A single destination for timely, editor-curated robotics news from around the world.
Recent advancements in technology are reshaping the automotive industry, moving beyond traditional methods. Everyday digital tools are enhancing vehicle repair, transportation, and management processes, making operations more efficient for garages and service centers. The integration of modern equipment is crucial as today's vehicles are equipped with sophisticated sensors and computer systems. Repairing even minor damages now requires advanced diagnostic tools to ensure safety features function correctly. This shift allows technicians to identify issues quickly, reducing repair times and enhancing road safety for drivers. As the automotive landscape evolves, businesses must adapt to these technological changes. The adoption of digital document management systems, like Contraxly, streamlines operations by minimizing paperwork and reducing errors. No further timeline was disclosed at the time of publication.
RoboticsAndAutomationNews.com By David Edwards 6 hours ago Engineering Technology auto body repair automotive industry automotive logistics automotive repair
Figure has unveiled its latest humanoid robot, Helix 02, which boasts full-body autonomy and the ability to perform complex tasks independently, such as unloading a dishwasher. This innovative robot employs a unified neural network to enhance both locomotion and manipulation capabilities, marking a significant leap forward in the field of robotics. The introduction of Helix 02 underscores the growing trend towards automation in everyday household tasks, reflecting the increasing demand for advanced robotic solutions in various sectors.
figure.ai By Figure AI Jan 27, 2026 humanoid robots autonomous systems robotics AI machine learning
On July 17, 2026, Fourier introduced the GRW, its first wheeled dual-arm robot, at the World Artificial Intelligence Conference in Shanghai. This innovative robot is designed for flexible industrial operations, focusing on stability, efficiency, and continuous assistance in factory settings. The GRW features a narrow 585mm body, a dual-arm span of 1970mm, and a repeat positioning accuracy of ±0.1mm, with a dual-arm load capacity of 16kg. Its hardware supports hot-swappable power, enabling 24/7 continuous operation. This robot addresses the automation gap in auxiliary tasks across various industries, including automotive manufacturing and logistics. As factories face challenges in automating auxiliary roles, the GRW targets six key operational areas: line-side delivery, box handling, machine loading/unloading, material sorting, assembly, and palletizing. With 29 degrees of freedom and a peak torque of 500 N·m, the GRW is poised to meet approximately 80% of manual material handling needs in sectors like automotive and warehousing.
leaderobot.com By Leaderobot Jul 20, 2026 Wheeled Robots Industrial Automation Dual-Arm Robots Manufacturing Technology
As the industrial and robotics automation sectors continue to expand at a rapid pace, the importance of speed in operations has become increasingly critical. A minor delay in production can lead to significant quarterly losses for companies. In this context, the demand for rapid servo repair services has surged, providing businesses with the necessary support to minimize downtime and maintain efficiency. These specialized services enable companies to quickly address and resolve issues with servo motors, ensuring that operations remain uninterrupted and competitive in a fast-evolving market.
roboticstomorrow-Robotics Nov 28, 2025
A new wave of automation is transforming the economic landscape as companies deploy machines capable of operating around the clock without human oversight. This technological advancement allows for seamless economic output management through spreadsheets, phone calls, and quarterly reconciliation meetings. The shift towards such autonomous systems is driven by the need for increased efficiency and cost-effectiveness in business operations. As organizations embrace this innovation, they are redefining traditional workflows and enhancing productivity. The implementation of these machines marks a significant step in the evolution of business practices, reflecting a broader trend towards automation in various industries.
roboticstomorrow-Robotics Mar 23, 2026
Tesla's Optimus robots will not be used to repair Starmind satellites in orbit, as confirmed by recent statements from Elon Musk. Instead, these robots are intended to assist in the construction and operation of the Terafab chip manufacturing facility in Texas. The AI1 satellites, designed to disintegrate upon reentry, highlight the company's swap-and-replace strategy rather than traditional maintenance practices. This approach is significant as it reflects a broader trend in satellite management, where mass-produced satellites are replaced rather than repaired. The economics of servicing missions are prohibitive, with the cost of launching a replacement satellite being significantly lower than conducting a repair mission. This model aligns with SpaceX's operational history, where rapid replacement of satellites is more efficient than attempting to maintain them in orbit. Looking ahead, the focus will remain on the production capabilities of the Gigasat factory, which is expected to support the continuous replacement of satellites. No further timeline was disclosed at the time of publication, but the demand for rapid satellite turnover suggests a robust future for Optimus robots in terrestrial manufacturing rather than in-space servicing.
optimusk.blog By OptimusK Blog Jul 08, 2026
Figure AI has introduced Helix 02, an advanced neural network model designed to enhance the capabilities of the Figure 03 robot. This innovative technology allows the robot to navigate and manipulate its surroundings concurrently, overcoming the limitations of traditional humanoid systems that typically follow a "walk-then-act" approach. The announcement marks a significant advancement in robotics, showcasing Figure AI's commitment to pushing the boundaries of artificial intelligence and automation. The development is expected to have wide-ranging implications for various applications, including industrial automation, service robots, and beyond.
