Thermally stimulated current ( TSC) is used to obtain the parameters of dielectrics, but the parasitic galvanic current existing in test influences the consequence. 热刺激电流测试(TSC)中寄生电流的存在对测试结果会产生一定的影响。
Furthermore, the application prospect of magnetic water in the processing of functional dielectrics was explored based on some new experimental results. 结合一些实验研究的结果,展望了磁化水在电气功能电介质制备中的研究前景。
Thinner dielectrics, however, are more susceptible to ESD overstress. 然而,较薄的绝缘体更容易受ESD的影响。
Physical and Electrical Properties of ZrO_2 Gate Dielectrics Film 高介电栅介质ZrO2薄膜的物理电学性能
By using the method of optical transfer matrix, the transmission characteristics of PQW structure with different dielectrics ′ thickness are studied. 用传输矩阵法计算了不同介质厚度对光量子阱结构的传输特性。
Experimental Research and Numerical Simulation on Deep Charging for Spacecraft Dielectrics 航天器介质材料深层充放电实验与数值模拟
On Novel Manual Dielectrics Based on Cyanate Ester Resin 氰酸酯树脂基新型人工介质材料的研究
Polymer nanocomposites are promising as near-future dielectrics and electrical insulation from the viewpoint of their inherent excellent properties. 聚合物基纳米复合材料作为电介质和电气绝缘材料在电力电子技术领域有着广泛的应用前景。
Chinese research in CNT/ epoxy absorbers seems to be mostly focussed on lossy dielectrics, rather than magnetically loaded materials intended as impedance matched coatings. 中国对CNT/环氧树脂吸波材料的研究似乎集中在损耗性电介质上,而不是把磁性材料作为匹配涂层的阻抗。
A Coupled Theoretical Model of the Mechanism of Ultrashort Laser Ablation of Dielectrics 超短脉冲激光烧蚀绝缘体材料机理的耦合理论模型
Study on Electrical Characteristics of Ge-pMOSFET with Ultrathin High-k Gate Dielectrics 超薄高k栅介质Ge-pMOSFET的电特性研究
Preparation and Structure of HfSi_xO_y Thin Film for High K Gate Dielectrics 高K栅介质HfSixOy薄膜的制备工艺与结构分析
Nano-Al/ BaTiO_3/ Epoxy Three-Phase Composites as Embedded Dielectrics 用于嵌入式电容器的介电纳米铝/钛酸钡/环氧树脂三相复合材料
Any of various minerals consisting of hydrous silicates of aluminum or potassium etc. that crystallize in forms that allow perfect cleavage into very thin leaves; used as dielectrics because of their resistance to electricity. 由含水硅酸铝或硅酸钾等组成的矿物,呈晶体状,能分裂成极薄的片状,具有良好的电绝缘性。
TEM Sample Preparation Assisted Investigation on Dielectrics Reliability Failure Mechanism TEM样品制备辅助研究介质层可靠性失效机理
Application of High-k Dielectrics to Floating Gate Nonvolatile Memory 高k介质在浮栅型非挥发性存储器中的应用
Experimental and theoretical study on the ablation of dielectrics by femtosecond lasers 飞秒激光烧蚀透明介质的实验和理论研究
Advanced polyimide materials are reviewed as the interlayer dielectrics in MCM D. 论述了高性能聚酰亚胺材料作为MCM-D的多层金属互联基板的层间介电材料的性能要求及其工艺过程。
Silsesquioxane ( SSQ) in the midst of many low dielectrics has been widely studied in the semiconductor industry. 在众多的低介电材料中,聚倍半硅氧烷(Silsesquioxane:SSQ)是研究最为广泛的材料。
Two cases, isotropic and anisotropic dielectrics are studied. 末日意识研究了各向同性和各向异性两种情况。
The values of the intrinsic breakdown field of many important binary compound semiconductors and high-k gate dielectrics are calculated. 基于文章提出的关系式,计算了多种重要的二元化合物半导体及高k栅介质的本征击穿电场预期值。
The recent progress on this field are reviewed, including the structure, nonlinear dielectrics properties and microwave application. 介绍了BST薄膜的非线性介电性质与其在微波应用中的国外研究现状。
A method of numerical analysis is used to study the properties of charge dynamics in electron-irradiated dielectrics. 本文采用了一种数值计算方法,用来分析电子辐照电介质中电荷力学特性。
The concrete procedure using finite-element method to solve the eigenvalue problem of waveguides filled with inhomogeneous dielectrics is discussed. 本文讨论了用有限元法求解非均匀介质填充波导本征值问题的具体过程。
Photonic crystals ( PC) are artificially composed of two or more dielectrics arranged periodically. 光子晶体(PC)是由两种或两种以上的电介质材料周期性排列构成的人造材料。
The theory and the testing method are of importance for studying the traps in solid dielectrics. 文中的理论结果和实验方法对于研究固体介质的陷阱信息具有一定意义。
Dielectrics are key materials for energy storage capacitor. 电介质材料是电容器储能的关键材料。
Wide-band semiconductors and high-K dielectrics are two of the cutting-edge research focuses in microelectronics industry. 宽带隙半导体材料和高介电常数材料是当今微电子领域的前沿研究课题。
The study of ultra-short pulse laser interaction with transparent dielectrics has become an international hotspot. 超短脉冲激光与透明电介质的相互作用,已经成为一个国际上的研究热点。
Besides, the thermal properties of ceramics in microwave field are studied on the base of interacting theory between microwave and dielectrics. The formulas are also showed which describe dissipation power and temperature field. 之后以微波和电介质之间的相互作用原理研究了陶瓷在微波场中的热学特性,给出了描述耗散功率和温度场的等式与方程。