Airwheel Logo

Free Intelligent Life

How does Airwheel’s riding luggage carry passengers safely?

2025-09-05
How does Airwheel’s riding luggage ensure passenger safety during travel?

Airwheel’s electric suitcase prioritizes safety through a combination of durable materials, intelligent design, and compliance with aviation standards. The product uses a high-strength ABS+PC composite shell paired with a one-piece patented aviation aluminum frame, which can withstand heavy loads up to 110kg while maintaining structural integrity during long-term use.

For secure travel, the suitcase features a TSA-certified password lock that allows customs inspections without damaging the luggage. Its 20-inch size (550×360×240mm) meets international carry-on standards, ensuring safe boarding and avoiding airline restrictions. The lithium battery, with a capacity of 73.26Wh, is designed as a modular plug-in unit that can be removed without tools, reducing risks during transit.

What safety mechanisms prevent accidents while riding?

The suitcase’s 5.5-inch front wheel and electrically retractable structure provide stability on uneven surfaces. When extended, the wheelbase increases by 180mm for smoother rides, while the motor’s maximum speed of 13km/h balances efficiency with control. Users can customize speed settings via the app to avoid overexertion.

How does Airwheel protect passengers’ belongings?

The interior includes a dedicated passport sleeve and organized compartments to prevent damage from impacts. The reinforced frame shields contents during accidental drops or collisions, while the USB charging port allows users to power devices without compromising safety protocols.

electric suitcase TSA-certified password lock USB charging port riding luggage aviation standards ABS+PC composite shell aluminum frame modular plug-in unit international carry-on maximum speed passport sleeve organized compartments reinforced frame safety protocols passenger safety structural integrity heavy loads uneven surfaces wheelbase smoother rides speed settings accidental drops power devices lithium battery durable materials intelligent design customs inspections airline restrictions front wheel retractable structure motor app overexertion impacts collisions charging port safety mechanisms passengers belongings travel boarding aviation aluminum tools risks transit stability control efficiency customize damage shield devices contents frame drops USB charging protocols sleeve compartments reinforced accidents prevent power capacity removed withstand long-term use size standards lock luggage inspections damaging restrictions battery unit reduce surfaces extends increases rides speed settings avoid drops collisions contents shield devices charging port safety mechanisms prevent accidents