HumanoidsDaily By [email protected] (Humanoids Daily Staff) Jan 27, 2026 US Figure Figure-03 helix embodied-ai
Starmind does not have a standalone stock or ticker; investors can gain exposure through SpaceX (ticker: SPCX), which began trading on Nasdaq after its IPO on June 12, 2026. Starmind is integrated within SpaceX, contributing to the company's AI and space initiatives, and its performance directly influences SPCX shares. The significance of Starmind lies in its role as a division of SpaceX, which encompasses other projects like Starlink and Starship. As of early July 2026, SPCX shares are trading between $149 and $150, significantly lower than their 52-week high of $225.64. The project’s milestones, such as AI1 prototype updates, can impact SpaceX's stock performance, making it essential for investors to monitor these developments closely. Looking ahead, the early 2027 launch of AI1 prototype satellites is a critical milestone that could provide verifiable data affecting Starmind's valuation and, consequently, SPCX stock. No further timeline was disclosed at the time of publication, but the upcoming events will be pivotal for investors tracking the relationship between Starmind and SpaceX's stock performance.
optimusk.blog By OptimusK Blog Jul 08, 2026
SpaceX has announced its ambitious Starmind project, which aims to deploy 1 million AI satellites in orbits between 500 and 2,000 km. This initiative, confirmed by Elon Musk on June 23, 2026, follows a merger with xAI, valuing the combined entity at $1.25 trillion. The satellites will function as orbital data centers, processing AI workloads powered by solar arrays and linked by optical lasers. The significance of Starmind lies in its potential to add 100 gigawatts of AI compute capacity annually, contingent on the successful operation of the Starship launch system. However, the project raises concerns regarding space debris, as the current orbital environment is already congested, with a 20% increase in collision risk reported since 2024. The European Space Agency has highlighted that the density of debris in low Earth orbit is now comparable to that of active satellites, complicating the operational landscape for new entrants like Starmind. Looking ahead, the first operational orbital AI deployments are targeted for 2028, with test launches expected in early 2027. However, the project faces scrutiny regarding its impact on space debris, as even a 1% failure rate could significantly increase the number of uncontrollable objects in orbit, exacerbating existing risks. No further timeline was disclosed at the time of publication.
optimusk.blog By OptimusK Blog Jul 08, 2026
On January 30, 2026, SpaceX filed with the FCC to launch up to 1 million AI compute satellites, positioning orbital data centers as a solution to the increasing demand for AI computing power. Ground data centers are facing significant challenges, with energy consumption projected to reach approximately 1,050 TWh in 2026, making them the fifth-largest electricity consumer globally. The demand for new data center capacity is outpacing the growth of power generation infrastructure, leading to a critical bottleneck in the grid system. The significance of this initiative lies in the structural constraints faced by ground data centers, including power delivery limitations, high water consumption, and local opposition to new projects. The Uptime Institute's 2026 outlook identifies power as the primary constraint on data center growth, with capacity clearing prices in the PJM grid skyrocketing to $329.17/MW, driven by data center expansion. Additionally, cooling requirements are becoming increasingly unsustainable, with facilities consuming vast amounts of water, further complicating their operational viability. Looking ahead, SpaceX's orbital AI compute initiative aims to circumvent these challenges by leveraging the advantages of space, such as continuous solar power and minimal local opposition. The first AI prototypes are expected to launch in early 2027, with operational deployments planned for 2028. No further timeline was disclosed at the time of publication.
optimusk.blog By OptimusK Blog Jul 08, 2026
In 2026, the smartphone hardware landscape has undergone a significant transformation, making repairs far more complex than in previous years. Major manufacturers such as Apple, Samsung, and Google have developed flagship devices that resemble intricate puzzles, requiring advanced technical skills to disassemble. Unlike earlier models that allowed for simple component swaps using basic tools, today's smartphones are secured with specialized, microscopic screws and feature multi-layered logic boards, along with robust waterproof gaskets. This evolution in design reflects a growing emphasis on security and durability, posing challenges for consumers and repair technicians alike. As a result, the process of fixing a smartphone has shifted from straightforward DIY repairs to a more complicated endeavor, often necessitating professional assistance.
RoboticsAndAutomationNews.com By Sam Francis Jun 15, 2026 Engineering Industry automation news consumer electronics diagnostic tools DIYFIXTOOL
ABB Robotics completes its AI-powered Visual SLAM AMR portfolio with new autonomous forklift Visit http://go.abb/robotics for further information -The new Flexley Stack F712 extends ABB Robotics’ AI-powered Visual SLAM technology to autonomous forklifts, enabling pallet transport and high-density storage. -Customers can now deploy mixed fleets of Visual SLAM-powered tugs, movers and forklifts on a common navigation, fleet management and software platform. -Powered by ABB Robotics' AMR Studio, the portfolio enables up to 20% faster commissioning while ensuring seamless interoperability and safe, reliable operation. 07/07/26, 07:10 AM | Industrial Robotics, Mobile Robots | ABB Inc. ABB Robotics is expanding its Autonomous Mobile Robotics (AMR) portfolio with the launch of the Flexley® Stack F712, creating a complete interoperable ecosystem across all major Visual SLAM AMR types. Combining autonomous forklifts, tugs and movers on one platform, ABB Robotics enables customers to automate a broader range of material-handling and intralogistics processes. Offering market-leading accuracy, the F712 is designed for demanding material handling, end-of-line storage and warehouse operations across industries including automotive manufacturing, helping increase efficiency, flexibility and scalability. More Headlines A3's Automate 2026 Breaks Records as Demand for Robotics, AI and Automation Grows NVIDIA and Hugging Face Bring New Models and Frameworks to LeRobot for the Open Robotics Community Palladyne AI Executes $4.2 Million U.S. Air Force Contract to Advance Swarming Capabilities for Integrated Cross-Domain Operations UMA Unveils Its Vision for the Next Generation of Humanoid Robots Robbyant Unveils LingBot-Depth 2.0 and LingBot-Vision to Redefine Robotic Spatial Perception Articles Unleash AI Innovation: The Power of NVIDIA RTX PRO 6000 Blackwell Workstation Edition Fueled by PNY-Supplied GPUs Automate 2026 Q&A with DESTACO Automate 2026 Q&A with Roboteon Advances in Robots to See & Interpret within Warehouse Environments Building Resilient Fulfillment Networks with Robotics and Real-Time Logistics Data "Across intralogistics operations, businesses are being asked to process greater volumes in less time, while working with increasingly limited resources," said Marc Segura, President, ABB Robotics. "They are under pressure to move goods faster and with