The 1X EVE is an advanced android designed to integrate seamlessly into various environments, demonstrating remarkable adaptability and intelligence. Standing at 6 feet 2 inches and weighing 192 pounds, EVE can travel at speeds up to 9 miles per hour and carry loads of up to 33 pounds. It features multi-terrain wheels that enable it to navigate around corners and even take elevators, enhancing its utility in both domestic and professional settings. With a runtime of six hours, EVE is built for sustained operational efficiency.

EVE's standout capability lies in its use of embodied learning, a combination of robotics and artificial intelligence developed in The 1X Studio. This technology allows EVE to understand and respond to natural language instructions without the need for specific commands. The AI system can deconstruct complex tasks into actionable steps, enabling EVE to perform a wide range of functions, from simple object retrieval to more intricate activities. This continuous learning process means EVE becomes increasingly proficient over time, adapting to new tasks with ease.

Applications for 1X EVE are broad, spanning from personal assistance in homes to operational support in workplaces. Its design prioritizes safety with soft, organically-inspired mechanics, ensuring it is safe to use around people. Rigorous real-world testing further guarantees its reliability and readiness for deployment. EVE's ability to intelligently and safely assist in various tasks makes it a valuable addition to any setting, exemplifying the potential of humanoid robotics in enhancing everyday life and work environments.

