Latest development on Sub-10μm Technologies at LYNRED

被引:0
|
作者
Rubaldo, Laurent [1 ]
Morisset, Nicolas [1 ]
Brunner, Alexandre [1 ]
Grezes, Cecile [1 ]
Pere-Laperne, Nicolas [1 ]
Dagher, Gulnar [2 ]
Blay, Alexandra [1 ]
Kerlain, Alexandre [1 ]
Lobre, Clement [3 ]
Gravrand, Olivier [3 ]
Jenouvrier, Pierre [1 ]
Billon-Lanfrey, David [1 ]
机构
[1] LYNRED, Actipole CS 10021,364 Route Valence, F-38113 Veurey Voroize, France
[2] LYNRED, Ave Vauve CS20018, F-91127 Palaiseau, France
[3] CEA LETI, MINATEC Campus,17 Rue Martyrs, F-38054 Grenoble 9, France
来源
关键词
III-V; II-VI; HOT; SXGA; 7.5 mu m pitch; MTF; RFPN; Temporal Noise; RTS; 1/f noise; DLTS; SMALL-PITCH; HGCDTE; NOISE;
D O I
10.1117/12.3013662
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
LYNRED is a leading global provider of high-quality II-VI, III-V and bolometers infrared detectors for the aerospace, defence and commercial markets. Our vision is to preserve and protect, and provide the right technology to customers' needs. To consolidate our position among infrared detector manufacturer leaders and to enable us to respond to growing market demand for next-generation infrared technologies, a new state of the art industrial facility is breaking ground. This new industrial site named Campus will double the current cleanroom footprint and increase production capacity with optimal cleanliness classification for new high-performance products. Among these next generations technologies, Campus will serve the ongoing developments of sub-10 mu m pitch cooled infrared detectors, MCT HOT technology, for extended MW band and III-V HOT MW blue band technology. We will discuss in this paper the true figures of merit that have to be addressed during technology development and optimization to meet field mission requirements. We will then review latest results on II-VI and III-V HOT IDDCA (Integrated Detector Dewar Cryocooler Assembly) with 7.5 mu m pitch SXGA format focal plane array in terms of low frequency noise defects, stability and reproducibility of residual fixed pattern noise (RFPN) and Modulation Transfer Function (MTF) optimizations while maintaining high quantum efficiency to keep highest possible range.
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页数:14
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