Exorise

ExoRise (ЭКЗОРАЙЗ) manufactures passive industrial exoskeletons for load reduction, including X-Arm (back unloading), X-Rise (overhead arm support), X-Belt (lumbar protection), X-Soft (soft load handling), and CarboniX (flexible elastomer-based posture support), with up to 80% spine load reduction, GOST R certification, and anthropomorphic design.

Share
(Russia/CIS operations)
Moscow
RobotToday Initiative

Robotics needs a service framework.

RSF defines a common language for robot service capability, lifecycle operations, certification pathways, and service-provider networks.

Share

Related Content

At Goodwood, Robots Explore Their Role in Enhancing Human Experience

At Goodwood, Robots Explore Their Role in Enhancing Human Experience

At the Goodwood Cricket Ground, a fox-eared robot on roller skates greeted visitors without imitating humans or threatening to replace them, showcasing its unique identity. This event, part of the FOS Future Lab's Intelligent Systems Zone, featured three exhibitors presenting diverse answers to the question of what intelligent machines should do for humanity. One Sheffield startup, led by Raspberry Pi co-founder Liz Upton, demonstrated a method for programming robots using simple English. A robotic arm responded to natural language commands, with COO Eleanor Tang-Smith emphasizing the goal of making robots perform tasks that humans find tedious. Meanwhile, a large screen displayed a real-time reconstruction of Goodwood's famous Taylor Garage, merging digital and physical worlds seamlessly. The fox-eared robotic dogs, designed in Paris, avoided the 'uncanny valley' by engaging with humans through expressive features. They are already in use in hospitals and airports for tasks like transporting and assisting, allowing humans to focus on more urgent matters. The event highlighted three approaches to human-robot interaction, emphasizing the importance of language, vision, and gestures in redefining the interface between humans and machines.

Robotics AI Spatial Computing Human-Robot Interaction
Mitsubishi Motors to Begin Mass Production of Humanoid Robots by 2027

Mitsubishi Motors to Begin Mass Production of Humanoid Robots by 2027

Mitsubishi Motors has announced plans to start mass production of humanoid robots at its factory in Japan by 2027. In collaboration with the Tokyo University startup Highlanders, the company aims to produce 1,000 units per month initially, utilizing existing space in its Kyoto engine plant. The robots will first be deployed in Mitsubishi's own facilities for tasks such as parts handling and engine assembly. This initiative is a response to Japan's aging population and the resulting labor shortages in the manufacturing sector, prompting a shift towards automation. By developing these robots for internal use, Mitsubishi aims to address its own workforce challenges before considering external sales. The humanoid robots, standing approximately 175 cm tall, will feature stable walking and grasping capabilities, controlled by an AI system. As the global humanoid robot market is projected to reach $729 billion by 2050, Mitsubishi's production plans represent a significant step for a traditional automaker entering this space. The company's pragmatic approach of first utilizing the robots internally reflects its strategy to tackle labor shortages while exploring future market opportunities. No further timeline was disclosed at the time of publication.

Humanoid Robots Manufacturing Automation AI Technology Robotics
Tesla Completes Dismantling of 14-Year-Old Production Line for Optimus Robots

Tesla Completes Dismantling of 14-Year-Old Production Line for Optimus Robots

Tesla has officially dismantled the production line for its Model S and Model X vehicles at its Fremont factory, marking the end of a 14-year era. The entire process took just 46 days, as captured in a video released by Tesla, which stated, 'End of an era.' These flagship models have been pivotal in establishing Tesla's reputation in the luxury electric vehicle market since their launch in 2012. The dismantling is part of Tesla's strategic shift from traditional automotive manufacturing to robotics and artificial intelligence. The space will be repurposed for the production of the Optimus humanoid robots, with a target annual production capacity of up to 1 million units. Elon Musk has emphasized this transition, indicating a significant change in Tesla's focus and operations. The new production line for Optimus is expected to begin large-scale production by late July to August 2023, with plans to achieve a weekly output of 1,000 units by September and increase to 2,000 to 2,500 units by the end of the year. This marks a pivotal moment for Tesla as it aims to redefine its identity in the tech-driven landscape of robotics.

