Baseus Super Si 20W QC PD 3.0 Type-C Charger - Phonetive.pk
Baseus Super Si 20W QC PD 3.0 Type-C Charger - Phonetive.pk
Baseus Super Si 20W QC PD 3.0 Type-C Charger - Phonetive.pk
Baseus Super Si 20W QC PD 3.0 Type-C Charger - Phonetive.pk
Baseus Super Si 20W QC PD 3.0 Type-C Charger - Phonetive.pk

    Baseus Type C Super Si PD 20W Mobile Charger

    Rs.3,499.00 Rs.5,199.00
    • Barcode:
    DESCRIPTION

    Product Code: ZNP-1486

    Baseus Super Si 20W USB C PD Charger For iPhone Type C PD Fast Charging Portable Phone Charger For iPhone Samsung Huawei Xiaomi US Plug Wall Charger

    Speed up Charging Time by 3 Times

    All Apple 8 and above models support PD fast charging, which speeds up charging time by 3 times compared to 5V/1A chargers.

    Intelligent Power-off Protection

    Automatically matching the required current according to devices for different charging demands.

    As Small as a Coin, Put it in a Pocket

    New Super Si black technology helps reduce the size further, offering the performance of an 18W charger at the size of a 5W one.

    Smaller and More Efficient

    Super Si is a new type of silicon-based material that has advantages in density, thermal conductivity and efficiency conversion. With Super Si black technology, chargers can be smaller, faster, and operate safely and reliably in high-temperature conditions.

    Fast Heat Dissipation for Constant Temperature

    Highly heat-resistant ABS material allows internal heat to quickly dissipate from the surface of the casing, maintaining a normal operating temperature even under high-power output working conditions.

    Compatible with All Fast Charging iPs

    Is it time to throw away your 5V/1A charger? Yes, because this Super Si charger supports 9V/2.22A 20W output and provides USB PD quick charge for Apple.

    Multi-protocol Compatibility

    For Apple and Android Devices. Support PD 3.0, QC 3.0, Apple2.4, BC 1.2 and other fast charging protocols.


    AC 100-240V wide band voltage, conform to global specifications of input voltage.