Core technology 1

Personal Mobility

Driving Platform


Built on a single drive platform, we scale wheel shapes and sizes to power a wide range of personal mobility products and driving-robot solutions. A modular design rooted in a common architecture secures development efficiency and scalability at the same time. 

Personal Mobility Driving Platform
Built on a single drive platform, we scale wheel shapes and sizes
to power a wide range of personal mobility products and driving-robot solutions.
A modular design rooted in a common architecture secures development efficiency
and scalability at the same time.


Dual-Motor Synthesis Technology

We develop powered wheels built on an in-wheel system that integrates dual motors and the battery into a single unit. Our proprietary multi-channel motor controller, a first of its kind, precisely coordinates two or more synthesized motors, delivering an optimized drive system that achieves high efficiency and low cost at once.


Powered Wheels Built on In-Wheel Motors

초고출력 BLDC 허브모터를 전동휠에 일체화한 모터 드라이브 시스템을 개발합니다.
컴팩트한 일체형 설계를 통해 공간 효율성과 구동 안정성을 동시에 확보했습니다.
퀵 릴리즈 시스템을 적용하여 다양한 모빌리티 플랫폼에
신속하고 유연하게 확장 적용이 가능합니다.

Core technology 2

Advanced Driving

Safety System


Multi-layer Sensing, Proactive Safety Control

We develop a multi-layered, sensor-based safety system that detects and manages potential hazards before they arise. Recognizing obstacles, drop-offs, slopes, and sharp turns in real time, this proactive driving-safety architecture applies automatic deceleration and braking assistance to help prevent accidents.

Obstacle Detection 

Ultrasonic sensors measure the distance to obstacles ahead in real time. Within 2 m, the system automatically slows down with an alert. Within 1 m, it brings the device to a stop with an alert.

Drop-Off Detection 

A built-in PDS sensor detects drop-offs of 7 cm or more, bringing the device to a stop with an alert when a hazard is identified.

Dual-Motor Synthesis Technology

We develop powered wheels built on an in-wheel system that integrates dual motors and the battery into a single unit. Our proprietary multi-channel motor controller, a first of its kind, precisely coordinates two or more synthesized motors, delivering an optimized drive system that achieves high efficiency and low cost at once


Powered Wheels Built on
In-Wheel Motors
 

We develop a motor-drive system that integrates an ultra-high-output BLDC hub motor directly into the powered wheel.
Its compact, all-in-one design secures both space efficiency and driving stability, while a Quick-Release system allows fast, flexible deployment across a variety of mobility platforms.

Advanced Driving Safety System
Multi-layer Sensing, Proactive Safety Control
We develop a multi-layered, sensor-based safety system that detects and manages potential hazards before they arise. Recognizing obstacles, drop-offs, slopes, and sharp turns in real time, this proactive driving-safety architecture applies automatic deceleration and braking assistance to help prevent accidents.


Core technology 2

Autonomous Driving
& Navigaion Algorithm


Using LiDAR-based 2D and 3D SLAM, the system maps and understands its surroundings with precision, while an intelligent navigation algorithm optimizes the route to improve both safety and driving efficiency. The result is a true AI autonomous-driving experience.

Obstacle Detection


Drop-Off Detection


Ultrasonic sensors measure the distance to obstacles ahead in real time. Within 2m, the system automatically slows down with an alert. Within 1m, it brings the device to a stop with an alert.


A built-in PDS sensor detects drop-offs of 7 cm or more, bringing the device to a stop with an alert when a hazard is identified.



Slope Detection & Deceleration


Cornering Detection & Deceleration 


Using an IMU sensor, the system calculates speed and incline to control deceleration on downhill stretches. On steep grades where there's a risk of tipping, it brings the device to a stop with an alert.


Using an IMU sensor, the system calculates speed and incline to control deceleration on downhill stretches. On steep grades where there's a risk of tipping, it brings the device to a stop with an alert.

Autonomous Driving
& Navigation Algorithm
 
Using LiDAR-based 2D and 3D SLAM, the system maps and understands
its surroundings with precision, while an intelligent navigation
algorithm optimizes the route to improve both safety and driving efficiency.
The result is a true AI autonomous-driving experience.

The Core Technology Behind AI Autonomous Driving

SLAM Algorithm

Recognizes and avoids both moving and stationary obstacles in real time while calculating the optimal route.

LiDAR Sensor

Uses laser light to analyze the surrounding environment in real time and build a 3D map for safe driving.

IMU Sensor

Tracks the device's motion
and orientation to support
precise positioning.

The Core Technology Behind AI Autonomous Driving

SLAM Algorithm 

Recognizes and avoids both moving and stationary obstacles in real time while calculating the optimal route.

IMU Sensor 

Tracks the device's motion and orientation to support precise positioning.

LiDAR Sensor 

Uses laser light to analyze the surrounding environment in real time and build a 3D map for safe driving.

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Everybot Mobility Co., Ltd.ㅣCEO Jung Woochul

6th Floor, Building A (Gwacheon Urban Hub), 60

Gwacheon-daero 7na-gil, Gwacheon-si, Gyeonggi-do, Republic of Korea

Business Registration Number : 404-86-03523

Mail-Order Business Report Number :

No. 2024-Seongnam Bundang-A-0783


@2024 everybot mobility. All rights reserved. Designed by saleswell


Everybot mobility Co., Ltd. ㅣ CEO Jung Woochul  6th Floor, Building A (Gwacheon Urban Hub), 60 Gwacheon-daero 7na-gil, Gwacheon-si, Gyeonggi-do, Republic of Korea Business Registration Number : 404-86-03523 Mail-Order Business Report Number : No. 2024-Seongnam Bundang-A-0783
@2024 everybot mobility. All rights reserved. Designed by saleswell