But thinning of oxynitride, or sion, gate dielectric is at the end of the road. 不过继续缩小氮氧化硅栅介电层厚度的道路仍然走到了尽头。
In the case of dielectric breakdown, a different type of acceleration occurs. 在介质击穿的情况下,出现了一种不同类型的加速。
So it has become a hot domain in the electrical research to measure the dielectric loss. 因此对电气设备绝缘介质损耗的测量已逐渐成为国内外电气研究中的一个较热门的领域。
The influences of heating rate and soaking time on piezoelectric and dielectric properties were also studied. 并研究升温速度,保温时间对介电、压电性能的影响。
Influence of N on structure and dielectric properties of CN_x thin films N含量对CNx薄膜结构和介电性能的影响
This paper presented a powder mixed near dry electrical discharge machining ( PNDEDM), its dielectric is gas-liquid-solid mixture. 提出了一种混粉准干式电火花加工技术,其加工介质是气液固三相流混合物。
This work lay an experimental foundation for the application of monolithic highly dielectric capacitor materials. 这项工作为高介电的单片电容器材料的应用打下实验基础。
The connection and results of capacitance and dielectric loss measurement of capacitor bushing in transformer are modified. 对安装在变压器上电容式套管电容量及介损测量接线方式和测量结果进行了修正。
The transformation of dielectric optical property under irradiation of ultra-short pulse laser is studied based on avalanche ionization theory. 根据雪崩离化模型,分析了飞秒激光脉冲与介质材料相互作用过程中光学特性的变化规律。
At last, the wet membrane of bacterial cellulose was determined by dielectric constant and DTA. 最后,还对纤维素湿膜作了介电系数和差热分析。
Their dielectric anisotropy, phase transition temperature and phase states were determined. 测试了各液晶的介电各向异性、相变温度和相态等。
Highly efficient compact couplers between dielectric waveguides and MDM waveguides are also introduced. 最后,介绍了用于耦合电介质波导与MDM波导的高效率微型耦合器。
The purpose of this work was to search low loss microwave dielectric ceramic new system. 本文旨在寻找具有低损耗的微波介质陶瓷新体系。
The optical wave scattering from one-dimensional ( 1D) lossy dielectric Gaussian random rough surface is studied. 本文研究了一维有耗介质高斯随机粗糙面对光波的散射特性。
This paper presents a feed-back dielectric oscillator and a method of calculating its dimension. 本文介绍了反馈型介质振荡器,给出了介质谐振器尺寸的计算方法。
In this dissertation, we will investigate the application of several high-k dielectric and metal gate process technologies. 在本论文中,吾人将探讨数种高介电系数介电层与金属闸极的研究与应用。
The theory and method in measuring accurately the electronic and vacuum dielectric constant of parallel plate capacitor are introduced. 介绍了用电子分析天平测量平行板电容器两极板间的静电力和真空介电常量的原理和方法。
A design method of the microwave low phase noise dielectric resonance oscillator is presented in this paper. 介绍了微波低相位噪声介质振荡器的设计方法。
The composition and method provide unexpected selectivity for removing conductive and semi-conductive layers relative to dielectric layers. 该组合物和方法提供了相对于介电材料选择性去除导电层和半导体层的出乎意料的选择性。
A state monitoring method of power cable based on the analysis of dielectric breakdown characteristic was presented. 在对绝缘介质击穿特性分析的基础上提出了一种电力电缆状态监测方法。
This paper reviews the development of dielectric theory for head based relaxor ferroelectrics with complex perovskite structure. 本文综述了铅基复合钙钛矿型驰豫铁电体介电理论研究进展。
In this thesis, attention is concentrated on the analytic method of conformal microstrip antennas on dielectric carrier. 本文主要研究介质载体上的共形微带天线的分析方法。
Composite dielectric materials for capacitors of high energy storage density has been studied. 对高储能密度电容器复合介质材料作了研究。
In the second part studied the fabrication process of dielectric resonator antenna model and high permittivity ceramic plate. 研究中的第二个部分,是对于微波介电陶瓷制备介电共振器天线与高介电陶瓷薄板之制程方面的研究。
A model of wedge ( or V-shaped) dielectric loaded horn is introduced in this paper. 提出了一种尖劈形介质加载喇叭模型。
Secondly, influence of surface polish and glycol additive on pressurized water dielectric is studied. 其次,进行了抛光电极表面和添加乙二醇对加压水介质击穿影响的研究。
A new method using metal dielectric waveguide ( MDW) is presented. 现提出采用金属介质波导(MDW)的新方法。
The silver diffusion mechanism in low temperature cofired microwave dielectric ceramic components fabricated by using multilayer technology was studied. 研究了叠层共烧工艺制备的微波介质陶瓷器件的银扩散机制。
It can be used as microwave dielectric materials. 可作为绝缘体等微波介质材料的应用。
The electromagnetic loss property was studied by the relative dielectric constant and relative magnetic permeability of the ferrites. 并测试样品的相对介电常数和相对磁导率,研究了它们的电磁损耗特性。