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销售Newport 1835-C 光功率计主机

浏览次数:1570

晧辰自营,品质保证,配送快捷

产品参数

选件 是否计量 发货周期 保修时间 成色
1-4周 12月 8成新
所在地 机身号 状态 资料下载
深圳市 完好
更新日期:2021-11-13
联系电话:0755-86016691

* 产品描述

纽波特1835-C高性能光学计
特征
  • 测量100 fW至300 W的光功率
  • 脉冲和积分能量测量
  • 明亮的真空荧光显示
  • 具有10倍缩放的模拟条形图
  • RS-232C和IEEE-488接口
  • 脉冲到达时发出声音
  • 带有警报级别的触发输入/输出控制


描述:

无论您的应用需要测量低功率,高功率还是连续或脉冲光源的能量,Newport的1835-C型都可以胜任。

直流,峰峰值和脉冲测量值可以W,dBm,dB,J,Ergs,A和V为单位显示。

可以使用覆盖190-1800 nm波长的Newport 818系列硅,锗或铟镓砷半导体探测器中的任何一种来完成100 fW-2 W范围内的低功率测量。

可以使用Newport的818T系列风冷热电堆探测器进行10 mW-300 W范围内的大功率测量,从而可以在0.19-11 µm的波长范围内进行测量。

可以使用在0.19-20 µm波长范围内运行的Newport 818J系列热释电探测器进行35 nJ-1 J脉冲激光源的能量测量。可以适应从单脉冲到2 kHz的脉冲重复率。

高级功能包括2500个数据点存储缓冲区;模拟和数字滤波;可编程采样率;移动统计;以及多达10种可召回的配置。无论您的应用需要测量低功率,高功率还是连续或脉冲光源的能量,Newport的1835-C型都可以完成。

直流,峰峰值和脉冲测量值可以W,dBm,dB,J,Ergs,A和V为单位显示。

可以使用覆盖190-1800 nm波长的Newport 818系列硅,锗或铟镓砷半导体探测器中的任何一种来完成100 fW-2 W范围内的低功率测量。

可以使用Newport的818T系列风冷热电堆探测器进行10 mW-300 W范围内的大功率测量,从而可以在0.19-11 µm的波长范围内进行测量。

可以使用在0.19-20 µm波长范围内运行的Newport 818J系列热释电探测器进行35 nJ-1 J脉冲激光源的能量测量。可以适应从单脉冲到2 kHz的脉冲重复率。

高级功能包括2500个数据点存储缓冲区;模拟和数字滤波;可编程采样率;移动统计;以及多达10种可召回的配置。无论您的应用需要测量低功率,高功率还是连续或脉冲光源的能量,Newport的1835-C型都可以完成。

直流,峰峰值和脉冲测量值可以W,dBm,dB,J,Ergs,A和V为单位显示。

可以使用覆盖190-1800 nm波长的Newport 818系列硅,锗或铟镓砷半导体探测器中的任何一种来完成100 fW-2 W范围内的低功率测量。

可以使用Newport的818T系列风冷热电堆探测器进行10 mW-300 W范围内的大功率测量,从而可以在0.19-11 µm的波长范围内进行测量。

可以使用在0.19-20 µm波长范围内运行的Newport 818J系列热释电探测器进行35 nJ-1 J脉冲激光源的能量测量。可以适应从单脉冲到2 kHz的脉冲重复率。

高级功能包括2500个数据点存储缓冲区;模拟和数字滤波;可编程采样率;移动统计;以及多达10个可召回的配置。

详细信息

Newport 1835-C High-Performance Optical Meter
Features
  • Measures Optical Power from 100 fW to 300 W
  • Pulsed and Integrated Energy Measurements
  • Bright Vacuum Fluorescent Display
  • Analog Bar Graph with 10X Zoom
  • Both RS-232C and IEEE-488 Interfaces
  • Audible Beep on Pulse Arrival
  • Trigger In/Out Control with Alarm Levels
Description
Whether your application requires measurement of low-power, high-power or energy of continuous or pulsed light sources, Newport’s Model 1835-C will do the job.

DC, peak-to-peak and pulse measurements can be displayed in units of W, dBm, dB, J, Ergs, A, and V.

Low-power measurements, in the 100 fW-2 W range, can be accomplished with any one of Newport’s 818 Series silicon, germanium or indium gallium arsenide semiconductor detectors, covering 190-1800 nm wavelengths.

High-power measurements, in the 10 mW-300 W range, can be performed with Newport’s 818T Series air-cooled thermopile detectors, enabling measurements in the 0.19-11 µm wavelength range.

Energy measurements of pulsed laser sources, from 35 nJ-1 J, can be taken with Newport’s 818J Series family of pyroelectric detectors, operating in the 0.19-20 µm wavelength range. Pulse repetition rates from single shot to 2 kHz can be accommodated.

Advanced features include a 2500 data point storage buffer; analog and digital filtering; programmable sample rates; moving statistics; and up to 10 recallable configurations.Whether your application requires measurement of low-power, high-power or energy of continuous or pulsed light sources, Newport’s Model 1835-C will do the job.

DC, peak-to-peak and pulse measurements can be displayed in units of W, dBm, dB, J, Ergs, A, and V.

Low-power measurements, in the 100 fW-2 W range, can be accomplished with any one of Newport’s 818 Series silicon, germanium or indium gallium arsenide semiconductor detectors, covering 190-1800 nm wavelengths.

High-power measurements, in the 10 mW-300 W range, can be performed with Newport’s 818T Series air-cooled thermopile detectors, enabling measurements in the 0.19-11 µm wavelength range.

Energy measurements of pulsed laser sources, from 35 nJ-1 J, can be taken with Newport’s 818J Series family of pyroelectric detectors, operating in the 0.19-20 µm wavelength range. Pulse repetition rates from single shot to 2 kHz can be accommodated.

Advanced features include a 2500 data point storage buffer; analog and digital filtering; programmable sample rates; moving statistics; and up to 10 recallable configurations.Whether your application requires measurement of low-power, high-power or energy of continuous or pulsed light sources, Newport’s Model 1835-C will do the job.

DC, peak-to-peak and pulse measurements can be displayed in units of W, dBm, dB, J, Ergs, A, and V.

Low-power measurements, in the 100 fW-2 W range, can be accomplished with any one of Newport’s 818 Series silicon, germanium or indium gallium arsenide semiconductor detectors, covering 190-1800 nm wavelengths.

High-power measurements, in the 10 mW-300 W range, can be performed with Newport’s 818T Series air-cooled thermopile detectors, enabling measurements in the 0.19-11 µm wavelength range.

Energy measurements of pulsed laser sources, from 35 nJ-1 J, can be taken with Newport’s 818J Series family of pyroelectric detectors, operating in the 0.19-20 µm wavelength range. Pulse repetition rates from single shot to 2 kHz can be accommodated.

Advanced features include a 2500 data point storage buffer; analog and digital filtering; programmable sample rates; moving statistics; and up to 10 recallable configurations.

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