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Power-efficient dual-rate optical transceiver

机译:节能双速率光收发器

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摘要

A dual-rate (2 Gbit/s and 100 Mbit/s) optical transceiver designed for power-efficient connections within and between modern high-speed digital systems is described. The transceiver can dynamically adjust its data rate according to performance requirements, allowing for power-on-demand operation. Dynamic power management permits energy saving and lowers device operating temperatures, improving the reliability and lifetime of optoelectronic-devices such as vertical-cavity surface-emitting lasers (VCSELs). To implement dual-rate functionality, we include in the transmitter and receiver circuits separate high-speed and low-power data path modules. The high-speed module is designed for gigabit operation to achieve high bandwidth. A simpler low-power module is designed for megabit data transmission with low power consumption. The transceiver is fabricated in a 0.5 (mu)m silicon-on-sapphire complementary metal-oxide semiconductor. The VCSEL and photodetector devices are attached to the transceiver's integrated circuit by flip-chip bonding. A free-space optical link system is constructed to demonstrate correct dual-rate functionality. Experimental results show reliable link operation at 2 Gbit/s and 100 Mbit/s data transfer rates with approx104 and approx9 mW power consumption, respectively. The transceiver's switching time between these two data rates is demonstrated as 10 (mu)s, which is limited by on-chip register reconfiguration time. Improvement of this switching time can be obtained by use of dedicated input-output pads for dual-rate control signals.
机译:描述了一种双速率(2 Gbit / s和100 Mbit / s)光收发器,设计用于现代高速数字系统内部及其之间的节能连接。收发器可以根据性能要求动态调整其数据速率,从而实现按需供电操作。动态电源管理可以节省能源并降低器件的工作温度,从而改善诸如垂直腔面发射激光器(VCSEL)之类的光电器件的可靠性和使用寿命。为了实现双速率功能,我们在发射器和接收器电路中包括独立的高速和低功率数据路径模块。高速模块设计用于千兆位操作以实现高带宽。一个更简单的低功耗模块设计用于低功耗的兆位数据传输。收发器由0.5μm的蓝宝石上的互补金属氧化物半导体制成。 VCSEL和光电检测器设备通过倒装芯片键合连接到收发器的集成电路。构建了自由空间光链路系统以演示正确的双速率功能。实验结果表明,在2 Gbit / s和100 Mbit / s的数据传输速率下,可靠的链路操作分别具有约104和约9 mW的功耗。收发器在这两个数据速率之间的切换时间显示为10μs,这受片上寄存器重新配置时间的限制。通过使用专用于双倍速率控制信号的输入-输出焊盘,可以改善此切换时间。

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