| Place of Origin: | China |
| Brand Name: | Ziitek |
| Certification: | RoHS |
| Model Number: | TIG780-50 |
| Document: | TIG780-50_Data Sheet.pdf |
| Minimum Order Quantity: | 5kg |
|---|---|
| Price: | USD 1-100/KG |
| Packaging Details: | 1kg/can |
| Delivery Time: | 3-7 work days |
| Payment Terms: | T/T |
| Supply Ability: | 10000KG/month |
| Products Name: | High Temperature Thermal Grease Silicone Thermal Paste For Heat Transfer And Overheating Prevention In Electronic Devices | Application: | Heat Transfer And Overheating Prevention In Electronic Devices |
|---|---|---|---|
| Thermal Conductivity: | 5.0W/mK | Construction: | Ceramic Filled Silicone |
| Recommended Operating Temperature (°C): | -45~200℃ | Color: | Gray |
| Keywords: | Silicone Thermal Paste | ||
| Highlight: | 1kg Thermal Conductive Silicone Grease,Electronic Component Gap Filling Silicone Grease,PCB Thermal Conductive Silicone Grease |
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TIG®️780-50 is a paste-like thermal interface material specifically designed for heat dissipation of various high and medium power electronic components. Under typical assembly pressure and small filling thickness, the material fully wets the contact surface, effectively eliminates interface air, and forms a continuous heat conduction path. This product is widely used in general electronic equipment cooling scenarios that require both cost efficiency and performance, including network communication, security monitoring, household appliances, and conventional industrial control hardware.
| Property | Value | Test Method |
|---|---|---|
| Color | Gray | Visual |
| Construction | Ceramic filled silicone | - |
| Bond Line Thickness (mm) | 0.031 | - |
| Density (g/cm³) | 2.3 | ASTM D792 |
| Viscosity (mPa·s) @25℃ | 450000 | GB/T 10247 |
| Recommended Operating Temperature (°C) | -45~200 | - |
| Thermal Conductivity (W/mK) | 5.0 | ISO22007 |
| Thermal Impedance (℃.in²/W) @30psi | 0.013 | ASTM D5470 |
| Volume Resistivity (Ohm*cm) | >1.0×10¹³ | ASTM D257 |
| Volatility Loss (%) @150℃,24hrs | <0.1 | - |
Available in 0.5kg, 1kg, and 2kg packaging specifications. For other specifications, please contact us.
Store from 5°C to 25°C with maximum humidity of 70%. Do not store in freezer or refrigerator below 0°C. Safe disposal method does not require special protection. Store in low temperature and dry conditions, away from open fire and direct sunlight. For detailed methods, please refer to the product material safety data sheet.
Ziitek is a high-tech enterprise dedicated to the R&D, manufacture, and sales of thermal interface materials (TIMs). With rich experience in this field, we provide the latest, most effective, and comprehensive thermal management solutions. Our facilities include advanced production equipment, full testing equipment, and fully automatic coating production lines supporting high-performance thermal silicone pads, thermal graphite sheets/films, thermal double-sided tape, thermal insulation pads, thermal ceramic pads, phase change materials, thermal grease, and more. Products are compliant with UL94 V-0, SGS, and ROHS standards.
Thermal grease is a paste-like Thermal Interface Material (TIM) primarily used to fill microscopic surface irregularities and air gaps between a heat source and a heat sink.
Thermal grease fills microscopic gaps and surface irregularities between mating surfaces, replacing low-conductivity air and improving heat transfer from the heat source to the heat sink.
Thermal grease is commonly used for CPUs, GPUs, power semiconductors, LEDs, and other electronic devices that require a very thin thermal interface layer.
No. An excessively thick layer of thermal grease can increase thermal resistance. Therefore, the amount and application thickness should be carefully controlled to achieve an optimal thermal interface.
Pump-out refers to the displacement or migration of a TIM from the interface area due to repeated thermal cycling and mechanical stress. Over time, this can increase thermal resistance and reduce thermal performance.
During long-term exposure to high temperatures, some thermal greases may experience evaporation, structural changes, or changes in rheological properties. These changes can affect interface contact and thermal performance.
Contact Person: Dana Dai
Tel: +86 18153789196