Cell Phone

Smartphones generate concentrated heat from 5G modems, high-performance SoC/CPU/GPU, and fast charging. Sheen thermal materials create low-resistance heat paths to move heat from hotspots to graphite/vapor chambers, the mid-frame, or the housing—helping keep performance stable and surface temperature comfortable.

You can achieve: ① less throttling under sustained load; ② better battery & IC reliability; ③ fewer hotspots in ultra-thin structures.

Need material selection? Share your target thickness and temperature range—get recommended parts, datasheets, and samples for validation.

Overview

Cell PhoneThermal Interface Materials (TIMs) Solutions

Smartphones generate concentrated heat from 5G modems, high-performance SoC/CPU/GPU, and fast charging in ultra-thin designs. Poor thermal transfer can cause throttling, slower charging, and uncomfortable surface temperatures.

Thermal interface materials (TIMs) create low-resistance heat paths from hotspots (SoC/PMIC/battery) to heat spreaders, graphite sheets, vapor chambers, the mid-frame, or the housing—improving sustained performance, reliability, and user comfort.

Benefits

Smartphone Thermal Materials, Built for Thin Designs & Sustained Performance

Reduce Hotspots, Maintain Peak Performance

Efficient heat transfer from SoC/CPU/GPU and power ICs to graphite/vapor chambers and mid-frame—less throttling under gaming, 5G, and AI workloads.

Thin Gap-Filling, Stable Contact Pressure

High-conformability TIMs accommodate tolerance stack-ups and uneven surfaces—lower thermal resistance and consistent unit-to-unit performance in slim assemblies.

Reliable Through Thermal Cycling

Low-bleed / low-volatility options help reduce contamination risk and maintain stable performance across thermal cycling, daily charging, and long-term use.

Fast Prototyping + Custom Converting Support

Custom thickness, hardness, and die-cut shapes for smartphones—quick sampling to speed up validation and smooth ramp to mass production.

Smartphone Thermal Applications

SoC & 5G Modem Thermal Coupling

TIMs transfer heat from the SoC/CPU/GPU and 5G modem to graphite sheets or vapor chambers—reducing hotspots and throttling under sustained load.

Battery & Fast-Charging Heat Control

Improve heat spreading from the battery pack and charging IC to the mid-frame—supporting fast charging stability and better long-term reliability.

Camera & Surface Temperature Management

Thermal pads/gels help couple camera modules and nearby components to the frame—balancing heat distribution and keeping touch temperatures comfortable.

Related Markets

Similar TIM solutions apply across compact, high-power electronics to control hotspots and improve long-term reliability.