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介质薄膜的英文

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"介质薄膜"怎么读用"介质薄膜"造句

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  • dielectric film

例句与用法

  • Anodized dielectric film
    阳极氧化的介质薄膜
  • 4 . investigation are made into preparations of thin gate - oxides for strained si channel mosfet ’ s using pecvd at 300 and low - temperature ( 700 ? 800 ) thermal oxidation , respectively
    4 .分别对300 c下采用等离子体增强化学气相淀积( pecvd )和700 ~ 800 c下采用热氧化技术制备sigehmos器件栅介质薄膜进行了研究。
  • A comparison of the optical and mechanical performance is made between with iad and without iad . the researched thin films includes monolayer thin films and multilayer thin films . 1 . the research of monolayer thin films in the paper , three mololayer thin films - tio2 ta2o5 nb2o5 oxide dielectric thin films are studied
    单层膜的研究研究的单层膜为tio _ 2 、 ta _ 2o _ 5 、 nb _ 2o _ 5等氧化物介质薄膜,对比研究了常规工艺下和离子辅助条件下它们的光学特性和机械特性。
  • Compared to other commonly referenced high - k materials , hfo2 is known for its stability on silicon and process compatibility . the fabrication and electrical properties of hfo2 and hfoxny gate are carefully studied . with the study on hfo2 . we can receive a few significative conclusion : 1
    结果表明,与传统的hf清洗的si表面相比, nh _ 4f清洗的si表面与hfo _ 2具有更好的热力学稳定性,因而可获得更低的eot和栅泄漏电流密度; 3 )研究了溅射气氛和退火工艺对hfo _ 2栅介质薄膜性质的影响。
  • First this paper introduces the development of microscale heat transfer from theory , experiment and computer simulation . then it analyses the heat transfer mechanism during short - pulse heating of metals and the microscale heat conduction in dielectric thin films . last it expatiates on the principle of ac calorimetric method and its experimental techniques
    本论文首先从微尺度理论、实验技术和计算机模拟三方面介绍了微尺度传热学研究现状,接着分析了超短激光脉冲加热金属薄膜过程中的热传导和介质薄膜中的热传导机制,阐述了超短激光脉冲交流量热法的原理和实验技术。
  • Based on the structure of all optical active fiber ring resonator , dual - tunable er3 + - doped optical fiber ring resonator filter is investigated by adding a tunable bandpass filter to change its wavelength . its finesse can also be tunable by adjusting the pump power . the wavelength tuning range of the dual - tunable fiber ring resonator filter is 39nm , from l526nm to l565nm
    在基于掺铒光纤环形腔结构基础之上,通过在腔中加入的可调谐介质薄膜滤波器来选择滤波波长,并通过调节泵浦功率来改变腔精细度,以实现一种滤波波长以及精细度双可调谐的光纤环形腔结构窄带滤波器。
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