Carisa "Sophia" Black Aluminium Designer Horizontal Radiators (3 Sizes)
The Sophia aluminium radiator with its slimline, square tube extrusions and multiple sizes are not only functional for heat transfer but also fit perfectly into a wide range of interior designs.
Data sheet
- Outer Finish
- Textured Black Powder Coating
- Height (mm)
- 600mm
- Width (mm)
- 499mm, 667mm, 835mm
- Design
- Sophia
- Colour Family
- Black
- Material
- Aluminium
- Output BTUs
- 1404, 1872, 2340
- Output Watts
- 412, 707, 884
- Tube Bar Pattern
- 12, 16 or 20 Sections
- Fixing Kit
- Supplied with Wall Mounting Brackets, Bleed Valve & Blank Plug
- Guarantee
- 10 Years
- Projection
- 95mm
- Pipe Centres
- Width of Radiator plus Valves
- Socket Width
- 1/2" BSP
- Fuel Type
- Central Heating
- Brand
- Carisa Radiators
Why are CARISA Radiators at the forefront of Designer Heating technology?
With a wealth of experience in the manufacture of reliable heating solutions the Carisa range takes this to a whole new level of unrivalled performance and beauty. The striking collection has been created, crafted and hand-finished by experts, using only the finest quality materials available.
"Sophia" Designer Black Aluminium Horizontal Radiators
Available Models:
Sophia 499mm(w) x 600mm(h) - 12 Sections (1404 BTUs)
Sophia 667mm(w) x 600mm(h) - 16 Sections (1872 BTUs)
Sophia 835mm(w) x 600mm(h) - 20 Sections (2340 BTUs)
Quality & Performance:
- Manufactured from High Quality Aluminium.
- All products tested to EN442, the harmonised European Standard.
- Tested to 10 bar of Pressure.
- 10 Year Manufacturer Guarantee.
- Textured Black Finish (RAL 9005)
- Standard 1/2" BSP threaded valve connections.
- Supplied with Brackets, Blanking Plugs, Airvents, Fixing Screws and Raw Plugs, Bleed Key.
Returns:
Please Note: Due to the bespoke nature of the CARISA range of products any returns would be subject to a standard Restocking Fee.
Some of our other product ranges.
This is just a guide for reference only, rooms may require more than one radiator. If this applies to you, divide the required output between the number of radiators required. All figures given are for Delta T 50°