Hagibis Magnetic Cell Phone Cooler for Gaming, Live Streaming, Mobile Phone Cooling Pad Ice Storage Radiator for iPhone MagSafe Tablet iPad Pro Android (MC100B 16mm)
R 689
or 4 x payments of R172.25 with
Availability: Currently in Stock
Delivery: 10-20 working days
This item may be available in a different size, colour, scent, version or platform:
Hagibis Magnetic Cell Phone Cooler for Gaming, Live Streaming, Mobile Phone Cooling Pad Ice Storage Radiator for iPhone MagSafe Tablet iPad Pro Android (MC100B 16mm)
Original Design: Hagibis unique design Magnetic Ice Storage Phone Cooler—MC100B that provides physical cooling without the need for power. It can be reused and is compact and lightweight, making it the best choice for gaming and live streaming
No Power Required: Hagibis phone cooling pad supports for magsafe magnetic attachment, which can be attached to the metal back cover of the device or to an additional magnetic ring that is self-installed. Using the physical cooling principle of operation, it does not need to be connected to an additional charging cable to provide power, and can be used repeatedly
Built-in coolant storage: Hagibis cell phone radiator is unlike traditional radiators, this product uses a physical cooling method and only needs to be placed in the refrigerator to be frozen and taken out when in use
Two sizes are available: Different sizes of the working time is also different from the standard version can be cooled down about 30 minutes, the large-capacity version can be cooled down about 60 minutes, you can according to the needs of the appropriate choice! *NOTE: The specific duration depends on the environment and the temperature of the phone. After use, continue to put it in the fridge for freezing and can be reused multiple times. It is not recommended to purchase in environments without refrigeration conditions such as fridge
Multiple Protection: MC100B is unidirectional Heat Absorption, it has ABS shell and thermal insulation layer, ensuring more cold and hot exchange is only completed through the magnetic contact surface, prolonging heat dissipation time