Huawei To Bring World’s Fastest SuperCharge Technology To India With The HUAWEI Mate 20 Series
Huawei
Consumer Business Group announces the company’s upcoming Mate 20 flagships
would feature several industry first specifications, both on its design and
hardware that would set it apart from its predecessor.
The
HUAWEI Mate 20 Series is designed to enable consumers to enjoy a rich, more
fulfilled life with higher intelligence, unparalleled battery lives and
powerful camera performance. Besides its superior performance, the HUAWEI
Mate 20 Series also features ground-breaking improvement on battery life. The
HUAWEI Mate 20 series houses a large, high-density battery, and supports 40W
HUAWEI SuperCharge 2.0, which gives the device 70 percent charge in 30 minutes.
The
SuperCharge Technology is TÜV Safety Certified, with TÜV Rheinland’s safety
standards being some of the world’s stringiest. The fast and safe charging
technology charges the device while maintaining a low device temperature, so
users can have peace of mind while their devices are plugged in. In a fast
charging scenario, the activity may cause the lithium dendrites to form on the
surface of the anode, which is a leading cause of battery safety issues. To
ensure that batteries created are safer and deliver a longer battery life,
Huawei has introduced the ultra-fast battery charging technology. Huawei's
ultra-fast charging battery is the result of battery material innovation. It is
fully compatible with the existing battery solutions and contains silicon and
nitrogen-doped carbon materials.
Unlike
traditional fast-charging solutions, ultra-fast charge employs
a relatively low-voltage and high-current formula that aims to maximize the
amount of current delivered into the device, while minimizing efficiency losses
and throttling. This innovation is based on electrochemical kinetics
advancements, which enable ultra-fast charging batteries to support greater
power efficiency and current input. Leveraging the nitrogen-doped carbon frame,
Huawei improved the stability intercalation and deintercalation of lithium.

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