微波传输
- 网络Microwave transmission;MMDS;VIDEO-LINK
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微波传输线阻抗匹配的CAD方法
CAD approaches for the impedance matching of microwave transmission line
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早期的数字微波传输设备没有网络接口,无法连接到Internet进行网络管理。
Since early digital microwave transmission devices lack network interfaces , it cannot carry on network management by connecting to the Internet .
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用微波传输法测量高Tc超导薄膜的表面电阻
Measurement of surface resistance of high Tc superconducting thin film using microwave power transmitting method
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微波传输设备安装工程CAD平台软件的开发
Developement of installation engineering CAD platform software for micro-wave communication
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串并联RFMEMS开关的微波传输特性仿真研究
Research of Microwave Transmission Properties of Series and Shunt RF MEMS Switch
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两类特种微波传输线的TEM模特性分析
The TEM characteristics of two kinds of microwave transmission lines with special cross section
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SDH及其微波传输在电力系统中的应用
Synchronous digital hierarchy ( sdh ) and its microwave transmission system for power system
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南宁钦州北海SDH微波传输工程简介
Brief Introduction to Nanning-Qinzhou-Beihai SDH Microwave Transmission Project
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SDH微波传输的网络管理
Network Management of SDH Microwave Transmission
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共面波导(CoplanarWaveguide,CPW)是一种十分重要的微波传输线。
Coplanar waveguide ( CPW ) is an important microwave transmission line .
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本文简要介绍了SDH数字微波传输系统中采用的几项关键技术:高性能高速多状态调制解调技术;
In this paper , we 'll talk about some key technologies in microwave SDH : multi-level coding modulation ;
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本文主要对基于LTCC技术的微波传输线进行了研究。
This article mainly studies the microwave transmission line in LTCC technology .
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浅析PDH与SDH数字微波传输系统
The Discussion about PDH & SDH Digital Microwave Transmission System
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AML是一种宽带、高线性、大容量的传送电视节目的调幅、定向辐射的多路微波传输系统。
AML , Amplitude Modulated Link , can broadcast large capacity of TV programs through high linearity broadband .
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基片集成波导(SubstrateIntegratedWaveguide,简称SIW)是一种近年内出现的新型微波传输结构,可以广泛地应用于微波及毫米波电路中。
Substrate Integrated Waveguide ( SIW ) is a new kind of microwave transmission line in these years which can be widely used in microwave and millimeter wave circuit .
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为此本文着重对微波传输线中的不连续性问题及其分析方法进行了较深入的研究,在FDTD模拟仿真的基础上利用多种后处理方法对传输线的特性进行了分析。
In this paper , a deep investigation of transmission line discontinuity has been done . Based on FDTD simulation , transmission lines have been analyzed by making use of multi-postprocessing methods .
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在介绍用MEMS开关器件实现的移相器、无源微波传输线、可转动天线单元等之后,重点讨论了微电子机械天线(包括宽频带、多频段可重构天线孔径)。
After introducing phase-shifter , microwave transmission line and rotatable antenna elements implemented by MEMS , " MEM-tenna " and the reconfigurable phased array antenna aperture including wideband and multi-band phased array antenna is discussed in more detail .
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通过求解非齐次长线方程,利用Fourier变换法推导出了在雷达脉冲干扰下微波传输线上电压的一般积分表达式,分析了两种典型脉冲干扰源对微波传输线的影响。
The general integral expression of voltage of microwave transmission line interfered by radar pulse is derived by using Fourier transformation techniques , and the effect of two kinds of typical radar pulse interference sources on microwave transmission line are analyzed .
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文中利用SRD(阶跃恢复二极管)与微波传输线,通过错位对消的方法设计与制作了UWB脉冲发生器。
This paper is a report of the designing and making of a UWB pulse generator using SRD ( step recovery diode ) and microwave transmission line and by means of intervention and elimination .
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本文研究采用了一种三维LTCC微波传输结构,并采用叠层通孔实现垂直微波互连。
A three dimensional ( 3D ) LTCC microwave transmission structure was studied in this paper , and stacked vias were applied in the structure to realize vertical microwave interconnecting .
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介绍了包头市无线数字电视网络实施原则、系统架构和应用状况,详细阐述了SDH数字微波传输、数字电视平台、数字MMDS的建设方式,以及各部分的具体组成。
And it studies in detail the construction of SDH digital microwave transmission , digital television platform and the digital MMDS as well as the concrete configuration of each part .
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然后简要地介绍了微波传输线理论,接着介绍了MCM的基本理论,介绍了各垂直互连技术,比较了各垂直互联技术的优缺点。
Then the microwave transmission line principal and the fundamental theory of MCM are briefly discussed . The different technologies and structures to conduct vertical interconnection are introduced and compared among them .
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在分析IEEE802.11a和E1传输两种技术各自特点的基础上,介绍了基于802.11a的E1无线传输系统的系统构成,提出了该系统几种典型的应用模式,并与传统的E1微波传输系统做了比较。
The respective features of IEEE 802.11a and E1 transmission are introduced . The system structure is described . The typical application modes of the wireless transmission systems based on IEEE 802.11a are presented .
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通过微波传输理论的分析和研究,以及高频仿真软件(HFSS)的验算,研究了射频同轴连接器绝缘支撑处和内外导体尺寸突变处引起的反射问题。
This paper investigated reflection problem at isolate support and size abrupt of in-out conduct of coaxial connectors , through the analysis and research of microwave transmit theory and EDA design of HFSS .
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17(2):154~160用微波传输线理论,简化CDB含水率计为集总参数电路。
17 ( 2 ): 154 ~ 160 Based on microwave transmission line theory , this paper simplifies CDB water cut meter as a lumped pa - rameter circuit from which the response equation is derived .
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应用NokiaPCM复接器,将江西铜业公司所属矿山的局域网数据通过微波传输,本文介绍了微波数据通讯系统关键设备配置以及与企业管理网互连的解决方法。
Nokia PCM multiple connector has been used in local area network data transmission through microwave communication in the Mines of Jiangxi Copper Company . This paper introduces the configuration of key equipment in microwave digital communication system and interconnecting mode of intranet .
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16-QAM作为一种高效的调制解调方式,在高清电视、卫星通信、数字微波传输等许多通信领域得到了日益广泛的应用。
As a high efficiency digital modulation and demodulation scheme , 16-QAM is widely used in HDTV , satellite communication , microwave communication and so on .
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高导热、可加工AlN/BN复相陶瓷是一种极具应用前景的新型复合材料,可作为微电子领域、微波传输设备以及高温腐蚀环境中应用的理想材料。
AlN / BN ceramics composite with high thermal conductivity and machinability is a new promising composite in extensive application fields . They are perfect materials that could be used in such fields as microelectronics , microwave transmission devices and those in high temperature corrosion .
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研究了数字电视的取样、量化、编码技术、多路复用技术、条件接收技术、机顶盒技术、MMDS微波传输技术的主要理论基础。
And the basic theories such as sampling , quantization , coding techniques , techniques of co-running in multi-channels , conditional access , STB , techniques of microwave transferring about MMDS is also discussed .
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针对直径20mm的工业用不锈钢管道,实验测得其传输损耗为1.3dB/m,表明该管道可用作微波传输线向微机器人供能。
The experimental results have shown that the attenuation of industrial stainless pipe of 20 mm diameter is about 1.3 dB / m , Thus the pipe is suitable for supplying power to micromachine .