GaAIAs laser transmitter for optical fiber transmission systems

F. Chen, M. Didomenico, P. W. Dorman, M. Karr, T. Rich, P. Shumate, R. Smith
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Abstract

A feedback-stabilized GaAIAs injection laser optical communication source for transmission of NRZ data at 44.7 Mb/sec has been built and tested. Standard ECL input levels operate the emitter-coupled driver circuitry in which the stripe geometry double-heterostructure GaAIAs laser diode (λ = 825 nm) appears as a collector load. The laser is pre-biased near threshold by a separate feedback-stabilizing circuit. This circuit, utilizing an 800-kHz operational amplifier, compares the optical output measured from the back mirror of the laser using a PIN photodiode with data-pattern reference. In this way, closed-loop control of the prebias current makes the optical output insensitive to thermal effects and component aging. The driver–feedback components are assembled on thick-film hybrid integrated circuits. The laser, indium soldered to a gold-plated copper stud, and the thick-film driver circuit are mounted on an aluminum heat sink which forms the body of the driver package. A 40-cm Teflon-sheathed connectorized section of optical fiber is brought through the aluminum housing, strain relieved, and epoxied in place after positioning near the front mirror of the laser. Efficient coupling (50% or greater) between the laser and optical fiber is achieved by melting a spherical lens on the tip of the fiber. The driver package accessed through pins connected to the thick-film circuit is completed by filling the active volume of the heat sink with casting epoxy. The feedback package is of similar design but has only electrical inputs and outputs. The two-package subsystem launches a minimum of 1-mW peak power into a fiber with a ≈0.002-in. graded-index core. The extinction ratio is typically 15:1; peak-to-peak amplitude variation in the output is ~8%. The subsystem operates from 5°C to 55°C and tolerates ±5 % variations in the +5-V and -5.2-V supplies.
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用于光纤传输系统的GaAIAs激光发射器
建立并测试了一种以44.7 Mb/sec传输NRZ数据的反馈稳定gaaia注入激光光通信源。标准ECL输入电平操作发射器耦合驱动电路,其中条纹几何双异质结构GaAIAs激光二极管(λ = 825 nm)作为集电极负载出现。激光通过一个单独的反馈稳定电路在阈值附近预偏。该电路利用800 khz运算放大器,使用PIN光电二极管与数据模式参考比较激光后镜测量的光输出。这样,前置偏置电流的闭环控制使光输出对热效应和元件老化不敏感。驱动反馈元件装配在厚膜混合集成电路上。激光,铟焊接在镀金铜螺柱上,厚膜驱动电路安装在铝制散热器上,形成驱动封装的主体。将40cm聚四氟乙烯护套的光纤连接段置于靠近激光器前镜的位置后,穿过铝制外壳,进行应变处理并进行环氧化处理。激光和光纤之间的有效耦合(50%或更高)是通过熔化光纤尖端的球面透镜来实现的。通过连接到厚膜电路的引脚访问驱动器封装,通过用铸造环氧树脂填充散热器的活动体积来完成。反馈包是类似的设计,但只有电输入和输出。双封装子系统将最小1兆瓦的峰值功率发射到直径≈0.002英寸的光纤中。渐变型核心。消光比一般为15:1;输出峰间振幅变化约为8%。该子系统的工作范围为5°C至55°C,并在+5- v和-5.2 v电源中容忍±5%的变化。
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