Sure-Flex PVC System
Sure-Flex PVC is installed over a steel deck using a fully adhered attachment method. This design delivers maximum redundancy with multiple protective layers, exceptional fire resistance, and long-lasting durability.
The Carlisle Experience
Carlisle SynTec Systems combines deep industry expertise with advanced technology to deliver high-performance roofing and insulation solutions for today’s data centers. As part of Carlisle’s integrated building envelope portfolio, our sustainable, labor-saving systems are designed for maximum energy efficiency, durability, and ease of installation and are backed by decades of innovation and proven results.
Carlisle SynTec Systems' fully integrated assemblies combine single-ply membranes with metal, insulation, adhesives, and cover boards to create complete, high-performance systems. Each assembly is rigorously tested for long-term durability, code compliance, and energy efficiency. With PVC, TPO, and EPDM options, specifiers have the flexibility to meet project-specific requirements without compromising compatibility or warranty coverage. Supported by insulation and fastening strategies that ensure thermal continuity and structural integrity, we deliver assemblies engineered to protect, perform, and endure.
Polyvinyl Chloride (PVC) systems are valued for their ability to resist chemicals, grease, fire, and punctures, making them a reliable option for a broad range of building types. Carlisle SynTec Systems' Sure-Flex PVC membrane is an advanced-formula, heat-weldable system designed for superior weatherability and performance. Sure-Flex PVC creates a monolithic roof assembly built for lasting protection, delivering exceptional strength while ensuring consistent, watertight welds. PVC systems are best for mission-critical data centers where strength and long-term performance are non-negotiable.
Learn More About PVC MembranesThermoplastic Polyolefin (TPO) membranes represent the largest and fastest-growing segment in the commercial roofing industry. Known for solar reflectivity and heat-welded seams, TPO systems deliver long-term durability, resistance to heat and UV exposure, and energy efficiency. Carlisle SynTec Systems' Sure-Weld TPO is engineered with the industry-leading OctaGuard XT™ weathering package for unmatched long-term performance. TPO is ideal for new construction, re-roofing, and energy-conscious data center projects.
Learn More About TPO MembranesEthylene Propylene Diene Monomer (EPDM) has a molecular bond that gives the membrane its superior strength, elasticity, and weathering performance. In 1961, Carlisle SynTec Systems revolutionized the commercial roofing industry with Sure-Seal EPDM. Sure-Seal delivers elasticity and superior durability that outperforms other single-ply membranes in longevity, flexibility, maintenance, UV- and ozone-resistance, ease of installation, environmental impact, and risk mitigation. As a result, Sure-Seal EPDM is an ideal system for risk mitigation in mission-critical data center facilities seeking lifecycle performance and reliability.
Learn More About EPDM Membranes
Managing water intrusion is essential to preventing outages, corrosion, and long-term operational issues. Carlisle SynTec Systems has partnered with Detec Systems to facilitate precise electronic leak detection (ELD) to identify breaches, holes, and seam voids in roofing systems. Designed for reliability and precision, active leak detection supports uptime-critical environments.
In data centers, every second counts. Carlisle SynTec Systems' Productivity Boosters are purpose-built solutions that help applicators move faster without compromising reliability. From high-performance adhesives and pre-assembled components to tools that reduce labor, Carlisle can help boost efficiency and keep data center construction on track. Faster builds, dependable materials, and uptime-critical design; it’s what we do best.
Please fill out the form below and we will connect you with the appropriate person on our design services, project review, or strategic accounts teams.