Thermalright Peerless Assassin 120 SE Extrem CPU Air Cooler with 6 Heat Pipes, Dual PWM Fans, AGHP heatpipe Technology, 154mm High Cooling, for AM5/AM4, Intel LGA1851/1700/1150/1151/1155/1156/1200
[Heat Dissipation Combination] The CPU heat sink is a dual tower dual fan structure, with a black anodized top plate, 6 fully electroplated anti-oxidation heat pipes, and a finely carved copper bottom. It is paired with an 1850RPM 120mm PWM fan, which can easily dissipate the CPU temperature and further improve the heat dissipation efficiency of the heat sink.
[Product Specifications] Model: Peerless Assassin 120 SE EXTREM, Size: 125x135x154mm, Heat Sink Material: Aluminum, Fan Size: 120x120x25mm, Fan Speed: 1850RPM+10%, Wind Pressure: 2.1MM H2O, Air Volume: 82CFM, Operating Noise ≤ 29.6dB (A), Fan Interface: 4PIN PWM, Combined with 2 PWM Fans, Can Bring Good Heat Dissipation Effect.
[154mm Heat Dissipation Height] The overall height of the radiator is 154mm, which is compatible with more chassis. The main body is made of all aluminum fins, which can provide a larger heat dissipation area
[Dual PWM Fans] Equipped with 120mm reversing fan blades, the dual fan has a speed of up to 1850RPM and an air volume of 82CFM, providing excellent heat dissipation. The fan has PWM function, which can adjust the speed according to the motherboard temperature without manual adjustment. The attached fan hook is fixed on the twin tower radiator.
[Wide Compatibility] Heat sink compatible with dual platform slots: Intel LGA 1851/1700/1150/1151/1155/1156/1200;AMD: AM4/AM5;The radiator comes with installation accessories, which can be installed according to the installation video or manual. (Note: Installing AMD platform requires using the original motherboard backplane for installation).
[Avoiding Memory Design] The heat sink adopts a chamfered design that avoids memory. When installing the fan, it is not blocked by the memory. If the memory height exceeds too much, the fan can be installed upwards. Twin tower style heat sink enhances heat dissipation performance.