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NoblelightModel Semray PC6003 -UV LED Curing System for Optical Fiber

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Introducing the Semray UV PC6003, a UV LED curing system designed from the ground up for optical fiber draw and coloring manufacturing processes! Active in the optical fiber market since its inception, Noblelight understands your challenges and the requirements your UV curing systems need to deliver. Reliable and consistent UV curing for high quality, 24/7 continuous manufacturing operations are a must. Downtime is very costly!

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Our new Semray® UV PC6003 LED curing system, goes above and beyond to meet production speeds while reducing downtime and lowering total cost of ownership. Plus we made retrofitting existing draw towers and other fiber and cable processing lines easy and cost effective. The typical payback for retrofitting a draw tower is about 2 years.

Learn more about the advantages Semray® UV PC6003 UV LED curing systems offer.

  • Faster production speeds versus other UV LED curing systems due to higher UV output and better uniformity
  • Reduced downtime due to long operating lifetime of LEDs, optimized thermal management, and quick and easy LED array module changes
  • Easy to retrofit, drop-in replacement for existing microwave-powered UV curing systems
  • Energy cost savings of 83% due to efficient LED technology and optimized optical design*
  • Industry 4.0 ready with its embedded sensors and microprocessor data
  • Easily monitor system performance to reduce unscheduled downtime and scrap rates using optional AIMS® software
  • Lowest total cost of ownership due to lower operating and maintenance costs

*Energy savings as compared to an F600S microwave-powered UV curing system

  • Optical fiber drawing and coloring (limited formulations available now) processes
  • We fully expect the following applications will commercialize once formulations suitable to UV LED curing become available:
    • Optical fiber ribbon coating
    • Strength member rod curing
    • Wire and cable marking

  • Cooling: Internal fans
  • Wavelength: 395 nm
  • Irradiance at Target: 65-70 W/cm2
  • Uniformity: >80% at target
  • Power Output Range: 40%-100%