greater flexibility, while labour availability is becoming a critical constraint. As part of our journey to more autonomous and versatile robotics (AVRTM), we have combined advanced vision, mobility and intelligence in the Flexley Stack F712 forklift AMR, completing our scalable, AI-powered AMR portfolio." F712 is versatile, capable of handling multiple load types and sizes - including open and closed pallets, containers or racks- up to 2,000 kg and reaching heights of 8.5 meters. The Flexley Stack AMR F712 joins the Flexley Tug and Flexley Mover in ABB Robotics' growing Visual SLAM AMR portfolio. Applications include intralogistics tasks such as warehouse storage and retrieval, as well as line supply, end-of-line handling, body- and press-shop and drive-in and light buffer in the automotive and industries sector. Unlike conventional AMR forklifts on the market, F712 uses Visual SLAM to map and navigate its environment, eliminating the need for pre-installed infrastructure like markers or reflectors. The AI-enabled Visual SLAM supports the autonomous decisions required to operate in complex, dynamic warehouse operations with a market-leading positional accuracy of ±10 mm. Together with AMR Studio®, this shortens commissioning times by up to 20 percent and creates a versatile and reliable system that can adapt instantly when a warehouse or production floor layout changes. Certified to the latest ISO and ANSI safety standards, Flexley Stack F712 can safely operate at class-leading speeds of up to 1.7 m/s while loaded. F712 is fully integrated with AMR Studio and is VDA5050 compatible, enabling seamless integration with ABB Robotics' Visual SLAM AMRs and existing systems within a unified project. This makes it easy to manage complex projects and integrate different types of mobile robots. The no-code, drag-and-drop software suite supports rapid setup, fleet coordination, traffic management and real-time visualization, allowing ABB Robotics' tugs, movers and forklifts to operate together in the same layout for scalable turnkey automation projects. ABB Robotics as one of the world's leading robotics companies, is the only company with a comprehensive and integrated AI-powered portfolio covering robots, cobots and Autonomous Mobile Robots (AMRs), designed and orchestrated by our value-creating software. We help companies of all sizes and sectors - from automotive to electronics and logistics - to outperform by becoming more resilient, flexible and efficient. ABB Robotics is at the forefront of developing and commercializing a new generation of Autonomous Versatile Robotics
RoboticsTomorrow.com Jul 07, 2026
Enlight and MICO have made their international debut, showcasing advanced whole-body touch sensitivity and physical AI technology aimed at revolutionizing industrial automation. This significant event took place recently, highlighting the growing trend of integrating sophisticated AI solutions into manufacturing processes. The introduction of these technologies is driven by the need for increased efficiency and precision in industrial operations. By utilizing whole-body touch sensitivity, Enlight and MICO enable machines to interact more intuitively with their environments, enhancing productivity and safety. This innovative approach is expected to transform how industries operate, paving the way for smarter and more responsive automation systems.
RoboticsTomorrow.com Jun 15, 2026
NVIDIA has unveiled SONIC, an advanced humanoid controller designed to enhance robotic movement by utilizing a vast dataset of 100 million frames of motion. This innovative technology seeks to eliminate the need for manual reward engineering, offering a scalable "System 1" foundation that facilitates whole-body movement in robots. The release of SONIC marks a significant advancement in the field of robotics, showcasing NVIDIA's commitment to pushing the boundaries of artificial intelligence and automation. The development is part of the company's ongoing efforts to create more intuitive and efficient robotic systems capable of complex tasks.
HumanoidsDaily By [email protected] (Humanoids Daily Staff) Feb 20, 2026 NVIDIA open-source Research embodied-ai
Shenzhen-based startup LimX Dynamics has unveiled a video showcasing its latest humanoid robot, Oli, demonstrating advanced capabilities in whole-body loco-manipulation. In the demonstration, Oli autonomously identifies a tennis ball, navigates towards it, and successfully picks it up. This innovative feat highlights a significant advancement in robotic technology, as such complex skills are rarely seen in contemporary humanoid robots. The release of this video marks a notable moment for the company, emphasizing its commitment to pushing the boundaries of robotics and automation.
HumanoidsDaily By [email protected] (Humanoids Daily Staff) Oct 03, 2025 LimX Dynamics Oli Loco-Manipulation humanoid-robot
Agility Robotics has unveiled a new video featuring its humanoid robot, Digit, demonstrating its ability to autonomously pick up a shopping basket and various items within a laboratory environment. This advancement highlights the capabilities of a whole-body controller that has been trained in simulation, allowing Digit to effectively interact with unfamiliar objects and navigate diverse settings. The demonstration showcases the progress in robotics technology and the potential applications of such autonomous systems in everyday tasks.
HumanoidsDaily By [email protected] (Humanoids Daily Staff) Jun 04, 2025 Digit Agility Robotics
In the automotive manufacturing industry, the stamping process is essential for creating body panels like doors, side panels, and engine hoods. However, traditional stamping lines often depend on manual loading and unloading, which leads to inefficiencies and exposes workers to challenging conditions, including excessive noise, high temperatures, and dust. To address these issues, manufacturers are increasingly adopting automated solutions that enhance efficiency and improve workplace safety. By integrating advanced robotics and automation technologies, companies aim to streamline the stamping process, reduce labor costs, and create a more conducive working environment. This shift is not only expected to boost productivity but also to mitigate the health risks associated with manual operations. As the automotive sector continues to evolve, the move towards automation in stamping lines reflects a broader trend of modernization aimed at meeting growing production demands while ensuring worker safety.
estun.com By ESTUN Mar 21, 2025 ESTUN AUTOMATION ROBOTICS SERVO SYSTEMS
Milestone has unveiled a groundbreaking approach to high-end manufacturing by showcasing how robotics can enhance craftsmanship, particularly in areas where surface quality is paramount. This innovative development was presented during a recent industry event held in October 2023. The demonstration highlighted the potential for robotics to not only improve efficiency but also maintain the intricate details and finish that are essential in luxury goods production. By integrating advanced robotic systems, manufacturers can achieve consistent quality while scaling operations to meet increasing demand. This shift towards automation is driven by the need for precision and excellence in the competitive landscape of high-end manufacturing, where traditional methods may fall short. The event served as a platform for industry leaders to explore the future of manufacturing, emphasizing the role of technology in elevating craftsmanship standards.
