Volume 43 Issue 4
May  2014
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Su Xiaofeng, Pan Shengda, Gong Xueyi, Yang Yuzhou, Chen Fansheng. Performance of DTDI technology based on IRFPA detector[J]. Infrared and Laser Engineering, 2014, 43(4): 1025-1031.
Citation: Su Xiaofeng, Pan Shengda, Gong Xueyi, Yang Yuzhou, Chen Fansheng. Performance of DTDI technology based on IRFPA detector[J]. Infrared and Laser Engineering, 2014, 43(4): 1025-1031.

Performance of DTDI technology based on IRFPA detector

  • Received Date: 2013-08-05
  • Rev Recd Date: 2013-09-03
  • Publish Date: 2014-04-25
  • The CMOS TDI of infrared detector based on bucket-brigade device (BBD) structure, has been widely used in the field of space remote sensing, it can compatible with the general CMOS process, and improve the signal-to-noise ratio (SNR) of the system. Compare with the analog TDI, the Digital Time Delay and Integration (DTDI) based on the infrared focal plane array is still in the initial stage. In this paper, the 320256 MWIR FPA was used to do the DTDI research, and the electron transfer efficiency, the BBD noise and the dynamic range of the analog TDI was in a detail analysis to compare with DTDI. And the NU and blind pixel were also taken into consideration to analysis the DTDI performance. Finally in the experiment, the SNR can be increased to 2.5 times and the NU can be reached 1.68% after the 16-stage DTDI was used, which verify the improvement of the system performance by using DTDI technique.
  • [1] Fossum Eric R. CMOS image sensors: electronic camera-on-a-chip [J]. IEEE Trans Electron Device, 1997, 44 (10): 1689-1698.
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    [4] Zhang Junling, Feng Qi, Chen Honglei. A novel 5128 ROIC with time-delayed-integration for MW infrared focal plane array[C]//SPIE, 2011, 8139: 1-10.
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    [8] Xie Baorong, Feng Shuyi, Fang Caiting, et al. Infrared imaging system design based on digtal TDI technology [J]. Infrared Technology, 2013, 35(4): 207-210. (in Chinese)
    [9] Liu Huitong, Yi Xinjian. Two point nonuniformity correction for IRFPA and its physical motivation [J]. Infrared and Laser Engeering, 2004, 33(1): 76-78. (in Chinese)
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    [12] Duan Dong, Sha Shengchun, Zhang Shuanglei, et al. Non-uniformity rectification methods of IRFPA detector radiation[J]. Infrared and Laser Engineering, 2012, 41 (10): 2621-2624. (in Chinese)
    [13] Zhuang Jisheng, Wang Yifeng, Fan Naihua, et al. Correction of test data of infrared focal plane detector [J]. Infrared and Laser Engineering, 2011, 40(2): 195-198. (in Chinese)
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    [15] Mao Jingxiang, Fan Naihua, Wang Yifeng, Calculation of solid angle of pixels of IRFPA detector under circular cold shield and its imaging simulation [J]. Infrared and Laser Engineering, 2009, 38(6): 957-960. (in Chinese)
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Performance of DTDI technology based on IRFPA detector

  • 1. Shanghai Institute of Technical Physics,Chinese Academy of Science,Shanghai 200083,China;
  • 2. University of Chinese Academy of Science,Beijing 100049,China

Abstract: The CMOS TDI of infrared detector based on bucket-brigade device (BBD) structure, has been widely used in the field of space remote sensing, it can compatible with the general CMOS process, and improve the signal-to-noise ratio (SNR) of the system. Compare with the analog TDI, the Digital Time Delay and Integration (DTDI) based on the infrared focal plane array is still in the initial stage. In this paper, the 320256 MWIR FPA was used to do the DTDI research, and the electron transfer efficiency, the BBD noise and the dynamic range of the analog TDI was in a detail analysis to compare with DTDI. And the NU and blind pixel were also taken into consideration to analysis the DTDI performance. Finally in the experiment, the SNR can be increased to 2.5 times and the NU can be reached 1.68% after the 16-stage DTDI was used, which verify the improvement of the system performance by using DTDI technique.

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