The 1X Neo is a cutting-edge humanoid robot from Norway. While detailed specifications are currently unavailable, this robot represents the Nordic approach to humanoid robotics, focusing on practical applications and innovative design.
Features
As a Norwegian-engineered humanoid, the 1X Neo is likely designed with the country's emphasis on sustainability and functional design. More information about its capabilities and applications will be released as development progresses.
Applications
Though specific applications aren't yet detailed, Norwegian robotics typically focus on industrial automation, marine applications, and solutions for harsh environments, suggesting potential specialized use cases for the 1X Neo.
AGibot A2
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Physical Specifications
Standing at 169 cm tall and weighing 69 kg, the AGibot A2 from China features a human-like build with a 10 kg payload capacity.
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Power System
Equipped with a battery system that provides up to 2 hours of operation, allowing for extended tasks without frequent recharging.
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Applications
Designed for various applications including industrial assistance, customer service, and research purposes, showcasing China's advancement in humanoid robotics.
Agility Robotics Digit
5'9
Height
Standing at human height for optimal interaction in human environments
143 lbs
Weight
Lightweight yet durable construction
35 lbs
Payload
Capable of lifting and carrying substantial objects
3 hrs
Battery Life
Extended operation time for workplace tasks
Apptronik Apollo
5'8" Height
Human-sized for seamless integration in workplaces designed for people
160 lbs Weight
Robust construction balancing strength and mobility
55 lbs Payload
Substantial lifting capacity for industrial applications
4 Hours Battery
Extended operational time for workplace productivity
Booster Robotics T1
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Compact Design
Standing at 1.2 meters tall with a weight of 30 kg, the T1 offers a smaller form factor than many competitors.
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Battery Performance
Features a 1.5-hour battery life, suitable for shorter operational tasks and demonstrations.
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Chinese Engineering
Represents China's growing presence in the compact humanoid robot market with innovative design approaches.
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Applications
Ideal for educational settings, research, and environments where a smaller humanoid presence is advantageous.
Borg 01
The Borg 01 is an emerging humanoid robot from the USA. While detailed specifications are not yet available, this robot represents American innovation in the humanoid robotics space. As development continues, more information about its height, weight, payload capacity, speed, and battery life will be released.
Boston Dynamics Atlas
Industry Leader
Pioneering humanoid robotics
Advanced Mobility
Parkour and dynamic movement
Robust Engineering
5'0" height, 190 lbs weight, 24 lbs payload
Boston Dynamics ElectricAtlas
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Electric Evolution
Next-generation fully electric design
Enhanced Performance
2.5 m/s speed capability
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Optimized Build
150 cm height, 89 kg weight
Clone Robotics ProtoClone
Innovative Design
The ProtoClone represents a new approach to humanoid robotics, with a focus on novel engineering solutions and experimental features.
Technical Development
Currently in development stages, with specifications to be announced as the project matures and testing progresses.
American Innovation
Developed in the USA, representing the country's continued push for advancement in humanoid robotics technology.
Deep Robotics DR-01
Chinese Innovation
Representing China's growing presence in advanced robotics
Mobility Focus
Capable of 1.6 m/s movement speed
Advanced Systems
Integrating cutting-edge control and perception technologies
Figure 02
Foundation Phantom MK1
Physical Specifications
Standing at 5'9" with a weight of 176 lbs, the Phantom MK1 features a robust build designed for stability and strength.
Lifting Capability
With a payload capacity of 44 lbs, this humanoid can handle substantial objects and perform meaningful physical tasks.
American Engineering
Developed in the USA, representing American innovation in the competitive humanoid robotics market.
Fourier GR-1
Fourier GR-2
Physical Specifications
The Fourier GR-2 maintains the same dimensions as its predecessor, standing at 165 cm tall and weighing 54 kg. This consistent form factor allows for compatibility with environments designed for the GR-1.
Performance Capabilities
With a payload capacity of 5 kg and a battery life of 4 hours, the GR-2 offers practical operational capabilities for extended use cases. While maintaining the same specifications as the GR-1, the GR-2 likely features software and control system improvements.
Galbot G1
Design Philosophy
The Galbot G1 represents Chinese innovation in humanoid robotics, with a design philosophy likely focused on practical applications and cost-effective manufacturing.
Development Status
Currently in development with specifications yet to be fully disclosed, the G1 is positioned as China's entry into the competitive humanoid robot market.
Potential Applications
While specific capabilities remain undisclosed, Chinese humanoid robots typically target industrial automation, customer service, and educational applications.
