BeamWatch® Integrated

BeamWatch Integrated 150

Strahlprofilmessgerät für die automatisierte Fertigung
  • Laserleistung, Strahlkaustik und Fokusshift automatisch in Echtzeit messen
  • Unterstützt Multimode-Laser
  • Vollständig automatischer Betrieb
  • Trendanalyse mit gut/schlecht Signal
  • Detaillierter Bericht mit Zeitstempel
  • Unterschiedliche Schweißkopf-Typen können parallel verwendet werden
  • Robuste Konstruktion für industrielle Fertigungsumgebungen
  • Kurze Messzeiten für regelmäßige Messungen bei Schichtbetrieb


  • 980-1080 nm
  • 500 W – 9999 W (up to 30 kW on request)
  • ISO 11146 Measurements
  • NIST traceable calibration ±3 %
  • 12.5 mm
  • GigE, PROFINET, EtherNet/IP, CC-Link
  • CE, UKCA, China RoHS
Need help finding the right beam profiler? Try our Beam Profiler Finder


  • BW-Integrated-150-NIR-155-ProfiNet


    BeamWatch Integrated for multi-mode lasers support ProfiNet protocol

    Angebot anfragen
  • BW-Integrated-150-NIR-155-EtherNet/IP


    BeamWatch Integrated for multi-mode lasers support EtherNet/IP protocol

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  • BW-Integrated-150-NIR-155-CC-Link


    BeamWatch Integrated for multi-mode lasers support CC-Link protocol

    Angebot anfragen
  • BeamWatch Integrated

    The system can be manually operated by PC using BeamWatch, our full-function software with an extensive set of ISO quantitative propagation measurements, NIST calibrated power measurements, graphical representations of the beam caustic. Requires user supplied PC.
    The system can alternatively be operated automatically by PLC using PROFINET, EtherNet/IP or CC-Link. Tolerances and limit values can be set-up for desired measured parameters to trigger corrective actions. The trend charts give insights for early problem detection and predictive maintenance.
    In both cases PDF and CSV reports can be generated.

    PROFINET InstallationGSDML File
    To install the BeamWatch Integrated into a PROFINET network, download the GSDML file and follow the instructions in the manual


Tutorials and Articles

How to Make Laser Welding and Cutting Affordable and Sustainable

Contactless Monitoring of the Focus Increases Product Quality Weiterlesen...

White Paper – ISO compliance of non-contact, real-time beam analysis

1. IntroductionDuring the past decade laser power levels used in production applications has risen significantly. Today, welding systems are commonly using laser power in the range of multiple kilowatts. To deliver continuously high product quality, the key parameters of the laser beam must be measured on a regular basis. Ophir has tackled the task and developed a non-contact measurement technology based on the Rayleigh scattering. The technology used in the BeamWatch laser beam profilers enables the measurement of high-power beams without ever touching the laser beam. As the technology is Weiterlesen...

White Paper - The challenge of battery production

Optimizing and Controlling Laser Processes Right from The Start Weiterlesen...

White Paper – Keeping Your Additive Manufacturing Laser in Spec

There is little debate about how Additive Manufacturing is adding benefits and changing the face of manufacturing in our modern age. Additive Manufacturing allows for the manufacturing of more customized parts, using more specialized materials, and will eventually create a more localized, rapid, and agile distribution network than what have been used to. Weiterlesen...

Laser Measurements in Materials Processing: How and When They Absolutely, Positively Must Be Made

19th century British physicist and engineer William Thomson, 1st Baron Kelvin, was the first to say, “If you can’t measure it, you can’t improve it.” When applying this principle to improving laser-based processes, there are a variety of parameters that must be measured. Given the continuously rising power of laser systems in material processing, the requirements for measurement systems are more challenging than ever. Which technologies are available to measure high-power lasers? How often should they be measured? What measurements should be tracked? When this data is collected, what should be done with it? Weiterlesen...


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