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A 40-Gb/s PAM-4 Transmitter Based on a Ring-Resonator Optical DAC in 45-nm SOI CMOS

机译:基于45nm SOI CMOS的环形谐振器光学DAC的40Gb / s PAM-4发送器

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The next generations of large-scale data-centers and supercomputers demand optical interconnects to migrate to 400G and beyond. Microring modulators in silicon-photonics VLSI chips are promising devices to meet this demand due to their energy efficiency and compatibility with dense wavelength division multiplexed chip-to-chip optical I/O. Higher order pulse amplitude modulation (PAM) schemes can be exploited to mitigate their fundamental energy-bandwidth tradeoff at the system level for high data rates. In this paper, we propose an optical digital-to-analog converter based on a segmented microring resonator, capable of operating at 20 GS/s with improved linearity over conventional optical multi-level generators that can be used in a variety of applications such as optical arbitrary waveform generators and PAM transmitters. Using this technique, we demonstrate a PAM-4 transmitter that directly converts the digital data into optical levels in a commercially available 45-nm SOI CMOS process. We achieved 40-Gb/s PAM-4 transmission at 42-fJ/b modulator and driver energies, and 685-fJ/b total transmitter energy efficiency with an area bandwidth density of 0.67 Tb/s/mm2. The transmitter incorporates a thermal tuning feedback loop to address the thermal and process variations of microrings' resonance wavelength. This scheme is suitable for system-on-chip applications with a large number of I/O links, such as switches and general-purpose and specialized processors in large-scale computing and storage systems.
机译:下一代大型数据中心和超级计算机需要光互连来迁移到400G甚至更高。硅光子VLSI芯片中的微环调制器由于具有能源效率以及与密集波分复用芯片间光学I / O的兼容性,因此有望满足这一需求。可以利用高阶脉冲幅度调制(PAM)方案来减轻其在系统级的基本能量带宽权衡,以实现高数据速率。在本文中,我们提出了一种基于分段微环谐振器的光学数模转换器,该器件能够以20 GS / s的速率工作,并且具有优于常规光学多电平发生器的线性度,该常规光学多级发生器可用于多种应用,例如光学任意波形发生器和PAM发射机。使用这种技术,我们演示了一种PAM-4发送器,该发送器可以通过市售45纳米SOI CMOS工艺将数字数据直接转换为光学电平。我们以42-fJ / b的调制器和驱动器能量实现了40 Gb / s的PAM-4传输,以及面积带宽密度为0.67 Tb / s / mm 2 。发射器包含一个热调谐反馈环路,以解决微环谐振波长的温度和工艺变化。该方案适用于具有大量I / O链接的片上系统应用,例如大型计算和存储系统中的交换机以及通用和专用处理器。

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