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COIL – KT110

COIL – KT110

COIL – KT110

Product catalog summary
Characteristics
  • Designed for heating dry interiors.
  • High heat output capability.
  • Operates with or without the fan.
  • KT110 variant requires less construction height.
Dimensions
  • Total width: 303 mm
  • Construction height: 110 mm
  • Length: 900 to 3000 mm
Usage

The MINIB convector is versatile for dry applications, providing high heat output with the fan on and maintaining heat when the fan is off. It suits various safety and heating requirements.

Coil Specifications

The document includes detailed specifications for the KT110 coil, including cross-sectional and longitudinal views.

Temperature Equation

The heat transfer rate (Q) is calculated using the nominal heat transfer rate (QN) and the temperature difference between water and air.

Heat Transfer Rate Data

Tables provide heat transfer rates for different lengths and speeds, with varying mean air and water temperatures.

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Catalog excerpts

COIL – KT110-1

MINIB, s. r. o., Støešovická 49, 162 00 Praha 6 CZ, [email protected] tel.: +420 220 180 780, +420 604 767 677 fax: +420 220 180 779 26 www.minib.cz CHARACTERISTICS 6 for heating dry interiors 6 high heat output 6 also heating when the fan is switched off 6 KT110 variant with lower demands on construction height. DIMENSIONS total width 303 mm construction height 110 mm length L 900 to 3000 mm USAGE The most universal MINIB convector for dry applications. The convector produces high levels of heat out-put with the 12V fan switched on but it also heats – tempers the interior when the fan is switched off. A high heat output and ability to keep low levels of natural convection when the fan is switched off provide a wide range of uses for interiors with a variety of safety and heating demands. coil – KT 110 CROSS SECTION OF COIL-KT110 LONGITUDINAL SECTION COIL-KT110 Window where: m = 1,0543 temperature exponent pro tW, A mean heating water temperature, mean air temperature [ºC] QN nominal heat transfer rate for difference of temperatures tw - tA = 50 ºC [W] Q heat transfer rate for other temperatures [W] TEMPERATURE EQUATION Q = Q ( ) N t m w - ta 50 COIL - KT 110 with a fan 303 50 305 51 63 75 63 110 Ø30 60 136 101 50 Ø30

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