• Infrared and Laser Engineering
  • Vol. 49, Issue 5, 20190491 (2020)
Xie Jing1、2、*, Li Xiaojuan1、2, Zhang Yan1、2, and Li Xiangyang1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/irla20190491 Cite this Article
    Xie Jing, Li Xiaojuan, Zhang Yan, Li Xiangyang. Design of ultra-low-power readout circuit for 1 024×1 024 UV AlGaN focal plane arrays[J]. Infrared and Laser Engineering, 2020, 49(5): 20190491 Copy Citation Text show less
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    [2] Li Xiangyang, Xu Jintong, Zhang Yan, et al. AlGaNbased material acterizations recent development of related solarblind ultraviolet detects[C]SPIE, 2009, 7518(751802): 18.

    [3] E Cicek, Z Vashaei, E K Huang. AlGaN-based deep-ultraviolet 320 x 256 focal plane array. Opt Lett, 37, 896(2012).

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    [5] Zhou Juanjuan, Zhang Yacong, Lu Wengao, et al. A low power readout circuit f 640 × 512 IRFPA with dynamic windowing readout[C]IEEE International Conference on Electron Devices & Solidstate Circuit. 2014,

    [6] Zhao Hongliang, Zhao Yiqiang, Song Yiwei , et al. A low power cryogenic CMOS ROIC f 512×512 infrared focal plane array[C]IEEE International Conference of Electron Devices SolidState Circuits, 2011: 12.

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    [8] S D Gunapala, S V Bandara, J K Liu. 1024×1024 pixel mid-wavelength and long-wavelength infrared QWIP focal planearrays for imaging applications. Semicond Sci Technol, 20, 473-480(2005).

    [9] Fossum E R, Pain B. Infrared readout electronics f space science senss:state of the art future directions[C]SPIE, 1993, 2020: 262282.

    [10] Xie Jing, Wang Ling, Wang Jiqiang, et al. ESD design of radiationhardened f UV AlGaN focal plane arrays readout circuit[C]SPIE, 2018, 10846:108461M.

    [11] Shuping Li, Kai Fu, Yan Wang. Design method of readout circuit for large format array IRFPA. Chinese Journal of Electron Devices, 41, 1507-1511(2018).

    Xie Jing, Li Xiaojuan, Zhang Yan, Li Xiangyang. Design of ultra-low-power readout circuit for 1 024×1 024 UV AlGaN focal plane arrays[J]. Infrared and Laser Engineering, 2020, 49(5): 20190491
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