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PL-MW2000 Optical power meter

PL-MW2000强光光功率计

Column:搭配使用Brand:PerfectlightViews:4983
PL-MW2000 Optical power meter
  • Introduction
  • Application
  • Literature
  • Maintenance

In order to ensure the repeatability and accuracy of the photocatalytic experiments, it is necessary to measure the light radiation intensity using a light power meter before each photocatalysis experiment. Different models of light power meters need to be selected based on the intensity of the light source and the spectral distribution.

The PL-MW2000 high-power light power meter is designed by our company specifically for high-power light sources, with a measurement range of 20W. Its unique detachable light filter design makes it easy to use for different application scenarios. When the energy is below 5W, it can be measured directly without using the light filter. If the energy is greater than 5W, adding the light filter can achieve light power measurements up to 20W.

 

Main Technical Specifications

● Spectral Range: 200~11000 nm; The spectral response is relatively uniform, suitable for measuring light with a certain intensity without interference from other wavelength bands;

● Measurement Range: 0~20 W;

● Measurement Accuracy: 1 mW;

● Probe Diameter: Φ20 mm;

● Measurement Error: <±2.5%;

● Operating Voltage: 9 VDC;

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  • [3]Pan R L, Yuan J L, Huang X, Liu Q, Cui Y Y, Wu B. Engineering Conjugated Tetrone-Imide-Linked Tubular Carbon Nitride for Boosting Kinetics of Overall Water Splitting[J]. Advanced Functional Materials, 2025. DOI: 10.1002/adfm.202513118.
  • [4]Liu X, Su Y C, Ma Q H, Feng M N, Wang K, Li Y D, Luo J H. Developing Co–Ni Dual-Atom Catalysts with Synergistic Redox Capacity via Coordination Self-Assembly and Planar Extension Growth[J]. *Chemical Engineering Journal*, 2025.
  • [5]Liu X, Su Y C, Ma Q H, Feng M N, Wang K, Li Y D, Luo J H. Developing Co–Ni dual-atom catalysts with synergistic redox capacity via coordination self-assembly and nano-confinement effect[J]. Chemical Engineering Journal, 2025, 524: 168917.
  • [6]Wu B H, Li X Y*, Hou T L, Chen X B, Wang J L, Li S Y, Chen A K, Zhu C W, Zhang X R, Ou H H, Wang Y O, Wang D S, Zhang J T*. Oxygen-bridged Cu and V dual metal sites for enhanced photo-oxidative coupling of benzylamine[J]. Journal of the American Chemical Society, 2025, 147(51): 46997-47007. DOI: 10.1021/jacs.5c11918.
  • [7]Siming Wang, Qi Zhang, Chou-Hung Hsueh, Yujia Li, Hang Su, Meichi Chong, Jingyi Xu, Jiaming Zhang, Enwei Zhu, Junshan Li, Xiaolin Zhu, Yongfa Zhu. Linker nitrogen tunes charge polarity to strengthen built-in electric fields in covalent organic frameworks for photocatalytic oxidation[J]. Angewandte Chemie International Edition, 2026, DOI:10.1002/anie.5791449.
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