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1)  spatial-division-multiplexing(SDM)
空分复用技术
2)  WDM
波分复用技术
1.
The paper introduces the focus of optical interconnection research, furthermore discusses WDM technology and architecture of the optical interconnected computer.
介绍了光互技术的研究热点 ,讨论了波分复用技术WDM和光互连计算机的体系结构 ,阐述了并行光互连处理技术的部分成果 ,并对光互连技术发展中存在的问题和发展方向进行了讨
2.
Therefore the optical network with WDM [3, 4] technologybecame the best brilliant choice for the next generation high-speed backbone since thereis a huge amount of bandwidth source for traffic within a very slim fiber.
由于极细的光纤中就含有大量的业务带宽源,因此,采用波分复用技术(WDM)的光网技术成为了下一代高速骨干的最佳选择。
3)  WDM
光波分复用技术
1.
The Application of the WDM(Wavelength Division Multiplexing) in the Power Systems;
光波分复用技术在电力系统的应用
4)  wavelength division multiplexing (WDM) technology
波分复用技术(WDM)
5)  optical time division multiplexing(OTDM)
光时分复用技术
6)  multiplexing technique
复用技术
1.
The paper adopted multiplexing technique and made use of the communication lines (twisted pair lines) between cell station controller and cell station to achieve simultaneous transmission of ISDN signal and electric power in order to resolve the problem of PAS cell station power supply,and to assure non-interruptible communication.
文章采用复用技术,利用小灵通基站控制器(Cell Station Controller,CSC)与基站(Cell Station,CS)之间的通信线路(双绞线),实现ISDN信号和后备电源的同时传输,解决小灵通基站供市电电源停电问题,以保通信不中断。
2.
In this paper,key techniques of fiber grating sensing are introduced in detail,including sensitizing and encapsulation、signal demodulation、 multiplexing technique,and their advantages and weaknesses have been analyzed and discussed.
简要说明了光纤光栅传感器的基本原理,较为详细地介绍了目前影响光纤光栅传感器进一步实用化和商品化的关键技术:光纤光栅敏化与封装、信号解调、复用技术,并对其优缺点进行了分析和讨论。
补充资料:空分
分子式:
CAS号:

性质:应用深度冷冻原理从空气中分离出其组分(氧、氮和氩、氦等稀有气体)的过程。采用深度冷冻法,以液化精馏或部分冷凝法将空气分离成纯组分,一般包括空气压缩、换热、净化、制冷和精馏五个基本系统。大型装置有的采用全低压、分子筛净化流程。近年来,非低温法即变压吸附和膜分离法应用领域逐渐扩大。国外先进的空分装置可以制取纯度为99.999%~99.9999%的氮和氧产品。

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