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DELTA DC BRUSHLESS FAN EFB0512MA DC12V 0.12A, 174989-002, 2-WIRE, 50x50x10mm
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  • $45.00 
  • $14.00 Shipping
DELTA DC BRUSHLESS FAN DFB0612H DC12V 0.15A, 3-WIRE, 60x25mm
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  • $45.00 
  • $14.00 Shipping
DELTA DC BRUSHLESS FAN EFB0512MA DC12V 0.12A, 174989-002, 2-WIRE, 50x10mm
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  • $45.00 
  • $14.00 Shipping
DELTA EFB0612HA DC BRUSHLESS DC12V 0.18A, 3-WIRE, 60x10mm FAN
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  • $55.00 
  • $16.00 Shipping
DELTA EFB0612HHA DC BRUSHLESS DC12V 0.25A, 3-WIRE, 60x10mm FAN
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  • $55.00 
  • $16.00 Shipping
FAN, KD1204PFB2-8 P/N:(2) DC12V 0.6W, Y2K04, 2-WIRE, 40x10mm
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  • $55.00 
  • $14.00 Shipping
DB126015BH - DYNATRON SERVER CPU FAN, DC12V 0.43A W/HEATSINK
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  • $45.00 
  • $18.00 Shipping
FAN, SUNON KD1206PTB2 (2) DC12V 1.4W, 60x25mm, 2-WIRE, 2-PIN CONNECTOR
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  • $45.00 
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DC BRUSHLESS FAN AD0912HS-A76GL DC12V 0.25A 326704-001 B, 3-WIRE, 92x25mm
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  • $45.00 
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ADDA DC BRUSHLESS FAN AD0912HS-A76GL DC12V 0.25A 326704-001 B, 3-WIRE, 92x25mm
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  • $45.00 
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DC BRUSHLESS FAN AD0912HS-A76GL DC12V 0.25A 326704-001 B, 3-WIRE, 92x25mm
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  • $45.00 
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ADDA DC BRUSHLESS FAN AD0912US-A70GL DC12V 0.30A 252711-001 (TC), 2-WIRE, 92x25mm
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  • $45.00 
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FAN, DC BRUSHLESS AFB0612HA DC12V 0.22A, 3-WIRE, 60x10mm, NO CONNECTOR
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  • $45.00 
  • $18.00 Shipping
FAN, DC BRUSHLESS EFB0812HHB DC12V 0.40A, 6720W7R, 3-WIRE, 80x15mm
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  • $45.00 
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FAN, PANAFLO DC BRUSHLESS FBA08T12H DC12V 0.26A, 3-WIRE, 80x15mm
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  • $45.00 
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FONSAN DC BRUSHLESS AFB0712MC DC12V 0.24A, 3Z09WD, 3-WIRE, 70x13mm FAN
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FAN, PANAFLO DC BRUSHLESS FBA06A12H DC12V 0.22A, 2-WIRE, 2-PIN, 60x25mm
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  • $45.00 
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AVC DA12025B12L (120x120x25mm) DC 12V 0.30A 4-PIN/4-WIRE CASE FAN
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  • $55.00 
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AVC F6010T12HS (60x10mm) DC12V 0.19A BALL BEARING, 3-WIRE, FAN & NEATSINK
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  • $45.00 
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AVC C6025B12L (60x25mm) DC12V 0.12A BALL BEARING, 3-WIRE, FAN & NEATSINK
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  • $45.00 
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FAN, SUNON KD1206PTS3 DC12V 1.1W N9744 ZP CLE, 60x25mm, 2-WIRE
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  • $55.00 
  • $16.00 Shipping
DC BRUSHLESS AFB0612EH DC12V 0.48A, 3-WIRE, 60x25mm FAN/HTSNK
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  • $55.00 
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FAN DC BRUSHLESS AFB0612HA DC12V 0.22A, 3-WIRE, 60x10mm (NO CONNECTOR)
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  • $55.00 
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FAN,AFB1212SHE DELL P/N:5W190 DC12V 1.60A 120x38mm,TH-08X765 REV.A01
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FAN,AFB1212SHE DELL P/N:5W190 DC12V 1.60A 120x38mm,TH-08X765 REV.A01
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FAN,AFB1212SHE DELL P/N:5W190 DC12V 1.60A 120x38mm,TH-08X765 REV.A01
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  • $55.00 
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SUN SERVER FAN P/N 541-0275-04 REV.02, NIDEC BETAV VA300DC V35072-58
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  • $55.00 
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AFB1212SHE 5W190 DC12V 1.60A, 3-WIRE, 120x38mm FAN, TH-05X892-12800 REV.A02
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  • $45.00 
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AFB1212SHE 5W190 DC12V 1.60A, 3-WIRE, 120x38mm FAN, CN-08X765-71703 REV.A01
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  • $45.00 
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DELL PE2850 CN-0H2401, W5451, NMB-MAT 12VDC 1.65A, 60x38mm FAN
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  • $55.00 
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DIY cooling is one of the most cost-effective ways of boosting the performance of a computing system. Speed is usually the first casualty of an overheating rig. When a system becomes too hot, temperature sensors on the motherboard send a signal to the processor requesting it to slow down. Excessive heat also has the potential to cause irreversible damage to system components. For example, if hard drive cooling fails to maintain the temperature below 86 degrees, you run the risk of data loss or corruption. Newegg has all the accessories you need to set-up the cooling system of your choice.