RoboticsTomorrow.com Apr 16, 2026
A recent study published in the Journal of Field Robotics highlights advancements in autonomous robotic navigation. Researchers from a leading university conducted experiments to improve the efficiency and accuracy of robots in complex environments. The study, released in early October 2023, focuses on the integration of artificial intelligence and machine learning algorithms to enhance decision-making processes in real-time. The research team aimed to address challenges faced by robots in dynamic settings, such as unpredictable obstacles and varying terrain. By employing advanced sensing technologies and adaptive algorithms, the robots demonstrated significant improvements in their ability to navigate and perform tasks autonomously. The experiments were conducted in various locations, including urban settings and natural landscapes, to test the robots' adaptability and performance under different conditions. The findings suggest that these innovations could lead to more effective applications in fields such as search and rescue, agriculture, and environmental monitoring. This study underscores the growing importance of robotics in addressing real-world challenges and the potential for continued advancements in the field. The researchers believe that their work could pave the way for more sophisticated robotic systems capable of operating independently in increasingly complex environments.
JournalofFieldRobotics By Mingfan Xu, Ziyi Yang, Chuyan Xu, Jing Zhao, Yechen Qin Apr 12, 2026 RESEARCH ARTICLE
Run Robotics, a Shanghai-based company, has introduced the world's first 'centaur' wheel-leg hybrid robot at the WAIC 2026. This innovative AI-powered machine combines wheeled mobility with legged locomotion, allowing it to traverse complex terrains at high speeds. With over 95% of its components produced domestically, the robot is designed for demanding applications such as autonomous inspections, firefighting, and emergency rescue operations. The significance of this development lies in its potential to enhance operational capabilities in challenging environments. The centaur robot's unique design, featuring a four-wheel all-terrain chassis and a human-like upper body with robotic arms, enables it to perform complex tasks that traditional robots cannot. Its ability to carry loads between 220 to 265 pounds (100 to 120 kilograms) and support a maximum static load of 463 pounds (210 kilograms) makes it suitable for various industrial and emergency response scenarios. Looking ahead, Run Robotics aims to complete an automated assembly line by the fourth quarter of 2026 and has already secured commercial orders for the centaur robot. The company continues to refine its product to address challenges in operational capability and adaptability, positioning itself as a leader in advanced robotics manufacturing in China. No further timeline was disclosed at the time of publication.
InterestingEngineering.com By Jijo Malayil 6 hours ago AI and Robotics Innovation
Uber Technologies, Inc. is gaining attention as a promising investment opportunity amid its declining stock prices, according to analysts. On June 17, 2026, the company, in partnership with Lucid, announced plans to expand its autonomous ride-hailing service to Houston, marking it as the second market for this initiative. The robotaxi service is expected to launch in mid-2027, following the establishment of a base in the San Francisco Bay area, where a commercial launch is anticipated later this year. Currently, autonomous vehicle testing is already taking place in Houston, supported by Uber's extensive engineering fleet of 100 vehicles operating across California and Texas. To facilitate operations, Uber has secured a 50,000-square-foot facility in Houston for charging, maintenance, and repairs. This announcement coincides with Lucid's recent acquisition of $750 million in funding, which includes a significant investment from Saudi Arabia’s Public Investment Fund and additional backing from an Uber subsidiary. As Uber continues to innovate in the ride-hailing sector, analysts suggest that while the company shows potential, other AI stocks may offer greater upside with lower risk.
YahooFinance Jun 20, 2026
Tesla has announced the rollout of its Full Self-Driving (Supervised) driver assistance software in Lithuania, making it the second European country to implement the system following its provisional approval in the Netherlands last month. The Dutch regulatory body, RDW, granted this approval for public road use on April 10, and Lithuania's Transport Safety Administration has since recognized this certification. This move aligns with RDW's efforts to seek EU-wide acceptance of the technology, which other member states can adopt based on the Dutch approval. While Belgium is anticipated to be the next country to authorize the system, with testing already underway in the Flanders region, Tesla CEO Elon Musk remains optimistic about broader EU approval despite some skepticism from regulators in Nordic countries. The RDW conducted extensive testing of the Full Self-Driving system over a year and a half on both test tracks and public roads before granting its approval. Tesla has also been conducting tests in various other European nations over the past year, further demonstrating its commitment to advancing autonomous driving technology in the region.
YahooFinance May 20, 2026
IEEE Spectrum robotics has released its weekly roundup of notable robotics videos, along with a calendar of upcoming events, including the International Conference on Robotics and Automation (ICRA) scheduled for June 1-5, 2026, in Vienna. Among the highlights, researchers from the Max Planck Institute and other institutions have published a study revealing that elephants' unique whiskers contribute to their exceptional sense of touch, potentially inspiring advancements in robotic sensing technologies. In product news, Weave Robotics announced the launch of Isaac 0, a laundry-folding robot set to begin shipping to homes in the Bay Area in February 2026. Meanwhile, engineers at Boston Dynamics continue to test the Atlas platform's full-body control capabilities. Additionally, a team from the University of Waterloo has developed a system enabling collaborative art creation with robots, while Harvard scientists have introduced a new 3D-printing method for soft robotics that could enhance medical technology. Texas A&M University has unveiled a quiet all-electric unmanned rotorcraft, and Deep Robotics has showcased the Lynx M20 robot, designed for winter sports challenges. These developments reflect ongoing innovations in robotics, addressing both practical applications and advanced research, as the field continues to evolve.
