Noctua NF-A14 ULN
Benefiting from the latest technological advances in aerodynamics, including Flow Acceleration Channels, the NF-A14 takes the cooling performance for which the NF-P14 is renowned even further.
Description
The NF-A14 is a quiet Noctua fan in 140mm format with a square frame that meets Noctua‘s AAO(Advanced Acoustic Optimisation) standard. Its square shape and 140mm mounting holes(124.5mm spacing) make it the ideal companion for watercooling radiators or 140mm fan cases.
Featuring the latest in aerodynamic technology, including Flow Acceleration Channels, the NF-A14 takes the cooling performance for which the NF-P14 is renowned to a new level.
The ULN version allows extremely low speeds(800/650rpm) for applications requiring near-inaudible operation or for noise-sensitive users requiring quiet operation. Its amazing discretion, the presence of SSO2 reference bearings and the quality level guaranteed by Noctua make the NF-A14 the ideal fan for the most demanding users.
Successor to the famous NF-P14 Noctua’s NF-P14 fan has become the benchmark in the PC world. Thanks to numerous successive aerodynamic optimisations, the NF-A14 now offers increased static pressure and an even better airflow/noise ratio than its predecessor. | 140mm square frame The NF-A14’s 140mm square frame has 140mm mounting holes(124.5mm spacing), making it ideal for use with conventional 140mm enclosures or watercooling fans. | ||
Flow Acceleration Channels The NF-A14 impeller is fitted with flow channels on the suction side of the fan. The flow acceleration generated at the tips of the blades creates a more massive, less dispersed suction, thus increasing efficiency. | AAO frame Noctua’s AAO(Advanced Acoustic Optimisation) frames are equipped with anti-vibration mounts and benefit from exclusive optimisations to push the limits of performance and silence. | ||
Stepped Inlet Design Noctua’s Stepped Inlet design adds turbulence to the inlet flow, allowing a gradual transition from laminar to turbulent flow. This reduces noise emissions, generates a more massive flow and increases suction power. | Inner Surface Microstructures As the blade tips move in a boundary layer influenced by the presence of an Inner Surface Microstructure, the flow separation that takes place at the suction level becomes almost non-existent. | ||
Integrated anti-vibration dampers The integrated anti-vibration mounts, made of extra soft silicone, limit the transmission of vibrations while ensuring perfect compatibility with standard fastening systems. | SSO2 Bearing This is the latest generation of the SSO2 bearing, which is even more optimised. The SSO2 is equipped with a rear magnet closer to the axle for greater precision, durability and stability. | ||
Metal bearings In order to ensure the highest quality of workmanship, durability and stability, the NF-A14 is equipped with a CNC machined brass bearing. | Smooth Commutation Drive 2 Noctua’s latest SCD system ensures smooth operation by eliminating torque variations and switching noise. As a result, the NF-A4x10 remains very quiet even at close range. | ||
2-speed control for maximum silence The ULN(Ultra-Low-Noise) version has been specially designed for extremely low operating speeds and minimal noise levels, and can be set to 800 or 650rpm using the supplied adapter. | Extensive wiring options The first fan cable is 20cm short, minimising the space required for routine use. The supplied 30cm extension cable will solve any distance problems. | ||
Ultra-low power consumption The NF-A14 consumes only 0.96W, which represents a reduction in consumption of more than 20% compared to the previous model. Beyond the ecological interest, the impact is also real on your electricity bill! | 6-year manufacturer’s warranty Noctua fans have an established reputation for quality and durability. As with all Noctua models, the NF-A14 has an MTBF of over 150,000 hours of testing and is backed by a full 6 year manufacturer’s warranty. |
Noctua NF-A14 ULN Prices
Price History
Additional information
Specification: Noctua NF-A14 ULN
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