Stock Code
301489
Innovative Technology
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Complete high-temperature graphitization sintering technology
Utilizing an independently controllable high-temperature sintering furnace and temperature control process, we have prepared highly oriented and thermally conductive synthetic graphite films. The results have been appraised by authoritative institutions as leading domestically, with a lateral thermal conductivity exceeding 1900W/m·K, suitable for ultra-thin heat dissipation in mobile phones and AIPC.

Directional coating and molding technology for high thermal conductivity composite materials
Utilizing an independently controllable high-temperature sintering furnace and temperature control process, we have prepared highly oriented and thermally conductive synthetic graphite films. The results have been appraised by authoritative institutions as leading domestically, with a lateral thermal conductivity exceeding 1900W/m·K, suitable for ultra-thin heat dissipation in mobile phones and AIPC.

Simulation and processing technology for high-power cold plates with microchannels
Utilizing an independently controllable high-temperature sintering furnace and temperature control process, we have prepared highly oriented and thermally conductive synthetic graphite films. The results have been appraised by authoritative institutions as leading domestically, with a lateral thermal conductivity exceeding 1900W/m·K, suitable for ultra-thin heat dissipation in mobile phones and AIPC.

Supporting technology for liquid cooling integrated module
Utilizing an independently controllable high-temperature sintering furnace and temperature control process, we have prepared highly oriented and thermally conductive synthetic graphite films. The results have been appraised by authoritative institutions as leading domestically, with a lateral thermal conductivity exceeding 1900W/m·K, suitable for ultra-thin heat dissipation in mobile phones and AIPC.





