- Top Mount (Compatible only with EZ-Adjust Header)
- Use Cat. No. PPH01 as Bottom Hinge
- Available in several beautiful finishes
- 3 Year Warranty
- Use monolithic tempered safety glass
- U.S. Patent 5,297,313
CRL Prima Series Pivot Hinges for shower doors are precision-engineered pivot hinges for 5/16" to 3/8" (8–10 mm) tempered safety glass. Designed to act as a top mount pivot, these brass shower door pivot hinges (model PPH06, SKU PPH06CH) are compatible only with the EZ-Adjust Header System and include the required adapter. Pivot-type hinges carry most of the door weight at the bottom and can be inset from the wall to provide clearance for towel bars and other projections. Prima Series hinges are self-centering with four springs for maximum retention strength and expanded application possibilities.
Two-hinge capacity: Using two hinges on 5/16"–3/8" (8–10 mm) glass, the hinge assembly will support up to 100 lbs (45 kg) with a maximum door width of 31" (787 mm).
SPECIFICATIONS:
Glass Thickness: 5/16" (8 mm) to 3/8" (10 mm) tempered safety glass
Special Features: Top-and-bottom mount design exposes more glass and reduces required cut-outs versus standard side-mount glass-to-glass hinges. Cat. No. PPH01 can be mounted floor-and-ceiling or floor-and-header. PPH06 is specifically for use with the EZ-Adjust Header System.
Construction: Solid brass for durability and corrosion resistance
Hinge Swings: Full rotation
Closing Type: Self-centering within 15° of closed position
Cut-Out Notes: PPH135 also requires two holes; PPH07 requires cut-out for hinge plus hole for clamp.
Includes: Gaskets, screws, and glass fabrication dimensions
Patented: U.S. Patent No. 5,297,313
Custom finishes available on request. Contact the CRL Technical Sales Department.
Product Warning:
CRL Shower Door Hinges are intended for residential or hotel shower use only. For other applications, obtain approval from CRL Shower Door Technical Sales. Use only the template included with this hinge; cut-out dimensions may differ from other brands.
Shipping weights are approximate. For