Advanced ModMi for Research
$3,429.00
Description
- Modular design: Offers a wide range of module options, each with its own independent function
- Reconfigurable: Allows for creative and versatile building in a matter of seconds
- Desktop size: Can support up to 10 KG with full functionality, making it easy to move around and set up for demonstrations
- Open-source and compatible with multiple languages: Provides APIs, drivers, and demos for secondary development using C/C++, Python, C#, or Java on Windows, Linux, ROS, or external libraries
- Comprehensiveness: Comes preloaded with various forms of robots, including industrial robots, bio-robots, and innovative robots, providing full basic functionality for robotics
The Advanced ModMi for Research is designed for education, research, and competitions. This modular, reconfigurable, and versatile product supports multiple programming methods. It features sensor integration and AI technology, allowing users to build their own robot systems. Furthermore, it provides an excellent opportunity to enhance practical skills in robotics.
3x I-Joint Module
8x T-Joint Module
2x G Terminal Module
1x F Control Module
1x P Control Module
1x F Module Base
4x Omni Wheel
4x Orthogonal Module
1x Mini-Universal Wheel
8x Snake Wheel for T
1x Snake Wheel for F
4x Bionic Foot
2x Biped Panel
1x Mic
1x Camera
1x Infrared Tracking Sensor
1x Sound Sensor
1x Gesture Detection Sensor
1x Color Sensor
1x LED Matrix
1x RGB Light
1x Ultrasonic Sensor
1x Remote Control Sensor
1x Sensor Controller
1x Sensor Plate (32*16)
1x Sensor Fixing Block
1x Camera Fixing Plate (with Modular Buckle Interface)
1x Camera Fixing Sucker
1x F Map
1x Vision Experimental Map
3x Color Block
2x Color Band
1x DC Charger
1x Camera Shelf
1x Acrylic Plate(30-40cm)
1x Wiring for Sensor Controller
6x Wiring for Sensors
ModMi for Research – Designed for Learning and Experimentation through Secondary Development
The Desktop Modular Intelligent Robotic System is composed of an array of fundamental modules. These modules include joint modules, end effector modules, control modules, and additional auxiliary modules
Each module is self-contained and features standardized mechanical and electrical interfaces. Connecting different modules can be achieved in just 3 seconds. This allows users to create customized robotic systems according to their preferences, such as manipulators, bipedal walking robots, bipedal climbing robots, two-wheeled mobile robots, and autonomous mobile robots. The Mini Bot offers a diverse range of programming methods, including teach-in programming, graphical programming, and code programming. By integrating AI, students’ creativity and imagination can be effectively stimulated and nurtured


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