Perma-Tite Fascia and Coping

Perma-Tite System 200 Fascia offers exceptional protection for your single-ply roof system. Key features include: Snap-on cover eliminates...

Perma-Tite System 200 Fascia provides your single-ply roof system with:  Crimping method for securement  Dual attachment points on the face and...

Perma-Tite System 200 Fascia offers durable protection for your BUR or modified roof system. Key features include: Snap-on cover that eliminates...

Perma-Tite Gold Coping offers the ideal solution for parapet conditions. Key features include: Full snap-on design with no exposed fasteners...

Perma-Tite Coping provides an excellent solution for parapet conditions. Key features include: Full snap-on design with no exposed fasteners...

Perma-Tite Continuous Cleat Coping provides durable protection with these key features: Backed by a 20-year, 120 MPH Wind Warranty. 20-gauge...

Perma-Tite Cantilever Coping is an ideal solution for attachment to parapet walls with non-structural exterior facades. Key features include...

Perma-Tite Cantilever Coping is the perfect solution for: Backed by a 20-year, 120 MPH Wind Warranty. Unique support saddle adds extra...

Perma-Tite Double Tapered Coping is the ideal solution for larger wall widths. Key features include: Snap-on cover with no exposed fasteners...

Arched Coping is the ideal complement to all our coping systems. Key features include: Custom-fabricated sizes to meet specific job requirements...

Perma-Tite Expansion Joints are ideal for: Allowing thermal movement and condensation control between two roof systems. Preventing condensation...

Perma-Tite Expansion Joints are ideal for:   Allowing thermal movement between a roof system and a terminating wall Preventing condensation by...

Perma-Tite Expansion Joints are ideal for: Allowing thermal movement and condensation control between two roof systems. Preventing condensation...

Perma-Tite Expansion Joints are ideal for: Allowing thermal movement between a roof system and a terminating wall. Preventing condensation by...