Cooling Hub

CPU Junction Temperature vs Surface Temperature, Explained
A CPU junction reading of 100°C does not mean the laptop surface is also 100°C, while 96°C at idle can indicate a serious contact or airflow fault. Learn how workload,... Read more...
Cooling Fan for Laptop Heat Wall Explained
A cooling fan for laptop heat can cut real-world temperatures by 8°C, 10–15°C, or even 17°C in community tests, but airflow eventually hits a wall. The hard limit is often... Read more...
How to Cool Down Laptop Heat at the Source
To learn how to cool down laptop heat, start where the watts are born: CPU, GPU, heatpipes, heatsink, vents, chassis, and room air. User reports show CPU spikes to 100°C,... Read more...
How to Cool Down Laptop Heat in Bed
Your laptop runs hotter in bed because fabric blocks underside vents and traps exhaust air under the chassis. Community tests report cooling-pad improvements from about 8°C to 10-15°C, but the... Read more...
How Do I Cool Down My Phone? Physics Explained
If your phone feels too hot to hold, the metal frame may be doing its job: moving heat away from the processor. The real problem starts when glass, titanium, charging... Read more...
CPU vs GPU Throttling Gaming: Why Frames Die
CPU vs GPU throttling gaming problems look similar on screen, but the limits are different: CPUs may bounce off 100°C, while many laptop GPUs hit a harder wall around 86-88°C.... Read more...
Thermoelectric Cooler How It Works: Step-by-Step Heat Movement Explained
Thermoelectric coolers don’t just blow air—they use the Peltier effect to actively pump heat out of your device, leveraging electrons as microscopic heat carriers. This guide breaks down each stage,... Read more...