LR2RC1000 Fuel Cell Coater

€152,293.00

With a substrate processing width of up to 305 mm, you are well-prepared to advance the R&D processing of fuel cells , enabling efficient pilot-scale production of fuel cell technology.

Quantity:
Add To Cart

With a substrate processing width of up to 305 mm, you are well-prepared to advance the R&D processing of fuel cells , enabling efficient pilot-scale production of fuel cell technology.

With a substrate processing width of up to 305 mm, you are well-prepared to advance the R&D processing of fuel cells , enabling efficient pilot-scale production of fuel cell technology.

Accelerate Battery Innovation Today

The LR2RC1000 Fuel Cell Coater enhances your ability to experiment and refine fuel cell technology while also enabling the seamless transition of your research to pilot production.

What’s Included:

Key Features

  • Compact Size: Fits in laboratories without additional infrastructure.

  • Customizable: Choose from a variety of lengths and widths, with numerous components available.

  • Easy and Fast Exchangeable Modular Components: Includes printing and coating units, drying and curing systems, foil pretreatment, laminators, trimming knives, and more.

  • Modular Drying/Curing System: Accommodates various drying and curing methods.

  • Software Control Option: Advanced control options for precision and repeatability.

  • Web Tension Control: Ensures consistent quality across runs.

  • CE Certified - CSA/UL Compliant: Meets international safety standards.

Technical Specifications

  • Operating Power: Three-phase (400VAC)

  • Drying/Curing Length: 1,25 m

  • Web Width: Up to 305 mm

  • Web Speed: 0.05-2.8 m/min (forward and reverse).

Why Choose the LR2RC1000 Fuel Cell Coater?

  • Comprehensive Capabilities: The combination of advanced components (like slot-die head, Edge guide, pump, corona, and oven systems) allows you to conduct a wide range of experiments, from double sided slot-die coating to preprocessing of Cu foil, all in one system.

  • Scalability: Designed for roll-to-roll (R2R) applications, this system facilitates the transition from lab-scale experiments to larger-scale production, crucial for commercial viability of printed batteries.

  • Cost-Effective Research: By integrating multiple functions and reducing the need for additional equipment, this system can help lower overall research and development costs while maximizing efficiency.

  • Customizable and Modular: With modular components, the setup can be easily adapted to fit your specific requirements, making it the ideal platform for diverse applications.