Spectrum.ieee.orgAutomaton By Evan Ackerman Feb 13, 2026 Modular-robots Video-friday Autonomous-robots
Teledyne Marine has secured In Service Support agreements for its Slocum gliders and Gavia Autonomous Underwater Vehicles (AUVs) from the Royal Navy. This partnership aims to enhance the service, repair, and operational support of Teledyne's unmanned systems utilized by the Royal Navy. The agreements, announced recently, are expected to improve maintenance turnaround times and ensure high operational availability of these advanced systems, thereby bolstering the Royal Navy's capabilities in maritime operations.
ROVplanet.com By ROV Planet Jan 13, 2026 teledyne marine mod slocum gliders gavia auv royal navy
DeepOcean, in collaboration with its joint venture partners, has successfully received a newly constructed uncrewed surface vessel (USV). This state-of-the-art vessel is set to enhance subsea survey capabilities and facilitate inspection, maintenance, and repair (IMR) operations within the offshore energy sector. The delivery marks a significant advancement in technology aimed at improving efficiency and safety in marine operations. The USV will be deployed across various offshore projects, reflecting the growing trend towards automation in the industry.
ROVplanet.com By ROV Planet May 08, 2025 deepocean usv usv challenger
Chinese robotics firm Unitree has introduced UnifoLM-OminiA-0.3, a unified AI model designed for humanoid robots. This model facilitates real-time omni-modal interaction, reasoning, dialogue, and whole-body mobile manipulation, targeting home-care and wellness applications. The robots can autonomously perform tasks such as tidying rooms and assisting patients while responding to various inputs. The significance of UnifoLM-OminiA-0.3 lies in its ability to integrate multiple capabilities into a single system, allowing robots to process information from speech, vision, and environmental cues simultaneously. This unified architecture enables seamless task execution, as demonstrated by a humanoid robot that can adjust a hospital bed and respond to user commands mid-task, showcasing continuous human-robot interaction. Looking ahead, the trend towards embodied AI is expected to grow, with developers focusing on integrating vision-language models with robot control. This approach enhances flexibility in dynamic environments like homes and healthcare facilities, where tasks and interactions can vary significantly. No further timeline was disclosed at the time of publication.
InterestingEngineering.com By Jijo Malayil 3 hours ago AI and Robotics
On July 15, BeingBeyond officially launched the Being-M0.7, the world's first full-body mobile operation implicit world action model (Latent WAM). This model enables robots not only to 'see' the world but also to 'understand' how it operates, facilitating full-body movements and dexterous actions. It connects visual perception with physical interaction, allowing robots to exhibit human-like coordination. The significance of Being-M0.7 lies in its ability to learn from over 10,000 hours of human first-person video pre-training, enabling it to predict physical changes based on implicit visual and motion information. Before executing commands, the model learns three core capabilities: visual context understanding, future state prediction, and implicit representation of humanoid kinematics. This foundational understanding precedes its ability to control movements. Looking ahead, BeingBeyond's advancements in implicit world action models are noteworthy. The Being-M0.7 expands the capabilities of previous models, transitioning from desktop dexterous tasks to full-body mobile operations. Future demonstrations will likely showcase the robot's understanding of physical interactions and its ability to perform complex tasks autonomously, marking a significant step in humanoid robotics development.
leaderobot.com By Leaderobot Jul 15, 2026 Humanoid Robots Robotic Mobility AI Machine Learning
In Hefei, China, NIO's F2 electric vehicle plant showcases a fully automated body assembly line, eliminating the need for human labor. The facility is dominated by advanced machinery, particularly German-based KUKA robots, which work in unison to construct aluminum vehicle bodies. One robot expertly positions a door, while another ensures precise alignment using sensors, and additional robots perform welding tasks in mere seconds. This cutting-edge automation reflects the company's commitment to efficiency and innovation in the electric vehicle manufacturing sector, highlighting a significant shift towards robotics in automotive production.
KoreaHerald.com By The Korea Herald Jun 29, 2026 All News
Archon Robotics, a Shanghai-based company specializing in whole-body humanoid models, has successfully secured hundreds of millions in seed funding from prominent investors, including ZhenFund, Gao Rong Capital, IDG Capital, and others. The financing round, which took place recently, aims to enhance the development of humanoid models, collect multimodal motion data, expand the talent team, and establish research centers and industry partnerships, with the goal of launching an open-source humanoid model by the end of this year. Founded in April 2026, Archon Robotics focuses on creating whole-body intelligence for humanoid robots, enabling them to perform complex tasks that require full-body coordination. The company's founder, Dr. Hongyang Li, is an assistant professor at the University of Hong Kong and has received accolades for his work in autonomous driving. Co-founder and CEO Dr. Tianyu Li, along with the core team, brings expertise from top institutions and has a strong background in robotics and AI. The humanoid robotics sector is at a pivotal moment, with significant investments occurring but lacking a unified technical consensus. Current limitations in training data restrict robots to simple tasks, as they often lack the necessary information for complex human-like interactions. Archon Robotics aims to address these gaps by redefining data collection methods to better capture human coordination and movement dynamics. The company plans to release its first humanoid model in late 2026, emphasizing the need for robots to operate effectively in dynamic home environments. By focusing on comprehensive data collection and understanding physical interactions, Archon Robotics seeks to advance the capabilities of humanoid robots beyond current limitations.
