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Zalman Case Fan AF120 120mm 600-2000rpm 4pin PWM 29.7dBa black

SKU: ZM-AF120BLACK
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Technical characteristics Zalman Case Fan AF120 120mm 600-2000rpm 4pin PWM 29.7dBa black:
Main features
Full list of features
Appointment for housing
A type fan
The fans 1 pcs
Maximum speed, rev / min 2000 ±10%
Max. air flow 69.12 CFM ±10%
Noise level 29.7 dB ±10%
Socket 4-pin /(вентилятор)
Dimensions 26x120x120 mm
The weight 160 g
Main
Appointment for housing
A type fan
Design
The fans 1 pcs
Fan
Maximum speed, rev / min 2000 ±10%
Max. air flow 69.12 CFM ±10%
MTBF 40 thousand hours
Static pressure 2.01 мм рт. ст. ±10%
Physical
Noise level 29.7 dB ±10%
Power consumption 3.36 W
Socket 4-pin /(вентилятор)
Dimensions 26x120x120 mm
Colour black
The weight 160 g
Warranty
Warranty 12 months
Package dimensions
Width 140 mm
Height 30 mm
Length 200 mm
Weight 0.22 kg
Volume 0.0008 m3
Zalman's own technologies and its fan design combine higher airflow and higher static pressure, ideal both for PC system cooling and for air/liquid CPU cooling.
279 UAH*
in stock
* Recommended retail price
Where to buy: Zalman Case Fan AF120 120mm 600-2000rpm 4pin PWM 29.7dBa black:
Online stores
Comtrading
Корпусний вентилятор Zalman AF120 BLACK, 120мм, 600-2000rpm, 4pin PWM, 29.7dBa
Iphouse.com.ua
Zalman Корпусный вентилятор AF120 120мм 600-2000rpm 4pin PWM 29.7dBa чёрный
Itbox
Кулер для корпуса Zalman ZM-AF120BLACK
Mekka
Корпусный вентилятор Zalman AF120 120мм 600-2000rpm 4pin PWM 29.7dBa чёрный (ZM-AF120BLACK)
brain.com.ua
Кулер для корпуса Zalman ZM-AF120BLACK
National networks
Epicentr
Корпусный кулер Zalman AF120 (ZM-AF120BLACK)
Features:

Powerful 120mm Annular Fan

Zalman AF120 annular fan is designed to prevent vortex and backflow at the end of the wings, which can improve efficiency and stability by suppressing vibration.

1. The blade vibration is minimized by preventing the trembling of the blades during fan operation and the durability is enhanced.
2. Wind noise is minimized by suppressing the vortex phenomenon that occurs on the blades.
3. Airflow is maximized by minimizing the a mount of air flow lost to the outer circumference of the rotor.

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