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FF3G097-24GL-50
Fanova
Nominal Voltage | VAC | 24 |
Nominal voltage range | VAC | 16~28 |
Current draw | A | 1.6±10% |
Speed(RPM) | min-1 | 2500±5% |
Power consumption | W | 38.4±10% |
Sound Pressure Level | dB(A) | 62±5% |
Max. Air Flow | CFM / m3/H | 88.28/150 |
Max. Static Pressure | In.wg /Pa | 1.6/400 |
Insulation class | ~ | Class B |
Degree of protection | ~ | IP44 |
Control Input | ~ | 0~10VDC / PWM |
Signal Output | ~ | FG (Tach output ) |
The FF3G097-24GL-50 is a compact yet powerful 97mm forward centrifugal fan engineered for applications requiring high static pressure in confined spaces. Operating on 24V DC (16–28V range) with a brushless DC motor (BLDC53), it delivers efficient performance with minimal noise. Featuring a durable galvanized steel impeller and IP44-rated die-cast aluminum housing, it meets CE, RoHS, ISO9001, and ErP 2015 standards for reliable operation in diverse environments.
High Static Pressure in Compact Design:
Generates 400 Pa max static pressure despite its small size (97mm), making it ideal for overcoming resistance in tight ventilation paths or filtered systems.
Multi-Blade Efficiency:
34-blade galvanized steel impeller ensures smooth, high-pressure airflow with reduced turbulence and noise (62 dB(A)).
Precision Control Ready:
Supports PWM/0–10VDC speed modulation and provides FG tachometer output (2 pulses/revolution) for real-time RPM monitoring.
Robust Protections:
Integrated safeguards include reverse polarity, motor lock, and thermal overload protection for enhanced durability.
Electronics Cooling: High-density server racks, telecom switches, or power supplies requiring focused airflow.
Medical Devices: Ventilation for diagnostic equipment, analyzers, or portable medical units.
Industrial Control Systems: Cooling PLC cabinets, drives, or automation enclosures.
Audio-Visual Equipment: Thermal management in projectors, amplifiers, or broadcast gear.
Q: Why choose a forward centrifugal design over axial for this size?
A: Forward centrifugal fans provide higher static pressure than axial fans of similar size, crucial for pushing air through restrictions.
Q: Can the galvanized steel impeller handle humid environments?
A: Yes—galvanization offers corrosion resistance, but avoid prolonged exposure to corrosive chemicals.
Q: Is the FG signal compatible with standard controllers?
A: Yes—2-pulse/revolution output works with most industrial PLCs and fan controllers.*
Q: What is the typical lifespan?
A: 50,000 hours (L10) at 40°C and 15–65% RH—ideal for continuous operation.
Nominal Voltage | VAC | 24 |
Nominal voltage range | VAC | 16~28 |
Current draw | A | 1.6±10% |
Speed(RPM) | min-1 | 2500±5% |
Power consumption | W | 38.4±10% |
Sound Pressure Level | dB(A) | 62±5% |
Max. Air Flow | CFM / m3/H | 88.28/150 |
Max. Static Pressure | In.wg /Pa | 1.6/400 |
Insulation class | ~ | Class B |
Degree of protection | ~ | IP44 |
Control Input | ~ | 0~10VDC / PWM |
Signal Output | ~ | FG (Tach output ) |
The FF3G097-24GL-50 is a compact yet powerful 97mm forward centrifugal fan engineered for applications requiring high static pressure in confined spaces. Operating on 24V DC (16–28V range) with a brushless DC motor (BLDC53), it delivers efficient performance with minimal noise. Featuring a durable galvanized steel impeller and IP44-rated die-cast aluminum housing, it meets CE, RoHS, ISO9001, and ErP 2015 standards for reliable operation in diverse environments.
High Static Pressure in Compact Design:
Generates 400 Pa max static pressure despite its small size (97mm), making it ideal for overcoming resistance in tight ventilation paths or filtered systems.
Multi-Blade Efficiency:
34-blade galvanized steel impeller ensures smooth, high-pressure airflow with reduced turbulence and noise (62 dB(A)).
Precision Control Ready:
Supports PWM/0–10VDC speed modulation and provides FG tachometer output (2 pulses/revolution) for real-time RPM monitoring.
Robust Protections:
Integrated safeguards include reverse polarity, motor lock, and thermal overload protection for enhanced durability.
Electronics Cooling: High-density server racks, telecom switches, or power supplies requiring focused airflow.
Medical Devices: Ventilation for diagnostic equipment, analyzers, or portable medical units.
Industrial Control Systems: Cooling PLC cabinets, drives, or automation enclosures.
Audio-Visual Equipment: Thermal management in projectors, amplifiers, or broadcast gear.
Q: Why choose a forward centrifugal design over axial for this size?
A: Forward centrifugal fans provide higher static pressure than axial fans of similar size, crucial for pushing air through restrictions.
Q: Can the galvanized steel impeller handle humid environments?
A: Yes—galvanization offers corrosion resistance, but avoid prolonged exposure to corrosive chemicals.
Q: Is the FG signal compatible with standard controllers?
A: Yes—2-pulse/revolution output works with most industrial PLCs and fan controllers.*
Q: What is the typical lifespan?
A: 50,000 hours (L10) at 40°C and 15–65% RH—ideal for continuous operation.
Life Expectance | 50,000 Hours(L10),At 40℃ room, humidity 15%~65%RH |
Technical features | Motor current limitation |
Soft starting Protection | |
Under/Over voltage detection | |
Thermal overload protection for electronics/motor | |
Line undervoltage detection | |
Locked-rotor Protection | |
Reverse Polarity Protection |
Operating Temperature | Fan | -25℃ (Min. )~60℃ (Max. ) |
Heat sink of IC | 115℃ (Max. ) | |
Other electronic parts | 85℃ (Max. ) | |
Ball bearing | 80℃ (Max. ) | |
Lead Wire | 120℃ (Max. ) | |
Storage Temperature | -40℃ to 75℃ | |
Operating Humidity | 5% to 90% RH | |
Storage Humidity | 5% to 95% RH |
Life Expectance | 50,000 Hours(L10),At 40℃ room, humidity 15%~65%RH |
Technical features | Motor current limitation |
Soft starting Protection | |
Under/Over voltage detection | |
Thermal overload protection for electronics/motor | |
Line undervoltage detection | |
Locked-rotor Protection | |
Reverse Polarity Protection |
Operating Temperature | Fan | -25℃ (Min. )~60℃ (Max. ) |
Heat sink of IC | 115℃ (Max. ) | |
Other electronic parts | 85℃ (Max. ) | |
Ball bearing | 80℃ (Max. ) | |
Lead Wire | 120℃ (Max. ) | |
Storage Temperature | -40℃ to 75℃ | |
Operating Humidity | 5% to 90% RH | |
Storage Humidity | 5% to 95% RH |