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HyperGear SpeedBoost 25W PD Dual Output Wall Charger - Black - 15625
$ 18.47
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Description
HyperGear SpeedBoost 25W PD Dual Output Wall Charger - Black - 15625AT A GLANCE
From 0 to 50% in under 30 minutes
PPS - A more efficient charge
12W USB fast charging
Charge your daily tech side by side
BOX CONTENTS
SpeedBoost 25W PD Dual Output Wall Charger - Black
Documentation
HIGHLIGHTS
FROM 0 TO 50% IN UNDER 30 MINUTES
The SpeedBoost Dual Output Wall Charger showcases a 25W USB-C port engineered with a specialized PD/PPS chipset, optimized for the fastest Android and iPhone charging speeds. The intelligent technology also automatically scales down the output to safely fast charge tablets and smaller devices.
PPS – A MORE EFFICIENT CHARGE, FASTER AND SAFER
Programmable Power Supply (PPS) support for compatible phones allows the charger to make micro-adjustments throughout the charging cycle that boost its energy efficiency while also protecting your battery from unhealthy levels of heat buildup.
12W USB FAST CHARGING
The USB port delivers a high-speed 12W output that is more than twice as powerful as standard chargers — perfect for quickly powering up accessories like power banks, smartwatches, and noise-canceling headphones and earbuds, and for recharging portable games and console controllers while you keep playing.
CHARGE YOUR DAILY TECH SIDE-BY-SIDE
Power up your phone and your earbuds at the same time. Set up on the couch and give your tablet or eReader a boost while you recharge your controller for another game. Or keep the charger by your bedside and have a fully charged phone and smartwatch combo every morning.
WORLD-CLASS SAFETY FEATURES
Cutting-edge circuitry ensures you and your devices are protected from overcharging, overheating, overvoltage, and short circuit failures.
SMART CHIP TECHNOLOGY
Reduce energy waste and maximize charging efficiency to over 90%! Smart Chip Technology detects each device’s charging needs and automatically regulates the flow of power to keep your batteries charging optimally, preserving their long-term maximum capacity.