Humanoid Robots Robotics AI Manufacturing Tesla
JD Group Launches First RoboBase Project in Guangzhou to Foster Robotics Ecosystem

JD Group Launches First RoboBase Project in Guangzhou to Foster Robotics Ecosystem

On July 11, JD Group signed a comprehensive strategic cooperation agreement with the Guangdong provincial government, focusing on nine key areas including digital economy and modern logistics. The first physical benchmark of this agreement, the RoboBase project, commenced construction in the Huangpu Science City, Guangzhou. This marks JD's first RoboBase globally, covering approximately 190,000 square meters, with completion expected by the end of 2028 and an anticipated annual output value of about 1.75 billion yuan. The RoboBase project aims to integrate high-end manufacturing, technological innovation, and ecological services, concentrating on core robotic components, complete machine manufacturing, and high-end intelligent equipment. JD's approach is unique as it positions itself as an 'industrial infrastructure operator' rather than directly engaging in robot manufacturing. This strategy is designed to support robotics companies by providing a conducive environment for their operations. Looking ahead, JD's RoboBase will facilitate long-term testing for robots across various real-world scenarios, including JD MALL and logistics parks. The project also emphasizes talent development through partnerships with vocational schools in Guangdong. No further timeline was disclosed at the time of publication.

Robotics Ecosystem High-End Manufacturing Technological Innovation Supply Chain Solutions
Midea Group Signs 300 Million RMB Strategic Deal to Expand Industrial Robotics

Midea Group Signs 300 Million RMB Strategic Deal to Expand Industrial Robotics

Midea Group's subsidiary KUKA has signed a strategic cooperation agreement with YINGKE Medical and YINGKE Recycling, valued at over 300 million RMB. This deal includes 1,500 industrial robots, 500 mobile and embodied intelligent robots, and 50 automated storage systems, showcasing Midea's commitment to expanding its industrial robotics capabilities. This partnership signifies a pivotal shift for Midea, transitioning from project-level procurement to a comprehensive group-level strategic collaboration. The collaboration aims to enhance production efficiency through advanced automation solutions, integrating AI visual recognition and adaptive grasping technologies. Looking ahead, Midea's focus on its ToB business model is expected to accelerate, with KUKA playing a crucial role in this transformation. The industry will be watching closely to see how this strategic partnership evolves and contributes to Midea's growth in the industrial automation sector. No further timeline was disclosed at the time of publication.

Industrial Robotics Automation Solutions Smart Manufacturing B2B Technology
Arizona State University Develops Innovative HARP Artificial Muscle for Versatile Applications

Arizona State University Develops Innovative HARP Artificial Muscle for Versatile Applications

A research team led by Professor Sun Jiefeng at Arizona State University has developed a new artificial muscle structure known as HARP (Helical Anisotropic Reinforced Actuator). Unlike traditional artificial muscles that compromise on performance, HARP offers modularity and flexibility, allowing for adjustments in materials and design parameters to meet various application needs. This innovation is significant as it addresses the limitations of existing artificial muscles, which often excel in specific scenarios but struggle to meet multiple requirements simultaneously. HARP achieves an impressive power density of 1.93 kW/kg, a contraction rate of up to 75%, and the ability to lift weights up to 100 times its own weight, making it suitable for diverse and complex applications. Looking ahead, the HARP's modular design allows for customization and optimization of its components, enhancing its adaptability in extreme environments. The research team demonstrated HARP's durability in wear resistance tests, showcasing its potential for reliable operation in harsh industrial settings. No further timeline was disclosed at the time of publication.

