
GaN2 Lite is a new generation of efficient chargers based on gallium nitride GaN semiconductors. The use of new materials has allowed for a 30% reduction in the weight and size of the charger without losing its performance.
The charger from Baseus features a USB output port and a USB Type-C port, allowing you to charge two devices at the same time. Additionally, both ports support fast charging. With GaN2 Lite, you can charge not only an Android phone, tablet, or iPhone, but also a laptop or gaming console.
iQ Smart Charging Technology
The intelligent iQ Smart Charging technology provides exceptionally fast charging for smartphones, tablets, MP3 players, cameras, and other mobile devices available on the market. The Baseus charger automatically selects the optimal charging speed for each connected device. Just plug in the appropriate cable.
7 Levels of Protection
The Baseus charger has undergone numerous safety tests and has received many certifications, allowing you to use it with confidence. The control chipset adjusts the current intensity to each device and protects it from damage. Thanks to 7 levels of protection, both your device and the charger are protected against overcharging, discharging, overvoltage, overheating, overcurrent, short circuits, and electromagnetic fields. The BTC technology accelerates heat dissipation, preventing the device from overheating.
Special BCT Technology activated by nanotechnology accelerates heat dissipation from the charger to prevent overheating.


Huge capabilities, small size
Thanks to the use of the latest technology, the device from Baseus is 30% smaller than a standard charger and consequently takes up less space. Additionally, CCGAN2L-B02 is more efficient than a standard charger because it adjusts the output power to the battery charge level. A wide voltage range - 100-240V and a frequency range of - 50~60Hz, allows the charger to be used anywhere in the world. Its compact size makes it easy to store, making the device perfect for travel.
Fast Charging Technologies
CCGAN2L-B02 supports fast charging technologies. Power Delivery 3.0 is a high-voltage charging standard that quickly and safely charges a wide range of devices, such as an iPhone or MacBook. With Samsung Adaptive Fast Charge, you can charge your device much faster than with a regular charger. Compatible phones with this technology include, for example, Samsung S20/S9. Meanwhile, Qualcomm Quick Charge 4.0 charges your device four times faster than a regular charger. Devices compatible with this fast charging technology include Xiaomi 10/9 Pro/8. The charger also supports the SCP protocol from Huawei. Phones compatible with SCP include Huawei Mate 40/P30. It is important to remember that both the device and the cable should support fast charging. Otherwise, the device will be charged in normal mode. It is also important that the charger’s power decreases depending on the number of connected devices.

- Network
- Integrated power plug
- AC 100-240V, 50/60Hz, 1.5A Max
- USB-C (PD) socket: DC 5.0V-3.0A 15.0W, 9.0V-3.0A 27.0W, 12.0V-3.0A 36.0W, 15.0V-3.0A 45.0W, 20.0V-3.25A 65.0W
- USB-A socket: DC 5.0V-3.0A 15.0W, 5.0V-4.5A 22.5W, 9.0V-3.0A 27.0W, 12.0V-3.0A 36.0W, 20.0V-2.25A 45.0W
- 65
- USB-C + USB-A connection option: 45W + 18W (63W)
- USB-A (QC 4.0)
- USB-C (PD 3.0)
- Before overcharging
- Before overload / short circuit
- Before overheating the charger
- original manufacturer's packaging
- Network
- Integrated power plug
- AC 100-240V, 50/60Hz, 1.5A Max
- USB-C (PD) socket: DC 5.0V-3.0A 15.0W, 9.0V-3.0A 27.0W, 12.0V-3.0A 36.0W, 15.0V-3.0A 45.0W, 20.0V-3.25A 65.0W
- USB-A socket: DC 5.0V-3.0A 15.0W, 5.0V-4.5A 22.5W, 9.0V-3.0A 27.0W, 12.0V-3.0A 36.0W, 20.0V-2.25A 45.0W
- 65
- USB-C + USB-A connection option: 45W + 18W (63W)
- USB-A (QC 4.0)
- USB-C (PD 3.0)
- Before overcharging
- Before overload / short circuit
- Before overheating the charger
- original manufacturer's packaging
Bantian Building B / 2nd Floor
2008 Shenzhen
Chiny
Email: care@baseus.com
Grafenberger 277
40237 Düsseldorf
Niemcy
Email: Info@apex-ce.de









