CD - ROM原是一种用于制作CD立体声系统的小型圆盘的光学技术,现在它已经被用来为计算机储藏数据。
CD-ROM is an optical technology that is used to make compact disks for CD stereo systems; it has now been adapted to store data for computers.
该系统包括一对设备——光学数据发送器和接收器。
The system consists of a device pair - optical data sender and receiver.
光学系统由于其巨大的互连和内在的并行处理能力,特别适应于超大容量数据处理和计算。
The optical system, with its massive interconnection and parallel processing capabilities, is particularly suitable for megalo-capacity data processing and computation.
研究一种适用于物理光学实验中信号接收及数据采集的图象探测系统。
An image detecting system which is suitable for signal receiving and data acquisition in physical optical experiments is studied.
它通过无线电信号识别特定的目标,并读写相关的数据,而不需要识别系统与这个目标有机械或者是光学接触。
It is through radio signals to identify a specific target, read and write the corresponding data, without mechanical or optical contact with the identification system.
该系统主要由CCD、光学系统和数据分析软件组成。
The system was mainly consisted of CCD, optics elements and data analysis element.
由于SAR系统具有不同于光学传感器的成像机理,因而可以提供全新的数据获取手段和不同的地物信息。
Because of the different imaging pattern and imaging mechanism compared with optical sensor, SAR system could provide brand-new means to acquire data and different object information.
本文在虚拟光学数据加密理论模型的基础上,研究一种并行电子系统实现方法。
In this article, we investigate an implementation scheme of virtual-optics based data encryption system.
利用这种数据结构,作者编制了激光光学系统杂散光分析软件,针对两个实例建立了近轴鬼光束树。
Using this data structure, stray light analysis software of laser systems is programmed, the examples are given and the paraxial stray light binary trees are built.
合成孔径雷达光学处理器(OSARP)与普通成像系统不同,它处理合成孔径雷达(SAR),数据片。
An Optical Synthetic Aperture Radar Prccessor (OSARP) is different from the conventional imaging system. It warks after Synthetic Aperture Radar (SAR) and processes image from SAR data film.
本文介绍一种用于皮秒和飞秒级超短脉冲和超快过程测量的微机控制光学自相关器和实验数据获取与处理系统。
This paper describes a microcomputer controlled autocorrelator and datum acquisition processing system for the measurements of picosecond and femtosecond pulses and dyna-mic processes.
该系统具有测量速度快、检测精度高、实时性强及数据处理自动化等特点,它是近代光学、光电技术与微机技术的有机结合。
The measuring system, possessing advantages of high precision and real time measurement, by using modern optics, opto-electronic technique and microcomputer is also described.
它主要由光学发动机、光路系统、数据采集和信号同步控制系统及其它辅助系统组成。
The facility is mainly composed of optical-engine, light-path system, data collection and signal synchronization control system.
该系统主要由半导体激光光源、准直扩束整形光学系统、主体精密机械系统、单片机控制系统和计算机实时数据处理系统等组成。
The system is composed of a semiconductor laser source, a main fine mechanic system and controller, a real-time controlling system with SCM and data processing system by PC.
整个装置由光学系统、电信号处理系统和数据自动记录系统组成。
The whole set-up consists of the optical system, the electrical signal processing system and the automatic data logging set-up.
将光学系统、CCD、数据采集卡和光谱分析软件组成完整的数字光谱分析系统。
Third, The optical system, CCD, data acquisition board and spectrum analysis software has been integrated. Spectrum instrument is calibrated by standard mercury lamp.
此有限元系统-光学系统通信链路的实现可大大提高数据的可靠性和设计效率。
The realization of communication links between finite element systems-optical system can greatly improve the reliability of data and design efficiency.
该系统由光学部分,电路部分,数据采集部分及数据处理部分组成。
The system is composed by optics part, electronic part, data acquisition part and data processing part.
该系统具有测量速度快、检测精度高及数据处理自动化等特点。整个系统是近代光学、光电技术与微机技术的有机结合。
It possesses the advantages of high precision and high efficiency, for it is a combination of modern optics, photoelectric technique and microcomputer.
该系统由红外聚焦光学子系统、六维精密扫描工件台及数据采集子系统构成。
Thesystem is composed of a IR focusing Subsystem, a precision scanning six dimensions stage anda data acquisition module.
以平面光栅单色仪和光学扫描振镜为基础研制一套具有高时间分辨能力的光学多道分析系统,并利用计算机进行实时控制与数据采集。
Based on a plane grating monochrometer and a optical scanner, the high time-resolved optical multichannel spectrometer is developed. A computer is used to real-time control and data acquisition.
以平面光栅单色仪和光学扫描振镜为基础研制一套具有高时间分辨能力的光学多道分析系统,并利用计算机进行实时控制与数据采集。
Based on a plane grating monochrometer and a optical scanner, the high time-resolved optical multichannel spectrometer is developed. A computer is used to real-time control and data acquisition.
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