SC-F

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Designations

SC-F 1 22 03 2204 TFC
 

  1. Dimensionless size ratio 1, 2, 3, 4
  2. Design
    0 direct drive
    5 belt drive
  3. Power factor of 2,2 kW x 100 = 220
  4. T Three-phase motor 220-240/380-420V, 50Hz or 380-420/660-690V over 3 kW
A side-channel, directly-driven fan designed for an oil-free conveying of non-aggressive and non-explosive gases or for generating positive and negative pressure.
 

Application

A side-channel, directly-driven fan designed for an oil-free conveying of non-aggressive and non-explosive gases or for generating positive and negative pressure.

Devices for transporting small amounts of air with high duct network resistance, for pneumatic conveying systems, printing machines, pneumatic transfer systems, pneumatic hoists, multi-step filtering devices providing a very high level of dust separation, industrial vacuum cleaners, pool aeration, filter washing, in biological sewage-treatment plants, etc.

Construction

Housing, impeller (dynamically balanced as per ISO IS01940) and noise suppressor enclosure are made of aluminum alloys. The fan is adapted for operating both in a horizontal and vertical position.

On request, we can supply belt-driven fans adapted for customer’s needs.

On request, the device could be supplied in any RAL colour (standard RAL 7042 - grey).

Electric motor

The motors are made in accordance with PN-EN 60034-1 standard, CE marked. Insulation class F, degree of protection IP 55. Asynchronous, three-phase 230/400V or 400V, 100Hz motor, fitted with thermal protection PTC (posistor) or PTC and TP, fitted with an independent cooling system (only FC version).

The fan voltage of 230/400V 100Hz or 400V 100Hz (depending on the motor power).

Use of a motor with independent cooling system ensures wide-range control of fan rotation speed.

Non-compliance with recommendations for the motor leads to the current increasing disproportionately and the motor failing to reach the rated rotation speed. On the converter - never set a frequency (rotation speed) higher than the frequency of 100Hz indicated on the nameplate, as it may result in motor overload or fan failure due to excessive rotation speed.

​On the converter, one must not install a so called "Boost", because it leads to the motor overheating. In order to protect the drive motor, a temperature sensor must be connected to the respective inputs of the converter.

Name Pole Nominal
voltage [V]
Speed
[r.p.m.]
P max
[W]
I max
[A]
Q max
[m3/h]
P
static [Pa]
Weight
[kg]
Temp.
min.
[oC]
Temp.
max.
[oC]
SC-F-10-150T FC (230VAC) VAKUUM 80Hz 400 4600 1500 3.2 164 14500 22 -20 60
SC-F-10-150T FC (230VAC) VAKUUM 70Hz 400 4600 1500 3.2 140 20500 22 -20 60
SC-F-10-150T FC (230VAC) TŁOCZENIE 80Hz 400 4600 1500 3.2 160 13500 22 -20 60
SC-F-10-150T FC (230VAC) TŁOCZENIE 70Hz 400 4600 1500 3.2 132 17000 22 -20 60
SC-F-10-150T FC (230VAC) TŁOCZENIE 60Hz 400 4600 1500 3.2 115 23500 22 -20 60
SC-F-10-220T FC (230VAC) VAKUUM 80Hz 400 4600 2200 4.7 164 26000 24 -20 60
SC-F-10-220T FC (230VAC) TŁOCZENIE 80Hz 400 4600 2200 4.7 160 21500 24 -20 60
SC-F-10-220T FC (230VAC) TŁOCZENIE 70Hz 400 4600 2200 4.7 132 29500 24 -20 60
SC-F-20-300T FC (230VAC) VAKUUM 80Hz 400 4600 3000 6.1 265 13000 34 -20 60
SC-F-20-300T FC (230VAC) VAKUUM 70Hz 400 4600 3000 6.1 225 21500 34 -20 60
SC-F-20-300T FC (230VAC) TŁOCZENIE 70Hz 400 4600 3000 6.1 220 17500 34 -20 60
SC-F-20-300T FC (230VAC) TŁOCZENIE 60Hz 400 4600 3000 6.1 270 30000 34 -20 60
SC-F-20-400T FC (230VAC) VAKUUM 80Hz 400 4600 4000 7.5 265 24500 37 -20 60
SC-F-20-400T FC (230VAC) VAKUUM 70Hz 400 4600 4000 7.5 225 29000 37 -20 60
SC-F-20-400T FC (230VAC) TŁOCZENIE 80Hz 400 4600 4000 7.5 270 24000 37 -20 60
SC-F-20-400T FC (230VAC) TŁOCZENIE 70Hz 400 4600 4000 7.5 220 30000 37 -20 60
SC-F-30-750T FC (230VAC) VAKUUM 80Hz 400 4600 7500 15 510 36000 55 -20 60
SC-F-30-750T FC (230VAC) TŁOCZENIE 80Hz 400 4600 7500 15 510 36000 55 -20 60
SC-F-40-1500T FC (230VAC) VAKUUM 80Hz 400 4600 15000 29.5 1000 28000 155 -20 60
SC-F-40-1500T FC (230VAC) TŁOCZENIE 80Hz 400 4600 15000 29.5 1000 28000 155 -20 60

Performance curves