球形屏激光二维扫描系统是现代医疗设备的一种重要基础部件。
Laser 2d scanning system on sphere panel is an important basic part of modern medical equipment.
利用该系统能有效地克服多面柱体转镜一摆镜二维扫描系统的非线性特性,给后续的计算机实时图像处理工作带来了方便。
The system can overcome effectively the nonlinear feature of polyhedral column rotating-pendulum-mirror, and also bring convenience for succedent computer real image treatment.
文中介绍了光电二维自动检测仪的测量原理和系统构成,包括激光扫描系统、光栅位移检测闭环控制系统。
The paper has introduced the theory of measurement and whole constitute of the system including laser scan inspection system and grating displacement closed loop inspection system.
提出了一种新型的二维扫描式水下电视系统。
本文介绍了我们新研制的步进电机驱动二维开环激光扫描动态检测系统。
This paper introduces a dynamic detecting system drived by step-by-step motor for two-dimensional open-link laser scanning that we have just developed.
整个系统由微机控制,设有自动输涂片机械手装置、显微镜工作台自动二维扫描机构、自动测光、自动拍照等装置。
The system consists of control microcomputer, automatic smear feeding unit, automatic 2-dimension scanning mechanism microscope stage, automatic light detection and automatic photographing unit etc.
由于频域oct系统可以避免参考光扫描就能得到二维图像,因而频域oct能够提高图像采集速度,使实时成像成为可能。
Frequnce Domain OCT (FDOCT) avoids axial scan to get imaging, so it can get higher imaging speed than TDOCT. In conclusion, FDOCT makes real time imaging come true.
这个新系统的关键点就是一种新的二维条形码添加到处方药中,并且这种条形码能被一种新的扫描器识别。
The key to the system is a two-dimensional barcode added to prescription medicines that can be read by a new scanner.
为了增强传统二维激光雷达的环境几何信息采集能力,设计了一个快速三维扫描激光雷达系统。
To enhance the traditional 2d laser radar's capability acquiring geometric information of environment, a fast 3d scanning laser radar system was designed.
基于合作靶标的激光扫描车身坐标测量传感器,是运用四光束激光扫描测量原理,综合运用激光、光电、精密测量等技术进行非接触二维或者三维坐标测量的检测系统。
The Auto Body coordinate Laser Scanning Sensor Basing On Collaboration Target is a 2D or 3D coordinate measuring system using a kind of measuring principle which named four-beam laser scanning.
基于合作靶标的激光扫描车身坐标测量传感器,是运用四光束激光扫描测量原理,综合运用激光、光电、精密测量等技术进行非接触二维或者三维坐标测量的检测系统。
The Auto Body coordinate Laser Scanning Sensor Basing On Collaboration Target is a 2D or 3D coordinate measuring system using a kind of measuring principle which named four-beam laser scanning.
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