Wall mounted shower outlet (brass body – various finishes). The product is supplied with shower hose and handset that incorporates an approved check valve cartridge, however, the complete product has not been fully tested to demonstrate it provides backflow protection.
Non-metallic materials and components comply with BS6920 at 60°C
Range of overhead showers consisting of stainless steel bodies and silicone nozzles and gaskets and shower handsets consisting of ABS (LB-2003N, LB-2003, LB-2004) or brass bodies (LB-2006 & LB-2028).
Non-metallic materials and components comply with BS6920 at 60°C
Range of shower outlets with brass bodies (various finishes) and NBR ‘O’-rings. Maximum working pressure 5.0 bar.
Non-metallic materials and components comply with BS6920 at 65°C
Range of shower handsets with chrome plated plastic bodies. Some models incorporate a plastic aerator at the outlet of the shower and/or a plastic flow regulator and strainer on the inlet.
Non-metallic materials and components comply with BS6920 at 60°C
Range of shower handsets, (plastic bodies – various finishes) incorporating a plastic flow regulator in the inlets.
Non-metallic materials and components comply with BS6920 at 65°C
Range of wall and ceiling mounted shower arms with (brass bodies - various styles and finishes). Maximum operating temperature 60°C. Open outlet use only.
Non-metallic materials and components comply with BS6920 at 60°C
Shower handset with a chromium plated plastic body.
Non-metallic materials and components comply with BS6920 at 60°C
Range of draining taps with DZR brass, brass or chrome plated brass bodies. Incorporating a rising spindle headwork, EPDM or NBR seals and washers. Maximum working pressure 16.0 bar.
Non-metallic materials and components comply with BS6920 at 85°C
Range of draining taps with DZR brass, brass or chrome plated brass bodies. Incorporating a rising spindle headwork, EPDM or NBR seals and washers. Maximum working pressure 16.0 bar.
Non-metallic materials and components comply with BS6920 at 85°C
Range of wall mounted hose union taps (brass body or DZR brass body - see model) incorporating a non-rising spindle headwork with a ‘T’-type operating member. The CMBHUBDC-D model incorporate two approved single check valve cartridges, however the complete product has not been fully tested to demonstrate it provides backflow protection. Maximum working pressure 14.0 Bar. Maximum operating temperature 85°C.
Range of wall mounted, two hole (models BT1714WSA & BT1714BH-WSA) or single hole (model BT3100-232SWSA) laboratory taps incorporating brass bodies and rising spindle headwork with either dome type or single lever operating members. Models BT1714WSA & BT1714BH-WSA have a swivel spout with a hose union connection. Model BT3100-232SWSA has two fixed hose union connections attached to the main body. The products are supplied with a metal backnut. Maximum working pressure 10.0 Bar.
Non-metallic materials and components comply with BS6920 at 85°C
Range of deck mounted, two hole (models BT1614-55WSA & BT1624WSA) or single hole (models BT414-55 & BT424), single outlet (swivel) laboratory taps incorporating brass bodies and rising spindle headworks with either dome type or single lever operating members. The spout outlets incorporate a plastic aerator and the products are supplied with a metal backnut. Maximum working pressure 10.0 Bar.
Non-metallic materials and components comply with BS6920 at 85°C
Range of deck mounted, single hole, single outlet (fixed or swivel) laboratory taps incorporating brass bodies and rising spindle headwork with either dome type or single lever operating members. The spout outlets incorporate a plastic aerator and the products are supplied with a metal backnut. Maximum working pressure 10.0 Bar.
Non-metallic materials and components comply with BS6920 at 85°C
Range of wall mounted, two hole, single outlet (swivel) laboratory taps incorporating brass bodies and rising spindle headwork with either dome type or single lever operating members. The spout outlets incorporate a plastic aerator and the products are supplied with a metal backnut. Maximum working pressure 10.0 Bar.
Non-metallic materials and components comply with BS6920 at 85°C
Range of pillar tap (chrome plated brass), incorporating quarter ceramic disc headworks with single lever or dome type operating members. The spout outlets incorporate plastic aerators. Products are supplied with metal backnuts. Maximum working pressure 10.0 bar.
Non-metallic materials and components comply with BS6920 at 65°C
Range of pillar taps ( brass bodies – various finishes), incorporating quarter turn ceramic disc headworks with various type operating members. The spout outlets incorporate plastic flow straighteners (except models 173601 & 173602 that have open outlets) and the products are supplied with metal back nuts. Maximum working pressure 10 bar. Maximum operating temperature 85°C.
Range of pillar tap (chromium plated brass bodies), incorporating quarter ceramic disc headworks with single lever, cross-top or dome type operating members. Model (F6128) incorporates an open spout outlet, all other spout outlets incorporate plastic aerators. Products are supplied with metal backnuts. Maximum working pressure 10.0 bar. Maximum operating temperature 65°C.
Non-metallic materials and components comply with BS6920 at 65°C
Range of self-closing valves with chromium plated brass bodies and dome type operating members. Maximum working pressure 5.0 Bar.
Non-metallic materials and components comply with BS6920 at 60°C
Range of stainless steel braided PEX lined flexible hose assemblies, incorporating EPDM O-Rings and gaskets. Maximum working pressure 10.0 bar.
Non-metallic materials and components comply with BS6920 at 70°C
Range of stainless-steel braided EPDM lined flexible hose assemblies with a variety of end connections. Some models incorporate screwdriver operated isolation valves. Maximum working pressure 16.0 bar.
Non-metallic materials and components comply with BS6920 at 85°C
Page 33 of 58
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.