• Journal of Applied Optics
  • Vol. 43, Issue 4, 738 (2022)
Ke YANG1,1, Gang CHENG1,1, Yu GUO1,1, Gendong ZHOU1,1..., Fei LU1,1, Hui LI1,1, Jianping LIU1,1, Yu'nan SUN1,1, Jingzhu GONG1,1, Xu ZHANG1,1, Lipeng WU1,1, Qing ZHANG1,1, Shuai SUN1,1 and Jian GUO1,1|Show fewer author(s)
Author Affiliations
  • 11Xi'an Institute of Applied Optics, Xi'an 710065, China
  • 12Xi'an North Electro-Optic Science and Technology Defense Co.,Ltd., Xi'an 710043, China
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    DOI: 10.5768/JAO202243.0404004 Cite this Article
    Ke YANG, Gang CHENG, Yu GUO, Gendong ZHOU, Fei LU, Hui LI, Jianping LIU, Yu'nan SUN, Jingzhu GONG, Xu ZHANG, Lipeng WU, Qing ZHANG, Shuai SUN, Jian GUO. Research on measurement module of precision infrared radiometer[J]. Journal of Applied Optics, 2022, 43(4): 738 Copy Citation Text show less

    Abstract

    The infrared radiometer is generally used for the calibration of the infrared thermal imager testing equipment. A measurement module and method for infrared radiometer were introduced. A measurement scheme of sample and hold was designed, the sampling pulse was generated from the reference signal, and the sampling point was set at the 1/4 phase of each signal period, which could significantly improve the measurement ability of weak signals. For the black-body radiation signal at 35 ℃, the measured signal strength could be increased by 57.6% by comparing with the existing scheme. Under the condition that the background temperature of the infrared thermal imager testing equipment was 22 ℃, the measurement signal accuracy could be improved by more than 50% through the comparison test with the existing instruments.
    Ke YANG, Gang CHENG, Yu GUO, Gendong ZHOU, Fei LU, Hui LI, Jianping LIU, Yu'nan SUN, Jingzhu GONG, Xu ZHANG, Lipeng WU, Qing ZHANG, Shuai SUN, Jian GUO. Research on measurement module of precision infrared radiometer[J]. Journal of Applied Optics, 2022, 43(4): 738
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