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Blauberg AXIS-JET-CI-315M-2-U-400/2

Axial jet fan with fire resistance 400 °C/2 hrs for ventilation of covered parkings.
Unidirectional. One speed. With a high-power motor.
  • Description
  • Characteristics
  • Downloads
  • Designation key
  • Overall dimensions
  • Operation of fans with frequency converters

Axis-Jet axial fans are designed for general purpose ventilation of underground and semiopened parkings, ventilation of tunnels, smoke extraction in case of fire as a part of smoke extract system.The fans generate a high-speed and high-pressure directed air jet.


Axis-Jet casing has a tubular shape and is made of polymer coated steel.The fan has a sound insulation of mineral wool.The casing includes inner brackets for motor fixation.These brackets act as directing vanes and distribute air flow uniformly, thus increasing aerodynamic performances of the fan.


Unidirectional single-speed type (U).Unidirectional double-speed type (U).Reversible single-speed (R).Reversible double-speed (R).


Three-phase asynchronous short-circuit rotor motor is installed in the fan casing.Motor ingress protection rating is IP55.The motor design ensures operation of the fan in the smoke extract systems on unidirectional and reverse modes.The motors are rated for 400 V power mains voltage and 50 Hz frequency.

The fans with the fire resistance rating 200 °C/2 hrs can be manufactured on special request.


Dynamically balanced impeller made of cast aluminium alloy.The reversible fans are equipped with 100 % reversible two-directional impeller.


Axis-Jet fans are designed for horizontal ceiling mounting and fixation by means of the supplied fixing brackets attached to the fan casing.

Parameter AXIS-JET-CI-315M-2-U-400/2 Measurement unit
Air flow direction unidirectional -
Number of speeds 1 -
Voltage 3 ~ 400 V
Frequency 50 Hz
Power 750 W
RPM 2880 min-1
Maximum air flow 3590 m³/h
Fan pull 16 N
Operating temperature 400 °С/2 h -
Weight 40 kg
Casing material polymer coated steel -
Connection diameter 315 mm
Design axial -
Air speed 13.6 m/s
Mounting ceiling mounting -
Documents archieve
Documents archieve
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  • Catalogues
  • Technical documentation
  • Certificates
Catalogue "Smoke extraction ventilation for parking premises" (pdf 2.43Mb)
Axis-Jet - data sheet (pdf 447.94Kb)
Axis-Jet - image (png 137.21Kb)
Axis-Jet - user's manual (pdf 3.25Mb)
Designation key
Designation key
Model   Casing type Casing insulation   Diameter [mm] Motor   Pole number   Air flow   Fire resistance limit/hrs
jet axial fan
C: round _: without sound-insulation

: sound-insulated casing






_: standard motor

M, S: model with a high-power motor
2 (for single-speed motors)

2/4 (for double-speed motors)
U: unidirectional

R: reversible
_: max. +55 °С

300/2: 300 °C/2 hrs

400/2: 400 °С/2 hrs
Overall dimensions
Overall dimensions
ØD1 A B H L1 L2
414 302 355 425 1654 1763
Operation of fans with frequency converters
Operation of fans with frequency converters

Ventilation systems produce a heavy load on the electrical systems of a building.


As a rule, smoke extraction systems utilize large high-performance fans.During starting the high inertia of the shaft causes a substantial increase in the start-up time – i.e. the time from the application of power to reaching the rated speed.As a result the motor is subjected to high starting current for a prolonged period of time.

Current diagram with direct on-line starting

Standard switchgear (automatic circuit breakers, contactors and motor starters) is not designed to withstand prolonged overloads causing the fan to shut down automatically during starting. Using switchgear with a higher maximum current rating renders the electric motor protection system less sensitive.As a result the switchgear will not be able to detect motor overload in time due to a higher current sensing threshold.Such challenges can only be addressed by utilizing a soft starter or a frequency converter to start the fan without causing a prolonged overload.

Torque diagram with direct on-line starting


Using an FC or a soft starter allows to reduce the starting current thereby avoiding a loss of voltage in the electrical mains. In addition to that the starting torque and mechanical strain on equipment are also reduced which translates into extended maintenance and repair intervals. General exhaust ventilation (GV) systems and emergency smoke extraction (SE) systems of car parks, warehouses, utility and industrial spaces can be integrated into a single system at the design level. As the air flow rate a GV system is considerably lower than that in an SE system a high-capacity fan rated for smoke extraction duty runs in partial load mode. Frequency converters can be programmed for several fixed-speed settings to enable operation in GV and SE modes. The fan operating modes can be switched upon receiving an external signal from the control system. Such integration of ventilation systems allows overall cost savings.


This catalogue features two series of frequency converters: FC-51 and FC-101. The FC-51 series is only suitable for general ventilation systems. If intended for a smoke extraction system, the fans should be fitted with the FC-101 series units as they feature an integrated fire mode. When activated the integrated protection equipment of the frequency converter is overridden enabling the unit to continue operation despite the possibility of sustaining irreparable damage due to overheating or overloading. In case of a fire, the FC-101 series frequency converters are capable of maintaining a higher air pressure level at landings compared to other areas of the building in order to keep the landings smoke-free.

Therefore, reducing the power consumption is among the top priorities for construction project designers.


A frequency converter (FC) consists of two main component blocks. One converts alternating current (50 or 60 Hz) into direct current. The other converts direct current into alternating current of variable frequency ranging from 0 to 250 Hz. By controlling the frequency output the FC offers a broad range of motor speed regulation.

Current diagram with FC starting

During the starting the FC raises the frequency from 0 Hz to the electrical mains frequency (50 or 60 Hz). As the frequency is increased gradually, the motor can be assumed to operate at its nominal speed for a given frequency value. Furthermore, on the assumption that the motor runs at its nominal speed the nominal torque should be immediately available whereas the current will be approximately equal to the nominal value.

Torque diagram with FC starting


Unlike an FC, a soft starter does not change the frequency of speed. Instead it gradually increases the voltage supplied to the motor – from the initial level to the nominal level.

Current diagram with soft starter
Torque diagram with soft starter

The very low voltage initially supplied to the motor during starting helps avoid sudden jolts. Both voltage and torque increase gradually.

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