PTM7950 Phase Change GPU Thermal Pad
PTM7950, the next generation of phase change material (PCM) thermal pad, is composed of thermally conductive ceramic particles dispersed in a unique phase change material matrix, with the addition of high-performance carbon fillers. It delivers an outstanding thermal conductivity of 10.0 W/mK, which outperforms traditional thermal pads and thermal greases.
Product Features:
● High thermal conductivity of 10.0 W/mK for efficient heat dissipation
● Conforms to irregular surfaces for optimal thermal contact
● Withstands high temperatures up to 300°C, ensuring reliability in demanding applications
● Thickness of 1.0 mm, providing flexibility and space-saving
● Non-toxic and environmentally friendly, RoHS compliant
Benefits:
● Enhanced cooling performance for high-power GPUs and other electronic components
● Reduced component temperatures for improved stability and longevity
● Easy installation due to its conformability and tack-free surface
● Durable and long-lasting, providing consistent performance over time
● Contributes to a greener and safer environment
Applications:
PTM7950 phase change GPU thermal pad is commonly used in demanding applications where efficient heat dissipation is crucial, such as:
● High-performance graphics cards
● Server systems
● Telecommunication equipment
● Power electronics and converters
Additional Features:
● Low thermal resistance, minimizing temperature differences between components
● User-friendly design, requiring no additional curing or adhesives
● Versatile and can be cut to custom sizes for specific applications
Technical Specifications:
| Property | Value |
| ———– | ———– |
| Thermal Conductivity | 10.0 W/mK |
| Temperature Range | -50°C to 300°C |
| Thickness | 1.0mm |
| Density | 3.0 g/cm³ |
| Hardness | Shore A 80 |
| Color | Natural White |
Conclusion
PTM7950 phase change GPU thermal pad offers a combination of ultra-high thermal conductivity and conformability, making it an ideal choice for high-power electronic cooling applications.
References:
Manufacturer’s Website
Technical Blog