Humanoid HMND-01
Physical Build
5'9" height, 154 lbs weight
Payload Capacity
33 lbs lifting capability
Mobility
1.5 m/s movement speed
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Endurance
4 hours battery operation
K-Scale Zeroth
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Affordable Innovation
Priced at just $350, the K-Scale Zeroth represents one of the most accessible entries into humanoid robotics.
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Development Platform
Likely designed as an educational or development platform rather than a fully-featured service robot.
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American Design
Created in the USA, demonstrating the country's focus on democratizing robotics technology.
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Specifications Pending
Detailed specifications have not yet been released, suggesting this may be an early-stage or modular platform.
Kepler Forerunner K2
Chinese Innovation
The Kepler Forerunner K2 represents China's growing presence in the humanoid robotics field, showcasing the country's technological ambitions.
Development Status
Currently in development with specifications yet to be fully disclosed, positioning as a next-generation platform for various applications.
Technical Focus
While detailed specifications remain undisclosed, Chinese humanoid robots typically emphasize practical applications in industrial and service sectors.
Laser Robotics Hector V2
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Lightweight Design
At just 15 kg, the Hector V2 is one of the lightest humanoid robots available, enabling greater agility and reduced power requirements.
Power Efficiency
Features a 2-hour battery life, balancing operational time with the compact, lightweight design.
Chinese Engineering
Developed in China, representing the country's focus on efficient, practical humanoid robotics solutions.
MagicLab MagicBot
The MagicLab MagicBot is an emerging humanoid robot from China. While detailed specifications are not yet publicly available, this robot represents Chinese innovation in the humanoid robotics space. As development progresses, more information about its height, weight, payload capacity, speed, and battery life will be released.
Mentee MenteeBot
175 cm
Height
Human-sized for natural interaction
70 kg
Weight
Balanced for stability and mobility
25 kg
Payload
Substantial lifting capacity
1.5 m/s
Speed
Efficient movement capability
Neura Robotics 4NE-1
180 cm Height
Tall humanoid design for optimal reach and presence
80 kg Weight
Substantial build for stability and durability
15 kg Payload
Capable lifting capacity for practical tasks
3 km/h Speed
Measured movement for safe operation
Persona Industrial Humanoid
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American Innovation
Developed in the USA, representing American engineering in the industrial humanoid sector.
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Industrial Focus
Designed specifically for industrial applications, suggesting robust construction and practical capabilities.
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Development Status
Currently in development with specifications yet to be fully disclosed to the public.
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Market Positioning
Likely targeting manufacturing, warehousing, and other industrial environments where humanoid form factors offer advantages.
Pudu D9
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Physical Build
Standing at 5'7" with a weight of 143 lbs, the Pudu D9 features human-like proportions for optimal operation in human environments.
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Performance Capabilities
With a substantial payload capacity of 44 lbs and impressive movement speed of 2 m/s, this robot combines strength with agility.
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Chinese Engineering
Developed in China, the D9 represents the country's growing expertise in creating practical, high-performance humanoid robots.
Rainbow Robotics HUBO2
Korean Innovation
Leading South Korean robotics
Compact Design
4'3" height, 99 lbs weight
Operational Efficiency
1 hour battery, 11 lbs payload
Reflex Robot
American Innovation
The Reflex Robot represents American ingenuity in the humanoid robotics space, with development focused on creating versatile platforms for various applications.
Development Status
Currently in development with specifications yet to be fully disclosed, positioning as an emerging player in the competitive humanoid market.
Potential Applications
While specific capabilities remain undisclosed, American humanoid robots typically target research, industrial, and service applications with emphasis on versatility.
RobotEra STAR1
Sanctuary Phoenix
Canadian Innovation
The Sanctuary Phoenix represents Canada's entry into the humanoid robotics field, showcasing the country's growing technological capabilities.
Manipulation Focus
While specifications remain undisclosed, development appears focused on advanced manipulation capabilities for complex tasks.
Research Platform
Likely positioned as a research and development platform for advancing humanoid robotics technologies in various applications.
Tesla Optimus
Automotive Heritage
Developed by Tesla, bringing automotive manufacturing expertise and AI capabilities to humanoid robotics.
AI Integration
Leverages Tesla's extensive experience with artificial intelligence and neural networks from their autonomous vehicle development.
Mass Production Focus
Designed with mass production in mind, potentially making advanced humanoid robots more accessible and affordable.
American Innovation
Represents American engineering and Silicon Valley's approach to robotics development.
