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22.4 A 24Gb/s 0.71pJ/b Si-photonic source-synchronous receiver with adaptive equalization and microring wavelength stabilization

机译:22.4 24GB / S 0.71PJ / B SI-光子源 - 同步接收器,具有自适应均衡和微管波长稳定

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Wavelength-division multiplexing (WDM) optical interconnect architectures based on microring resonator devices offer a low-area and energy-efficient approach to realize both high-speed modulation and WDM with high-speed transmit-side ring modulators and high-Q receive-side drop filters [1-3]. While CMOS optical front-ends have been previously developed that support data-rates in excess of 20Gb/s, these designs often do not offer the retiming and deserialization functions required to form a complete link [1,4]. Furthermore, along with the requirements of a sensitive energy-efficient receiver front-end with low-complexity clocking, wavelength stabilization control is necessary to compensate for the fabrication tolerances and thermal sensitivity of microring drop filters. In this work, a 24Gb/s hybrid-integrated microring receiver is demonstrated the incorporates the following key advances: 1) a low-complexity optically-clocked source-synchronous receiver with LC injection-locked oscillator (ILO) jitter filtering; 2) a large input-stage feedback resistor TIA cascaded with an adaptively-tuned continuous-time linear equalizer (CTLE) for improved sensitivity and bandwidth; 3) a receive-side thermal tuning loop that stabilizes the microring drop filter resonance wavelength with minimal impact on receiver sensitivity.
机译:基于微耦合器设备的波分复用(WDM)光互连架构提供了低区域和节能的方法,以实现具有高速传输侧环调制器和高Q接收侧的高速调制和WDM删除过滤器[1-3]。虽然先前已经开发了CMOS光学前端,但是支持超过20GB / s的数据速率,这些设计通常不提供形成完整链接[1,4]所需的重度和反序列化功能。此外,随着具有低复杂性时钟的敏感节能接收器前端的要求,对于微流掉滤波器的制造公差和热敏性,需要波长稳定控制。在这项工作中,演示了24GB / s混合集成的微型磁带接收器,其中包含以下关键进展:1)具有LC注入锁定振荡器(ILO)抖动滤波的低复杂性光学时钟源同步接收器; 2)大型输入级反馈电阻器TIA级联,采用适自适应的连续时间线性均衡器(CTLE),以改善灵敏度和带宽; 3)接收侧热调环,其稳定微管滤波器谐振波长,对接收器灵敏度的影响最小。

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