Iron Humanoid Robot
The Future of Humanoid Robotics
Advanced Artificial Intelligence in Action
Iron, Precision and Agility of Movement
Modern Technology from XPeng
Next-generation humanoid robot
Iron - Versatility in Applications
Iron is a humanoid robot from XPeng, measuring 178 cm and weighing 70 kg. With 60 joints and 200 degrees of freedom, it can precisely imitate human movements. Using AI and XPeng autonomous vehicle technology, it can be applied in factories and retail locations to support automated processes.
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Iron Humanoid Robot
Robot Iron is a humanoid project developed by Xpeng, a company best known for electric vehicles and innovative solutions in modern mobility. In 2025, Xpeng is using its experience in advanced engineering and artificial intelligence to develop a humanoid robot intended to provide effective support in environments typically designed for people, such as offices, reception areas, warehouses, and service spaces.
The Iron Robot features a lightweight, balanced design based on efficient electric actuators and advanced motion stabilization systems, enabling it to climb stairs, move through narrow corridors, and perform basic manipulation tasks. Xpeng also places strong emphasis on system safety and interoperability. Open programming interfaces (APIs) are planned to enable integration with advanced AI systems and cloud services.
The Robot Iron project is intended for applications including light logistics tasks, customer service, and the education sector. Pilot tests carried out in 2024 and continued development in 2025 indicate that Robot Iron is a platform ready for adaptation and integration in dynamically changing business and educational environments.
History and Development
History of the Iron Humanoid Robot
XPeng, known in the automotive industry for electric vehicles and driver-assistance systems, decided to expand its expertise into humanoid robotics. The Iron Robot is one of the company's first projects in this field, aimed at bringing innovative automation solutions to everyday work and service environments.
Building on Experience in Electric Mobility and AI
- Xpeng began working on technologies supporting human-machine interaction by developing vehicle-assistance algorithms such as object recognition, image analysis and trajectory planning systems. These solutions, developed and refined between 2019 and 2021, became the foundation for the Iron Robot project, where safe and effective cooperation with people is of key importance.
- In 2021, the company announced its intention to create a humanoid robot using experience in actuator control and advanced AI algorithms developed in the e-mobility industry.
Official Presentation of Iron and Further Development Plans
- In 2022, Xpeng presented a Robot Iron prototype at the World Robot Conference in Beijing, demonstrating basic humanoid capabilities such as walking, bending down to pick up objects, and carrying them. Presentations also emphasized planned communication functions and possible cloud integration.
- In subsequent years, the project developed rapidly. Updates in 2025 confirm that the Iron Robot was equipped with more advanced AI functions, including speech recognition and 3D environment analysis, while battery performance and manipulators were also improved, enabling it to carry heavier objects.
Xpeng plans to further expand the functions of the Robot Iron, which is intended to enable broad deployment in services, light logistics, and education. Thanks to its modular design and continuous software updates, Robot Iron is intended to become a universal humanoid platform capable of safe and efficient cooperation with people in everyday work environments.
Technical Specifications
Technical Specifications of the Iron Humanoid Robot
Below is a detailed technical specification of the Iron humanoid robot developed by XPENG.
| Parameter | Value | Notes |
|---|---|---|
| Height | 178 cm | Similar to the height of an average person. |
| Weight | 70 kg | Suitable for robot stability and mobility. |
| Number of joints | Over 60 | Enables complex and precise movements. |
| Degrees of freedom | 200 | Provides a wide range of movements and gestures. |
| AI System | Proprietary 40-Core Turing AI Chip | Enables advanced data processing and decision-making. |
| Application | Assembly work in factories, service in stores, potentially offices and homes | Versatility in Different Work Environments. |
Iron is an advanced humanoid robot developed by XPENG, intended to support different sectors by automating manual tasks. Thanks to its advanced design, integration with artificial intelligence systems, and precise manipulation capabilities, Iron is a promising solution for companies seeking modern technologies that improve operational efficiency.
Xpeng
Applications and Use Cases
Xpeng focuses on the versatile capabilities of the Iron Robot, which, thanks to bipedal mobility and basic manipulation functions, can be used in services, logistics and education. Current data from 2025 confirms that the Iron Robot performs well where traditional solutions such as AGVs face limitations when navigating environments designed primarily for people.
