22.6 A 25Gb/s 4.4V-swing AC-coupled Si-photonic microring transmitter with 2-tap asymmetric FFE and dynamic thermal tuning in 65nm CMOS

Hao Li, Z. Xuan, Alex Titriku, Cheng Li, Kunzhi Yu, Binhao Wang, Ayman Shafik, Nan Qi, Yang Liu, R. Ding, T. B. Jones, Marco Fiorentino, M. Hochberg, S. Palermo, P. Chiang
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引用次数: 15

Abstract

Silicon photonic microring modulators (MRMs) offer a promising approach for realizing energy-efficient wavelength-division multiplexing (WDM) optical interconnects. For data-rates greater than 10Gb/s, depletion-mode MRMs are generally preferred over their injection-mode counterparts due to their shorter carrier lifetimes and resulting higher bandwidths. Unfortunately, these depletion-mode MRMs typically exhibit low PN junction tunability, thereby requiring higher modulation voltages in order to provide >6dB extinction ratios (ER). Furthermore, negative DC-biasing of the MRMs is necessary to maintain reverse-biased depletion-mode operation. In this work, a 5×25Gb/s hybrid-integrated MRM WDM transmitter is demonstrated that incorporates the following key advances: 1) an AC-coupled differential output driver that applies a 4.4Vpp-diff output-swing on the MRM while providing a tunable on-chip negative DC-bias; 2) a 2-tap non-linear digital FFE that compensates for optical-dynamics-induced bandwidth limitations; 3) a dynamic thermal tuning loop that stabilizes the MRM by minimizing thermally-induced wavelength fluctuations.
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22.6 A 25Gb/s 4.4 v摆幅交流耦合硅光子微环发射机,采用2抽头非对称FFE和65nm CMOS动态热调谐
硅光子微环调制器(MRMs)为实现高能效波分复用(WDM)光互连提供了一种很有前途的方法。对于大于10Gb/s的数据速率,耗尽模式mrm通常比注入模式mrm更受欢迎,因为它们的载波寿命更短,带宽更高。不幸的是,这些耗尽模式mrm通常表现出低PN结可调性,因此需要更高的调制电压才能提供bbb60 db消光比(ER)。此外,mrm的负直流偏置是维持反向偏置耗尽模式操作所必需的。在这项工作中,展示了一个5×25Gb/s混合集成MRM WDM发射机,它包含以下关键进展:1)一个交流耦合差分输出驱动器,在MRM上施加4.4 vpp的差分输出摆幅,同时提供可调谐的片上负直流偏置;2)补偿光动力学引起的带宽限制的2抽头非线性数字FFE;3)一个动态热调谐回路,通过最小化热诱导的波长波动来稳定MRM。
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