Description
The NMB-MAT 5920PL-05W-B60 is a high-performance DC axial fan engineered by MinebeaMitsumi, designed specifically for rigorous thermal management in industrial and commercial refrigeration systems. This unit represents Original Engineering quality, utilizing a precision dual ball bearing architecture to ensure rotational stability and extended service life under continuous duty cycles. The fan is constructed to deliver high static pressure and volumetric airflow, making it an essential component for overcoming system impedance in densely packed enclosures. Procurement teams seeking Technical Compatibility will confirm that this 172mm x 150mm unit adheres to industry-standard mounting configurations for seamless retrofitting or OEM integration. Please verify current Lead Time with our supply team to ensure maintenance schedules are met without delay.
TECHNICAL SPECIFICATIONS:
Manufacturer: NMB-MAT (MinebeaMitsumi)
Model Number: 5920PL-05W-B60
Component Type: DC Axial Cooling Fan
Nominal Voltage: 24 V DC
Operating Voltage Range: 12.0 V – 27.6 V
Current Rating: 1.25 A
Input Power: 30.0 W
Rotational Speed: 3000 RPM
Max Airflow: 8.21 m³/min (approx. 290 CFM)
Static Pressure: 186 Pa (0.75 inch H2O)
Bearing System: Precision Dual Ball Bearing
Dimensions: 172 mm L x 150 mm W x 51 mm H
Housing Material: Aluminum Die-Cast (Black Coating)
Impeller Material: Reinforced Plastic (UL94V-0)
Noise Level: 56.0 dB(A)
Termination: 2-Wire / 3-Wire Leads
Operating Temperature: -10°C to +70°C
Life Expectancy: 100,000 Hours (L10 at 25°C)
Safety Approvals: UL, CSA, VDE, CE
INDUSTRIAL APPLICATION:
This heavy-duty air mover is specifically calibrated for free-standing commercial refrigerators, walk-in cooler compressor bays, and high-capacity server cabinets. The 5920PL-05W-B60 is critical for applications requiring rapid heat dissipation from condenser coils and power supplies. Its high-torque motor and aerodynamic impeller design allow it to maintain consistent airflow even against the back-pressure created by dust filters or dense fin stacks, ensuring the thermal stability required to prevent equipment failure in critical cold-chain and IT infrastructure environments.






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