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12.1 A 3D-Integrated Microring-Based 112Gb/s PAM-4 Silicon-Photonic Transmitter with Integrated Nonlinear Equalization and Thermal Control

机译:12.1基于3D集成,基于微环的112Gb / s PAM-4硅光子发射器,具有集成的非线性均衡和热控制

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The explosive growth of data and data-centric computing places stringent demands on the bandwidth and energy efficiency of data center interconnects, spurring the development of several 400G Ethernet standards [1]. Silicon-photonics-based solutions are of particular interest for low cost 100+Gb/s/λ optical transceivers. Microring modulators (MRMs) can significantly scale the size and power of optical TX (OTX) compared to Mach-Zehnder modulators being used today [2]–[9]. However MRMs suffer from three significant drawbacks that have limited their use in 100+Gb/s optical transceivers: (a) tradeoff between bandwidth and phase efficiency inherent to these resonant modulators, (b) high process and temperature (P/T) sensitivity, and (c) non-linear electro-optic (E-to-O) characteristics. This paper presents a 3D-integrated 112Gb/s PAM-4 OTX with electronic nonlinear pre-distortion (NL-PD) and nonlinear FFE (NL-FFE) to compensate MRM nonlinearity and integrated thermal control (TC) to mitigate P/T sensitivity.
机译:数据和数据中心计算的爆炸性增长对数据中心互连的带宽和能量效率的严格需求,促进了几个400g以太网标准的开发[1]。基于硅光子的解决方案对于低成本100 + GB / S /λ光学收发器特别感兴趣。与现今使用的Mach-Zehnder调制器相比,微耦合器(MRMS)可以显着缩放光学TX(OTX)的尺寸和功率[2] - [9]。然而MRMS患有三种显着的缺点,这些缺点限制了100 + GB / S光学收发器的使用:(a)带宽和阶段效率之间的折衷和这些谐振调制器固有的,(b)高过程和温度(p / t)灵敏度, (c)非线性电光(E-TO-O)特性。本文介绍了一种带有电子非线性预失真(NL-PD)和非线性FFE(NL-FFE)的3D集成的112GB / S PAM-4 OTX,以补偿MRM非线性和集成的热控制(TC)以减轻P / T灵敏度。

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