36kr.com Jun 29, 2026
AI-native biotechnology company BaiAo Geometry has successfully secured several hundred million yuan in strategic financing, with investments led by the Shanghai Biomedical Innovation Transformation Fund, Guoke Investment, Dacheng Wisdom, and Xinglian Capital, alongside follow-on investments from GaoRong Capital and the Index AI Industry Innovation Fund. The funds will primarily support the ongoing development of their life sciences micro-world model, GeoFlow, and the advancement of their proprietary drug pipeline. Artificial intelligence is rapidly evolving along two main trajectories: digital AI, represented by large language and multimodal models, and physical AI, exemplified by autonomous vehicles and humanoid robots. Life AI is emerging as a promising frontier, a sentiment echoed by leading global investors and scientists. BaiAo Geometry's GeoFlow model, launched in 2024, aims to understand and design molecular interactions at an atomic level, enabling the creation of novel molecules that have never existed in nature. The company has iterated GeoFlow multiple times, achieving significant advancements in protein structure prediction and de novo design capabilities. By applying Test-Time Scaling technology, BaiAo Geometry enhances the success rate of protein designs without the need for extensive retraining. This innovation allows for the rapid generation and optimization of high-affinity binding molecules, significantly reducing the time and cost associated with traditional drug discovery processes. BaiAo Geometry has established over 20 business development collaborations with domestic and international pharmaceutical companies, focusing on high-specificity antibody design and vaccine development. The company is currently working on the next iteration of GeoFlow, which aims to expand modeling from individual molecules to entire molecular systems, further revolutionizing drug development in the biotechnology sector.
36kr.com Jun 09, 2026
Shenzhen-based Chengwu Robotics has successfully completed its angel round of financing, backed by Taiwan's leading industrial automation and intelligent robotics firm, Chuan Technology, with Huajun Capital serving as the exclusive financial advisor. Founded in 2025, Chengwu Robotics focuses on the development of embodied intelligence technologies and product solutions for industrial applications, leveraging its integrated capabilities in hardware and software development, data collection, model training, and scene deployment. The company, led by founder Huang Jinlong, who has over a decade of experience in robotics R&D, aims to address the customization needs of non-standard industrial scenarios. Since its inception, Chengwu has delivered over ten industrial projects, generating over 20 million yuan in revenue by 2025 and serving major manufacturers, including Foxconn. Chengwu Robotics is also advancing its model development, with a focus on the Vision-Language-Action (VLA) model, which aims to enhance 3D perception and operational precision in complex environments. To address data collection challenges, the company has developed its own Egocentric-UMI data collection device and Bybot-TeleOp remote operation system, significantly reducing training and deployment times. The company is simultaneously developing a prototype upper-body robot equipped with advanced components to support its model training and industrial applications. Chengwu Robotics emphasizes its comprehensive capabilities and real-world delivery experience, positioning itself to create commercially viable solutions that meet client needs in various industrial contexts.
36kr.com May 30, 2026
Researchers at Nanyang Technological University (NTU) Singapore have unveiled a groundbreaking seed-sized surgical robot designed to enhance precision in minimally invasive surgeries. This innovative device, which measures just a few millimeters, has the potential to revolutionize surgical procedures by allowing for targeted interventions within the human body. The development was announced on October 15, 2023, during a presentation at the university's annual technology showcase. The motivation behind this advancement stems from the need for improved surgical techniques that reduce recovery times and minimize complications associated with traditional surgery. By utilizing advanced robotics and miniaturization technologies, the team at NTU aims to provide surgeons with a tool that can navigate complex anatomical structures with greater accuracy. The surgical robot operates through a combination of remote control and autonomous navigation, enabling it to perform intricate tasks while being guided by a surgeon. This dual functionality ensures that while the robot can operate independently, it remains under the expert oversight of medical professionals, enhancing both safety and efficacy. As the medical community continues to seek innovative solutions to improve patient outcomes, this development represents a significant step forward in the field of robotic surgery, promising to make procedures less invasive and more effective in the near future.
InterestingEngineering.com By Neetika Walter May 26, 2026
In a bid to enhance production efficiency, JAKA has introduced the JAKA Pro series, an advanced industrial cobot designed to optimize throughput in demanding manufacturing environments. This innovative robot, capable of operating continuously in harsh conditions, aims to eliminate production bottlenecks by automating time-sensitive tasks that typically slow down human workers. The JAKA Pro12, the flagship model, boasts IP68 protection, making it resistant to dust, oil, and water, ensuring consistent performance even in extreme environments. With a payload capacity of 12kg and a reach of 1327mm, it can handle heavy industrial parts and perform secondary operations simultaneously, such as deburring or pre-sorting, while primary machines are in operation. By aligning the robot's speed with the overall production line tempo, manufacturers can maintain a steady workflow and prevent local bottlenecks. The cobot's ability to function around the clock supports "lights-out" manufacturing, allowing for continuous production without the need for human oversight during breaks or overnight shifts. With features like sub-millimeter precision and rapid deployment capabilities through a user-friendly app, the JAKA Pro series is positioned as a transformative solution for high-volume production lines, promising to double or triple daily output without increasing workforce size. JAKA emphasizes that their robots embody intelligence, becoming integral to the operational heartbeat of modern manufacturing facilities.
jaka.com By JAKA May 21, 2026
In 2026, the landscape of industrial automation and robotics is undergoing a transformative shift, moving from rigid machines to intelligent, adaptive systems. This evolution is driven by global manufacturing challenges, including labor shortages and the demand for hyper-personalization. Key advancements in connectivity and artificial intelligence are reshaping productivity and safety on factory floors. A major trend is the emergence of "self-evolving" robots that utilize generative AI to autonomously learn new tasks, minimizing the need for manual programming. Additionally, agentic AI empowers these machines to make informed decisions in complex environments, enhancing their ability to predict equipment failures and optimize operations in real-time. The convergence of Information Technology (IT) and Operational Technology (OT) is facilitating seamless data exchange between digital systems and physical robots. This integration allows for the creation of digital twins, enabling manufacturers to simulate production changes before implementation. Cloud connectivity has become standard, with nearly half of new deployments leveraging IoT technology for predictive maintenance. This capability allows robots to monitor their health and schedule repairs proactively, reducing unplanned downtime and long-term costs. Furthermore, advanced 2D and 3D vision systems are enhancing robots' capabilities, enabling them to perform high-speed quality inspections and adjust their behavior for safety around human workers. The shift towards modular and scalable automation is also notable, as manufacturers adopt flexible robot cells that simplify integration and facilitate quick changeovers. Leading this innovation is JAKA Robotics, whose JAKA A12 model exemplifies the future of flexible automation. With a 12 kg payload and a 1425 mm working radius, the JAKA A12 combines high performance with user-friendly deployment through a wireless software ecosystem, positioning itself as a key player in the evolving industrial landscape.
