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ID Series Heaters

id series heatersThese heating stations have got just about everything a professional’s heart desires…

They are extremely powerful and robust with a high-quality finish. The lockable doors protect the controls and burner against unauthorised use and the oil heating stations are not only easy to service, they also have a whole array of other service-friendly features.

Technical data ID-1000 ID-1200 ID-2000
Article no. - - -
Air flow rate max. Stage 1 9,120 m³ 9,780 m³ 16,600 m³
Stage 2 * 12,950 m³ 13,860 m³ 25,000 m³
Air pressure max. Stage 1 480 Pa 540 Pa 500 Pa
Stage 2 * 540 Pa 620 Pa 1,000 Pa
Fan High-pressure radial High-pressure radial High-pressure radial
Rated heat input max. Stage 1 150 kW 160 kW 270 kW
Stage 2 * 200 kW 220 kW 385 kW
Heating capacity max. Stage 1 138 kW (118,659 kcal) 148 kW (127,257 kcal) 245 kW (210,700 kcal)
Stage 2 * 184 kW (158,240 kcal) 203 kW (174,548 kcal) 350 kW (301,000 kcal)
Sound level (distance 1 m) ** 74 dB (A) 74 dB (A) NS
Temperature increase*** ∆T 57 °C 59 °C 45 °C
Input voltage 400 V / 50 Hz 400 V / 50 Hz 400 V / 50 Hz
Current consumption max. Stage 1 NS NS 10.5 A
Stage 2 * 9.3 A 9.8 A 20.5 A
Fuel Heating oil or diesel
Fuel consumption max. Stage 1 NS NS 28 l/h
Stage 2 * 19.5 l/h 20.9 l/h 39 l/h
Outlet cone ø 550 mm ø 550 mm ø 3 x 500 mm
Chimney connection ø 200 mm ø 200 mm ø 300 mm
Thermostat connection standard standard standard
Dimensions L x W x H 2,400 x 800 x 1,370 mm 2,400 x 800 x 1,370 mm 3,900 x 1,200 x 2,010 mm
Mobility Fork lifter / crane
Weight 480 kg 505 kg 1,300 kg
Electricity supply Mains cable with 16 A CEE plug, 5-pole Mains cable with 16 A CEE plug, 5-pole 32 A CEE socket, 5-pole
* two-stage operation is scope of standard equipment for the ID-2000 and the ID-1000 and optionally available for the ID-1200
** without burner, in compliance with DIN 45635-01-KL 3
*** ΔT designates the increase in temperature. The air discharge temperature is calculated using ΔT + ambient air temperature. Calculation example for ID-1000 oil heating station with an ambient temperature of 20 °C: ΔT (57) + 20 = 77. The air discharge temperature in this example equals 77 °C.

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