Cooler Master Hyper H411R: Compact and Efficient CPU Cooling for Reliable Performance
The Cooler Master Hyper H411R is a compact and efficient air cooler designed to deliver excellent thermal performance for small and mid-sized builds. Equipped with 4 direct-contact heat pipes and a 120mm PWM fan, it provides superior heat dissipation while maintaining a low-noise profile. Its small form factor makes it ideal for compact PC cases without sacrificing cooling performance.
The Hyper H411R is compatible with a wide range of Intel and AMD sockets, making it a versatile choice for budget-friendly builds, gaming PCs, and workstations. Its reliable cooling capabilities ensure stable CPU performance during gaming, multitasking, or demanding workloads.
Key Features:
- Compact Design: Perfect for small and mid-sized PC cases.
- 4 Direct-Contact Heat Pipes: Maximizes heat transfer for efficient cooling.
- 120mm PWM Fan: Adjustable speeds for optimal balance between cooling and noise levels.
- Universal Compatibility: Supports a wide range of Intel and AMD sockets, including:
- Intel: LGA1700/1200/1151/1150/1155
- AMD: AM4/AM5.
- Quiet Operation: Operates at a low noise level, ideal for quiet PC setups.
- Easy Installation: User-friendly mounting system for quick and secure installation.
Specifications:
- Dimensions: 102 x 83.4 x 136 mm
- Fan Dimensions: 120 x 120 x 25 mm
- Fan Speed: 600 – 2000 RPM (±10%)
- Airflow: Up to 57.3 CFM
- Noise Level: ≤ 29.4 dB(A)
- Heat Pipes: 4 direct-contact copper pipes
- TDP Support: Up to 130W
- Bearing Type: Rifle Bearing
- Power Connector: 4-pin PWM
Ideal For:
- Compact Builds: Designed to fit in smaller cases without compromising cooling efficiency.
- Budget-Friendly Systems: Affordable yet reliable cooling solution for everyday use.
- Gaming and Workstations: Ensures stable CPU temperatures for gaming and multitasking.
The Cooler Master Hyper H411R offers a perfect balance of performance, compactness, and affordability, making it an excellent choice for builders seeking efficient cooling in smaller form-factor systems.
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