Infrared and Laser Engineering, Volume. 51, Issue 6, 20210386(2022)

Feedforward common gate transimpedance amplifier circuit based on CMOS active inductor in parallel

Zhifu Feng, Jiahong Zhang, Yingna Li, and Zhengang Zhao
Author Affiliations
  • Faculty of Information Engineering and Automation, Kunming University of Science and Technology, Kunming 650500, China
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    Figures & Tables(10)
    Schematic diagram of FCG transimpedance amplifier circuit
    CMOS active inductor
    Schematic diagram of common source amplifier circuit for different loads
    Schematic diagram of MFCG transimpedance amplifier circuit
    Frequency responses of different R1 at node O and different R3 at node Y
    Equivalent input noise current spectral density
    Simulated eye-diagram of MFCG transimpedance amplifier circuit
    Chip layout of MFCG transimpedance amplifier circuit
    • Table 1. Dimnesions of the transistor

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      Table 1. Dimnesions of the transistor

      M1M2M3M4M5M6
      W/L20066.683.3502566.6
    • Table 2. Performace comparison

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      Table 2. Performace comparison

      Ref.Bandwidth/GHzGain/dBΩPower/mWInput capacitance/pfNoise current/pA/ $\sqrt {{\rm{Hz}}} $Area/mm2Technique
      [8] 2052.61.30.05113.64CASCODE
      [9] 7.959180.3230.11RGC
      [10] 7.350.510.219.9\RGC
      [11] 9.249.75.30.515.30.068RGC
      [12] 13.452.82.20.32500.01FCG
      [13] 6.853.96.260.35270.0064FCG
      [14] 3524.32750.014FCG
      [15] 440.60.270.213.7\FCG
      Paper work17.2553.70.2550.0029FCG
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    Zhifu Feng, Jiahong Zhang, Yingna Li, Zhengang Zhao. Feedforward common gate transimpedance amplifier circuit based on CMOS active inductor in parallel[J]. Infrared and Laser Engineering, 2022, 51(6): 20210386

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    Paper Information

    Category: Optical communication and sensing

    Received: Dec. 20, 2021

    Accepted: --

    Published Online: Dec. 20, 2022

    The Author Email:

    DOI:10.3788/IRLA20210386

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