RADIK HYGIENE - Steel Panel Radiator
Description
RADIK HYGIENE is a panel radiator, in design KLASIK, which can be connected to the heating system either from the left or from the right side. It is designed to be used in pressurized or gravity-fed heating systems.
It is suitable for installation and operation in rooms with high demands on hygiene and cleanness. All types are without convectors; they have a flat front panel and the weld seams are covered with a special flat strip. The type 20S has got a bigger spacing between the panels (radiator depth B = 102 mm) as compared to the traditional design of type 20 (B = 66 mm). At the back side, two upper and two lower hangers are welded. Radiators 1 800 mm long and longer have six welded hangers. The standard equipment includes an air-vent and a blanking plug. We recommend to use the drive-in brackets (type 18/120 – see KORAMONT catalogue) which enable to mount the radiator up to 65 mm from the wall.
Warning: If the requested distance between the radiator and the wall should be 65 ÷ 80 mm, the same type of brackets can be used on condition that the bottom hangers will be fixed with brackets (not with supporting pieces only). In this case, the additional brackets must be ordered extra.
Technical Data
| Height H | 303, 503, 603, 903 mm | ||
| Length L | 404, 504, 604, 704, 804, 904, 1004, 1104, 1204, 1404, 1604, 1804, 2004 mm |
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| Depth B | |||
| - Type 10 HYGIENE | 49 mm | ||
| - Type 20S HYGIENE | 102 mm | ||
| - Type 30 HYGIENE | 157 mm | ||
| Connecting pitch | h = H - 57 mm | ||
| Connecting thread | 4 x G½ inside | ||
| Maximum working pressure | 10 bar | ||
| Maximum working temperature | 110 °C | ||
| Radiator connection | left or right side | ||
Types of Connection
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| Side - one side φ = 1 |
Side - two sides diagonal φ = 1 recommended for L ≥ 3 × H |
Side - two sides direct φ = 0,9 |
Overview of Types
| Type 10 HYGIENE | ![]() |
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| Type 20S HYGIENE | ![]() |
| Type 30 HYGIENE | ![]() |
Pressure Loss
The pressure loss of the radiator for the respective working conditions can be calculated by means of the value of the flow coefficient AT or the resistance coefficient xT (see please the Technical Parameters).





