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CMOS-Photonics Codesign of an Integrated DAC-Less PAM-4 Silicon Photonic Transmitter

机译:集成式DAC-less PAM-4硅光子发射器的CMOS-光子协同设计

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Codesign and integration of optical modulators and CMOS drivers is crucial for high-speed silicon photonic (SiP) transmitters to reach their full potential for low-cost, low-power electronic-photonic integrated systems. We present a CMOS-driven SiP multi-level optical transmitter implemented using a commercially available lateral p-n junction process. It uses a Mach-Zehnder modulator (MZM) segmented to increase speed and to lower the required power on a per segment basis to a level achievable with CMOS. A multi-channel driver is designed and implemented in 130 nm RF CMOS, providing a swing of 4 V in a push-pull configuration at 20 Gbaud. Binary data at the CMOS input is manipulated via digital logic to produce the proper per-segment drive signals to generate a four-level pulse-amplitude modulation optical signal. Multi-level modulation is achieved using only binary signals as input (DAC-less). Cosimulation of the optical and electrical circuits shows good agreement with experiment. Reliable transmission is achieved without post-compensation at 28 Gb/s, and at 38 Gb/s when using post-compensation.
机译:光调制器和CMOS驱动器的协同设计和集成对于高速硅光子(SiP)发射器充分发挥其低成本,低功耗电子光子集成系统的潜力至关重要。我们介绍了使用市售的横向p-n结工艺实现的CMOS驱动的SiP多层光发射机。它使用分段的Mach-Zehnder调制器(MZM)来提高速度,并在每段基础上将所需功率降低到CMOS可以达到的水平。在130 nm RF CMOS中设计和实现了多通道驱动器,以20 Gbaud的推挽配置提供4 V的摆幅。 CMOS输入上的二进制数据通过数字逻辑进行处理,以生成适当的每段驱动信号,以生成四电平脉冲幅度调制光信号。仅使用二进制信号作为输入即可实现多级调制(无DAC)。光电电路的协同仿真与实验结果吻合良好。在没有后补偿的情况下,以28 Gb / s的速度实现可靠的传输,而在使用后补偿时,则以38 Gb / s的速度进行传输。

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