VEEKTOMX PD 30W Fast Charging Power Bank - Model VT107

portable charger 10000mah
portable charger
portable charger
enviromemtal
  • Yes, this portable charger has dual USB C output ports and a detachable built-in cable, allowing you to charge two devices at the same time, improving the efficiency of your portable charging experience.

  • This power bank supports the PD 30W fast charging protocol, enabling rapid charging of your devices and significantly reducing charging time.

  • This power bank can charge a wide range of devices that are USB-powered, such as smartphones, tablets, and other USB-chargeable devices, including iPhones, iPads, MacBook and Android phones.

  • The power bank with 37Wh (37 watt-hours) capacity and 10000mAh battery can typically recharge a smartphone with a 3000mAh battery approximately 3-4 times, providing you with ample backup power on the go.

  • The 10,000mAh rating is based on the capacity at the rated voltage 3.85V. At higher voltages, the output current (mAh) must decrease to maintain the same energy output.

VEEKTOMX PD 30W Fast Charging Power Bank - Model VT107

portable charger 10000mah
portable charger
portable charger
enviromemtal
  • Yes, this portable charger has dual USB C output ports and a detachable built-in cable, allowing you to charge two devices at the same time, improving the efficiency of your portable charging experience.

  • This power bank supports the PD 30W fast charging protocol, enabling rapid charging of your devices and significantly reducing charging time.

  • This power bank can charge a wide range of devices that are USB-powered, such as smartphones, tablets, and other USB-chargeable devices, including iPhones, iPads, MacBook and Android phones.

  • The power bank with 37Wh (37 watt-hours) capacity and 10000mAh battery can typically recharge a smartphone with a 3000mAh battery approximately 3-4 times, providing you with ample backup power on the go.

  • The 10,000mAh rating is based on the capacity at the rated voltage 3.85V. At higher voltages, the output current (mAh) must decrease to maintain the same energy output.