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1)  high power semiconductor laser
高功率半导体激光器
1.
It closely relates with the quality and reliability of the high power semiconductor laser.
为实现对高功率半导体激光器快速、有效、无损的质量检测和可靠性筛选,对器件进行了电导数和光导数测试及分析。
2.
Application of high power semiconductor laser were summarized in some fields such as laser communication, laser guidance, laser radar, laser fuse, laser range-finding, laser night vision and illumination, laser simulating weapon and military fiber peg-top, etc.
简要阐述了高功率半导体激光器在激光通信、激光制导、激光雷达、激光引信、激光测距、激光夜视与照明、激光模拟武器以及军用光纤陀螺等领域的应用。
2)  high power diode laser
大功率半导体激光器
1.
Research and Design on the Control System for High Power Diode Laser;
大功率半导体激光器控制系统的研制
2.
Laser transformation hardening was carried out on U74 rail steel by a self-developed high power diode laser.
使用自制的大功率半导体激光器对U74轨钢进行了相变硬化。
3.
Based on the characteristics of beam propagation of laser diode array(LDA),high power diode laser was coupled to a wedge-shaped fiber array.
首先从半导体激光器列阵的发光特性出发,利用楔形光纤排对大功率半导体激光器列阵光束进行耦合,最后得到一只含有19个纤芯,每个纤芯为200μm,数值孔径为0。
3)  High power semiconductor laser
大功率半导体激光器
1.
The incident power ratio of front and back cavity facet coatings was deduced,and the importance in optimized designing of electric field intensity(EFI) distribution of back cavity facet coatings for 808nm high power semiconductor laser was explained.
从实际问题出发在以往腔面膜的研制基础上,选择适合制备808 nm大功率半导体激光器腔面的镀膜材料。
2.
In order to solve the heat radiation of high power semiconductor lasers,the internal thermal distribution of the lasers and the influence of the laser diodes sintered by different solders(In,SnPb,AuSn)on the thermal resistance of the lasers were analyzed by ANSYS finite element software and the steady thermal simulation method.
为了解决大功率半导体激光器的散热问题,利用有限元软件ANSYS,采用稳态热模拟方法,分析了半导体激光器内部的温度分布情况,对比分析了In、SnPb、AuSn几种不同焊料烧结激光器管芯对激光器热阻的影响。
3.
The high efficiency and high power semiconductor laser with multi-active regions, which are cascaded by reverse biased tunnel junction(s) can resolve the problems in theory and ov.
大功率半导体激光器在光通讯、医疗、军事、印刷和光泵浦等领域有着广泛的应用,然而当通过增加注入电流提高传统半导体激光器的光束出功率时,要受到电热烧毁和光腔面灾变性损坏(COD)的限制。
4)  High power semiconductor lasers
大功率半导体激光器
1.
The recent progress of high power semiconductor lasers are reviewed with focusing on reliability,power conversion efficiency,wavelength stabilization and extended wavelength range.
大功率半导体激光器在军事领域和工业领域有着广泛的应用。
5)  high-power semiconductor laser
大功率半导体激光器
1.
This paper gives a theoretical hypothesis witch explains the laser ablation of fiber end face by high-power semiconductor laser,and basic on the hypothesis we gained that coupling efficiency of the system is changing with time,such as ηt=η0t-aβmSk=η0t-aβρ.
本文提出大功率半导体激光器(LD)对光纤耦合界面的烧蚀的理论假设,得出系统耦合效率随时间的变化关系为ηt=η0t-αβmsk=η0t-αβρ。
2.
Based on the law of refraction in vector form,the laser beam propagation in an aspheric and asymmetrical laser beam collimation system from high-power semiconductor laser has been researched for spatial laser beam long-distance propagation.
为实现空间激光束的远距离传输,利用矢量折射定理研究了大功率半导体激光器发散光束经非球面、非轴对称准直系统的光传输特性。
6)  high-power 808nm semiconductor laser
大功率808nm半导体激光器
补充资料:气敏半导体(见传感器半导体材料)


气敏半导体(见传感器半导体材料)
gas sensory sernieonduetor

气敏半导体gas sensory Semieonductor见传感器半导体材料。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条