用于超过1tb /s/ch数字相干光收发器的110ghz带宽InP-HBT AMUX/ addemux电路

M. Nagatani, H. Wakita, Teruo Jyo, Tsutomu Takeya, H. Yamazaki, Y. Ogiso, M. Mutoh, Y. Shiratori, M. Ida, F. Hamaoka, M. Nakamura, Takayuki Kobayashi, Hiroyuki Takahashi, Y. Miyamoto
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引用次数: 11

摘要

为了应对快速增长的通信流量,400-Gb/s/ch数字相干系统正在光核心网中部署。但是,需要进一步扩展,并且在不久的将来,每个通道的传输容量预计将超过1tb /s,以维持不断增长的流量。实现超过1tb /s的信道容量的最大挑战之一是扩展光收发器中数模转换器(dac)和模数转换器(adc)的模拟带宽。本文介绍了基于inp - hpt的超宽带模拟多路复用器(AMUX)和模拟多路复用器(ADEMUX)电路,它们可以分别扩展dac和adc的模拟带宽。此外,还讨论了超1tb /s/ch光调制和传输的实验演示。
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110-GHz-Bandwidth InP-HBT AMUX/ADEMUX Circuits for Beyond-1-Tb/s/ch Digital Coherent Optical Transceivers
To cope with the rapid growth of communications traffic, 400-Gb/s/ch digital coherent systems are being deployed in optical core networks. However, further scaling is required, and the transmission capacity per channel is expected to exceed 1 Tb/s in the near future to sustain the ever-growing traffic. One of the most significant challenges in achieving a channel capacity of beyond 1 Tb/s is to extend the analog bandwidth of digital-to-analog converters (DACs) and analog-to-digital converters (ADCs) in the optical transceiver. This paper describes InP-HBT-based ultra-broadband analog multiplexer (AMUX) and analog de-multiplexer (ADEMUX) circuits that can extend the analog bandwidth of DACs and ADCs, respectively. In addition, experimental demonstrations of beyond-1-Tb/s/ch optical modulations and transmissions are addressed.
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