2020
DOI: 10.3390/s20236807
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A Robust Infrared Transducer of an Ultra-Large-Scale Array

Abstract: A robust micro-electro-mechanical systems (MEMS) infrared thin film transducer of an ultra-large-scale array was proposed and fabricated on a 4-inch silicon wafer. The silicon substrate and micro cavities were introduced. This novel transducer had excellent mechanical stability, time response, and state-of-the-art pixel scale. It could bear a load of 1700 g and its load pressure was improved by more than 5.24 times and time constant decreased by 50.7% compared to the traditional soft infrared thin film transdu… Show more

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Cited by 10 publications
(4 citation statements)
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“…The Al black coating contained nanoporous structures and possessed strong visible light-absorption and infrared ray emission abilities 24 , 26 . As presented in Fig.…”
Section: Structures Of the Photothermal Transducermentioning
confidence: 99%
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“…The Al black coating contained nanoporous structures and possessed strong visible light-absorption and infrared ray emission abilities 24 , 26 . As presented in Fig.…”
Section: Structures Of the Photothermal Transducermentioning
confidence: 99%
“…The proposed 3D-NIT and 3D-IT transducers with the same DS in-plane pattern were fabricated through spin-coating, deposition, lithography and etching processes that were compatible with integrated circuit (IC) mass production technology (see supplemental Section S 3 ). We fabricated a 3D-NIT transducer with pixels exceeding 2000 × 2000, and the testing results demonstrated that the load weight was beyond 1700 g 24 . Since the 3D-IT transducer had structures and fabrication methods similar to those of the 3D-NIT transducer, it would still be advantageous in array scale and mechanical stability.…”
Section: Experiments and Measurementmentioning
confidence: 99%
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