planar devices

英 [ˈpleɪnə(r) dɪˈvaɪsɪz] 美 [ˈpleɪnər dɪˈvaɪsəz]

网络  平面组件; 平面元件

电力



双语例句

  1. Planar Waveguide Devices Based on Novel Arrayed Waveguide Gratings for Wavelength Division Multiplexing and Access Networks
    基于新型阵列波导光栅的波分复用和接入网平面波导器件
  2. On-load tap-changer of transformer The examples of the planar GPa pressure explosive loading devices and its applications are given.
    变压器有载调压开关给出了可调控靶中应力波形的平面低压化爆加载装置的应用实例。
  3. Optimum design and experiment on breakdown voltage of planar power electron devices with limit field ring
    平面型电力电子器件场环终端的优化设计与试验研究
  4. Judge of Ohmic Contact to planar Devices& Circular Transmission Line Model Extrapolation
    平面型器件欧姆接触的衡量&圆形传输线模型外推法
  5. In summery, theoretical and experimental studies on grating-based integrated planar waveguide demultiplexers are carried out in this dissertation. The work involves the design and fabrication of high-performance demultiplexers and the results are useful for the development and studies of integrated devices.
    总之,本文在理论和实验上研究了光栅型平面波导波分复用器件,提出了改善其性能的方法并取得了初步的实验结果,这些结果对发展高性能、实用化的芯片有重要意义。
  6. Analysis of Planar Optical Waveguide Devices and Its Application
    平面光波导器件及应用分析
  7. The method is suited for designing of the several of planar power electronic devices such as Rectifier, Thyristor, GTR, IGBT, IEGT and MCT.
    该方法可直接推广到整流器、晶闸管、GTR、IGBT、IEGT和MCT等多种平面型电力电子器件设计中。
  8. The OADMs based on Planar Lightwave Circuit ( PLC) technology have the advantages of small size, low cost, high performance and accord with the direction of the optical devices toward integration.
    基于平面光波导技术的OADM具有体积小、成本低、性能高等优点,符合光器件集成化的发展方向。
  9. The field limitting ring ( FLR), behaved as a compatible planar junction termination, has been widely used in many high voltage devices.
    场限制环作为一种可与许多器件工艺相容的PN结终端得到了广泛应用。
  10. Recent Progress on Planar Optical Waveguide Devices in OFC 2003
    从OFC2003看平面光波导器件的发展动向
  11. This thesis study the simulation of electromagnetic field of MB chip and two key fabrication processes& fabrication of planar electromagnetic devices based on UV-LIGA and polymeric microfabrication.
    本论文研究了磁珠芯片中的电磁场模拟分析,以及两种关键工艺&基于UV-LIGA的平面电磁器件制作工艺和塑性材料微加工制作工艺。在此基础上,设计、制作并封装了新型磁珠微芯片。
  12. A two-dimensional numerical analysis program of the high-voltage planar silicon devices with field limiting rings is presented.
    本文报告了用有限差分法解两维泊松方程的方法分析带有场限制环的平面高反压器件的耐压性能的模拟程序。介绍了程序的算法及原理。
  13. The recent progress of planar optical waveguide devices reported on OFC 2003 has been overviewed and the emphasis is stressed on the progress of novel materials, new technology and novel structures used for planar optical waveguide devices.
    概述了2003年OFC会议上报道的平面光波导器件,着重介绍了平面光波导器件在新材料、新工艺、新结构方面的新进展和发展方向。
  14. The factors which determine the quality ( Q) factor of planar spiral inductor are presented in this paper, and a technology to fabricate suspended MEMS devices for RF circuits is presented.
    本文系统分析了影响平面螺旋电感Q值的主要因素,并制作出一种应用于射频通信的硅微机械悬浮结构电感。
  15. Based on the hydrodynamic energy transport model, the influence of the grooved-gate structure on the characteristic of deep-sub-micron MOSFET's is studied, and the results are compared with those of the corresponding conventional planar devices.
    基于流体动力学能量传输模型,研究了深亚微米槽栅结构MOSFET对小尺寸效应的影响,并与相应平面器件的特性进行了比较。
  16. The new planar devices using oxygen implantation are developed. Submicron gate lengths have been fabricated, by using conventional compensated contact photolithography. The microwave noise of the resulted device is much lower than that of the general mesa device.
    提出了氧离子注入的新型平面器件结构,用普通接触式补偿光刻法制作了亚微米栅条,所得器件比普通台式器件具有更低的微波噪声。
  17. A new Method for Measuring Boundary Charge Density of the Planar Semiconductor Devices
    一种测量平面型硅器件界面电荷密度的新方法
  18. As the key device of a DWDM system, Etching Diffraction Grating ( EDO) is one of the most potential types of planar waveguide DWDM devices.
    作为波分复用中最关键的器件,蚀刻衍射光栅(EDG)是平面波导密集波分复用器件中很有发展潜力的一种。
  19. Optimal design and manufacture analysis of high-voltage planar devices
    平面高反压器件的优化设计与工艺分析
  20. The nanometer-sized waveguide with high refractive index difference has become a focus in the research of planar optical waveguide devices. It is absolutely the necessary first step toward the photonic integration.
    高折射率差,纳米尺寸波导已经成为当前平面光波导器件研究的一个热点,它是实现光子集成必不可少的第一步。
  21. Optimum Design of Blocking Capability for Planar Power Electronic Devices
    平面型电力电子器件阻断能力的优化设计
  22. Design, simulation and fabrication technique of integrated silica-based planar optical waveguide devices
    硅基底平面波导光通讯集成器件的模拟、设计及工艺
  23. The blocking capability of planar power electronic devices is analyzed using junction termination structure with field limiting ring and the P+ I ( N-) N+ structure of supporting bulk breakdown voltage.
    利用场限环终端结构及P+I(N-)N+体耐压结构分析了平面型电力电子器件的阻断能力。
  24. Ion implantation is a unique planar selective local doping technique available for making SiC devices. At present, there are few reports on the formation and characterization of semi-insulating SiC by vanadium ion-implantation.
    离子注入是唯一适于SiC的选择性区域掺杂方法,目前国际上对钒离子注入制备半绝缘SiC的研究很少,而国内在这方面的研究仍属空白。
  25. Present, it has also been attempted in manufacturing planar waveguide, optical wavelength division multiplexer with low crosstalk, and some other optical devices.
    目前其在制作平面光波导、低带间串扰光波分复用器等光学器件方面也已经有初步的应用。
  26. With the advancement of the planar epitaxy technique for Indium phosphide ( InP), highly-reliable active semiconductor devices have been widely adopted in a variety of fields.
    随着磷化铟材料外延技术的进步,高可靠性的半导体有源器件已走向成熟,被广泛应用于各个领域。
  27. This filter is easy to manufacture and accord with the practical requirement of planar microwave circuits and devices.
    该滤波器加工容易,成本低廉,符合平面结构微波电路和器件的应用需求。
  28. Currently, there are some methods to realize the miniaturization of planar microwave devices, such as adopting periodic structures with slow-wave characteristics, low temperature Co-fired Ceramic ( LTCC) technology and so on.
    目前,实现平面微波器件小型化的方法包括:采用具有慢波特性的周期性结构以及低温共烧陶瓷技术(LTCC)等。