Description
The ebmpapst 7114N is a precision-engineered DC Axial Fan designed for inverter cooling and industrial thermal management. This high-performance ventilation unit offers robust performance in critical automation environments, specifically engineered to withstand high temperatures with its rugged all-metal construction.
7114N Key Features
- Industrial Grade: Features a robust die-cast aluminum housing and sheet steel impeller for maximum durability in harsh conditions.
- High Performance: Delivers exceptional airflow (CFM) with an electronically commutated external rotor motor.
- Connectivity: Standardized 2-wire lead connection for seamless integration into existing power systems.
- Reliability: Maintenance-free ball bearing system ensures a long service life (L10) even at elevated temperatures.
Technical Specifications for 7114N
Comprehensive engineering data for verification:
| Part Number | 7114N |
| Manufacturer | ebmpapst |
| Product Type | DC Axial Compact Fan |
| Nominal Voltage | 24 VDC |
| Voltage Range | 12 … 30 VDC |
| Power Consumption | 12.0 W |
| Current Draw | 500 mA |
| Nominal Speed | 2850 RPM |
| Air Flow | 211.9 CFM (360 m³/h) |
| Noise Level | 57 dB(A) |
| Dimensions | 150mm x 172mm x 38mm |
| Weight | 0.90 kg (1.98 lbs) |
| Bearing System | Ball Bearing |
| Housing Material | Die-Cast Aluminum |
| Impeller Material | Sheet Steel, Painted Black |
| Operating Temperature | -25°C to +72°C |
| Life Expectancy (L10) | 80,000 Hours @ 40°C |
| Electrical Connection | 2 Single Strands AWG 22 |
| Motor Protection | Reverse Polarity / Locked Rotor |
| Direction of Rotation | Counter-clockwise (viewed on rotor) |
Industrial Applications
Frequently deployed in Power Inverters, Solar Energy Systems, and Industrial Control Cabinets. This unit is critical for controlling thermal loads in high-density electronics and machinery.
Installation & Quality Assurance
This 7114N is a genuine spare part. Please refer to the official ebmpapst manual for wiring diagrams and firmware configuration to ensure optimal airflow direction and cooling efficiency.









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