Borg 01 Humanoid Robot
The Future of Industrial Automation
A Modular Robot for Your Factory
An intelligent solution for production tasks
Flexibility and performance in one device
A New Era of Industrial Robotics
Borg 01, Your Partner in Modern Production
Borg 01 is a breakthrough humanoid robot created by Borg Robotics in Detroit and designed specifically for industrial and manufacturing environments. Standing 173 cm tall and weighing approximately 62 kg, it combines bipedal mobility with advanced AI-based capabilities. Its modular design allows it to switch autonomously between walking and wheeled movement, enabling efficient navigation through warehouses and factories.
Contact us Watch the videoBorg 01 - Borg Robotics
Borg Humanoid Robot
The Borg 01 Humanoid Robot, developed by Borg, is another concept in automated bipedal platforms combining human-like mobility with extensive artificial-intelligence functions. The project aims to create a versatile and flexible unit capable of operating in diverse environments, from service and marketing areas to light warehouse and educational applications. Borg 01 is expected to feature a compact design, low weight and modular architecture, making it easy to integrate with applications and AI systems tailored to specific tasks.
The manufacturer Borg states that the robot will be equipped with several degrees of freedom in its lower and upper limbs, enabling smooth walking in spaces designed for people and the performance of simple manipulation tasks. Built-in sensors and data processing systems are intended to enable Borg 01 to perceive and interpret its surroundings in real time, supporting it in reception or logistics tasks. Although the full specification is not yet widely available, preliminary information indicates the use of high-torque actuators as well as planned integration with cloud services, which will enable the robot to develop functions based on machine learning algorithms.
History and Development
Borg 01 Humanoid Robot
Borg, previously associated mainly with collaborative robotics and industrial applications, recognized growing interest in mobile bipedal platforms for environments focused on interaction with people. The decision to create a humanoid line, provisionally called Borg 01, was a natural extension of the company's existing expertise.
From Mobile Platforms to Humanoids
- Many earlier Borg solutions were based on robotic arms and wheeled robots. Over time, the manufacturer gained experience in precision electric drives and intelligent motion-control systems. Borg 01 reflects the effort to adapt this knowledge to a platform with bipedal locomotion.
- During design, a key objective was to balance the robot's weight and stability with its ability to carry lightweight objects. Ultimately, Borg 01 is intended to operate in typical office environments, including narrow corridors and staircases, while enabling convenient interaction with people, for example in receptions and service areas.
Application of artificial intelligence algorithms
- Plans include the use of simulation and training tools, including deep-learning libraries and DRL algorithms, which are intended to allow the Borg 01 humanoid to independently acquire new locomotion and manipulation skills.
- The manufacturer also highlights integration with cloud AI services, which could allow the robot to use speech recognition, image interpretation and more advanced motion planning algorithms. All of this is intended to increase usability and make the robot easier to deploy in business processes.
Technical Specifications
Technical Specification of the DR01 Humanoid Robot
The full specifications of the Borg 01 humanoid robot have not yet been officially released by the manufacturer. However, preliminary information suggests that the project is expected to include several key features enabling efficient locomotion and object manipulation in office or service environments. Borg 01 is intended to have a relatively lightweight structure, which should make it easier to introduce into spaces designed for people, such as corridors, elevators, or stairwells.
| Parameter | Value | Notes |
|---|---|---|
| Model | Borg 01 | A multi-purpose humanoid robot from Borg Robotics. |
| Height | 172 cm | An optimal height that enables interaction in environments designed for people. |
| Weight | 65 kg | Stable and balanced design. |
| Degrees of Freedom (DoF) | 43 | Total number of motion axes, providing a high level of movement flexibility. |
| Arm Payload | 12 kg | Enables handling of medium loads in industrial and logistics work. |
| Walking speed | 1.8 m/s | Enables efficient movement in warehouses and production halls. |
| Battery operating time | 5 h | Average operating time under typical load. |
| Self-Learning Capability | Yes | The robot adapts to its environment using machine learning algorithms. |
| Perception System | 3D cameras, LIDAR, touch sensors | An integrated system enabling advanced navigation and interaction. |
| AI Control Module | Built-in GPU processor | High computing power for handling complex artificial intelligence algorithms. |
| Connectivity | Wi-Fi 6, Bluetooth 5.2, 5G (optional) | Enables remote control and collaboration with IoT systems. |
| Applications | Industry, logistics, customer service | A multipurpose platform suited to a broad range of industries. |
Borg 01 is an advanced humanoid platform combining artificial intelligence, modern sensors, and high movement flexibility. Its design enables adaptation to dynamic working conditions, while high energy efficiency and AI algorithms allow it to effectively support activities in industrial, logistics, and service sectors.
