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Axial Fan BLOW 85-511, 50×10 mm, 24 V, ball bearing, 3-pin connector
Axial Fan BLOW 85-511, 50×10 mm, 24 V, ball bearing, 3-pin connector
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Axial Fan BLOW 85-511, 50×10 mm, 24 V, ball bearing, 3-pin connector
Leave your address - as soon as the price of the product goes down, you'll know about it right away
Axial Fan BLOW 85-511, 50×10 mm, 24 V, ball bearing, 3-pin connector
Axial Fan BLOW 85-511, 50×10 mm, 24 V, ball bearing, 3-pin connector
The BLOW axial fan 85-511 is a compact 50×10 mm DC cooling fan designed for 24 V systems. Its low-profile frame and shallow depth make it suitable for applications with limited space. The fan uses a ball bearing to provide a longer service life and stable operation under continuous use. A three-pin connector allows straightforward power connection and basic control or monitoring when integrated with compatible electronics.
The ball bearing construction reduces wear and supports continuous operation at moderate ambient temperatures, while the small 50×10 mm size enables installation in tight enclosures or shallow slots. The 24 V rating is compatible with many industrial and telecom power systems. A 3-pin connector simplifies wiring and replacement without requiring soldering or custom harnesses.
Install the fan in a position that allows unobstructed airflow through the fan blades and secure it with appropriate mounting hardware for the 50×10 mm frame. Connect the 3-pin connector to the corresponding header or harness on the system, ensuring correct polarity and 24 V supply. Verify airflow direction before final assembly and confirm that the ambient temperature and ventilation requirements meet the fan's operating range. Allow clearance around the inlet and outlet to avoid restrictions that would reduce cooling performance.
For reliable operation, keep the fan and surrounding area free of dust and debris, perform periodic inspections for bearing noise or reduced airflow, and replace the fan if performance degrades. Use with properly rated 24 V power sources and suitable control circuitry when implementing speed control or monitoring functions.
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