Optimization of linear-logarithmic CMOS image sensor using a photogate and a cascode MOSFET for reducing pixel response variation

被引:1
|
作者
Bae, Myunghan [1 ]
Choi, Byoung-Soo [1 ]
Kim, Sang-Hwan [1 ]
Lee, Jimin [1 ]
Oh, Chang-Woo [2 ]
Shin, Jang-Kyoo [1 ]
机构
[1] Kyungpook Natl Univ, Sch Elect Engn, 80 Daehakro, Daegu 41566, South Korea
[2] Kyungpook Natl Univ, Dept Sensor & Display Engn, 80 Daehakro, Daegu 41566, South Korea
来源
PHOTONIC INSTRUMENTATION ENGINEERING IV | 2017年 / 10110卷
关键词
CMOS image sensor; linear-logarithmic pixel; photogate; cascode MOSFET; DYNAMIC-RANGE; CALIBRATION; CHIP;
D O I
10.1117/12.2269080
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Recently, CMOS image sensors (CISs) have become more and more complex because they require high-performances such as wide dynamic range, low-noise, high-speed operation, high-resolution and so on. First of all, wide dynamic range (WDR) is the first requirement for high-performance CIS. Several techniques have been proposed to improve the dynamic range. Although logarithmic pixel can achieve wide dynamic range, it leads to a poor signal-to-noise ratio due to small output swings. Furthermore, the fixed pattern noise of logarithmic pixel is significantly greater compared with other CISs. In this paper, we propose an optimized linear-logarithmic pixel. Compared to a conventional 3-transistor active pixel sensor structure, the proposed linear-logarithmic pixel is using a photogate and a cascode MOSFET in addition. The photogate which is surrounding a photodiode carries out change of sensitivity in the linear response and thus increases the dynamic range. The logarithmic response is caused by a cascode MOSFET. Although the dynamic range of the pixel has been improved, output curves of each pixel were not uniform. In general, as the number of devices increases in the pixel, pixel response variation is more pronounced. Hence, we optimized the linear-logarithmic pixel structure to minimize the pixel response variation. We applied a hard reset method and an optimized cascode MOSFET to the proposed pixel for reducing pixel response variation. Unlike the conventional reset operation, a hard reset using a p-type MOSFET fixes the voltage of each pixel to the same voltage. This reduces non-uniformity of the response in the linear response. The optimized cascode MOSFET achieves less variation in the logarithmic response. We have verified that the optimized pixel shows more uniform response than the conventional pixel, by both simulation and experiment.
引用
收藏
页数:6
相关论文
共 20 条
  • [1] Wide dynamic range linear-logarithmic CMOS image sensor using photogate and cascode MOSFET
    Bae M.
    Jo S.-H.
    Choi B.-S.
    Lee H.H.
    Choi P.
    Shin J.-K.
    Shin, J.-K. (jkshin@ee.knu.ac.kr), 2016, John Wiley and Sons Inc (52) : 198 - 200
  • [2] Wide dynamic range linear-logarithmic CMOS image sensor using photogate and cascode MOSFET
    Bae, M.
    Jo, S. -H.
    Choi, B. -S.
    Lee, H. H.
    Choi, P.
    Shin, J. -K.
    ELECTRONICS LETTERS, 2016, 52 (03) : 198 - 199
  • [3] A Linear-Logarithmic CMOS Image Sensor With Pixel-FPN Reduction and Tunable Response Curve
    Chou, Wei-Fan
    Yeh, Shang-Fu
    Chiu, Chin-Fong
    Hsieh, Chih-Cheng
    IEEE SENSORS JOURNAL, 2014, 14 (05) : 1625 - 1632
  • [4] Combined linear-logarithmic CMOS image sensor
    Storm, GG
    Hurwitz, JED
    Renshaw, D
    Findlater, KM
    Henderson, R
    Purcell, MD
    2004 IEEE INTERNATIONAL SOLID-STATE CIRCUITS CONFERENCE, DIGEST OF TECHNICAL PAPERS, 2004, 47 : 116 - 117
  • [5] A Novel Linear-Logarithmic Active Pixel CMOS Image Sensor with wide dynamic range
    Kuo, Ko-Chi
    2021 IEEE INTERNATIONAL MIDWEST SYMPOSIUM ON CIRCUITS AND SYSTEMS (MWSCAS), 2021, : 1100 - 1103
  • [6] A Linear-Logarithmic CMOS Image Sensor With Adjustable Dynamic Range
    Bae, Myunghan
    Choi, Byoung-Soo
    Jo, Sung-Hyun
    Lee, Hee-Ho
    Choi, Pyung
    Shin, Jang-Kyoo
    IEEE SENSORS JOURNAL, 2016, 16 (13) : 5222 - 5226
  • [7] A low-power Linear-logarithmic CMOS image sensor
    Yaghobi, Hamid Reza
    Pil-Ali, Abdollah
    Karami, Mohammad Azim
    MEDICAL IMAGING 2022: PHYSICS OF MEDICAL IMAGING, 2022, 12031
  • [8] Combined Linear-Logarithmic CMOS Image Sensor with FPN Calibration
    Cui, Shuang
    Mu, Yusong
    Ding, Ning
    Jiang, Jiaqi
    Chang, Yuchun
    PROCEEDINGS OF 2018 IEEE INTERNATIONAL CONFERENCE ON INTEGRATED CIRCUITS, TECHNOLOGIES AND APPLICATIONS (ICTA 2018), 2018, : 128 - 129
  • [9] Extended dynamic range from a combined linear-logarithmic CMOS image sensor
    Storm, Graeme
    Henderson, Robert
    Hurwitz, J. E. D.
    Renshaw, David
    Findlater, Keith
    Purcell, Matthew
    IEEE JOURNAL OF SOLID-STATE CIRCUITS, 2006, 41 (09) : 2095 - 2106
  • [10] Offset and Gain FPN Calibrated Linear-Logarithmic Image Sensor With Shared Pixel Architecture
    Lee, Jiwon
    IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS II-EXPRESS BRIEFS, 2021, 68 (12) : 3518 - 3521