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This heatsink is designed with the cooling capacity matching the CPU’s TDP. Thermal Design Power (TDP), also known as thermal design point, is the maximum amount of heat that a computer component (like a CPU, GPU or system on a chip) can generate and that its cooling system is designed to dissipate during normal operation.
Computer cooling is required to remove the waste heat produced by computer components, to keep components within permissible operating temperature limits. Components that are susceptible to temporary malfunction or permanent failure if overheated include integrated circuits such as central processing units (CPUs), chipsets , graphics cards ...
The red crosses denote the most power efficient computer, while the blue ones denote the computer ranked#500. FLOPS per watt is a common measure. Like the FLOPS ( Floating Point Operations Per Second) metric it is based on, the metric is usually applied to scientific computing and simulations involving many floating point calculations.
Efficient heat sinks are vital to overclocked computer systems because the higher a microprocessor's cooling rate, the faster the computer can operate without instability; generally, faster operation leads to higher performance. Many companies now compete to offer the best heat sink for PC overclocking enthusiasts.
CPU GPU Memory support TDP Junction temp. range (°C) Cores Clock rate Cache Model Config [i] Clock (GHz) Processing power [ii] Base Boost L1 L2 L3; V1202B: February 2018 GloFo 14LP: 2 (4) 2.3 3.2 64 KB inst. 32 KB data per core: 512 KB per core: 4 MB Vega 3 192:12:16 3 CU 1.0 384 DDR4-2400 dual-channel: 12–25 W 0–105 V1404I: December 2018 ...
CPU GPU Memory Storage API support Special features Archi-tecture Cores Clock L2 cache Archi-tecture Core config [a] Clock GFLOPS [b] Pixel fillrate (GP/s) [c] Texture fillrate (GT/s) [d] Other Size Bus type & width Band-width (GB/s) Audio Other Liverpool Nov 2013: 28 nm 348 Jaguar 2 modules with 4 cores each 1.6 2× 2 MiB GCN 2
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More recently, in order to manage CPU power dissipation, processor makers favor multi-core chip designs, thus software needs to be written in a multi-threaded or multi-process manner to take full advantage of such hardware. Many multi-threaded development paradigms introduce overhead, and will not see a linear increase in speed when compared to ...