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Sealed Tube: Houses the working fluid and maintains a vacuum to facilitate efficient heat transfer.
Suction Core: Impregnated with a saturated volatile liquid (such as distilled water, ammonia, methanol, or acetone) that aids in the heat absorption and transfer process.
Steam Channel: Allows the vaporized liquid to move from the evaporation section to the cooling section, where it condenses back into liquid.
Heat Absorption: The evaporation section absorbs heat from the source (e.g., power semiconductor devices), causing the liquid in the wick to boil and turn into steam.
Heat Transfer: The steam travels to the cooling section of the heat pipe, where it releases heat and condenses back into liquid.
Cycle Continuation: The condensed liquid returns to the evaporation section via capillary action in the suction core, repeating the process for continuous cooling.
Rapid Thermal Response: Over 1,000 times more effective than traditional copper tubes of equivalent size and weight.
Compact Design: Small size and lightweight construction make it ideal for space-constrained applications.
High Efficiency: Simplifies thermal management in electronic devices, enabling self-cooling mechanisms.
Maintenance-Free Operation: Functions without external power supply or special maintenance requirements.
Isothermal Performance: Minimal temperature gradient between evaporation and cooling sections ensures uniform thermal distribution.
Environmentally Friendly: Safe operation without harmful emissions.
Electronics Cooling: Suitable for CPUs, GPUs, and other high-power components requiring effective thermal management.
LED Lighting: Ideal for dissipating heat in high-power LED applications.
Industrial Equipment: Effective in managing heat in servers and other industrial machinery.
We offer custom designs tailored to specific requirements, including variations in size, shape, and materials. Contact us for bespoke solutions to meet your thermal management needs.
Manufactured under stringent quality control standards (ISO 9001 certified), our heat pipe thermal modules are tested for reliability and performance.
Sealed Tube: Houses the working fluid and maintains a vacuum to facilitate efficient heat transfer.
Suction Core: Impregnated with a saturated volatile liquid (such as distilled water, ammonia, methanol, or acetone) that aids in the heat absorption and transfer process.
Steam Channel: Allows the vaporized liquid to move from the evaporation section to the cooling section, where it condenses back into liquid.
Heat Absorption: The evaporation section absorbs heat from the source (e.g., power semiconductor devices), causing the liquid in the wick to boil and turn into steam.
Heat Transfer: The steam travels to the cooling section of the heat pipe, where it releases heat and condenses back into liquid.
Cycle Continuation: The condensed liquid returns to the evaporation section via capillary action in the suction core, repeating the process for continuous cooling.
Rapid Thermal Response: Over 1,000 times more effective than traditional copper tubes of equivalent size and weight.
Compact Design: Small size and lightweight construction make it ideal for space-constrained applications.
High Efficiency: Simplifies thermal management in electronic devices, enabling self-cooling mechanisms.
Maintenance-Free Operation: Functions without external power supply or special maintenance requirements.
Isothermal Performance: Minimal temperature gradient between evaporation and cooling sections ensures uniform thermal distribution.
Environmentally Friendly: Safe operation without harmful emissions.
Electronics Cooling: Suitable for CPUs, GPUs, and other high-power components requiring effective thermal management.
LED Lighting: Ideal for dissipating heat in high-power LED applications.
Industrial Equipment: Effective in managing heat in servers and other industrial machinery.
We offer custom designs tailored to specific requirements, including variations in size, shape, and materials. Contact us for bespoke solutions to meet your thermal management needs.
Manufactured under stringent quality control standards (ISO 9001 certified), our heat pipe thermal modules are tested for reliability and performance.