Baseus Cafule Series Metal Data Cable - Type-C to Type-C - 100W - 2m - White


Currently unavailable


Currently unavailable
The Baseus Cafule Series Metal Data Cable is designed for power users who require reliable, high-speed charging for laptops and mobile devices. It offers robust support for up to 100W power delivery, making it ideal for professionals and students alike, though its 480Mbps data transfer speed is strictly limited to USB 2.0 standards, which may be slower for those transferring massive media files.
| Model Part Number | IN-DUN-CATJK-D02 |
|---|---|
| Brand | Baseus |
No, this cable is designed for power delivery and USB 2.0 data transfer and does not support video signals.
Yes, it is fully compatible with all USB-C devices, and it will safely negotiate the power required for your phone.
Thanks to the braided nylon design, the cable remains flexible and resistant to tangling while maintaining structural integrity.
The E-Marker chip communicates with your charger and device to ensure the cable safely handles high current and avoids overheating.
Yes, it is compatible with any standard USB-C charger, provided the charger meets the safety requirements of your device.
Ensure that both your power adapter and the target device support 100W Power Delivery and that the connection is fully seated.
This cable is restricted to USB 2.0 speeds (480Mbps). Ensure you are not using it for large-scale file transfers that require USB 3.0 or higher bandwidth.
Unplug both ends and reconnect firmly. If the issue persists, try a different USB-C port on your host machine.
This cable is a plug-and-play solution. Simply insert either end into a Type-C port on your power source and your target device. It is universally compatible with USB-C enabled smartphones, tablets, and laptops. To ensure the longevity of the cable, avoid bending the strain relief points at sharp angles. When cleaning, use a dry or slightly damp microfiber cloth to wipe down the nylon braid, and avoid submerging the zinc alloy connectors in water to prevent potential oxidation.