Borg 01
Applications and Use Cases
The goal of Borg 01 is to create a humanoid that serves as a versatile platform for both commercial deployments and research into intelligent robotics. With the prospect of integration with cloud and AI services, such as voice or image recognition, the robot can support companies in marketing, customer service, or light logistics tasks.
Customer Service and Reception Tasks
Greeting Visitors, Presenting Information: Thanks to its humanoid design, the robot can operate at promotional stands or reception areas, providing directions and answering basic questions.
Distribution of Marketing Materials: Borg 01 can distribute leaflets or small samples, providing an interactive experience for customers and guests.
Support for Light Office Work
Transport of Documents and Parcels: The robot can automate simple transport-related tasks without requiring modifications to interiors, such as ramps or sliding doors, which may be necessary for wheeled robots.
Integration with Company Systems: After implementing appropriate software, Borg 01 can retrieve task information from WMS or ERP systems and execute the tasks autonomously while reporting progress in real time.
Educational and Research Applications
R&D Platform: Open architecture and available development tools allow the robot to be used in university laboratories for testing control, machine learning, or perception algorithms.
Shows and Demonstrations: A humanoid robot always attracts attention at scientific conferences, innovation fairs, and educational events, promoting modern robotics and the development of artificial intelligence.
Marketing and Event Scenarios
Visual Attraction: A bipedal robot that moves autonomously and can perform simple interactions can attract the attention of guests and customers during industry events and product presentations.
Appearance Customization: The ability to customize the robot's "outfit" or panels, resembling clothing with logos and corporate colors, makes it possible to distinguish the event organizer's brand.
In every type of application, learning functionality can play a key role, whether learning walking duration under different conditions or precise object manipulation, increasing usefulness and making the robot more autonomous. Borg Company plans to Borg 01 developed alongside technological progress in AI, becoming a versatile and long-lasting tool across various industries.
Technology and Innovation, Safety
Borg
Borg 01 is based on proprietary power supply and motion control solutions, integrating artificial intelligence technologies with advanced drive mechanics. The robot was designed with an emphasis on safety when working alongside personnel and on stability when overcoming standard everyday obstacles in service and office environments.
Modular Drives and Precise Motion Control
- Electric Actuators: Each joint in the legs and arms is equipped with compact drives that provide appropriate torque while maintaining a lightweight design.
- Advanced Algorithms: Locomotion control combines model-based methods with machine learning, such as Deep Reinforcement Learning, allowing the robot to gradually adapt to different surfaces and conditions.
Safe Collaboration and Force-Limiting Mechanisms
- Collision Detection System: Thanks to built-in sensors and encoders, the robot can limit torque when it comes into contact with a person or unexpected object, reducing the risk of injury.
- Immediate Stop Mode (E-Stop): Allows the operator to quickly disable drives when necessary, providing an additional safety layer in a shared workspace.
Application of Artificial Intelligence
- Recognition and Motion Planning Technologies: Borg 01 uses computer vision algorithms and advanced trajectory planning, enabling it to move efficiently among people and objects.
- Machine Learning: The manufacturer plans to enable expansion of the robot's knowledge base through integration with cloud services, allowing algorithms to be updated continuously and new functions introduced, such as speech recognition or improved gait stability.
Borg 01 Robot
Integration and Compatibility, Personalization and Solution Customization
The Borg 01 humanoid robot was conceived as an open, modular platform that can be easily adapted to the requirements of different industries. As with other bipedal robots, compatibility with AI systems and cloud services is crucial, along with the ability to expand functionality according to customer needs.
Open Programming Ecosystem
- Support for Standard Frameworks: The robot may be compatible with popular AI tools, including ROS (Robot Operating System) and machine learning libraries, making application development and deployment easier.
- Software Improvement Capability: Updates and new algorithms can be installed remotely, extending the robot's life cycle as needs evolve dynamically.
Communication and Integration with IT Systems
- Connection with WMS/ERP: Borg 01 can be integrated into warehouse or office processes, automatically receiving tasks related to document handling, transport of light objects or small-scale logistics.
- Optional Cloud Solutions: The manufacturer plans integration with cloud services, enabling remote monitoring of robot condition and rapid response to potential problems. AI algorithm support can be further enhanced by cloud computing resources.
