Quadruped robot with 12 degrees of freedom and 45 N.m peak joint torque
8-core high-performance CPU with 6 TOPS computing capability
EDU research function and reinforcement learning training support
9600mAh smart battery with automotive-grade BMS power management
4G, WiFi, and Bluetooth multi-mode connectivity with OTA update support
TheCyberstars Cyber1 Edu is a research-oriented quadruped robot developed by Hangzhou Cyberstars Intelligent Technology Co., Ltd., purpose-built for academic institutions, robotics educators, and research teams. Sharing the same self-developed hardware platform as the broader Cyber1 series, the Edu variant delivers the same agile locomotion and robust mechanical performance while adding dedicated tools for structured learning and experimental robotics. Its aluminum alloy and high-strength engineering plastic frame supports up to 8 kg of payload and handles demanding terrain with ease. The platform is designed for laboratory environments, university programs, and applied research contexts where repeatability and hands-on experimentation are priorities.
The Cyber1 Edu perceives its surroundings through a wide-angle imaging system and front and rear ultrasonic ranging, enabling autonomous obstacle avoidance across varied test environments. Its EDU research function and reinforcement learning training capability set it apart from other variants in the Cyber1 lineup, giving researchers the tools to design, train, and validate their own locomotion and behavior models. OTA updates continuously expand the platform's capabilities, while the mobile app provides a straightforward interface for baseline operation and demonstration. The Cyber1 Edu is suited for universities, research laboratories, and educational programs seeking a capable and extensible quadruped robotics platform.
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Cyberstars
Cyber 1 Edu
Beyond Boundaries - Unbounded Agility
Max Speed
3 m/s
Payload
8 kg
Peak Joint Torque
45 N.m
Computing Power
6 TOPS
Battery
9600 mAh
Model Features
Discover the hardware technologies that define the Cyber1 Pro's performance, perception, and power delivery.
Dual
Perception→
Dual
Perception
Sensing System
Front Camera: 1920x1080, 120° ultra-wide-angle
Radar Coverage: Front and rear ultrasonic
Effective Range: Up to 4.5 meters
Function: Autonomous obstacle avoidance
LED Strip: Dynamic state display
High-Torque
Joints→
High-Torque
Joints
Peak Torque: ~45 N.m
Degrees of Freedom: 12 total
Hip Range: -30° to 30°
Thigh Range: -25° to 204°
Lower Leg Range: -114° to 17°
Power
System→
Power
System
Battery: 9600mAh (28.8V / 276.48Wh)
BMS: Automotive-grade power management
Max Working Power: 3000W
Supply Voltage: 28V to 33.6V
Runtime approx. 2 to 4 hours depending on activity.
Capabilities
The Cyber1 Edu combines research-grade tools, intelligent perception, and a proven hardware platform to support structured experimentation and applied robotics education.
Dual Perception System
The 1920x1080 wide-angle camera and dual ultrasonic radar work together to map the robot's surroundings in real time. This combination enables reliable autonomous obstacle avoidance across a range of environments.
Reinforcement Learning Training
The Cyber1 Edu supports reinforcement learning training workflows, allowing researchers to design and validate custom locomotion and behavior models directly on the hardware. This makes it a practical platform for applied machine learning and robotics research.
High-Performance Computing
An 8-core ARM processor delivering 6 TOPS of compute power drives the robot's motion control, perception, and interaction workloads simultaneously. This self-developed hardware platform is designed for both stability and processing efficiency.
Multi-Mode Connectivity
WiFi 2.4G, Bluetooth BT2.1/BT3.0/BT4.2/BLE4.2, and a 4G module provide flexible and reliable communication options for remote operation and data transfer. A companion mobile app and two-handed remote control round out the control ecosystem.
Use Cases & Application Scenarios
From university laboratories to applied research programs, the Cyber1 Edu is built to support structured experimentation and hands-on robotics education.
Robotics Research
The Cyber1 Edu provides research teams with a capable legged platform for studying locomotion, motion control, and sensor fusion in real-world conditions. Its 12-DoF architecture and high-torque joints support a wide range of experimental configurations and movement studies.
Reinforcement Learning
With native reinforcement learning training support, the Cyber1 Edu allows researchers to design, train, and evaluate custom behavior models directly on the physical robot. This bridges the gap between simulation-based development and real-world hardware validation.
University Programs
The Cyber1 Edu is well-suited for undergraduate and graduate robotics courses, offering students a tangible platform to apply concepts in dynamics, perception, and autonomous systems. Its mobile app interface keeps the barrier to entry low while the hardware supports advanced coursework.
Outdoor Field Testing
With a maximum climbing slope of 40 degrees and a drop height tolerance of 15 cm, the Cyber1 Edu handles outdoor test environments with confidence. Researchers can validate algorithms and behaviors across varied terrain conditions beyond the laboratory setting.
Cyberstars Cyber1 Edu Robotic Dog (Tech Gray)
Model: Edu
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Cyber1 Edu Robotic Dog
•
Smart Battery (9600mAh, 28.8V)
•
Charger (33.6V, 5A)
Package contents vary by configuration. Visual remote control is optional and not included by default.
Cyberstars Cyber1 Edu Robotic Dog (Tech Gray)
Model: Cyber1 Edu
Standing Dimensions
•
67 x 36 x 43 cm
Weight (Including Battery)
•
15.4 kg (±0.5 kg)
Values shown are from the manufacturer's reference.