plane readout integrated circuits has achieved significant progress in terms of architectural innovation and performance optimization.This paper reviews the current development status of cooled infrared focal plane readout circuits,sys-tematically summarizes recent domestic and abroad researches progress from four aspects:high dynamic range readout technique,event-driven readout technique,multispectral readout technique,and other emerging readout techniques.Finally,it discusses the future development trends of cooled infrared focal plane readout circuits.

关键词

红外成像/焦平面阵列/高动态范围/事件驱动/多光谱/军事侦察/精确制导

Key words

infrared imaging/focal plane array/high dynamic range/event-driven/multispec-tral/military reconnaissance/precision guidance

分类

军事科技

引用本文复制引用

杜雪飞,牛育泽,黄兆丰,卓毅,邝永变,王锦春,张雅聪,鲁文高,陈中建..高性能制冷型红外焦平面读出电路研究进展[J].航空兵器,2026,33(2):31-43,13.

基金项目

航空科学基金项目(201924012002) (201924012002)

航空兵器

1673-5048

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