1) optical communications equipment

光纤通信设备
2) Optical Communication Equipment

光通信设备
3) communication equipments

通信设备
1.
For the equipments in the mine are specially needed fire and blast protection, the rescuing communication equipments are relatively large and heavy, affecting the rescue sufficiently carried out.
由于井下设备需进行防火防爆的特殊处理,致使救援通信设备较矿井笨重,影响井下救援行动迅速充分地展开。
2.
And the applying of SCA in communication equipments is under researching.

潜在通路分析技术作为一门新兴技术在通信设备中的应用越来越广泛,尤其是在军事和航天航空领域。
3.
The paper analyzes the function and value of design and presents some design strategies for communication equipments.
分析了产品设计在通信设备的市场竞争中所能发挥的作用和价值,提出了针对该类产品的设计策略。
4) Communication equipment

通信设备
1.
Transitional construction scheme of communication equipments in the running railway line;

营业线通信设备过渡施工方案
2.
The commonly used maintaining methods of communication equipment;

常用的通信设备检修方法
3.
Development of automatic testing system on radio communication equipment;

通信设备自动化检测系统的研制
5) Telecommunication equipment

通信设备
1.
Electromagnetic shielding technology used in telecommunication equipments arch itecture design;
电磁屏蔽技术在通信设备结构设计中的应用
2.
The article mainly introduces the composition of telecommunication,the power source system and characteristic,expatiates mostly maintenance of storage battery and measure ways of thunder guard to telecommunication equipment,and then grounding of telecommunication power source system and telecommunication equipment,stresses importance of strengthening telecommunication power source manage.
论文还重点介绍了对蓄电池的维护和对通信设备的防雷措施方法,以及通信电源和通信设备的接地系统。
3.
According to the demand of telecommunication equipment EMC , the EMC design method from mechanism is put forward in detail in this paper.
根据通信设备电磁屏蔽的需要,从通信设备机械结构设计方面出发,提出了具体电磁屏蔽设计方法。
6) Communications equipment

通信设备
1.
In this paper, the professional 3D modeling software solidworks2006 was used for 3D modeling about selected communications equipment.
本文采用专业的三维建模软件solidworks2006对选定的通信设备进行三维实体建模,在建模过程中对通信设备进行了合理简化。
补充资料:光纤通信
光纤通信 optical fibre cable communication 通过光学纤维传输信息的现代通信的主体传输技术。在发信端,信息被转换和处理成便于传输的电信号,电信号控制光源,使它发出满足传输要求的光信号,从而实现信号的电-光转换。发信端发出的光信号通过光纤传输到远方的收信端,经光电二极管转换成电信号,从而实现信号的光-电转换。电信号再经过处理和转换而恢复为与原发信端相同的信息。它的最大特点是具有极宽的通过频带,可以同时容纳数十万路电话信号或数百路电视信号,传输能力比数字微波通信高几个数量级。光纤通信的其他优点还包括:特别适合于传输数字信息,不受电磁干扰(包括核爆炸产生的核辐射干扰)的影响,光纤的材料来源丰富,价格低廉,可以节省大量的金属材料,等等。随着社会信息化进程的不断深化,通信可视化的要求不断高涨,包含彩色电视和高清晰度电视在内的宽带多媒体通信日益成为必不可少的业务。在这种需求的牵引下,光纤通信将不可避免地成为国家通信网的骨干传输体系;它们与宽带综合交换系统一起,将成为宽带综合业务数字网的基本结构。
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