Appearance and Manipulation Tool Customization
- Aesthetics and Branding: In locations where marketing or guest service is important, the robot can be equipped with housings tailored to the customer's visual identity.
- Optional Gripping End Effectors: Depending on planned tasks such as distributing leaflets, carrying documents, or handling small components, the robot can use simple grippers, more advanced hands, or specialized tools.
Support for Education and Research
- Developer Resources: Manufacturers are considering providing documentation and simulation environments so that an R&D team or university can test new control algorithms.
- Cooperation on Pilot Projects: Participation in pilot deployments is likely, allowing the robot's functions and configurations to be adapted to selected conditions.
This model of flexibility makes it possible to regard Borg 01 as a platform that can be valuable in many areas, from marketing and customer service, where a humanoid silhouette attracts attention, to demanding industrial or research projects where autonomous locomotion and intelligent manipulation are combined with tasks typical of environments designed for people.
Borg 01 Humanoid Robot
Benefits for Customers
The Borg 01 humanoid robot can significantly improve service quality and efficiency in environments requiring mobility, human interaction, and the ability to perform simple manual tasks. Its compact design and modular drive solutions make it suitable for diverse environments, from reception and marketing tasks to educational applications or light warehouse work.
Increased Efficiency and Reduced Staff Workload
- Borg 01's bipedal locomotion facilitates the transport of documents or small items in multi-level buildings, relieving employees of monotonous tasks and allowing them to focus on duties that require greater creativity.
- The ability to personalize manipulator end effectors or grippers allows specific tasks to be performed, such as distributing leaflets or carrying small packages.
Better Customer Service and a Positive Company Image
- A humanoid robot attracts interest and can communicate effectively with guests at promotional events, reception areas, or trade show booths.
- The open architecture enables future expansion with speech or image recognition, strengthening customer interaction and positively influencing the company's image.
Education and Research Projects
- An open development platform (SDK) and the ability to integrate with cloud AI tools make Borg 01 an attractive tool for university laboratories and institutions conducting robotics research.
- The robot allows students and researchers to learn motion programming, computer vision algorithms and control using machine learning methods.
Flexible Use in Light Logistics
- The ability to move adaptively through typically human environments and perform basic manipulation tasks is useful in selected warehouse processes or small-component processing.
- Integration with management systems such as WMS enables the robot to automatically receive tasks, improving the flow of small loads within a company.
Support for Marketing and Event Activities
- A mobile humanoid platform attracts the attention of conference or exhibition participants, enabling an original presentation of products and services.
- The ability to customize the housing, including colors and logos, additionally reinforces the organizer's visual identity and increases the event's marketing value
FAQ - Frequently Asked Questions
Borg 01 Humanoid Robot
The following list contains answers to the most important questions about the Borg humanoid robot
The robot is offered mainly through projects tailored to customer needs. The manufacturer indicates that delivery and configuration times depend on the scope of functions and level of integration with the company's systems.
The price depends on the selected options, such as manipulator type, sensor package, and deployment support. After analyzing the needs and conditions at the place of use, the company prepares a turnkey proposal.
Borg 01 is designed mainly for light manipulation tasks. The manufacturer has not published official data on maximum payload, although it has announced the possibility of hardware modifications for specific requirements.
The main operating areas are indoor spaces, offices, and service facilities. Handling uneven terrain may be limited, although the robot can climb steps and navigate gentle inclines. Outdoor weather conditions are not a priority for the manufacturer.
Exact operating time has not been disclosed. Energy consumption depends on movement intensity and manipulator load. In typical office scenarios, several hours of battery operation can be expected.
Borg 01 can integrate with external AI services, enabling speech recognition and generation. This function is not built in by default, but the manufacturer provides support for implementing such solutions.
Thanks to an open software architecture and communication standards, the robot can cooperate with resource or warehouse management systems, carrying out assigned tasks involving the transport of small objects.
The design is modular, simplifying potential replacement of components such as drives and sensors. Regular inspections include checking encoders and actuators and updating software, which can be discussed with the supplier as part of a service package.
Absolutely. The open platform and available developer documentation make Borg 01 an attractive tool for universities, schools, and R&D centers, which can use the humanoid to teach control algorithms, computer vision, or integration with AI services.
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.
Why NexaRob?