Customer Service and Reception
Welcoming Guests and Providing Information: The Iron Robot can act as a reception assistant in hotels, shopping centers, and offices by registering guests, providing basic information about services, and directing visitors to the appropriate service points.
Distribution of Materials: Thanks to built-in manipulators, the robot can support distribution of leaflets, brochures, and other informational materials during conferences and events.
Light Logistics and Warehouse Tasks
Transport of Small Loads: The bipedal design allows Robot Iron to transport small packages and objects even in places with non-standard architecture, for example near stairs or in narrow passages where traditional wheeled robots cannot operate effectively.
Integration with WMS Systems: Planned integration with warehouse management systems enables automatic retrieval of transport orders and ongoing progress reporting, improving logistics operations.
Education and Research Projects
R&D Platform: Thanks to an open API, the Iron Robot is an attractive research platform for universities and laboratories, allowing students and researchers to test AI algorithms, motion-control systems, and human-robot interaction in near-real operating environments.
Demonstrations and Conferences: A humanoid robot attracts attention at educational and industry events, where it can demonstrate modern technologies and inspire further research.
Support in Offices and Service Facilities
Internal Operations: Robot Iron can act as an internal courier, carrying documents, files, and small parcels between departments or floors, helping streamline everyday work.
Representative Tasks: In conference centers and showrooms, a humanoid can present a company's offering, indicate locations, or provide basic information, strengthening the organization's modern image.
Integration Projects and Function Expansion
Software Updates: Thanks to its open architecture, Robot Iron receives updates from the cloud, expanding its AI capabilities and improving control algorithms, enabling continuous development of robot functions.
Manipulator Development: Xpeng plans to further improve the manipulators by increasing payload capacity and gripper precision, enabling more complex manual tasks.
In each of these scenarios Xpeng assumes that the Robot Iron will support employees in performing routine and time-consuming tasks, enabling more effective use of human resources and improving operational efficiency in office, service, and logistics environments. Further technological development, including improvements to batteries, manipulators, and AI functions, is intended to significantly expand the range of tasks for which Robot Iron can be used.
Technology and Innovation, Safety
Iron
The Iron Robot, developed by Xpeng, is intended to effectively combine advanced bipedal mechanics with artificial intelligence to ensure stable and safe operation in office and service environments. Updates in 2025 confirm that the project has been optimized for operational efficiency and user safety. Key technology topics and the manufacturer's safety approach are presented below:
Bipedal Drive and Stabilization
- Electric Actuators: Robot Iron uses lightweight yet efficient actuators located in the hip, knee, and torso joints. This solution enables smooth walking, effective maneuvering in narrow corridors, and climbing stairs and ramps.
- Dynamic Balance Algorithms: The built-in system continuously analyzes data from accelerometers, gyroscopes, and depth cameras, dynamically correcting the motion trajectory and ensuring stable steps even in changing environmental conditions.
Manipulators and Grippers
- Arms for Light Tasks: The current version of the Iron Robot handles relatively light objects, usually up to several kilograms, which is sufficient for basic activities such as opening doors, carrying documents, or light logistics tasks.
- Planned Expansion: Xpeng plans to introduce different types of grippers equipped with pressure sensors, enabling more precise manipulation of delicate objects in future robot versions.
Artificial Intelligence Algorithms
- Object Recognition: Using cameras and machine learning algorithms, Robot Iron can detect obstacles, identify objects, and plan an optimal route.
- Voice Communication (Planned): Xpeng is working on implementing voice command recognition modules, which will allow the robot to perform simple interactions with users, especially in reception environments.
Safe Coexistence with People
- Force Limits and Collision Detection: Special mechanisms and software automatically reduce joint torque when contact with a person occurs, while the obstacle-detection system can rapidly stop limb movement, minimizing injury risk.
- E-Stop Button: A standard emergency stop button enables the operator to immediately disable the robot drives in critical situations, further increasing safety.
Thanks to these solutions, Robot Iron not only achieves high operational efficiency but also provides a high standard of safety, making it an ideal tool for work in environments designed for people.
MenteeBot
Integration and Compatibility, Personalization and Solution Customization
Xpeng is developing the Iron Robot so that it can work easily with existing IT infrastructure and be adapted to a variety of applications, from light logistics tasks and customer service to educational projects. Current solutions in 2025 confirm that the project is based on an open architecture that enables rapid integration and flexible adaptation to dynamic market conditions. The main assumptions regarding integration and customization capabilities are presented below:
Open Programming Interface (API)
- Developer Tools: Xpeng plans to provide a comprehensive development environment including documentation and libraries that will enable the creation of dedicated applications for controlling robot movement, defining task sequences, and integrating with external AI services such as cloud-based image or speech recognition.
