DOGUSANZ E750 TYPE I

DOGUSANZ E750 TYPE I is a premium 750 g/m² PVC-coated architectural membrane from Doğusan, engineered with Low Wick technology and a specialized 2PVDF-1A (SANZ) glossy lacquer. Built on a high-tenacity 1100 dtex polyester base, it provides a consistent 3000 N breaking strength and 300 N tear resistance. It features comprehensive global flame retardancy certifications and excellent UV resistance with a 7-8 light fastness rating. Operating securely between -40°C and +70°C, this material is an exceptionally durable, self-cleaning structural solution optimized for permanent tensile architecture and canopies.

 

 

Description

DOGUSANZ E750 TYPE I: Advanced Tensile Architecture Textile

DOGUSANZ E750 TYPE I, manufactured by Doğusan, is a high-performance PVC-coated fabric engineered for the demanding Tensile Architecture sector. With a robust total weight of 750 g/m² and a high-tenacity 1100 dtex polyester base, it provides an excellent balance of structural strength and long-term protective qualities. The defining characteristics of this “TYPE I” architectural membrane are its specialized 2PVDF-1A (SANZ PVDF) lacquering, Low Wick technology, and strict fire retardancy, making it a highly dependable solution for modern structural designs.

Key Technical Features

  • Specialized PVDF Surface: Treated with a unique 2PVDF-1A lacquering system (noted as SANZ PVDF) and a Glossy finish. This hybrid topcoat provides superior environmental resistance, dirt repellency, and longevity compared to standard acrylic finishes.

  • Low Wick Technology: Features “low wick” yarns that prevent moisture, dirt, and mold from traveling through capillary action within the base fabric, ensuring long-term aesthetic and structural integrity.

  • Comprehensive Fire Safety: Meets stringent global fire safety standards, ensuring safe deployment in public spaces and architectural projects.

  • High Mechanical Strength: Delivers a highly reliable breaking strength of 3000 N/5cm and a tear strength of 300 N in both warp and weft directions, providing secure structural stability for tensioned applications.

  • Extreme Weather Resilience: Engineered to function flawlessly in temperatures ranging from -40°C to +70°C, while maintaining a robust adhesion force of 100 N/5cm.

Primary Applications

  • Tensile Architecture: Specifically optimized for permanent and semi-permanent architectural membranes, tensioned roofs, exhibition pavilions, and structural canopies.

Product Specifications Summary

Property Specification
Product Name DOGUSANZ E750 TYPE I
Total Weight 750 g/m²
Base Fabric 100% PES / 1100 dtex
Finish 2PVDF-1A (SANZ) / Glossy
Special Features Low Wick / FR
Adhesion Force 100 N/5cm
Temperature Range -40°C to +70°C
Technical Data Sheet (TDS)

Technical Data Sheetpdf download

DOGUSANZ E750 TYPE I
Fabric DIN ISO 2060:1994 %100 PES / 1100 dtex /
Total Weight ISO 2286/2 :2016 750 g/m²
Coating PVC
Lacquering 2PVDF-1A
Embossing Glossy
Comment SANZ PVDF
Comment Low wick
Breaking strength Warp ISO 1421/1 : 2016 3000 N/5cm
Breaking strength Weft ISO 1421/1 : 2016 3000 N/5cm
Tear strength Warp DIN 53363 : 2003 300 N
Tear strength Weft DIN 53363 : 2003 300 N
Adhesion ISO 2411 : 2017 100 N/5cm
Temperature resistance EN 1876/1 : 1998 -40/+70°C
Light fastness (Except white and (half-)transparent) ISO 105 B02 : 2014 7-8
Fire behaviour_FR /

Fire behaviour_DE /

Reaction to fire_EU /

EN 13501-1 : 2018 NF P 92-507:2004 DIN 4102-1 : 1998 BS7837 1996 NFPA 701 B-s2,d0 M2 B1
Microorganism resistance ISO 846-A Degree 0, excellent
CONFORM EN 12641/2
Application >> Tensile Architecture

Disclaimer : We reserve modifications of the mentioned values for technical reasons.Values without tolerance statements are values with a tolerance of ± %5 . The information corresponds with our latest knowledge and is offered without liability.

Colors
This product is available in the following colors:
.
RAL 9010
Pure White
Disclaimer

Disclaimer

We reserve modifications of the mentioned values for technical reasons.Values without tolerance statements are values with a tolerance of ± %5 . The information corresponds with our latest knowledge and is offered without liability.