Your Trusted Partner in Humanoid Robotics - Knowledge, Passion, and Innovation
NexaRob supports organizations that want to introduce humanoid robots into their processes and environments. We believe platforms such as Borg 01 from Borg Robotic can provide tangible benefits, from optimizing service tasks and light industrial processes through innovative educational and research projects to promotional events and technology demonstrations. We provide customer support at every stage, from consulting on humanoid selection and configuration to implementation and service, so that new technologies can genuinely support personnel and business processes.
- Expertise in Humanoid Robotics As an integrator of robotic technologies, NexaRob offers solutions based on proven platforms. We work with suppliers from around the world, allowing us to propose humanoid robots such as Borg 01 tailored to the needs of services, logistics, education and more specialized industries. Our team has expertise in drive systems, machine vision and artificial intelligence, enabling us to select the right robot functions and adapt them to specific challenges.
- Individual Approach to Projects We do not impose ready-made schemes. We want the humanoid to address real challenges. We therefore begin with a detailed analysis of the customer's requirements, tasks, and infrastructure. We then recommend a Borg 01 configuration, such as the choice of manipulators, gripper type, and integration with AI services, creating an implementation plan that ensures maximum efficiency in the selected environment.
- Implementation Support and Service NexaRob does not only supply the robot, we provide comprehensive implementation support. We assist with installation and configuration, train personnel, and offer technical service. If needed, we can expand the humanoid's functionality by adding extra sensors, software modules, or connecting it to WMS/ERP systems. We want customers to be confident that the robot is used safely and effectively.
- Innovation and Further Development We operate at the intersection of R&D and market-ready solutions. This gives us insight into the latest trends in humanoid robotics and enables us to help expand Borg 01 with advanced artificial intelligence algorithms (e.g. machine learning, force control), additional sensor modules, or integration with cloud services. We support organizations that want to continuously develop their deployed solutions as technology advances.
If you are considering how Borg 01 could improve processes in your company, whether in customer service, event presentations, light logistics, or educational and research projects, contact NexaRob. Together, we will analyze the work environment, select the optimal configuration, and develop a long-term implementation strategy. Through cooperation with us, the humanoid can become genuine support while ensuring safe and convenient use.
Automate Your Business with NexaRob - Contact Us!
Join NexaRob and Let Us Develop Humanoid Robotics Together
Would you like to become our Partner?
At NexaRob, we believe that humanoid robots such as Borg 01 can significantly improve work efficiency and change automation standards. Thanks to bipedal mobility and the ability to manipulate objects, humanoids fill the gap between static systems and the flexible needs of people.
We invite technology manufacturers, solution providers, companies, and institutions that see potential in humanoid deployments to cooperate with us.
United States
China
Japan
Germany
India
United Kingdom
France
Italy
Canada
South Korea
Brazil
Australia
Spain
Mexico
Indonesia
Netherlands
Saudi Arabia
Turkey
Switzerland
Taiwan
Poland
Sweden
Belgium
Thailand
Ireland
Austria
Norway
Israel
United Arab Emirates
Argentina
South Africa
Denmark
Philippines
Singapore
Malaysia
Colombia
Bangladesh
Egypt
Chile
Finland
Vietnam
Portugal
Czech Republic
Romania
New Zealand
Peru
Greece
Ukraine
Slovakia
Hungary
Slovenia
Croatia
Serbia
Bulgaria
Estonia
Latvia
Lithuania
Iceland
Luxembourg
Malta
Cyprus
Morocco
Algeria
Tunisia
Nigeria
Kenya
Ethiopia
Ghana
Tanzania
Uganda
Angola
Senegal
Qatar
Kuwait
Oman
Pakistan
Sri Lanka
Nepal
Kazakhstan
Uzbekistan
Mongolia
Russia
Cambodia
Myanmar
Laos
Fiji
Papua New Guinea
Venezuela
Ecuador
Uruguay
Paraguay
Bolivia
Costa Rica
Panama
Dominican Republic
Guatemala
Cuba
Jordan
Lebanon
Iran
Additional countries in Europe
These countries are hidden in reader mode so that the map is not overcrowded. Click a country to open contact details, email and a description of the cooperation area.
Additional Countries in Asia
These countries are hidden in reader mode so that the map is not overcrowded. Click a country to open contact details, email and a description of the cooperation area.
Additional Countries in the Americas
These countries are hidden in reader mode so that the map is not overcrowded. Click a country to open contact details, email and a description of the cooperation area.