jaka.com By JAKA May 12, 2026
Hiroshi Fujiwara, Executive Director of the Japan Robot Association, and Robert Little, co-founder of ATI Industrial Automation, have been honored with the 2026 Joseph F. Engelberger Robotics Awards, the highest accolade in the robotics field. The announcement was made by the Association for Advancing Automation (A3) on April 28, 2026. The awards recognize Fujiwara for his extensive contributions to advancing robotics and fostering international collaboration, while Little is celebrated for his pivotal role in enhancing the practical application of robotics in manufacturing. The awards ceremony will take place on June 24, 2026, from 5:15 to 8:30 p.m. CT at McCormick Place in Chicago, coinciding with Automate 2026, North America's largest robotics and automation event. Attendees can purchase tickets through the Automate registration process. A3 President Jeff Burnstein emphasized the significance of both winners, noting that their efforts have greatly contributed to the growth and practical implementation of robotics. Fujiwara has been instrumental in strengthening Japan's robotics ecosystem and promoting collaboration across various sectors, while Little has dedicated his career to providing manufacturers with the tools necessary for effective automation. Together, their achievements embody the spirit of the Engelberger Awards, celebrating innovation and leadership in the robotics industry.
RoboticsTomorrow.com Apr 28, 2026
Squaremind has successfully secured $18 million in funding to develop Swan, an innovative robotic platform designed to automate full-body skin imaging aimed at early cancer detection. This significant investment will enable the company to enhance its technology, which is poised to improve diagnostic accuracy and efficiency in dermatology. The funding round reflects a growing interest in advanced medical technologies that leverage robotics and artificial intelligence to address critical healthcare challenges. By streamlining the imaging process, Swan aims to facilitate timely interventions for skin cancer, ultimately contributing to better patient outcomes.
RoboticsBusinessReview.com By The Robot Report Staff Apr 27, 2026 Artificial Intelligence Cobot Arms Healthcare Robotics News Squaremind
IEEE Spectrum robotics has released its latest edition of "Video Friday," showcasing a selection of innovative robotics videos and announcing upcoming events in the field. The events include the International Conference on Robotics and Automation (ICRA) scheduled for June 1-5, 2026, in Vienna, the Robotics Science and Systems (RSS) conference from July 13-17, 2026, and a Summer School on Multi-Robot Systems taking place from July 29 to August 4, 2026, in Prague. Among the featured videos, researchers are training the robot Digit to perform a deadlift with a 65-pound object, emphasizing the importance of whole-body coordination and resilience in its actuators. This training allows for the development of a policy that enables Digit to execute a dynamically balanced lift in real-world scenarios. Additionally, Gatlin Robotics has introduced its first commercial showcasing robots in action as part of its Robot-as-a-Service (RaaS) contract. Dexterity highlights the expressive potential of motion intelligence in robotics, while Harvard researchers present a swarm of simple antlike robots capable of constructing and dismantling structures through adaptive group behavior. Lastly, a project from Michigan Robotics demonstrates a microcombustion actuator that rapidly inflates to launch colorful water droplets, challenging conventional notions about the capabilities of soft actuators. These advancements reflect the ongoing evolution and application of robotics technology across various domains.
Spectrum.ieee.orgAutomaton By Evan Ackerman Apr 17, 2026 Industrial-robots Humanoid-robots Video-friday Swarm-robotics Dancing-robot Bipedal-robots
AGIBOT has unveiled a new generation of embodied AI robots and models designed to improve the deployment of physical AI in real-world applications. This launch, which took place recently, features advanced robotic platforms including the AGIBOT A3 humanoid robot, the D2 Max autonomous quadruped, and a body-free data collection system. These innovations are part of a broader ecosystem aimed at facilitating scalable AI development across various industries. The initiative seeks to enhance the integration of AI into human workflows, addressing the growing demand for advanced automation solutions.
agibot.com By AgiBot Apr 17, 2026 Embodied AI Robotics Artificial Intelligence Automation Technology Innovation
Researchers are advancing the field of soft robotics, which has the potential to revolutionize medical and exploratory applications. These innovative robots, capable of shapeshifting and manipulating delicate objects, could serve as medical implants, facilitate drug delivery within the body, and assist in exploring hazardous environments. However, current designs often face limitations due to the reliance on rigid mechanical components or external power systems that hinder their full capabilities. As scientists continue to refine these technologies, the goal is to create more autonomous and adaptable soft robots that can operate effectively in various challenging scenarios.
TechXplore:Robotics Apr 09, 2026 Robotics
In a recent study published in the Journal of Field Robotics, researchers explored advancements in robotic technology aimed at enhancing agricultural efficiency. The findings, released in May 2026, highlight innovative methods for integrating autonomous systems into farming practices. Conducted by a team of experts in robotics and agriculture, the research took place in various agricultural settings to assess the practical applications of these technologies. The motivation behind this study stems from the growing need for sustainable farming solutions that can address labor shortages and increase productivity in the face of climate change. By employing advanced robotics, the team demonstrated how these systems can optimize crop management and reduce resource waste. The research involved extensive field trials, where robotic systems were tested for their ability to perform tasks such as planting, monitoring crop health, and harvesting. The results indicated significant improvements in efficiency and yield, suggesting that the integration of robotics could revolutionize traditional farming methods. This study not only contributes to the body of knowledge in agricultural robotics but also underscores the potential for these technologies to transform the agricultural landscape, making it more resilient and sustainable for future generations.
