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UV Curing System for UV Ink

Model: UVSE-12R6-W
Various Sizes

UVET company’s 260x40mm series UV LED lamps provide up to 20W/cm2 UV intensity. The optional wavelengths include 385nm and 395nm. It provides curing solutions for various UV printing systems with fast, efficient and energy-saving features.

 

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UV curing system for UV ink
UV curing system for UV ink
UV curing system for UV ink
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UV curing system for UV ink
UV curing system for UV ink
UV curing system for UV ink
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High Energy Density

Complete Certification

Multiple Application

Specifications

Part No. UVSE-12R6-W Wavelength 385nm, Intensity 20W/cm2
Part No. UVSN-12R6-W Wavelength 395nm, Intensity 20W/cm2
UV Technology COB UV modules
Irradiation Area 260x40mm
Heat Dissipation Water cooling
Main Application High-speed printing
  • Descriptions
    xiajiantou

    UVET's 260x40mm series LED UV curing lamps are tailored to meet the demands of UV glue curing and other high-performance curing tasks. The fast, effective, and energy-saving solutions provided through these lamps are best utilized with the wide-ranging applications of UV printing systems. The output of the lamps is impressive as well, with a UV intensity of up to 20W/cm² and a wavelength of either 385nm or 395nm.

    The capablities of this lamp extend to UV inkjet printing, 3D printing, digital printing, screen printing among others, showcasing unparalleled flexibility in application. Users are provided with enhanced control over curing conditions through independently adjustable irradiation time and UV intensity. Additonally, it’s easy-to-integrate and compact design allows for effortless installation into new or existing printing systems.

    Key Features

    • Excellent high power output uniform curing with rapid burst intervals.
    • Available wavelengths of 385nm and 395nm cater to specialized applications
    • Adjustable exposure duration and UV intensity for greater performance.

    Why It’s Unique

    • Active ink curing and UV glue bonding for highspeed production.
    • Reduced operational costs due to energy division algorithms.
    • Built for easy incorporation into various printers and platforms.

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