F412R Series, DC Brushless Fans (BLDC)

Results:
8
Manufacturer
Series
Power (Watts)
Air Flow
Noise
Static Pressure
Voltage - Rated
RPM
Termination
Operating Temperature
Ingress Protection
Bearing Type
Approval Agency
Fan Type
Size / Dimension
Weight
Features
Width
Results remaining8
Applied Filters:
F412R
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ImageProduct DetailPriceAvailabilityECAD ModelFeaturesIngress ProtectionVoltage - RatedApproval AgencyOperating TemperaturePower (Watts)Static PressureFan TypeRPMTerminationSeriesSize / DimensionWidthAir FlowBearing TypeNoiseWeight
F412R-05LB
FAN AXIAL 41X12.2MM 5VDC WIRE
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
5VDC
-
14 ~ 140°F (-10 ~ 60°C)
400 mW
0.059 in H2O (14.7 Pa)
Tubeaxial
4200 RPM
2 Wire Leads
F412R
Square - 41mm L x 41mm H
12.20mm
3.9 CFM (0.109m³/min)
1 Ball/1 Sleeve
16.0dB(A)
0.044 lb (19.96 g)
F412R-12LB
FAN AXIAL 41X12.2MM 12VDC WIRE
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
12VDC
-
14 ~ 140°F (-10 ~ 60°C)
480 mW
0.059 in H2O (14.7 Pa)
Tubeaxial
4200 RPM
2 Wire Leads
F412R
Square - 41mm L x 41mm H
12.20mm
3.9 CFM (0.109m³/min)
1 Ball/1 Sleeve
16.0dB(A)
0.044 lb (19.96 g)
F412R-12MB
FAN AXIAL 41X12.2MM 12VDC WIRE
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
12VDC
-
14 ~ 140°F (-10 ~ 60°C)
720 mW
0.102 in H2O (25.5 Pa)
Tubeaxial
5400 RPM
2 Wire Leads
F412R
Square - 41mm L x 41mm H
12.20mm
5.3 CFM (0.148m³/min)
1 Ball/1 Sleeve
23.0dB(A)
0.044 lb (19.96 g)
F412RS-12LB
FAN AXIAL 41X12.2MM 12VDC WIRE
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
12VDC
-
14 ~ 140°F (-10 ~ 60°C)
480 mW
0.060 in H2O (14.9 Pa)
Tubeaxial
4200 RPM
3 Wire Leads
F412R
Square - 41mm L x 41mm H
12.20mm
4.2 CFM (0.118m³/min)
1 Ball/1 Sleeve
18.0dB(A)
0.044 lb (19.96 g)
F412R-12LLB
FAN AXIAL 41X12.2MM 12VDC WIRE
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
12VDC
-
14 ~ 140°F (-10 ~ 60°C)
480 mW
0.047 in H2O (11.8 Pa)
Tubeaxial
3750 RPM
2 Wire Leads
F412R
Square - 41mm L x 41mm H
12.20mm
3.5 CFM (0.098m³/min)
1 Ball/1 Sleeve
14.0dB(A)
0.044 lb (19.96 g)
F412R-24LB
FAN AXIAL 41X12.2MM 24VDC WIRE
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
24VDC
-
14 ~ 140°F (-10 ~ 60°C)
720 mW
0.059 in H2O (14.7 Pa)
Tubeaxial
4200 RPM
2 Wire Leads
F412R
Square - 41mm L x 41mm H
12.20mm
3.9 CFM (0.109m³/min)
1 Ball/1 Sleeve
16.0dB(A)
0.044 lb (19.96 g)
F412R-24MB
FAN AXIAL 41X12.2MM 24VDC WIRE
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
24VDC
-
14 ~ 140°F (-10 ~ 60°C)
960 mW
0.102 in H2O (25.5 Pa)
Tubeaxial
5400 RPM
2 Wire Leads
F412R
Square - 41mm L x 41mm H
12.20mm
5.3 CFM (0.148m³/min)
1 Ball/1 Sleeve
23.0dB(A)
0.044 lb (19.96 g)
F412R-05MB
FAN AXIAL 41X12.2MM 5VDC WIRE
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-
5VDC
-
14 ~ 140°F (-10 ~ 60°C)
500 mW
0.102 in H2O (25.5 Pa)
Tubeaxial
5400 RPM
2 Wire Leads
F412R
Square - 41mm L x 41mm H
12.20mm
5.3 CFM (0.148m³/min)
1 Ball/1 Sleeve
23.0dB(A)
0.044 lb (19.96 g)

About  DC Brushless Fans (BLDC)

DC fans are electromechanical devices utilized to generate air movement and function exclusively with a DC power source, commonly 48 volts or lower. While the majority of currently available products in this category rely on brushless motor technology, certain variations exist in their additional features, including options for speed control and feedback mechanisms. These products play a crucial role in facilitating air circulation and cooling within electronic systems, offering efficient and reliable operation with direct current power sources. Despite the widespread adoption of brushless motor technology, the diversity in speed control and feedback mechanisms provides users with tailored solutions to address specific performance requirements and operational preferences. By incorporating features such as speed control and feedback mechanisms, DC fans offer enhanced flexibility and customization options, enabling precise regulation of air movement and temperature management within electronic equipment. This adaptability ensures that DC fans can be effectively integrated into a wide range of applications, contributing to the efficient and optimal functioning of electronic systems.