- Flexible Updates: The Iron Robot can receive regular software updates over the network, enabling continuous improvement of control algorithms and AI functions without replacing hardware.
Connectivity and IT Systems
- Wi-Fi, Ethernet: The robot is equipped with standard communication methods, facilitating remote monitoring, automatic updates, and ongoing real-time management of device operation.
- Integration with WMS/ERP: Xpeng plans for Robot Iron to receive tasks from warehouse and enterprise management systems, enabling automatic task execution in office and warehouse environments.
Gripper and Sensor Configuration
- Upper Limb Variants: The Iron robot can be adapted to specific work scenarios, for example by equipping it with manipulators offering different levels of precision, allowing more effective handling of items ranging from small packages to documents.
- Extended Sensors: XPeng is considering the use of different types of sensors, including depth cameras, thermal imaging cameras, and ultrasonic sensors, depending on the specific environment and customer expectations.
Enclosure Customization
- Branding and Color Scheme: Depending on needs, the customer can order a robot with specified enclosure colors and a logo, which is particularly important in service and marketing applications and supports a modern company image.
- Interactive Panels: Optionally, the Iron Robot can be equipped with a touchscreen panel (e.g. on the chest), enabling information display and user interaction, which increases functionality at service points.
Pilot Projects and Partnerships
- Real-World Testing: XPeng plans to cooperate with companies and institutions that want to test the robot in real operating environments. Such projects make it possible to gather feedback and continuously improve the functionality of the Iron Robot.
- Educational and Research Versions: The Iron Robot may be offered in configurations specially adapted for universities and laboratories, enabling research into AI algorithms and bipedal motion control.
Thanks to these solutions, Robot Iron has the potential to be easily integrated with existing IT systems and adapted to the specific requirements of each organization. This approach enables versatile deployments, from service and logistics applications to educational projects, supporting effective cooperation with personnel while requiring minimal infrastructure adaptation.
Iron
Benefits for Customers
The Iron Robot, developed by Xpeng, has the potential to significantly streamline everyday processes in various environments, from services and light warehouse tasks to education and research projects. Current data from 2025 confirms that, thanks to its bipedal design and advanced manipulation functions, Iron is becoming valuable support for staff, improving efficiency and the appeal of workplaces and customer service.
Time and Resource Savings
- Robot Iron takes over routine, repetitive tasks such as transporting documents, small parcels, or basic products in warehouses, allowing employees to focus on tasks requiring creativity and specialized skills.
- Bipedal mobility allows the robot to work in standard environments without costly infrastructure modifications, as it can efficiently navigate stairs, narrow corridors, and other spaces typical of offices and service facilities.
Modernized Customer Service
- At reception desks, hotels and service points, Robot Iron can serve as an assistant, welcome guests, provide basic information and direct them to the appropriate departments, reducing staff workload and strengthening the company's modern image.
- Planned speech-recognition functions will enable the robot to conduct simple voice interactions, further improving customer service and increasing the attractiveness of public spaces.
Integration with IT Systems
- Open API interfaces and Wi-Fi and Ethernet connectivity enable seamless integration of the Iron Robot with existing management systems such as WMS or ERP.
- This allows the humanoid to receive assignments in real time, report progress, and automatically adapt to changes in task schedules, helping optimize operational processes.
Educational and R&D Platform
- The Iron Robot provides an excellent research platform for universities and laboratories, allowing students and researchers to test AI algorithms, control systems and human-robot interaction under conditions close to real-world operation.
- Its presence at conferences and technology workshops attracts media and participant attention, promoting modern solutions in robotics and artificial intelligence.
Safe Coexistence with People
- The Iron Robot is equipped with advanced safety mechanisms such as joint force limiters, collision-detection systems, and an emergency-stop button (E-Stop), enabling the drives to be switched off immediately in critical situations.
- Rapid motion braking when unexpected resistance is detected minimizes the risk of injury and supports safe collaboration with personnel.
