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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A Laser-Forwarded Coherent Transceiver in 45-nm SOI CMOS Using Monolithic Microring Resonators
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A Laser-Forwarded Coherent Transceiver in 45-nm SOI CMOS Using Monolithic Microring Resonators

机译:使用单片微管谐振器45-NM SOI CMOS中的激光转发相干收发器

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For the silicon photonic links to meet the target bit error rate (BER), the laser source must output enough optical power to overcome the optical channel loss and limited receiver sensitivity. Combined with poor wall-plug efficiency, this optical power requirement makes the electrical power consumed by the laser source a significant portion of the link energy cost. This article proposes a laser-forwarded coherent link that greatly reduces the required laser optical power by averaging optical path loss between the main and forwarded paths and by improving the receiver sensitivity using a homodyne coherent detector. The link performance analysis reveals that the laser forwarded link improves the laser power budget by approximate to 6-8 dB compared with a conventional intensity-modulation/direct detection link using typical photonic link components. To demonstrate the laser forwarded link, a microring resonator phase modulator, a balanced detector, and a 3-dB coupler are integrated with CMOS circuits in a GFUS 45-nm SOI process. The transmit driver and the receiver consume 40 and 450 fJ/bit, respectively. Aided by approximate to 8-dB boost from laser forwarding and the coherent detection gain, the receiver achieves -15.6-dBm optical modulation amplitude sensitivity. The link operates at 10 Gb/s with BER < 10(-9) and electrical energy efficiency of 2.3 pJ/bit.
机译:对于满足目标钻头误差率(BER)的硅光子链接,激光源必须输出足够的光功率以克服光学通道损耗和有限的接收器灵敏度。结合壁插效率差,该光功率要求使激光源消耗的电力源是连杆能量成本的重要部分。本文提出了一种激光转发的相干连杆,通过平均主要和转发路径之间的光路损耗以及通过使用唯一相干检测器改善接收器灵敏度来大大地降低所需的激光光功率。链接性能分析显示,与使用典型的光子链接组分的传统强度调制/直接检测链路相比,激光转发链路通过近似6-8dB改善激光功率预算。为了展示激光转发链路,微耦合器相位调制器,平衡检测器和3dB耦合器与GFU 45-NM SOI工艺中的CMOS电路集成在一起。发射驱动器和接收器分别消耗40和450 FJ /位。通过激光转发和相干检测增益辅助到8-DB提升,接收器实现-15.6 -DBM光调制幅度灵敏度。该链路以10 GB / s为10 GB / s,BER <10(-9)和2.3 PJ /位的电能效率。

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