Curing Technology Exchange System

The Key Technology For Upgrading UV Curing System and Handling Flexible Printing Requirements

Mercury & LED exchange technology

Experience the cutting-edge innovation of IUV's Mercury & LED Exchanging Curing Technology, offering seamless switching between mercury UV lamps and LED UV lamps in a single curing system.

Key Features

  • One power module with two software algorithms enables automatic switching based on load, supplying power to mercury lamps or LED light sources as needed.

  • Freely plug and unplug two lamp boxes, with the system automatically identifying the type. No manual intervention required, allowing for flexible switching to meet diverse curing needs and boost production efficiency.

  • In IUV's UV retrofit process, the UV & LED hybrid interchanging technology not only adds convenience and flexibility to your workflow but also significantly reduces costs.

What is IUV's Mercury & LED Exchanging Curing Technology

Versatility and Efficiency

Mercury @ LED Technology Exchange System
Mercury @ LED Technology Exchange System

Automatic switching between mercury UV lamps and LED UV lamps in a single curing system

Elevate your curing capabilities with IUV's technology, providing adaptability for various applications, materials and production processes in the printing, coating, and converting industry.

Why You Need a Mercury & LED Exchanging UV Curing System

Flexibility

A Mercury and LED exchanging curing system allows seamless switching between mercury UV lamps and LED UV lamps within the same system. This flexibility enables adaptation to different curing requirements, materials, or ink types, ensuring optimal curing effectiveness for each application.

Compatibility

Different printing groups may use various inks that require specific curing systems. With a Mercury and LED exchanging system, easily switch between technologies to accommodate the needs of different printing groups or ink types.

Curing Technology Exchange System
Curing Technology Exchange System

Seamless Production Switching

Efficiently replace the curing system without compromising work efficiency, enabling smooth transitions between different production processes. The system automatically recognizes the lamp type, eliminating manual settings and reducing downtime during switching.

Considerable Energy Savings

Utilize LED UV lamps' energy efficiency to maximize energy conservation and reduce costs in your curing process compared to mercury UV lamps.

UV curing technology exchange system
UV curing technology exchange system

Mercury & LED exchanging curing system offers versatility, compatibility, seamless production switching, energy and cost savings, making it a valuable solution for various printing processes and materials.

Cost Savings

Optimize the curing process by using the most efficient technology for each application, leading to reduced waste and improved production efficiency. Additionally, LED UV lamps' longer lifespan results in lower maintenance and replacement costs.

Mercury & LED Curing Technology Exchage System
Mercury & LED Curing Technology Exchage System
IUV curing solutions

Flexographic, Offset and Digital Applications

How Does the UV LED & Mercury Exchanging System Work

IUV employs a unique technology utilizing interchangeable lamps for independent production and a smooth current flow. This innovation maintains a constant chip current, effectively reducing the failure rate.

Key Features of IUV's Technology

  • Adjustable power capability from 1% to 100%, allowing automatic power output adjustment based on printing speed.

  • Seamless interchangeability between supplying power to mercury lamps and LEDs, providing flexibility for various curing materials.

  • Advantages include flexible and efficient power supply control, the ability to switch between LED and mercury lamps, and automatic software identification.

Contact UPT Group, your authorized IUV partner, for valuable insights and assistance in choosing the ideal UV curing system for your application.

These features eliminate unnecessary operations, significantly improving efficiency and enhancing adaptability to different materials.