Battery for Ninebot G30
Ninebot G30 Max Replacement Battery: Ensuring uninterrupted rides up to 65km, this battery boasts high-quality cells, advanced power management, and built-in safety features.

Original Ninebot G30 Max Charger: Swift, safe charging in 6hrs. Built-in with short-circuit & overheating protection. No need for extras!
SKU: G30-BUILT-CHARG
Is your Ninebot G30 Max scooter refusing to charge? Did it get flooded during a ride, and now it won't power up when plugged in? Don't worry; you don't need to part ways with your trusty scooter. If a defective charger is at fault, a simple replacement will do the trick.
Keep your scooter going with the original Ninebot charger, specifically engineered for Ninebot G30, Ninebot G30D, and Ninebot G30E models, ensuring seamless compatibility. This charger upholds Ninebot's commitment to quality and performance standards.
Once plugged in, the power supply initiates charging automatically, providing you with peace of mind. It has an array of safety features, including short-circuit and overheating protection.
The OEM Ninebot G30 charger is powerful, allowing for swift and secure battery replenishment. With its high-efficiency capabilities, it takes just around 6 hours to charge your scooter's battery from empty to full.
The integrated charger for the electric scooter adds convenience to your life, as there's no need to carry around an extra charger.
Keep rolling
Ninebot G30 Max Replacement Battery: Ensuring uninterrupted rides up to 65km, this battery boasts high-quality cells, advanced power management, and built-in safety features.
The extended kickstand for Ninebot G30 is a thoughtfully designed accessory that offers enhanced stability and convenience.
Loud yet discreet, the Ninebot G30 Max bell ensures rider's presence is known. Compatible with multiple scooter models, it's an essential safety accessory.
The gasket fits perfectly over the charging port, ensuring a tight and secure seal. This is vital as even the smallest gap allows moisture to enter, potentially leading to damage or short-circuiting of the electrical components.