MagScience™ - Next-Gen Printable Magnetic Films with Lower Climate Impact, proven by verified EPD
MagScience by Digital Magnetics is a new generation of high-performance printable magnetic films engineered with both exceptional magnetic performance and a significantly lower CO₂ footprint over the full product life cycle
Key Sustainability Advantage
✔ Up to 35% lower climate impact compared to traditional magnetic PVC films over the full life cycle — from raw materials to end-of-life.
✔ Verified through a comprehensive Life Cycle Assessment (LCA) conducted according to ISO 14040/44 standards
✔ A more responsible choice for printers, brands and retailers that want to reduce carbon footprint without changing workflows and sacrificing product quality.
Performance Features — Sustainable and Strong
MagScience is thinner, lighter and easier to work with — yet maintains or exceeds performance expectations of traditional printable magnets:
- High magnetic pull force and holding power
- Better roll flatness for smoother printer feed
- HP Latex, Eco-Solvent & UV-cure compatible
- Easier cutting + mounting, including curved surfaces
- VOC-free (A+) & Class B-s1,d0 fire rating
- Reduced material use and transport weight (supporting lower emissions)
Choosing MagScience over traditional magnetic films helps your business:
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Reduce Scope 3 CO₂ emissions in your print supply chain
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Strengthen sustainability credentials in tenders and customer proposals
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Support ESG reporting and carbon strategies
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Reduce waste and material usage thanks to lighter, thinner material
Environmental Performance – Tangible, Proven Results
Verified LCA Findings:
MagScience delivers a minimum of 26% up to 35% lower CO₂ emission compared with conventional PVC magnetic films — a meaningful environmental improvement for regular sign, display, and graphic production workflows.
The EPDs are available via the International EPD® System and accessible through relevant national databases and Eco Platform, providing an unparalleled level of insight into the environmental performance of our magnetic print materials.




