| Thermaltake BigTyp 14Pro CPU Cooler Review |
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$ Check REAL-TIME pricing for Amazon.com Thermaltake CL-P0456 BigTyp 14 Pro Quiet Copper Heatpipe Universal CPU Cooler for Intel LGA775 AMD AM2 and Socket 939 Electronics USA Direct $ |
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| How We Tested |
 We are adopting the following metodology on our CPU cooler reviews. First we chose the CPU with the highest TDP (Thermal Design Power) we could: a Core 2 Extreme QX6850, which has a 130 W TDP. The choice for a CPU with a high TDP is obvious: as we want to measure how efficient is the tested cooler, we need a processor that gets very hot. This CPU works by default at 3.0 GHz, but we overclocked it to 3.33 GHz, in order to heat it as much as possible. We took noise and temperature measurements with the CPU idle and under full load. In order to achieve 100% CPU load on the four processing cores we ran at the same time Prime95 in "In-place Large FFTs" option and three instances of StressCPU program. We also compared the tested cooler to Intel stock cooler (with copper base), which comes with the processor we used. Temperature measurements were taken with a digital thermometer, with the sensor touching the base of the cooler, and also with the core temperature reading (given by the CPU thermal sensor) from SpeedFan program. For this measurement we used an arithmetic average of the four core temperature readings. Sound pressure level (SPL) was measured with a digital noise meter, with its sensor placed 4" (10 cm) from the fan. We turned off the video board cooler so it wouldn't interfere with the results, but this measurement is only for comparative purposes, because a precise SPL measurement needs to be done inside an acoustically insulated room with no other noise sources, what we do not have. Hardware Configuration
Software Configuration
- Windows XP Professional installed on FAT32 partition
- Service Pack 3
- Intel Inf driver version: 8.3.1.1009
- nVidia video driver version: 182.08
Used Software
Error Margin We adopted a 2 oC error margin, i.e. temperature differences below 2 oC are considered not relevant. |
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