π Product Overview: Elevate your charging experience with our innovative Dual USB C Cable. Designed as a USB C to Type C Splitter Charging Cable, this versatile 2-in-1 Micro USB Multi Charging Cable is ideal for powering multiple devices simultaneously. Seamlessly switch between USB C and Micro USB connections to meet your diverse charging needs.
Specifications:
- Input Port: Type-C or USB Male
- Output Port: 2x Type-C Male or 1x Type-C / 1x Micro USB Male
- Operating Voltage: 5V
- Maximum Current: 2A
- Cable Length: Approx. 1m/3.3ft
π Premium Features:
- Dual Output Capability: The cableβs design includes two Type-C connectors, allowing for the efficient charging of two devices at once, making it perfect for busy lifestyles.
- Durable Construction: Made from high-quality plastic, this cable is built to last, ensuring long-lasting performance in any environment.
- Stable Charging: A quality copper wire core ensures a stable current, effectively isolating external interference and preventing issues such as short circuits and overcharging.
- Designed for Charging: Specifically engineered for charging purposes only, this cable does not support data transfer, simplifying your charging setup.
- Wide Compatibility: Compatible with a variety of smartphones and tablets, this cable is perfect for anyone looking to charge multiple devices on-the-go, from daily commuters to busy families.
π‘οΈ Important Notes:
- For optimal performance, especially when charging multiple devices or compatible tablets, it is recommended to use a USB C charging adapter rated at 5V/3A.
- Charging speed may decrease when multiple devices are connected; however, a current of up to 2A can be achieved when charging a single Type-C port mobile phone.
- Please note that the latest iPhone 15/16 series mobile phones will only support standard charging and will not offer 60W fast charging functionality.
- This cable is designed solely for charging; data transmission is not supported.
β‘ Measurement Disclaimer: Please allow for 1-2cm variations due to manual measurement and slight color differences based on display resolutions.