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Low-Cost Microbolometer Type Infrared Detectors
by
Luo, Mingcheng
, Ji, Xiaoli
, Guo, Yaozu
, Yu, Le
, Zhu, Haoyu
, Han, Ping
in
Aluminum
/ CMOS
/ Commercialization
/ Compatibility
/ complementary metal oxide semiconductor (CMOS)-compatible
/ Focal plane devices
/ Infrared detectors
/ infrared focal plane array (IRFPA)
/ Infrared imaging
/ Infrared radiation
/ Integrated circuits
/ Low cost
/ Mechanical systems
/ microbolometer
/ Microelectromechanical systems
/ Military markets
/ Noise
/ Optics
/ read-out integrated circuit (ROIC)
/ Review
/ Semiconductors
/ Sensors
/ thermal detectors
/ Trends
/ uncooled infrared detectors
2020
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Low-Cost Microbolometer Type Infrared Detectors
by
Luo, Mingcheng
, Ji, Xiaoli
, Guo, Yaozu
, Yu, Le
, Zhu, Haoyu
, Han, Ping
in
Aluminum
/ CMOS
/ Commercialization
/ Compatibility
/ complementary metal oxide semiconductor (CMOS)-compatible
/ Focal plane devices
/ Infrared detectors
/ infrared focal plane array (IRFPA)
/ Infrared imaging
/ Infrared radiation
/ Integrated circuits
/ Low cost
/ Mechanical systems
/ microbolometer
/ Microelectromechanical systems
/ Military markets
/ Noise
/ Optics
/ read-out integrated circuit (ROIC)
/ Review
/ Semiconductors
/ Sensors
/ thermal detectors
/ Trends
/ uncooled infrared detectors
2020
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Do you wish to request the book?
Low-Cost Microbolometer Type Infrared Detectors
by
Luo, Mingcheng
, Ji, Xiaoli
, Guo, Yaozu
, Yu, Le
, Zhu, Haoyu
, Han, Ping
in
Aluminum
/ CMOS
/ Commercialization
/ Compatibility
/ complementary metal oxide semiconductor (CMOS)-compatible
/ Focal plane devices
/ Infrared detectors
/ infrared focal plane array (IRFPA)
/ Infrared imaging
/ Infrared radiation
/ Integrated circuits
/ Low cost
/ Mechanical systems
/ microbolometer
/ Microelectromechanical systems
/ Military markets
/ Noise
/ Optics
/ read-out integrated circuit (ROIC)
/ Review
/ Semiconductors
/ Sensors
/ thermal detectors
/ Trends
/ uncooled infrared detectors
2020
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Journal Article
Low-Cost Microbolometer Type Infrared Detectors
2020
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Overview
The complementary metal oxide semiconductor (CMOS) microbolometer technology provides a low-cost approach for the long-wave infrared (LWIR) imaging applications. The fabrication of the CMOS-compatible microbolometer infrared focal plane arrays (IRFPAs) is based on the combination of the standard CMOS process and simple post-CMOS micro-electro-mechanical system (MEMS) process. With the technological development, the performance of the commercialized CMOS-compatible microbolometers shows only a small gap with that of the mainstream ones. This paper reviews the basics and recent advances of the CMOS-compatible microbolometer IRFPAs in the aspects of the pixel structure, the read-out integrated circuit (ROIC), the focal plane array, and the vacuum packaging.
Publisher
MDPI AG,MDPI
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