DC Brushless Fans (BLDC)

Image Part Number Description / PDF Quantity Rfq
612NMLE

612NMLE

ebm-papst Inc.

FAN 12VDC 60X25MM

6332

3414N/39HH

3414N/39HH

ebm-papst Inc.

FAN AXIAL 92X25.4MM 24VDC WIRE

26

8412NGMLV

8412NGMLV

ebm-papst Inc.

FAN AXIAL 80X25.4MM 12VDC WIRE

13

4418H

4418H

ebm-papst Inc.

FAN 48VDC 119X38MM

56

3414NH

3414NH

ebm-papst Inc.

FAN AXIAL 92X25.4MM 24VDC WIRE

119

RG160-28/14NU

RG160-28/14NU

ebm-papst Inc.

FAN IMP MTRZD 24V 220X56MM IP68

9

412J/2HH

412J/2HH

ebm-papst Inc.

FAN 12VDC 40X25MM TACH

155142

W2G115-AD17-01

W2G115-AD17-01

ebm-papst Inc.

FAN AXIAL 127X38MM 24VDC WIRE

0

405F/2H

405F/2H

ebm-papst Inc.

FAN AXIAL 40X10MM 5VDC WIRE

24625

422J/2HP

422J/2HP

ebm-papst Inc.

FAN 12VDC 22CFM 6.8W 40X28MM

721

3414N/2GH

3414N/2GH

ebm-papst Inc.

FAN AXIAL 92X25.4MM 24VDC

0

6248N/2

6248N/2

ebm-papst Inc.

FAN AXIAL 171.5X50.8MM 48VDC

86

DV6248TDP

DV6248TDP

ebm-papst Inc.

FAN TUBEAXIAL

25

3312NNU

3312NNU

ebm-papst Inc.

FAN 12VDC 92X32MM 47CFM IP68

75

4314NH

4314NH

ebm-papst Inc.

FAN AXIAL 24VDC 119X32MM 130CFM

18

RL65-21/14H

RL65-21/14H

ebm-papst Inc.

FAN BLOWER 97X33MM 24VDC WIRE

26

4114N/2H5

4114N/2H5

ebm-papst Inc.

FAN AXIAL 24VDC 119X38MM

2

4412F/2M

4412F/2M

ebm-papst Inc.

FAN 12VDC 119X25MM TACH

47

DV5214NU

DV5214NU

ebm-papst Inc.

FAN AXIAL 24VDC 127X38MM IP68

90

G1G146-BA07-52

G1G146-BA07-52

ebm-papst Inc.

FAN BLOWER 226.8X130MM 24VDC

26

DC Brushless Fans (BLDC)

1. Overview

DC Brushless Fans (BLDC) are electronically commutated fans that use permanent magnet rotors and stationary coil stators. Unlike traditional brushed DC fans, BLDC fans eliminate mechanical brushes, reducing wear and tear while improving efficiency. They play a critical role in modern thermal management systems, ensuring reliable cooling for electronics in computers, industrial equipment, automotive systems, and consumer devices. Their advantages include high energy efficiency (up to 90%+), low noise levels (20-50 dB(A)), and extended operational lifespans (>50,000 hours).

2. Main Types and Functional Classification

TypeFunctionality FeaturesApplication Examples
40-60mm Mini FansCompact design, low power (2-5W), PWM controlMini PCs, Network routers
80-120mm Standard FansHigh airflow (50-200 CFM), balanced noise-performanceServers, Power supplies
High-Static Pressure FansOptimized blade design (30-60 Pa pressure), dust resistanceTelecom cabinets, Industrial HVAC
Low-Noise FansAerodynamic blades, hydro bearing ( 25 dB(A))Home appliances, Medical equipment
Smart FansIntegrated sensors, IoT connectivity, variable speedData centers, EV battery cooling

3. Structure and Components

A typical BLDC fan comprises:

  • Stator Assembly: Laminated steel core with three-phase windings
  • Permanent Magnet Rotor: Rare-earth magnets (NdFeB) for high torque
  • Control Circuit: Hall-effect sensors + MOSFET driver IC for electronic commutation
  • Bearing System: Ball bearings (70,000 hours L10) or sleeve bearings
  • Housing: UL94 V-0 rated plastic or aluminum alloy

4. Key Technical Specifications

ParameterTypical RangeImportance
Voltage5V to 48V DCSystem compatibility
Current0.1A to 5APower consumption
Speed600-10,000 RPMDetermines airflow
Airflow10-500 CFMCooling capacity
Noise15-55 dB(A)User experience
MTBF50,000-100,000 hoursReliability indicator

5. Application Areas

Major industries include:

  • IT & Telecommunications: Server racks, 5G base stations
  • Industrial Automation: CNC machines, PLC cabinets
  • Automotive: EV battery cooling, Powertrain systems
  • Consumer Electronics: Gaming PCs, Smart TVs
  • Renewable Energy: Solar inverters, Wind turbine controllers

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
NidecUltraFlo 48V Series85% efficiency, 48V/2A, 120mm
Delta ElectronicsAFB1212SHHPWM control, 200 CFM, 25 dB(A)
SunonMGM2201V1-000U-AHydro bearing, 60,000 hours
Minebea25GA048B12HSmart fan with temperature sensor
Mitsubishi ElectricCA040B12HIP55 rating, 40mm industrial fan

7. Selection Guidelines

Key considerations:

  • Match voltage with system power supply
  • Calculate required airflow using Q=1.76 (P/ T) formula
  • Select bearing type based on operating environment
  • Verify acoustic compliance (ISO 13347-1 standard)
  • Assess control interface (PWM vs. analog voltage)
  • Evaluate environmental ratings (IP, EMC, RoHS)

8. Industry Trends

Future developments include:

  • Integration with IoT sensors for predictive maintenance
  • Adoption of 48V systems in data centers for energy efficiency
  • Development of ultra-thin fans ( 10mm) for mobile devices
  • Use of AI algorithms for dynamic speed optimization
  • Advancements in fluid-dynamic bearings for noise reduction
  • Growth in automotive applications (EV battery cooling market CAGR: 18.7%)

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