A 12.5 Gb/s 1.38 mW all-inverter-based optical receiver with multi-stage feedback TIA and continuous-time linear equalizer

Peng Yan,Chaerin Hong, Po-Hsuan Chang, Hyungryul Kang, Dedeepya Annabattuni,Ankur Kumar,Yang-Hang Fan,Ruida Liu,Ramy Rady,Samuel Palermo

Research Square (Research Square)(2024)

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摘要
n optical receiver employs an all-inverter-based front-end design that provides maximum transconductance for a given power supply and allows for ultra-low power consumption. The feedback transimpedance amplifier (TIA) input stage utilizes a multi-stage amplifier to achieve a dramatic increase in feedback resistance and lower input-referred noise. Cascading an inverter-based active inductor continuous-time linear equalizer provides frequency peaking to compensate the input stage TIA that is intentionally designed with a reduced bandwidth to achieve adequate sensitivity at low power. Fabricated in 28 nm CMOS, the 12.5 Gb/s optical receiver achieves - 10.7 dBm OMA sensitivity at 0.11 pJ/bit energy efficiency and occupies only 720 m^2 area.
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关键词
Active inductor,CMOS,CTLE,Inverter,Low noise,Low power,Optical receiver,Transimpedance amplifier,Transimpedance limit
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