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Communication Dans Un Congrès Année : 2014

Hemispherical curved monolithic cooled and uncooled infrared focal plane arrays for compact cameras

Résumé

InfraRed (IR) sensor systems like night vision goggles, missile approach warning systems and telescopes have an increasing interest in decreasing their size and weight. At the same time optical aberrations are always more difficult to optimize with larger Focal Plane Arrays (FPAs) and larger field of view. Both challenges can now take advantage of a new optical parameter thanks to flexible microelectronics technologies: the FPA spherical curvature. This bio-inspired approach can correct optical aberrations and reduce the number of lenses in camera conception. Firstly, a new process to curve thin monolithic devices has been applied to uncooled microbolometers FPAs. A functional 256×320 25μm pitch (roughly 1cm2) uncooled FPA has been thinned and curved. Its electrical response showed no degradation after our process (variation of less than 2.3% on the response). Then a two lenses camera with a curved FPA is designed and characterized in comparison with a two lenses camera with a flat FPA. Their Modulation Transfer Functions (MTFs) show clearly an improvement in terms of beams dispersion. Secondly, a new process to fabricate monolithic cooled flip-chip MCT-IRCMOS FPAs was developed leading to the first spherical cooled IR FPA: with a radius of 550 mm. Other radii are achieved. A standard opto-electrical characterization at 80 K of the imager shows no additional short circuit and no mean response alteration compared to a standard IRCMOS shown in reference. Noise is also studied with a black body between 20 and 30°C.
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Dates et versions

hal-01060488 , version 1 (03-09-2014)

Identifiants

Citer

Kévin Tekaya, Manuel Fendler, Delphine Dumas, Yann Gaeremynck, David Henry, et al.. Hemispherical curved monolithic cooled and uncooled infrared focal plane arrays for compact cameras. Infrared Technology and Applications XL, May 2014, Baltimore, Maryland, United States. art. no. 90702T - 8 p., ⟨10.1117/12.2049967⟩. ⟨hal-01060488⟩
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