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Efficient Heat Dissipation of Uncooled 400-Gbps (16×25-Gbps) Optical Transceiver Employing Multimode VCSEL and PD Arrays

机译:高效的400 Gbps(16×25-Gbps)光收发器采用多模VCSEL和PD阵列的高效散热

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摘要

An effective heat dissipation of uncooled 400-Gbps (16×25-Gbps) form-factor pluggable (CDFP) optical transceiver module employing chip-on-board multimode 25-Gbps vertical-surface-emitting-laser (VCSEL) and 25-Gbps photodiode (PD) arrays mounted on a brass metal core embedded within a printed circuit board (PCB) is proposed and demonstrated. This new scheme of the hollow PCB filling with thermally-dissipated brass metal core was simulated and used for high temperature and long term stability operation of the proposed 400-Gbps CDFP transceiver. During one-hour testing, a red-shift of central wavelength by 0.4-nm corresponding temperature increment of 6.7?°C was observed with the brass core assisted cooler module. Such a temperature change was significantly lower than that of 28.3?°C for the optical transceiver driven with conventional circuit board. After 100-m distance transmission over a multimode fiber (OM4), the 400-Gbps CDFP transceiver exhibited dispersion penalty of 2.6-dB, power budget of ≧ 3-dB, link loss of ≦ 0.63-dB, mask margin of 20%, and bit error rate (BER) of 10?12 with maintained stability more than one hour. The developed 400-Gbps CDFP transceiver module employing low-power consumption VCSEL and PD arrays, effective coupling lens arrays, and well thermal-dissipation brass metal core is suitable for use in the low-cost and high-performance data center applications.
机译:采用芯片上的400-Gbps(16×25-Gbps)形状可插拔(CDFP)光学收发器模块的有效散热,采用芯片的多模25-Gbps垂直表面发射激光器(VCSEL)和25-Gbps提出并证明安装在嵌入印刷电路板(PCB)内的黄铜金属芯上的光电二极管(PD)阵列。模拟了使用热耗散黄铜金属芯的空心PCB填充的新方案,并用于提出的400-Gbps CDFP收发器的高温和长期稳定性运行。在一次性测试期间,用黄铜芯辅助冷却器模块观察到中心波长的红色偏移量为0.4-nm的温度增量6.7Ω°C。对于传统电路板驱动的光学收发器,这种温度变化显着低于28.3°C。经过多模光纤(OM4)100米距离传输(OM4),400 Gbps CDFP收发器表现出2.6-dB的分散损失,≧3-dB的电力预算,链接损耗≤0.63-dB,掩模边距为20%,和误码率<10≤12,保持稳定性超过一小时。采用低功耗VCSEL和PD阵列,有效耦合透镜阵列和井热耗散黄铜金属芯的开发的400-Gbps CDFP收发器模块适用于低成本和高性能数据中心应用。

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