Additional Countries in Africa
These countries are hidden in reader mode so that the map is not overcrowded. Click a country to open contact details, email and a description of the cooperation area.
Additional Countries in Oceania
These countries are hidden in reader mode so that the map is not overcrowded. Click a country to open contact details, email and a description of the cooperation area.
Albania
Andorra
Belarus
Bosnia and Herzegovina
Montenegro
Liechtenstein
North Macedonia
Monaco
Moldova
San Marino
Afghanistan
Armenia
Azerbaijan
Bahrain
Bhutan
Brunei
Georgia
Iraq
Yemen
Kyrgyzstan
North Korea
Maldives
Syria
Tajikistan
Timor-Leste
Turkmenistan
Antigua and Barbuda
Bahamas
Barbados
Belize
Dominica
Grenada
Guyana
Haiti
Honduras
Jamaica
Nicaragua
Saint Kitts and Nevis
Saint Lucia
Saint Vincent and the Grenadines
El Salvador
Suriname
Trinidad and Tobago
Benin
Botswana
Burkina Faso
Burundi
Cabo Verde
Chad
Democratic Republic of the Congo
Djibouti
Eritrea
Eswatini
Gabon
Gambia
Guinea
Guinea-Bissau
Equatorial Guinea
Cameroon
Chambers
Congo
Lesotho
Liberia
Libya
Madagascar
Malawi
Mali
Mauritania
Mauritius
Mozambique
Namibia
Niger
Central African Republic
Rwanda
Seychelles
Sierra Leone
Somalia
Sudan
South Sudan
Togo
Ivory Coast
São Tomé and Príncipe
Zambia
Zimbabwe
Kiribati
Micronesia
Nauru
Palau
Samoa
Tonga
Tuvalu
Vanuatu
Marshall Islands
Solomon Islands
Why Cooperate with NexaRob?
Joint Investments in Innovation
We carry out projects in which we combine proven robotic platforms, professional consulting, and service to deliver complete automation solutions to our clients. We are looking for manufacturers and distributors who want to expand their humanoid offerings and continuously improve them in global markets.
Synergy of Competencies
NexaRob combines expertise in artificial intelligence, robotics engineering, and IT system integration. This enables us to bring together diverse components, such as tactile sensors, control software, and cloud AI tools, into one smoothly functioning system aligned with the needs of our business partners.
Global Reach
We work with customers and suppliers from different countries, adapting humanoid robots to local regulations and specific industry requirements. We also help scale projects into new markets by providing implementation and service support at an international level.
We Are Looking for Partners in the Following Areas:
- Production and Distribution of Humanoid Robots We are eager to build relationships with manufacturers and distributors who want to make their solutions available to a broader audience. Thanks to our implementation expertise, we can jointly develop turnkey proposals, from robot configuration to ready-to-use applications.
- AI and IoT Technologies Humanoid robots use deep learning algorithms and real-time language and vision processing. We are looking for cloud service and AI solution providers who can help us integrate robots even more effectively with customers' dynamically changing needs.
- Automation and Logistics Systems Bipedal humanoids can fill gaps where stationary or wheeled robots have limited capabilities. We invite companies specializing in process automation to collaborate with us in developing solutions that meet the requirements of innovative markets.
Let's Join Forces
If you manufacture humanoid robots, provide advanced AI tools or are considering deploying a humanoid robot, NexaRob offers partnership-based cooperation in developing and promoting solutions tailored to the needs of modern companies and institutions. Together, we can help shape the future of automation by introducing humanoid robots on a broader scale and making everyday tasks easier for people. Contact us and let's advance humanoid robotics together!
Interesting Facts from Around the World
GAM: a new base model for robotic manipulation in industry
Amazon has introduced the Generalized Action Model (GAM) - an advanced foundational model for robotic manipulation that can
Fraunhofer IPA presents robotics for the circular economy at the European Parliament.
On September 2, 2026, the Fraunhofer Institute for Manufacturing Engineering and Automation IPA (IPA)
New method helps people predict errors in self-driving cars
Researchers from MIT and the company Motional have developed a system that allows people to predict errors in self-driving cars.
How can intelligent memory coding save energy in autonomous vehicles?
A new method called MotiMem-Omega can reduce energy consumption in the memory interface of an autonomous vehicle by
KEENON presented KOM 3.0 at WRC 2026: robots think before acting
At the World Robot Conference 2026, KEENON Robotics unveiled KOM 3.0 - a new generation of AI architecture.