The CARISA NINOVA BATH 1180×480 mm designer towel radiator in white is a functional aluminium model with increased height, designed for comfortable bathroom heating and convenient towel drying. Its 1180×480 mm size provides a generous usable surface, allowing several towels to be hung at the same time, while the vertical construction takes up minimal space in width.
The NINOVA BATH collection features a modern ladder-style design with increased spacing between the horizontal elements. This arrangement makes the towel radiator convenient for everyday use: towels, bathrobes and other textiles can be easily placed at different levels, while warm air circulates freely around the fabric and helps it dry more quickly.
Aluminium construction and high heat output
The CARISA NINOVA BATH is made of aluminium — a material with high thermal conductivity that heats up quickly once hot heat-transfer fluid begins circulating. As a result, the towel radiator starts transferring heat rapidly and helps maintain a comfortable bathroom temperature.
Aluminium has low thermal inertia, allowing the model to respond quickly to changes in the temperature of the heating system. This is particularly convenient when used with modern independent heating systems, where efficient heat distribution and precise indoor climate control are important.
1180×480 mm size for convenient towel drying
The 1180 mm height increases the usable surface of the towel radiator and makes the model a practical solution for medium-sized and spacious bathrooms. Several towels can be placed on the horizontal elements at the same time while maintaining sufficient spacing between them for air circulation.
The 480 mm width allows the towel radiator to be installed on relatively narrow sections of wall. Its vertical format is well suited for placement next to a bathtub, shower enclosure, washbasin or furniture, where using a wide horizontal heating appliance would be less convenient.
Versatile white finish
The white CARISA NINOVA BATH integrates easily into almost any bathroom interior. The neutral shade pairs harmoniously with white sanitary ware, light and dark tiles, porcelain stoneware, marble, natural stone and wood surfaces.
Thanks to its clean geometry, the towel radiator is suitable for minimalist, modern, Scandinavian and contemporary interiors. Against a light-coloured wall, the model looks neat and understated, while in a contrasting interior it highlights the clean lines and modern character of the room.
Connection to a hydronic heating system
The CARISA NINOVA BATH towel radiator is designed for connection to a standard central or independent hydronic heating system. The construction supports common connection options, including bilateral, top/bottom and diagonal connections, allowing the installation to be adapted to the position of the pipes in a specific room.
Standard 1/2" BSP connections are used. The maximum operating pressure is 10 bar, while the maximum operating temperature of the heat-transfer fluid reaches 95°C. The model is manufactured in accordance with the BS/EN 442 standard applicable to heating appliances.
Accessories and CARISA warranty
The package includes the necessary wall brackets and mounting hardware, making preparation for installation easier. Its well-designed construction ensures secure wall mounting and convenient access to the horizontal sections.
The manufacturer provides a 5-year CARISA warranty for the model. The CARISA NINOVA BATH 1180×480 mm White is a suitable choice for those looking to buy a designer aluminium towel radiator for the bathroom with rapid heating, an increased usable surface and a versatile appearance. The model combines efficient heating, convenient textile drying and modern design.
*The information about the product, its specifications, and price is provided for reference purposes only and may differ from the actual details. Before purchasing, we recommend confirming availability, parameters, the current price, as well as instalment terms and active promotions with a consultant to ensure all information is accurate.