Artificial Muscles Robotics Modular Design Self-Healing Materials
CubeMars Launches New Hollow Planetary Power Modules for Humanoid Robot Joints

CubeMars Launches New Hollow Planetary Power Modules for Humanoid Robot Joints

In 2026, humanoid robots are approaching a critical point for industrial application. CubeMars has launched two specialized hollow planetary power modules, AKH70-16 and AKH70-48, which are crucial for enhancing flexibility and load capacity in robotic joints. These modules integrate brushless motors, planetary gear reducers, encoders, and driver boards, addressing common wiring issues with a 7mm hollow structure. The AKH70-16 focuses on lightweight applications, featuring a peak torque of 85Nm and a compact design, making it suitable for joints like the neck and elbow. In contrast, the AKH70-48 emphasizes high torque and stability, with a peak torque of 222Nm, ideal for heavy-load joints such as hips and knees. Both modules share advanced technologies, including dual encoder feedback and multi-mode control, which improve precision and operational efficiency. As the humanoid robot industry transitions from prototype development to commercial production, CubeMars's ability to control the entire manufacturing process positions it as a key player. The company’s self-developed capabilities ensure stable delivery and quality, addressing the challenges faced by robotic enterprises in scaling production and meeting market demands. No further timeline was disclosed at the time of publication.

Humanoid Robots Robotic Joints Power Modules Automation Technology
Robot.com Introduces R-noid Humanoid Robot for Challenging Labor Markets

Robot.com Introduces R-noid Humanoid Robot for Challenging Labor Markets

Robot.com has officially launched R-noid, a humanoid robot designed to tackle repetitive and hard-to-fill jobs across various industries. Deployed under a Robot-as-a-Service model, R-noid can achieve autonomous operation within eight to twelve weeks, addressing significant staffing challenges in sectors like healthcare and food services. The introduction of R-noid is crucial as industries face high turnover rates, with quick-service restaurants experiencing over 130 percent staff turnover and hotel operators reporting critical staffing gaps. R-noid aims to alleviate these issues by taking on roles that are difficult to staff, allowing human workers to focus on more skilled tasks. Looking ahead, Robot.com is collaborating with FieldAI to integrate advanced AI capabilities into R-noid, enhancing its operational efficiency in dynamic environments. No further timeline was disclosed at the time of publication.

Humanoids News automation fieldai formic hospitality automation
Hyundai Motor Workers Initiate Three-Day Strike Demanding Bonuses and Job Security

Hyundai Motor Workers Initiate Three-Day Strike Demanding Bonuses and Job Security

Hyundai Motor Co. workers commenced a three-day partial strike on Monday, driven by union demands for increased bonuses. This action follows significant agreements reached in the semiconductor sector, highlighting the growing pressure on automotive workers to secure better compensation amidst rising industry profits. The strike underscores the critical concerns surrounding job security in the face of advancing automation technologies, particularly AI and robotics. Workers are seeking assurances that their positions will not be jeopardized as Hyundai continues to integrate more automated processes into its manufacturing operations. Looking ahead, the outcome of this strike could influence negotiations across the automotive industry, particularly regarding labor agreements and automation policies. No further timeline was disclosed at the time of publication, but the situation remains fluid as both sides prepare for potential discussions.

KSC:005380
Northwestern Polytechnical University Develops 400x Stronger Electric-Activated Adhesive Material

Northwestern Polytechnical University Develops 400x Stronger Electric-Activated Adhesive Material

Northwestern Polytechnical University has unveiled a new smart adhesive material that exhibits a grip strength increase of 400 times when electrically activated. This innovative material can hold up to 10-pound dumbbells and has potential applications in various fields, including chip manufacturing, soft robotics, and precision assembly. The development was announced recently, highlighting significant advancements in material science. The significance of this breakthrough lies in its potential to enhance manufacturing processes and robotics applications. The electric-activated grip could lead to more efficient assembly lines and improved functionality in soft robotics, where traditional adhesives may fall short. This technology could revolutionize how components are held together in delicate operations, providing a reliable solution for industries that require precision and strength. Looking ahead, the next steps for this technology involve further testing and potential commercialization. No further timeline was disclosed at the time of publication, but the implications of this research could lead to significant advancements in various sectors, making it a development to watch closely in the coming months.

Technology