Gyroscope self-balancing baby carriage

By using a self-balancing rotating seat system and escalator safety locking wheels, the safety and comfort issues of strollers in special scenarios are solved, achieving dynamic balance and personalized posture adjustment of the seat, thus improving the travel experience for infants and toddlers.

CN122126340APending Publication Date: 2026-06-02邓升爵

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
邓升爵
Filing Date
2026-02-12
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing strollers lack safety and comfort in special scenarios. In particular, the seat tilts when going up or down slopes, on bumpy roads, or during transportation, which can easily cause infants and toddlers to slip off. They are also not compatible with escalators, posing a risk of the stroller rolling away, and have a low level of intelligence.

Method used

It adopts a self-balancing rotating seat system, escalator safety locking wheels, and personalized posture memory adjustment function. The dynamic balance control of the seat is realized through the MPU6050 six-axis posture sensor and Arduino main control board. The three-piece wheels mechanically engage with the escalator steps, and users can preset and memorize the seat posture.

Benefits of technology

Maintaining the stability and comfort of the seat in various scenarios prevents infants and toddlers from slipping or rolling away, adapts to individualized posture needs in different situations, and improves the safety and comfort of infants and toddlers during travel.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to a high-safety stroller, addressing the pain points of existing strollers that are prone to tipping and sliding accidents when riding escalators. The aim is to develop a stroller product that combines practicality and safety features. This invention effectively avoids safety risks during escalator operation by incorporating an anti-slip locking mechanism adapted to escalator steps at the bottom of the stroller, or by adding an intelligent safety monitoring and braking device that automatically recognizes the escalator environment. From both structural design and intelligent sensing perspectives, it maintains the comfort and convenience of daily outings. This design significantly improves the safety of strollers in special scenarios, substantially reduces the incidence of stroller accidents on escalators, provides more reliable protection for infants and toddlers, meets parents' core needs for stroller safety performance, and has broad market application prospects.
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