Range of wall mounted overhead showers incorporating stainless steel strainers and flow regulator in the inlet. Open outlet use only.
Range of overhead shower outlets (chrome plated brass bodies) incorporating NBR ‘O’ rings.
Non-metallic materials and components comply with BS6920 at 65°C
Range of shower outlets (brass or stainless-steel bodies – various finishes) incorporating EPDM O-rings. Maximum operating temperature 60.0°C
Non-metallic materials and components comply with BS6920 at 60°C
Range of Y type strainers with blue epoxy coated ductile iron bodies and EPDM ‘O’-rings. Maximum working pressure 25.0 bar. Maximum operating temperature 85°C
Self-closing basin pillar taps (chromium plated brass), incorporating a non-concussive headwork. Outlet incorporates plastic flow straightener. Supplied with metal backnuts. Maximum working pressure 8 bar. Cold water use only.
‘Luxor type PEX’, range of stainless steel braided hose assemblies with various end connections. Maximum working pressure 10.0 bar.
Non-metallic materials and components comply with BS6920 at 70°C
Range of stainless steel, PVC and nylon braided shower hoses (various finishes), incorporating PVC, EPDM or PEX liners and various end connections.
Range of stainless steel braided, EPDM lined flexible hose assemblies with various brass end connections. The hoses are supplied with EPDM O-rings or washers. Maximum working pressure 10.0 bar.
Non-metallic materials and components comply with BS6920 at 85°C
Wall mounted, concealed, manually operated blending valve with a DZR brass body and chromium plated trim, incorporating a ceramic cartridge headwork and single lever operating member. Maximum working pressure 10.0 bar.
Non-metallic materials and components comply with BS6920 at 70°C
Range of wall mounted, concealed, thermostatic shower valves incorporating ceramic disc diverter headworks controlling the flow with dome type operating member. The temperature is controlled independently via a thermostatic cartridge, with dome, cube or single lever operating members that also incorporate a manual override button.. The inlets incorporate a stainless steel strainers and approved check valve cartridges, however, the complete product has not been fully tested to demonstrate it provides backflow protection. Maximum working pressure 5.0 bar.
Non-metallic materials and components comply with BS6920 at 85°C
Range of high pressure and low pressure thermostatic mixing valves. Flow is controlled by a solenoid valve and temperature is thermostatically controlled. Low pressure models incorporate a pump. The inlets of the valves incorporate an isolation valve, stainless steel strainer and a single check valve cartridge however, the complete assembly has not been tested to demonstrate it provides adequate backflow protection. The valves can be supplied with a shower rail, hose, handshower and/or ceiling mounted shower outlet. Valves with ‘HP’ in model have a maximum working pressure of 5.0 bar. All other valves marked with ‘LP’ have a maximum working pressure of 1.0 bar.
Non-metallic materials and components comply with BS6920 at 45°C
Range of concealed, thermostatic blending valves with 2 or 3 shower outlets, incorporating a thermostatic cartridge controlling the temperature with a dome type operating member that incorporates a manual override button and ceramic disc diverters or quarter turn ceramic disc headworks controlling the flow with dome type operating members. The products incorporate an approved check valve cartridge; however, the complete product has not been fully tested to demonstrate it provides backflow prevention. Maximum working pressure 10.0 bar.
Non-metallic materials and components comply with BS6920 at 60°C
Range of wall mounted thermostatic bar shower mixers (chrome plated brass bodies), incorporating either a ¼ turn ceramic disc headwork or a 2-way manual diverter to control the flow to either 1 or 2 outlets (see models) with either dome type, single lever or cube type operating members (see models). The temperature is controlled independently via a thermostatic cartridge with either a dome type, single lever or cube type (see models) operating member that incorporates a manual override button. The inlets incorporate stainless-steel strainer and approved check valve cartridges; however, the complete product has not been fully tested to demonstrate it provides backflow protection. Maximum working pressure 5.0 Bar.
Non-metallic materials and components comply with BS6920 at 65°C
Range of wall mounted, concealed, thermostatic blending valves with (brass bodies - various finishes, see models). The temperature is controlled via a thermostatic cartridge with single lever, cross top or cube type operating members incorporating a manual override button. Both inlets incorporate a stainless-steel strainer and an approved check valve cartridge however, the complete product has not been fully tested to demonstrate it provides backflow protection. Maximum working pressure 10.0 Bar.
Non-metallic materials and components comply with BS6920 at 70°C
Range of concealed, wall mounted, thermostatic blending valves, (brass bodies, chrome trim sets). The products can consist of quarter turn ceramic disc or detent headworks, two-way diverter cartridges and a thermostatic cartridges (see models). All models incorporate approved check valve cartridges, however, the complete product has not been fully tested to demonstrate it provides backflow protection. Maximum working pressure 10 bar.
Non-metallic materials and components comply with BS6920 at 65°C
Range of wall mounted thermostatic bar shower mixers (chrome plated brass), incorporating a quarter turn ceramic disc headwork with dome type operating members. The temperature is controlled independently via a thermostatic cartridge with dome type operating members that incorporate a manual override button. The inlets incorporate stainless-steel strainer washers and approved check valve cartridges; however, the complete product has not been fully tested to demonstrate it provides backflow protection. Maximum working pressure 10.0 bar.
Non-metallic materials and components comply with BS6920 at 85°C
Range of exposed and conceled thermostatic mixing valves with brass bodies (chrome plated or finished for concelled). Incorporating single check valves at the inlets, however the complete product has not been fully tested to demonstrate it provides backflow protection. Maximum working pressure 5 bar.
Non-metallic materials and components comply with BS6920 at 60°C
Range of wall mounted, thermostatic shower valves, (brass bodies - various finishes), incorporating a ceramic disc diverter cartridges controlling the flow with dome type operating members. The temperature is controlled independently via a thermostatic cartridge with a dome type operating member that incorporates a manual override button. The inlets incorporate approved check valve cartridges, however, the complete product has not been fully tested to demonstrate it provides backflow protection. The product is supplied with an overhead shower, shower hose, handset and riser rail assemblies. Maximum working pressure 10 Bar. Maximum operating temperature 60 °C
Non-metallic materials and components comply with BS6920 at 60°C
Range of wafer and lug type butterfly valves incorporating blue epoxy coated ductile iron bodies, either stainless steel (SS316/SS304) or epoxy coated ductile iron discs and EPDM seat. Maximum working pressure 16.0 bar Maximum operating temperature 85°C.
Range of lugged and wafer type butterfly valves with blue epoxy coated bodies, incorporating EPDM rubber ‘O’-rings and seat, and either a bronze (AB2), stainless steel (CF8 & CF8M) or blue epoxy coated or nickel plated, ductile iron (DI) disc. Maximum working pressure 25.0 bar. Maximum operating temperature 85°C.
Page 167 of 391
We use cookies to give you the best possible experience with WRAS. Some are essential to provide website functions and ensure the website is secure. We also use cookies to help us understand how people use the site and to make improvements. Click "Accept All" to enable recommended settings or click "Manage cookies" to adjust your settings. For more details, see our Cookie Policy.