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首页> 外文期刊>IEEE Transactions on Advanced Packaging >A complete small-signal equivalent circuit model of cooled butterfly-type 2.5 Gbps DFB laser modules and its application to improve high frequency characteristics
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A complete small-signal equivalent circuit model of cooled butterfly-type 2.5 Gbps DFB laser modules and its application to improve high frequency characteristics

机译:冷却的蝶形2.5 Gbps DFB激光模块的完整小信号等效电路模型及其在改善高频特性中的应用

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摘要

A small-signal equivalent circuit model of 2.5 Gbps DFB laser modules with butterfly-type dual-in-line packages has been proposed and verified using extracted parameters. Parameters related to the equivalent circuit have been extracted from measured S parameters using the modified two-port black box model. This model includes small-signal equivalent circuits of components used for 2.5 Gbps DFB laser modules such as DFB laser, coplanar waveguides, matching resistor, bonding wires, and thermoelectric cooler (TEC). From this equivalent circuit modeling, we show that calculated frequency characteristics of DFB lasers on submount and complete DFB laser modules are similar to their measured frequency characteristics, respectively. Based on this equivalent circuit model, we propose and demonstrate a method that can improve frequency characteristics of 2.5 Gbps DFB laser modules through both experiments and simulations.
机译:提出了带有蝶型双列直插式封装的2.5 Gbps DFB激光模块的小信号等效电路模型,并使用提取的参数进行了验证。使用改进的两端口黑匣子模型,已从测量的S参数中提取了与等效电路有关的参数。该模型包括用于2.5 Gbps DFB激光器模块的组件的小信号等效电路,例如DFB激光器,共面波导,匹配电阻,焊线和热电冷却器(TEC)。从这个等效电路模型中,我们表明,在底座和完整DFB激光器模块上计算出的DFB激光器的频率特性分别类似于其测得的频率特性。基于此等效电路模型,我们提出并演示了一种可以通过实验和仿真来改善2.5 Gbps DFB激光模块频率特性的方法。

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