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Arctic Alpine 17 Compact Heatsink & Fan Intel 1700 Fluid

Arctic Alpine 17 Compact Heatsink & Fan, Intel 1700, Fluid Dynamic Bearing, 95W TDP,ACALP00040A,4895213703895

SKU: BCOM-1918
MPN: ACALP00040A
GTIN: 4895213703895
Stock Status: Sold Out
£30.35 £14.71

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Description

DescriptionSpecificationType: CPU Air CoolerAMD/Intel: Intel OnlyCompatibility: Intel 1700TDP: 95WFan Connector(s): 4-pinInstallation: Easy and tool-free installation#Hide#LED Lighting: NoColour: Black and WhiteLED Lighting: -Material: Aluminium heatsinkWeight: 288 gDimensions: (LxWxH) 96.2 x 96.2 x 77 mm200 mm fan cableHeatsink:Height: 32.75 mmDiameter: 93.6 mmFan Dimensions: 92 mmFan Controller: PWMRotation Speed: 100 - 2000 RPPMFan Bearing: Fluid Dynamic BearingNoise level: 0.3 SonePower: Fan Current/Voltage: 0.06 A/12 V DCAdditional Features: See OverviewPackage Type: RetailPackage Weight: 0.3250 kgWarranty: 6 Years#Hide#1700 Socket: Supports Socket 1700%%%% Compact Intel CPU Cooler     Designed For Intel Alder Lake The Alpine 17 is exclusively compatible with Socket LGA1700 and Intel's latest Alder Lake CPUs.           Full Control With Wide Rpm Range The Alpine 17 features a very wide PWM-controlled speed range. This reduces noise to the minimum while also guaranteeing the highest cooling performance.           Easy And Tool-Free Installation With the MX-4 already pre-applied, the Alpine 17 can be mounted directly. Thanks to the push pins, installation is a breeze. Additional tools are not needed to mount the cooler.           High-Quality Bearing Thanks to an alloy/lubricant combination developed in Germany, friction inside the bearing is reduced and higher efficiency is achieved. In this way, less heat develops, there is less bearing noise and the fan life is extended.           Improved Cooling Performance Through Innovative Heat Sink Design The extra fine cooling fins of the new Alpine are fanned out in a Y-shape. The high thermal conductivity of the aluminium is fully retained in the type of extrusion used. This novel production process makes it possible to produce a high-performance yet very compact radial heat sink. This results in an increase in the surface area of the heat sink, optimization of the airflow and thus an increase in cooling performance.  

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