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SSD
SSDs generate heat from the controller, NAND, DRAM cache, and power circuits in compact form factors. Excess heat can trigger thermal throttling, reduce sustained performance, and shorten service life.
Thermal interface materials (TIMs) create low-resistance heat paths to heat spreaders or housings to: ① reduce controller temperature and prevent throttling; ② maintain stable read/write performance under continuous workloads; ③ improve long-term reliability in 24/7 operation.


Overview
SSD (TIMs) Solutions
SSDs generate heat from the controller, NAND flash, DRAM cache, and power circuits—especially under sustained read/write workloads. Excess temperature rise can trigger thermal throttling, reduce throughput, and shorten service life.
Thermal interface materials (TIMs) create low-resistance heat paths from key components to heat spreaders, heat sinks, or housings—reducing hotspots, improving sustained performance, and enhancing long-term reliability.

Benefits
SSD Thermal Materials, Built for Sustained Performance
Efficient heat transfer from the SSD controller helps maintain stable throughput under sustained reads/writes.
Conformable TIMs bridge tolerance stack-ups—lower thermal resistance and consistent performance across builds.
Options designed for thermal cycling help reduce aging and support long service life in continuous operation.
Custom thickness and shapes for M.2/U.2/PCIe cards—rapid sampling to speed qualification and production ramp.
Related Applications
Optical Transceiver
High-speed modules with high power density reduce hotspots for stable performance.
Related Data Storage Markets
SSDs are widely used in data storage and high-speed infrastructure. Thermal interface materials help reduce controller hotspots, prevent throttling, and improve long-term reliability.





