optical power splitter is the core of pon.
光功率分配器是无源光接入网的核心。
directional couplers are widely used as an integral part of many microwave networks and systems, such as amplitude controller, balanced amplifier, power splitter and combiner.
定向耦合器广泛应用于幅度控制系统、平衡放大器、功率分配和合成器等许多微波网络和系统中。
then, detailed design for the structure of y-branch optical power splitter is followed.
然后,对y分叉光功率分配器的结构展开具体的设计与优化。
the method to fabricate an optical power splitter with multi-mode interference(mmi) is proposed using ion exchange technology.
提出了利用离子交换技术制作多模干涉(mmi)型光功分器的设计方法。
a novel design of multimode light power splitter is proposed and fabricated by using secondary asymmetric y branches.
文章提出并制作了一种含有次级非对称y分叉结构的多模光功率分配器。
microwave radar front-end system relies on microwave ranging principle, using microstrip antenna design; the system includes vco, power splitter and mixer.
微波雷达前端系统依托微波测距原理,采用微带天线设计,系统包括vco振蕩器、二等功分器、混频器。
as a key optical network devices, optical power splitter is therefore of great significance.
作为光网络的关键器件,光功率分配器的研究因此具有重要的意义。
this paper describes the design theory and key technique′s method of power splitter which can transmit highpower wave, and simulated design by hfss software.
阐述了一种可以承受大功率传输的功率分配器的设计理论和关键技术的方法,并且举例实现了该功分器用微波软件hfss的仿真设计。