Air Cooling for Fast and Affordable Cooling

Air DIY cooling uses fans to keep the internal environment of your system cool. They are easy to set up and are very durable. As this cooling option does not have an abundance of components, there is very little that can go wrong. CPU fans and heatsinks work together to dissipate excess heat, and can be set up in one of two methods:

  • Positive pressure configuration
  • Negative pressure configuration

Positive Pressure Configuration for Quick Setup

Under this setup, the Cubic Feet Per Minute (CFM) of the intake fans exceeds that of the relevant exhaust fans. The effect is that the pressure within the system exceeds the pressure without. This pushes air and dust out of the rig, using every opening as an exhaust avenue. One drawback of this setup is that it can only manage average cooling. This configuration cannot sufficiently cool GPUs that utilize Direct Heat Exhaust (DHE). To enhance the cooling capacity of this type of cooling, place your DIY heatsink strategically. That means putting these metal sheets at the rear, sides, and front of your CPU.

Negative Pressure Configuration for Better Cooling

In a negative pressure configuration, the exhaust fans have a higher CFM than their equivalent intake fans. This creates a pseudo-vacuum within the system, which proves very useful for keeping the rig cool. It cools the system better than the positive pressure setting, and can even work well with DHE GPUs.

Liquid Cooling for the Most Efficient Cooling

Liquid cooling is the preferred cooling system for gamers and other performance-reliant users. To max out the cooling effects of this setup, use a DIY radiator to dissipate excessive heat from the liquid coolant. The faster the DIY radiator loses the heat via the fins, the cooler the system and the faster it operates. There are two ways you can go about this DIY cooling strategy:

  • Closed-loop
  • Open-loop

Closed-Loop for Easy Installation

These rigs are ready for fitting right out of the box. They're cheaper than open-loops, easier to maintain and require minimal maintenance. They'll integrate with your current cooling mechanisms without forcing you to do an overhaul of your system. You'll not need any extra CPU accessoriesto get this configuration up and running.

Open-Loop With GPU Mounting Kit for Aesthetics

Open-loop cooling is very appealing to the eye, but that is at the cost of ease-of-use. It is very maintenance-reliant and equally hard to set up. A GPU mounting kit should help, however.

Bestselling DIY Cooling Reviews:

MnM1298
5/13/2025 6:20:23 AM
Better than Expected

“ EKWB open cooling loop ”

Alphacool HDX Pro Water - M.2 NVMe 2280 SSD - MCX Version (11769)