Practical engineering notes on thermal interface materials — selection, calculation, failure modes and application specifics. Written for engineers who have to make the interface work, not to sell a material.

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Picking a pad for the first timeSelection Guide
Choosing between grease and a padPad vs Grease
Working out whether your design will hold temperatureThermal Resistance Calculation
Debugging a field failure or thermal driftTIM Pump-Out
Cooling AI servers or GPU clustersGPU Server Thermal Management
Designing traction inverters or convertersIGBT & SiC Modules
Building EV or ESS battery packsBattery Cold Plates
New to the units and terminologyW/m·K Explained
Evaluating graphene specificallyGraphene TIM Guide
Prefer to just ask someone? Send your power level, footprint, gap, mounting pressure and target service life to lipo@ngicer.com. We will tell you which thickness and material we would use — and if a standard pad is the right answer, we will say that too.

What we make

180 W/m·K
Graphene thermal pad — through-plane, for interfaces
1,200 W/m·K
Graphene thermal plate — in-plane, for spreading
<0.05
°C·cm²/W thermal resistance at low mounting pressure
150 °C × 1,500 h
Validated aging stability, drift ≤ 10%