TERKOBOT

MagicBot Gen1

MagicBot Gen1 is a full-size bipedal humanoid robot designed for embodied AI research, intelligent interaction, and advanced robotics development. With a 42-DOF structure, dual-arm coordination, multimodal perception, autonomous navigation capabilities, and open C++ and Python development support, it provides a flexible platform for education, research, exhibition guidance, and intelligent service applications.

Core Highlights

Full-Size General-Purpose Humanoid Robot

MagicBot Gen1 is a full-size bipedal humanoid robot development platform. It measures approximately 1740 × 580 × 280 mm in standing posture and weighs about 70 kg. Its bipedal, dual-arm, dual-hand, and waist-coordinated structure supports humanoid motion, manipulation, perception, and interaction development.

42 Active Degrees of Freedom

MagicBot Gen1 provides 42 active degrees of freedom across the head, waist, dual arms, legs, and hand-related joints. Each arm provides 7 degrees of freedom, while each leg provides 6 degrees of freedom for posture adjustment, dual-arm coordination, bipedal motion, and complex action planning.

High-Torque Joint Drive System

The robot uses low-inertia, high-torque joint motors and reduction systems. Its listed peak joint torque is no less than 350 N·m, with a maximum movement speed of over 4 km/h for walking, turning, posture adjustment, and dynamic motion-control research.

Multi-Robot Collaboration Capability

The supplied materials present multi-robot collaboration as an application direction. It can support task allocation, collaborative control, and complex workflow demonstrations involving multiple robots operating in the same area.

Multi-Sensor Environmental Perception

MagicBot Gen1 can be configured with 3D LiDAR, dual depth cameras, fisheye cameras, joint encoders, and a circular microphone array for environmental perception, spatial recognition, robot status feedback, visual interaction, and navigation development.

Voice and Multimodal Interaction

The robot supports voice commands, chatbot interaction, and intelligent voice-guidance functions. Combined with vision-recognition capability, it can be used for exhibition guidance, visitor reception, technology displays, and human-robot interaction projects.

Technical Specifications

MagicBot Gen1
CategoryParameterDescription
Mechanical ParametersStanding Dimensions1740 * 580 * 280 mm
Arm Extension Length800 mm (Shoulder joint to fingertips)
Thigh + Calf Length960 mm (510 mm + 450 mm)
Total WeightApprox. 70 kg
Material StructureMain structure: Aluminum alloy; Exterior: Engineering plastic PC+ABS
ReducerHarmonic drive reducer / Planetary reducer
Maximum Joint Torque≥ 350 N·m
Moving Speed≥ 4 km/h
Total Degrees of Freedom (DoF)42 (Active DoF)
Neck DoF2 (Yaw axis * 1 + Pitch axis * 1)
Arm DoF7 (Shoulder joint * 3 + Elbow joint * 1 + Wrist joint * 3)
Single Hand DoF11 (6 Active DoF, 5 Passive DoF)
Waist DoF2 (Yaw axis * 1 + Roll axis * 1)
Leg DoF6 (Hip joint * 3 + Knee joint * 1 + Ankle joint * 2)
Electrical ParametersModelJetson Orin NX
CPUArm® Cortex®-A78AE
Core Count8 cores
Threads8 threads
Max CPU Frequency2 GHz
VRAM16G
RAM16G
Cache2MB L2 + 4MB L3
Storage512G
GPUEquipped with 32 Tensor Cores, 1024-core NVIDIA Ampere architecture GPU
GPU Max Dynamic Frequency918 MHz
High-Performance Neural Accelerator3.0
Instruction Set64bit
OpenGL4.6
OpenGL ES3.2
Vulkan™1.1
CUDA11.4
Perception SensorsMID-360 3D LiDAR
D435 Depth Camera * 2
Fisheye Camera * 3
Audio ModuleCircular microphone array
AccessoriesSpeakerSpeakers
WiFiWiFi 6
4G/5G Module5G
BluetoothBT 5.2
Battery Capacity25Ah (1.35kWh)
Battery Life3-5 hours
Charging Time3 hours
OthersVoice InteractionVoice commands, Chatbot, Intelligent voice guide
Traversable TerrainAll-terrain
Visual InteractionFace recognition
Autonomous NavigationYes
Autonomous Obstacle AvoidanceYes
Map ConstructionManual mapping
Map ManagementYes
OTA UpgradeSupported
Programming LanguagesC++ / Python
APIRobot Main Control Service
High-Level Motion Control Service
Low-Level Motion Control Service
Sensor Control Service
Voice Control Service
Status Monitoring Service
SLAM Navigation Service
Control DevicesPhone (Android & iOS), Tablet (Android & iOS), Controller

Applicable Industries

Logistics and warehousing

Services and public venues

Home Services

Commercial Services

FAQ

Q1:Does MagicBot Gen1 support autonomous navigation?

Yes. MagicBot Gen1 can be used for environmental perception, map building, path planning, autonomous navigation, and obstacle-avoidance development.

Q2:What programming languages are supported?

MagicBot Gen1 supports C++ and Python development for robot body control, motion control, sensor integration, voice interaction, status monitoring, and navigation development.

Q3:Can MagicBot Gen1 be controlled by mobile devices?

Yes. The robot supports operation through smartphones, tablets, and handheld controllers for basic control, status monitoring, and project demonstrations.

Q4:How long can MagicBot Gen1 operate on one charge?

Typical runtime is approximately 3–5 hours. Actual battery life may vary depending on motion intensity, payload, number of active sensors, communication status, and ambient temperature.

Q5:Is MagicBot Gen1 suitable for exhibition guidance and reception?

Yes. Combined with voice interaction, vision recognition, autonomous navigation, and human-robot interaction, MagicBot Gen1 can be used for guidance and reception in corporate showrooms, science centers, museums, education bases, and events.

Customer Case

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