Thermal Characterization of Individual Pixels in Microbolometer Image Sensors by Thermoreflectance Microscopy
Seon Young Ryu, Hae Young Choi, Dong Uk Kim, Geon‐Hee Kim, Tae Hyun Kim, Hee Yeoun Kim, Ki Soo Chang
Abstract
Seon Young Ryu, Hae Young Choi, Dong Uk Kim, Geon‐Hee Kim, Tae Hyun Kim, Hee Yeoun Kim, Ki Soo Chang
Abstract
Thermal characterization of individual pixels in microbolometer infrared image sensors is needed for optimal design and improved performance. In this work, we used thermoreflectance microscopy on uncooled microbolometer image sensors to investigate the thermal characteristics of individual pixels. Two types of microbolometer image sensors with a shared-anchor structure were fabricated and thermally characterized at various biases and vacuum levels by measuring the temperature distribution on the surface of the microbolometers. The results show that thermoreflectance microscopy can be a useful thermal characterization tool for microbolometer image sensors.
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Thermal characterization of individual pixels in microbolometer infrared image sensors is needed for optimal design and improved performance. In this work, we used thermoreflectance microscopy on uncooled microbolometer image sensors to investigate the thermal characteristics of individual pixels. Two types of microbolometer image sensors with a shared-anchor structure were fabricated and thermally characterized at various biases and vacuum levels by measuring the temperature distribution on the surface of the microbolometers. The results show that thermoreflectance microscopy can be a useful thermal characterization tool for microbolometer image sensors.
Key concepts: Microbolometer, Characterization (materials science), Pixel, Materials science, Microscopy, Bolometer, Thermal, Optoelectronics