Application
  • Palletizing
  • Picking and placing
  • Assembly
  • Machine loading
  • Welding
  • Screwing
  • Polishing and grinding
  • Gluing and dispensing
  • Inspection
Industry
  • Education
  • Automotive
  • Food and Beverage
  • Packaging
  • Healthcare
  • Electronics
  • Aerospace and Defense
  • Energy and Utilities
Power
  • Combustion
  • Electric
  • Fuel Cells
  • Hydraulic
  • Pneumatic
Product mass 87 kg
Top Speed 4 m/s
Height 1.88 m
Payload 15 kg
FDROBOT TLIBOT
Payload 145kg
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The TLIBOT by FDROBOT is a highly advanced humanoid robot designed for a wide range of industrial applications, including film and TV entertainment, military industry, education and training, logistics handling, wellness care and nursing, industrial production, medication delivery, and housekeeping services. Its design integrates multifunctional capabilities and intelligent interaction systems, making it versatile across different scenarios.TLIBOT is equipped with sophisticated sensory technologies including 3D vision and LIDAR, which enable precise environmental mapping and object recognition. This allows for effective automatic obstacle avoidance, enhancing its operational safety and efficiency in complex environments. The robot also features force feedback and voice interaction capabilities, providing a more interactive and responsive user experience.The robot's mechanical design is notable for its 71 degrees of freedom, which allows movements that closely mimic human dexterity. This level of articulation is supported by powerful actuators capable of a maximum joint torque of 450Nm and a joint speed of up to 720°/s. TLIBOT's robust build includes a long-lasting 1250Wh battery and a substantial load capacity, with each leg capable of bearing up to 65kg, and a combined load capacity of 145kg. These features make TLIBOT an effective tool for handling demanding industrial tasks and for applications requiring high levels of mobility and manipulation.
UBTECH Robotics Walker
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The UBTECH Walker is a bipedal humanoid robot designed to serve as a personal assistant in various environments, including homes, offices, and public spaces. Standing at approximately 1.45 meters tall, Walker is equipped with 36 high-performance actuators that allow it to execute smooth and precise movements, from walking and navigating stairs to manipulating objects. Its design emphasizes stability and flexibility, making it capable of complex tasks like opening doors, pushing carts, and handling fragile items.Walker’s capabilities extend beyond physical tasks, as it is integrated with advanced AI for natural language processing, facial recognition, and emotion detection. This enables the robot to interact with people in a socially intuitive manner, providing assistance in tasks such as scheduling, answering questions, and even offering companionship. Its ability to learn and adapt to user preferences over time further enhances its utility as a personal assistant.In terms of applications, UBTECH Walker is well-suited for environments where human-like interaction and physical task execution are required. It can be used in smart homes for elderly care, where it assists with daily activities, or in offices as a receptionist and information assistant. Additionally, its mobility and interaction capabilities make it a valuable tool in education and public service settings, where it can engage with users in a meaningful way.
UBTECH Robotics Walker S
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The UBTech Walker S is an advanced industrial humanoid robot designed for sophisticated manufacturing environments. Standing 1.7 meters tall, it features a robust structure with force-compliant drive joints and a rigid-flexible coupling hybrid system, allowing for stable walking and navigation on mobile production lines. Its all-terrain autonomous adaptation enhances its ability to operate in diverse conditions.Walker S excels in comprehensive perception, thanks to its 41 servo joints with force feedback, and a range of sensors including visual, audio, and distance inputs. This setup supports its advanced 3D semantic navigation, where high-resolution RGBD sensors help it create detailed 3D maps and navigate safely by avoiding obstacles.The robot's integration of a large language model (LLM) allows it to understand complex intents and plan finely-tuned actions. Its capabilities extend to advanced object detection and grasping through 3D point cloud processing, enhancing its efficiency in tasks requiring hand-eye coordination. Additionally, Walker S ensures real-time data synchronization with manufacturing management systems, promoting seamless operations across the factory floor.
Figure Figure 02
Payload 20kg
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The FIGURE 02 stands out as the world’s first commercially viable autonomous humanoid robot, with a design that closely mimics the human form. It is 5'6" tall and has a payload capacity of 20 kg, making it capable of performing tasks that require significant strength. The robot is powered by an electric system, which enables it to run for up to 5 hours and move at a speed of 1.2 meters per second. Its human-like hands and limbs are engineered to interact with environments built for people, enhancing its versatility.FIGURE 02 is designed to perform a wide range of tasks across various industries, thanks to its advanced AI and human-like dexterity. It is capable of opening doors, climbing stairs, and handling tools, making it suitable for complex tasks that go beyond the capabilities of traditional robots. Its ability to lift, carry, and manipulate objects with precision makes it a valuable asset in environments such as manufacturing, logistics, warehousing, and retail.This humanoid robot is particularly beneficial in sectors facing labor shortages and in environments that are hazardous for human workers. FIGURE 02 can autonomously perform tasks that reduce the need for human presence in unsafe or repetitive jobs. By integrating into existing workflows, it offers a scalable solution to improve efficiency and safety, while also filling gaps in the workforce where human labor is either unavailable or at risk.
Ti5 Robotics Yao Guang
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Ti5 Robotics offers the "Yao Guang" humanoid robot, designed with advanced features for various applications. Standing at 1.7 meters tall and weighing only 48 kg, the robot boasts an impressive 44 degrees of freedom, enabling agile movements and adaptability in dynamic environments. Its lightweight construction, combined with high-torque leg joints capable of delivering up to 490 N·m, facilitates strong performance in tasks requiring significant lifting capabilities and maneuverability.The Yao Guang is equipped with a high-computing power controller and dual-vision systems, allowing it to perform complex navigational and operational tasks autonomously. The robot features a 7-degree-of-freedom arm, with articulated shoulder, elbow, and wrist joints, enabling it to manipulate objects with precision. Additionally, it integrates advanced sensors, including a depth camera and ultra-high-definition long-range lidar, enhancing its ability to operate in challenging terrains and hazardous environments.Applications for the Yao Guang humanoid robot span various fields, including manufacturing, logistics, and research. Its collaborative capabilities make it suitable for working alongside humans in industrial settings, while its adaptability allows for use in hazardous environments, where human intervention may be risky. Overall, the Yao Guang represents a significant advancement in robotic technology, aiming to enhance automation and efficiency across multiple sectors.
Sanctuary AI Phoenix
Payload 25kg
No reviews yet.
Sanctuary AI's Phoenix is the sixth generation of robots designed to mimic human-like intelligence through its general-purpose approach, differentiating it from robots focused on specific tasks. The Phoenix integrates Sanctuary's Carbon™ AI control system, which simulates human brain subsystems including memory and sensory perception. This system allows the Phoenix to adapt and perform a wide array of tasks traditionally done by humans, making it versatile across various applications.The robot itself is built to physically resemble and function like a human, standing at 170 cm and weighing 70 kg. It features full body mobility and human-like hands capable of fine dexterity, supporting a maximum payload of 25 kg. These attributes enable the Phoenix to perform tasks requiring complex motor skills and interaction with diverse environments, aiming to work alongside humans in a complementary fashion.In terms of operation, the Phoenix can be directly piloted, operated with pilot-assist, or function autonomously under supervision using the Carbon™ AI system. This flexibility in control modes allows it to be seamlessly integrated into human teams, enhancing workplace safety and efficiency. The integration of both symbolic and neural reasoning in its AI system ensures a balanced approach, enhancing the robot's decision-making and operational efficiency in real-world scenarios.
Figure FIGURE 01
Payload 20kg
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Figure FIGURE 01 is a humanoid robot designed to function effectively in human-centric environments. It stands at approximately 1.68 meters (5'6") tall and weighs 60 kilograms, with the capability to carry a payload of up to 20 kilograms. This robot is powered electrically and offers a runtime of up to 5 hours, with a top speed of 1.2 meters per second. Its human-like form factor is strategically chosen to facilitate interaction with environments that are typically designed for human occupation.The design rationale behind FIGURE 01 centers on the utility of a humanoid shape that mirrors human dexterity and mobility. This form allows the robot to perform a wide range of tasks that require the use of hands, arms, and legs, such as opening doors, using tools, climbing stairs, and lifting boxes. The inclusion of advanced AI enables FIGURE 01 to perform these tasks with a level of proficiency and autonomy that goes beyond traditional single-function robots, enhancing its applicability across diverse settings.FIGURE 01 is primarily aimed at industries where human presence is either scarce due to labor shortages or required in potentially hazardous conditions. Its applications are particularly pronounced in sectors like manufacturing, logistics, warehousing, and retail. In these environments, FIGURE 01 can augment human efforts, handle repetitive or dangerous tasks, and contribute to safer, more efficient operations. This deployment aligns with the broader vision of reducing the reliance on human labor in unsafe conditions and addressing workforce shortages effectively.