Thanks to these solutions, implementation of Robot Iron enables significant optimization of operational processes, improved customer service and greater work efficiency in office, service and warehouse environments. Current development work in 2025 focuses on further improving manipulation functions, extending battery operating time and developing communication capabilities, making the Iron Robot an increasingly versatile support tool for companies.
FAQ, 9 Most Frequently Asked Questions
Iron Humanoid Robot
Below we present brief answers to the most common questions about Robot Iron. If you have additional questions or are interested in implementing a humanoid in your company, contact us and explore the full FAQ section.
Xpeng is currently carrying out pilot projects and prototype testing. Broad commercial deployment will be possible after the development phase is completed and the design is refined based on testing feedback.
The manufacturer does not publish official price lists. The final cost depends on the selected configuration, for example the manipulator version, AI software, and support package, as well as the scale of the order.
Prototype data indicates several hours of active operation, with actual runtime depending on task intensity, such as the frequency of carrying objects and walking intensity. Xpeng has announced further energy management optimizations to extend operating time.
The current design of the Robot Iron manipulators is adapted to carrying lightweight objects, typically weighing a few kilograms. In future iterations, payload capacity may be increased depending on Xpeng's development priorities.
Xpeng plans to offer various customization options, including enclosure customization such as color changes and logo placement, as well as installation of interactive touch panels, enabling branding and adaptation of the robot's appearance to specific customer requirements.
Initially, the main focus is on speech recognition in Chinese and English. Future iterations are expected to expand communication capabilities, enabling more advanced conversation in different languages depending on available cloud AI services.
Robot Iron is equipped with joint torque limiters and a collision-detection system that automatically respond to contact with a person, reducing the risk of damage. In addition, a standard emergency stop button (E-Stop) enables immediate shutdown of the drives in critical situations. Operators should still follow basic occupational safety procedures.
Yes, an open API is planned that will allow the Iron Robot to receive orders from WMS/ERP systems and automatically report task completion, which is crucial in light logistics applications.
The current design was developed primarily for indoor environments such as offices, warehouses and stores. The robot is not designed to operate in extreme weather conditions or on very uneven terrain.
More questions?
If you would like to learn more about humanoid robots, we invite you to browse our complete FAQ section. There you will find additional questions, detailed instructions, and useful tips.
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NexaRob closely follows projects such as MenteeBot to offer companies and institutions comprehensive support in implementing innovative humanoids. Our mission is to provide solutions ready to streamline everyday processes, from services and education to light logistics. We believe that humanoid robots such as MenteeBot have significant potential when properly selected and integrated into the working environment.
- Expertise in Humanoid Robotics NexaRob works with various manufacturers and R&D centers, allowing us to recommend suitable options while taking into account industry specifics and company size. We analyze the humanoid robot market to select solutions that can deliver tangible benefits to clients.
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- Innovation and Further Development We stay up to date with trends in AI and mechatronics, allowing us to give customers access to the latest technological advances. We regularly expand our service offering, supporting companies in forward-looking investments in humanoid robotics.
Do you have questions about implementing a robot such as MenteeBot in your business? Contact NexaRob. We will show you how humanoids can support your processes, improve efficiency, and streamline customer service. With our experience, we will guide you through the entire process, from needs analysis to the gradual development of the robot's functions.
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Our team combines AI specialists, mechanical engineers, and IT integration experts. This enables us to prepare end-to-end humanoid implementation projects with safety and full functionality taken into account.
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We cooperate with customers and manufacturers in different parts of the world, making it easier to adapt robots to different markets and requirements. We provide support in scaling projects and after-sales service.
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- Production and Distribution of Humanoid Robots Together with manufacturers such as Mentee, we develop turnkey offerings covering hardware, software, implementation support, and service.
- AI and IoT Technologies Combining artificial-intelligence systems with humanoids opens the way to autonomous customer-service, warehouse, and educational scenarios with an unprecedented level of capability.
- Automation and Logistics Systems Humanoid robots combined with conventional automation (e.g. AGVs, conveyor belts) can improve supply chains and supply processes, especially where mobility and object manipulation are required.
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If you are interested in working with NexaRob or want to implement MenteeBot or another humanoid in your work environment, we invite you to contact us. Together, we will develop a plan for introducing the robot, ensure correct integration with IT systems, and train your team so that the entire process runs smoothly. We focus on innovation and sustainable implementations that genuinely support people in their everyday work.
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