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CS-1000控制系统易于使用数据传输功能强大名称控制器特点易于使用数据传输规格24*65*32功能强大颜色标准重量0.15千克认证CE输出频率50加工定制否应
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产品概况
在肉眼可见光380~780nm范围内,测量每1nm间距的物理能量(值)。另外,可通过该数值***地计算出辉度、色度、色温、主波长等数值。
可通过本体和单体操作。自由便携式的结构设计,可方便灵活地放到测量物体处实施测量。
安装了可在Windows上使用的数据管理软件。
可通过电脑简单地进行本体的控制和测量结果的显示、演算、保存等操作。
另外,也可以测量物体的颜色。
主要用途
柯尼卡美能达培育的色彩测量技术拥有优秀的性能,可获得值精度和重复测量精度下的测量结果。
严格的质量跟踪体系确保可靠的质量标准。
重复性/辉度:0.1%+1digt、色度:可进行0.0002的测量。
通过多色仪的使用,可快速测量。测量速度接近即时速度。※1
即使是低辉度的测量也可达到***长39秒的快速测量。※2
可减少偏振光误差。对LCD等测量物能实现***的测量。
可对显示器设备进行同期测量。
测量精度从0.5cd/m2始,确保精度可靠。
通过电子冷却型传感器的使用,可以提高S/N比,完成低辉度的测量。
通过使用孔径镜,可以避免取景器内的指示和测量领域之间出现偏差。
Product profile
The physical energy (value) per 1nm spacing is measured in the range of 380 ~ 780nm of visible light with the naked eye. In addition, the values of brightness, chroma, color temperature and main wavelength can be calculated by this value.
Can be operated through ontology and monomer. The free and portable structure design can be easily and flexibly placed on the measurement object for measurement.
Data management software is installed for use on Windows.
The control of the body and the display, calculation and saving of the measurement results can be carried out simply through the computer.
In addition, the color of the object can be measured.
Main use
Konica Minolta has developed color measurement technology with excellent performance to obtain measurement results with value accuracy and repeated measurement accuracy.
Strict quality tracking system ensures reliable quality standards.
Repeatability/brightness: 0.1% +1digt, chroma: measurement up to 0.0002.
Through the use of polychromatic instrument, it can be measured quickly. The measurement speed is close to the instant speed. Does 1
Even the measurement of low brightness can reach the fastest measurement up to 39 seconds. Does 2
Polarized light error can be reduced. It can realize the best measurement of LCD and other measurement objects.
Simultaneous measurement of display devices is possible.
The measurement accuracy starts from 0.5cd/m2 to ensure reliable accuracy.
The S/N ratio can be improved through the use of electronic cooling sensor to complete the measurement of low brightness.
By using an aperture mirror, deviations between the indicating and measuring fields within the viewfinder can be avoided.
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