EBM-PAPST 300mm 4p 1ph Axial Fan Assy HY Blade Induced, S4E300-AS72-44-CTN
Item No. 130-S4E300-AS72-44
Ebm-Papst S4E300-AS72-44 Technical Features: AC axial fan with Hyblade sickle blades Nominal voltage range: 230, 50/60Hz Blade material:Â Press-fitted sheet blank, sprayed with PP plastic IP44 Protection (depending on installation position), Class B insulation Thermal overload protection wired
Description
Ebm-Papst S4E300-AS72-44 Technical Features:
 A=Forced
 V=Induced
Â
- AC axial fan with Hyblade sickle blades
- Nominal voltage range: 230, 50/60Hz
- Blade material:Â Press-fitted sheet blank, sprayed with PP plastic
- IP44 Protection (depending on installation position), Class B insulation
- Thermal overload protection wired internally
- Wiring diagram: A1
- Min temperature: -25ºC Max temperature: +60ºC
- Airflow: V
- Capacitor: 2.0
 A=Forced
 V=Induced
Â
Specifications
- Voltage
- 230
- Poles
- 4
- Phase
- 1Ph
- Brand
- EBM-Papst
- Description
- EBM-PAPST 300mm 4p 1ph Axial Fan Assy HY Blade Induced, S4E300-AS72-44-CTN
EBM-PAPST 300mm 4p 1ph Axial Fan Assy HY Blade Induced, S4E300-AS72-44-CTN
Item No. 130-S4E300-AS72-44
Ebm-Papst S4E300-AS72-44 Technical Features: AC axial fan with Hyblade sickle blades Nominal voltage range: 230, 50/60Hz Blade material:Â Press-fitted sheet blank, sprayed with PP plastic IP44 Protection (depending on installation position), Class B insulation Thermal overload protection wired
Specifications
- Voltage
- 230
- Poles
- 4
- Phase
- 1Ph
- Brand
- EBM-Papst
- Description
- EBM-PAPST 300mm 4p 1ph Axial Fan Assy HY Blade Induced, S4E300-AS72-44-CTN
Description
Ebm-Papst S4E300-AS72-44 Technical Features:
 A=Forced
 V=Induced
Â
- AC axial fan with Hyblade sickle blades
- Nominal voltage range: 230, 50/60Hz
- Blade material:Â Press-fitted sheet blank, sprayed with PP plastic
- IP44 Protection (depending on installation position), Class B insulation
- Thermal overload protection wired internally
- Wiring diagram: A1
- Min temperature: -25ºC Max temperature: +60ºC
- Airflow: V
- Capacitor: 2.0
 A=Forced
 V=Induced
Â
