Small Yet Mighty

PowerPort Atom PD 1 | The World’s Smallest Power Delivery Charger

The world’s first pocket-friendly charger with the power to charge USB-C phones, tablets,
laptops, and more. All at full speed.

PowerPort Atom Highlights

  • 2.5x FASTER
    High-speed charging that leaves your phone’s
    stock charger in the dust. Charge to 50%
    of battery capacity in just 30 minutes.
  • 40% SMALLER
    Gallium nitride (GaN) enables semiconductor components to be made much smaller than before, bringing you the world’s first laptop charger that’s the size of a phone charger.
  • UNIVERSAL COMPATIBILITY
    Optimized to deliver full-speed charging for
    the entire range of USB-C and Apple phones,
    tablets, laptops, and more.

2.5× Faster

With 27W USB-C Power Delivery output, PowerPort Atom outperforms any stock charger by charging not only phones at high speed,
but also tablets, laptops, and more.

Charge to 50% of battery capacity in just 30 minutes. Leave the freebie charger in the box where it belongs.
  • PowerPort Atom PD 1
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  • Stock Phone Charger
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A Glance at GaN

Charging technology has come to an abrupt stop at the limits of silicon: it simply can’t be made any smaller without sacrificing power.
GaN (gallium nitride), on the other hand, does it all. That’s why we’re pioneering its use in charging technology.
  • Simpler Design
    GaN chips integrate power, control, and protection functions into simpler circuitry. This means fewer peripheral chips and a lighter weight charger.
  • Higher Efficiency
    All electronics waste some power, which gets converted into useless (and potentially dangerous) heat. GaN components are more efficient than silicon, wasting less power and emitting less heat. The result: much smaller chargers that are cooler and safer.
  • 3. Smaller Size
    GaN supports higher switching frequency during power conversion, allowing us to make transformers and other components much smaller than before—without sacrificing power.
  • Simpler Design
    GaN chips integrate power, control, and protection functions into simpler circuitry. This means fewer peripheral chips and a lighter weight charger.
  • Higher Efficiency
    All electronics waste some power, which gets converted into useless (and potentially dangerous) heat. GaN components are more efficient than silicon, wasting less power and emitting less heat. The result: much smaller chargers that are cooler and safer.
  • 3. Smaller Size
    GaN supports higher switching frequency during power conversion, allowing us to make transformers and other components much smaller than before—without sacrificing power.

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