AVC
AVC F6015B12LY 60mm 12V 3000RPM Ball 3-Pin
A 60 mm square, 15 mm thick case fan that spins at 3000 RPM to push 14.7 CFM at 24.6 dBA using a ball bearing and a 3-pin tachometer connector
- 7 CFM airflow keeps small enclosures cool
- 6 dBA noise level suits quiet builds
- Ball bearing design extends service life
- 3-pin tachometer output enables speed monitoring
- 12 V 1.2 W draw fits standard headers
Compact 60mm chassis fan
The AVC F6015B12LY is a 60 by 15 millimetre frame fan that runs on 12 volts DC. It draws 0.1 ampere and 1.2 watts while spinning at 3000 RPM. The ball bearing and rib mounting suit tight spaces in small-form-factor builds or replacement jobs.
Steps up from sleeve-bearing 60mm units
A sleeve-bearing fan of the same size often develops rattle or slows as lubricant dries. The ball bearing here maintains 3000 RPM and 14.7 CFM airflow longer, and the 3-pin tachometer wire lets the motherboard monitor speed. The upgrade pays off when the old fan becomes audible at 24.6 dBA or fails to hold RPM.
Fits ITX cases and legacy 60mm mounts
Builders fitting a Mini-ITX board, a slim HTPC chassis or an older 60mm heatsink will find the rib mounts and 8-inch lead compatible. Buyers needing higher static pressure for dense radiators or PWM speed control should look at something else.
Highlights
- 7 CFM airflow keeps small enclosures cool
- 6 dBA noise level suits quiet builds
- Ball bearing design extends service life
- 3-pin tachometer output enables speed monitoring
- 12 V 1.2 W draw fits standard headers
Specifications
No published specifications for this item yet.
Questions about this item
Will the 60 mm by 60 mm frame with 15 mm depth and rib mounting holes fit my chassis fan slots?
The fan measures 60 mm square by 15 mm thick and uses rib type mounting holes that align with standard 60 mm fan positions.
How do I connect the 3 pin 8 inch lead to my motherboard and avoid the common mistake of leaving the tach wire unplugged?
Plug the 3 pin connector into a 12 V DC fan header; the third wire carries the speed sensor signal so the board can monitor the 3000 RPM speed.
When will the ball bearing need replacement given the 3000 RPM rating and 1.2 W power draw?
Ball bearings typically run for tens of thousands of hours at 3000 RPM; listen for rising noise above the rated 24.6 dBA as a sign of wear.
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