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1.
Property of Current in Outer Semiconducting Layer of Cable Winding Transformer
电缆绕组变压器外半导电层中的电流特性
2.
Growth of VA-VIA Group Compound Semiconductor Thermoelectric Nanofilms Via the Route of Electrochemical Atomic Layer Epitaxy;
VA-VIA族化合物半导体纳米热电薄膜的电化学原子层外延生长
3.
The Test System of Resistity of the Semi-conductive Shield of the Power Cable Based on the Virtual Instrument;
基于虚拟仪器的电缆半导电屏蔽层电阻率测试系统的研究
4.
Optimum the Thickness of p-Waveguide Layer for High Conversion Efficiency Diode Lasers
优化p型波导层厚度提高半导体激光器电光转换效率
5.
NONCONTACT ELECTRICAL CHARACTERIZATION OF Ⅱ Ⅵ SEMICONDUCTORS BY FAR INFRARED REFLECTION
Ⅱ-Ⅵ族半导体远红外反射光谱与电学参量
6.
Exciton and Impurity State in Semiconductor Quantum Wells in an Electric Field;
外电场下半导体量子阱中的激子和杂质态
7.
An Electronic System of External Cavity Semiconductor Diode Laser with Low Long-term Drift
低漂移外腔半导体激光器驱动电路的设计
8.
Test method for measuring resistivity of semiconductor silicon or sheet resistance of semiconductor films with a noncontact eddy-current gage
GB/T6616-1995半导体硅片电阻率及硅薄膜薄层电阻测定非接触涡流法
9.
Simulation of Electrical Properties of Metal-Ferroelectric-Insulator-Semiconductor(MFIS) Structure Device;
金属—铁电—绝缘层—半导体(MFIS)结构器件电学性能模拟
10.
An Easy Method for Judging the Type of Electric Conduction and the Concentration of Charge Carrier in Semiconductor Epitaxial Material
半导体外延材料导电类型及载流子浓度的简易判定法
11.
Electrons from the metal will have to surmount the potential barrier to enter the semiconductor.
金属中的电子必须克服这个势垒层才能进入半导体。
12.
The Research of Semiconductor Behaviors of Metal/Organic Coating in Electrolytes during Its Degradation
金属/有机涂层电解质溶液中腐蚀的半导体行为研究
13.
Study on Ga_2O_3 deep ultraviolet transparent conductive films with Al nano-interlayer
纳米Al夹层Ga_2O_3深紫外透明导电膜的研究
14.
mode-locked external-cavity semiconductor laser
锁模外腔半导体激光器
15.
external cavity semiconductor laser
外腔式半导体激光器
16.
Junction-to-case thermal resistance test methods of packages for semiconductor integrated circuits
GB/T14862-1993半导体集成电路封装结到外壳热阻测试方法
17.
Improvement on Frequency Stabilization Servo System of the External Cavity Semiconductor Laser;
外腔半导体激光器伺服电路系统的改进设计与实现
18.
The deposition mechanism is based on the tunneling of electron transition and double electrical layer of interface between semiconductor and electrolyte.
电沉积过程中薄膜的生长机理是基于电子跃迁的隧道效应和半导体/解液界面的双电层结构。