UBTECH Walker S1
Physical Specifications
The UBTECH Walker S1 stands at 172 cm tall and weighs 76 kg, featuring human-like proportions for natural integration in environments designed for people. With a payload capacity of 15 kg, it can handle meaningful tasks requiring object manipulation.
Chinese Engineering
Developed by UBTECH, one of China's leading robotics companies, the Walker S1 represents the country's growing expertise in creating sophisticated humanoid robots. UBTECH has established itself as a major player in the consumer and commercial robotics market.
Unitree G1
Consumer Accessibility
Priced at $16,000
Chinese Engineering
From established robotics manufacturer
Development Platform
Specifications pending release
Unitree H1-2
Unitree H1
$90,000
Price Point
Premium humanoid offering
5'7
Height
Human-sized proportions
103 lbs
Weight
Lightweight yet durable
33 lbs
Payload
Substantial lifting capacity
XPENG Iron
Automotive Heritage
From electric vehicle manufacturer
Humanoid Design
Full-sized bipedal platform
Chinese Innovation
Representing technological ambitions
Development Status
Specifications pending release
Humanoid Robot Comparison
Height Range
Most humanoid robots fall between 150-180 cm (4'11" to 5'11"), with outliers like the compact Rainbow Robotics HUBO2 at just 4'3" and taller models like Neura Robotics 4NE-1 at 180 cm.
Weight Distribution
Weights typically range from 50-90 kg (110-200 lbs), with lighter models like the Laser Robotics Hector V2 at just 15 kg and heavier platforms like Boston Dynamics Atlas at 190 lbs.
Battery Performance
Battery life varies significantly, from just 1 hour for the HUBO2 to impressive 8 hours for the RobotEra STAR1, with most falling in the 2-4 hour range for practical operation.
Frequently Asked Questions
What is a humanoid robot?
A humanoid robot is a robot designed to resemble and mimic human form and behavior. These robots typically have a head, torso, two arms, and two legs, allowing them to perform tasks in environments designed for humans.
What are humanoid robots used for?
Humanoid robots serve various purposes, including research, entertainment, education, customer service, healthcare assistance, and industrial applications. They can perform tasks like basic conversation, object manipulation, and movement in human-centric environments.
How much does a humanoid robot cost?
The cost of humanoid robots varies significantly based on their capabilities, from a few thousand dollars for basic models to several hundred thousand dollars for advanced research platforms. Consumer models typically range from $20,000 to $150,000.
Humanoid Robot Applications
Research & Development
Humanoid robots serve as platforms for advancing robotics technology, artificial intelligence, and human-machine interaction. They allow researchers to test new algorithms, materials, and control systems in human-like form factors.
Industrial Automation
In manufacturing and warehousing, humanoid robots can work alongside humans in environments designed for people. Their human-like form allows them to use the same tools and navigate the same spaces as human workers.
Customer Service
Humanoid robots are increasingly used in retail, hospitality, and information services. Their familiar form makes interaction more intuitive for customers, while their mobility allows them to navigate public spaces.
Humanoid Robot Technologies
Artificial Intelligence
Advanced decision-making capabilities
Computer Vision
Environmental perception and navigation
Dexterous Manipulation
Precise object handling and interaction
Bipedal Locomotion
Stable walking and movement systems
Buying a Humanoid Robot
Research Options
Explore available models based on your specific needs and budget constraints. Compare specifications, capabilities, and user reviews.
Verify Requirements
Ensure you have the necessary space, power, and technical expertise to operate and maintain a humanoid robot.
Consider Total Cost
Factor in not just the purchase price but also maintenance, software updates, and potential customization costs.
Contact Manufacturer
Reach out directly to manufacturers for detailed information, demonstrations, and purchasing options.
Key Considerations Before Purchase
Intended Use
Define your specific applications and required capabilities
Maintenance
Understand upkeep requirements and available support
Programming
Assess technical expertise needed for operation
Warranty
Review coverage terms and service options
Future of Humanoid Robotics
Advanced AI Integration
Future humanoids will feature more sophisticated artificial intelligence, enabling more natural interactions and autonomous decision-making in complex environments.
Decreasing Costs
As manufacturing scales and technology matures, humanoid robots will become more affordable, expanding their accessibility beyond research institutions to businesses and consumers.
Household Adoption
Humanoid robots will increasingly enter homes as personal assistants, performing household tasks and providing companionship, particularly for elderly care applications.
Workforce Integration
Industrial humanoids will become common in manufacturing, working alongside humans in environments previously challenging for traditional robots.