跨阻放大器
CMOS芯片
电子工程
带宽(计算)
宽带
噪声系数
计算机科学
电气工程
放大器
光电二极管
工程类
物理
运算放大器
电信
光电子学
作者
Dan Li,Gabriele Minoia,Matteo Repossi,Daniele Baldi,Enrico Temporiti,Andrea Mazzanti,Francesco Svelto
出处
期刊:IEEE Journal of Solid-state Circuits
[Institute of Electrical and Electronics Engineers]
日期:2014-05-19
卷期号:49 (6): 1437-1447
被引量:136
标识
DOI:10.1109/jssc.2014.2322868
摘要
A careful comparison between alternative topologies to realize low-noise wideband TIAs is carried out in this work. In order to break the tradeoff between noise and bandwidth, the proposed front-end uses two stages, i.e. a low-noise narrowband transimpedance interface followed by an equalizer aimed at restoring the required bandwidth. The technique is especially effective for white noise components. The core first-stage amplifier exploits current reuse for minimum power consumption and is optimized for colored noise reduction. A net 4 × noise power reduction is achieved if compared with a design approach based on a traditional shunt-feedback TIA with the same bandwidth. A complete receiver, interfacing a commercial photodiode, and including the proposed two-stage front-end (TSFE), a limiting amplifier and a wideband output buffer has been realized in 65 nm CMOS. Optical communications tailored to 100GBASE-LR4 standard, which is specified for mid-to-long range transmissions at a channel rate of 25 Gb/s, are targeted. Realized prototypes show a sensitivity of -11.9 dBm at a BER of 10 -12 with a PRBS31 input pattern and a transimpedance gain of 83 dBΩ, while tolerating an overall input capacitance of 160 fF. To the best of the authors' knowledge, this is the best sensitivity performance achieved by 25-Gb/s optical receivers in CMOS, comparable to state-of-the-art BiCMOS realizations.
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