JournalofFieldRobotics By Jie Huang, Xiangyou Wang, Chengqian Jin, Fernando Auat Cheein Apr 08, 2026 RESEARCH NOTE
In a recent roundup of advancements in robotics, IEEE Spectrum highlighted several notable developments and upcoming events in the field. Among the key innovations is Digit, a humanoid robot that can learn new whole-body control capabilities overnight through sim-to-real reinforcement training, enhancing its performance in various tasks. Additionally, the introduction of GEN-1 marks a significant milestone in robot learning, achieving a 99% success rate in simple physical tasks and drastically reducing task completion time. Unitree has made strides by open-sourcing the UnifoLM-WBT-Dataset, a comprehensive dataset for humanoid robot teleoperation, which has been available since March 5, 2026. Meanwhile, researchers presented MRReP, a Mixed Reality interface that allows users to guide autonomous mobile robots in human-shared environments through hand gestures. In other developments, Sanctuary AI showcased its advanced hydraulic hands capable of dexterous manipulation, while China’s Yuxing 3-06 satellite successfully completed an in-orbit refueling test, paving the way for future satellite servicing. Furthermore, Japan Railway West collaborated with Serendix to utilize 3D printing technology for rapid construction at Hatsushima station, demonstrating innovative solutions to infrastructure challenges. Upcoming robotics events include ICRA 2026 in Vienna from June 1-5, and the Summer School on Multi-Robot Systems in Prague from July 29 to August 4, 2026, providing platforms for further exploration and collaboration in the robotics sector.
Spectrum.ieee.orgAutomaton By Evan Ackerman Apr 03, 2026 Humanoid-robots Video-friday Robot-ai Human-robot-interaction Teleoperation Industrial-robotsDoosan Robotics Inc., a leader in collaborative robotic solutions, is set to showcase its latest innovations at CES® 2026, taking place from January 6 to 9 at the Las Vegas Convention Center. The company will present the Scan & Go Autonomous Robotic Solution, which has garnered two CES Innovation Awards, including “Best of Innovation” in the AI category. This AI-driven system revolutionizes large-scale composite repair by utilizing cognitive learning and laser-based 3D vision to interpret complex geometries in real time, thereby eliminating the need for traditional CAD modeling. Deployed on an autonomous forklift, Scan & Go is designed to perform intricate tasks such as sanding and grinding on large structures, enhancing production efficiency and workplace safety. In addition, Doosan Robotics will unveil its AI-Powered Depalletizing demonstration, which features real-time motion planning using Nvidia cuMotion technology. This automated solution employs 3D vision for box recognition and obstacle avoidance, significantly improving operational efficiency in logistics environments. Kevin Kim, CEO of Doosan Robotics, emphasized the company's commitment to providing cutting-edge solutions that enhance efficiency and safety across various industries. Earlier this year, Doosan Robotics announced a strategic shift towards becoming an AI robotic solutions company, focusing on future growth and technological competitiveness. The company plans to launch its AI Palletizing Solution in the first half of this year, further solidifying its position in the robotics market.
doosanrobotics.com By Doosan Robotics Jan 06, 2026Doosan Robotics has received prestigious accolades at the CES Innovation Awards, being recognized as the Best of Innovation in the Artificial Intelligence category and as an Honoree in the Robotics category for its Scan & Go Autonomous Robotic Solution. These awards, presented by the Consumer Technology Association (CTA), highlight exceptional design and engineering in technology products ahead of CES 2026, scheduled for January 6–9 in Las Vegas. The Scan & Go solution, developed in partnership with Canada-based Maple Advanced Robotics Inc. (MARI), is an AI-driven robotic platform designed to enhance large-scale manufacturing and composite repair processes. Utilizing cognitive learning and 3D perception, the system interprets complex geometries in real time, generating optimized tool paths without the need for CAD modeling or programming. Mounted on a self-driving forklift, it autonomously navigates and operates on large, irregular structures, performing tasks such as sanding, grinding, and inspection with minimal preparation. This innovation aims to automate hazardous and labor-intensive maintenance tasks, addressing safety concerns related to noise, dust, and repetitive strain injuries. With advanced safety features, including torque-sensing collision detection, Scan & Go enhances workplace safety and productivity, earning recognition from leading wind energy manufacturers. Kevin Kim, CEO of Doosan Robotics, emphasized the company's commitment to developing immediate, on-site AI robotic solutions, marking Scan & Go as the beginning of a broader initiative to tackle real-world industrial challenges. This recognition at CES 2026 signifies Doosan's strategic transformation into an AI Robot Solution company, aimed at bolstering its global competitiveness in the robotics sector.
doosanrobotics.com By Doosan Robotics Nov 06, 2025
Comau has successfully implemented a fully automated body-in-white welding and material handling solution for Foton Daimler's next-generation A6 platform, designed specifically for heavy-duty trucks. This advanced system aims to enhance production efficiency and quality in the manufacturing process. The collaboration marks a significant step forward in automotive technology, showcasing Comau's commitment to innovation in the industry. The deployment of this solution is expected to streamline operations and improve overall productivity at Foton Daimler's facilities, reflecting the growing demand for advanced manufacturing capabilities in the heavy-duty truck sector.
comau.com By Comau Nov 06, 2025
A Zurich-based ETH spin-off is advocating for a practical and swiftly implementable solution to industrial automation, challenging the notion that full-body humanoid robots are the optimal choice for most tasks. Instead, the company emphasizes the development of a robust AI foundation model, which is designed to be trained and operated by human workers. This approach aims to enhance efficiency and effectiveness in various industrial applications, reflecting a shift towards more adaptable and user-friendly technologies in the sector.
HumanoidsDaily By [email protected] (Humanoids Daily Staff) Nov 03, 2025 Mimic Robotics hand hands
Robbyant, a company specializing in embodied AI under Ant Group, has unveiled the upgraded LingBot-VLA 2.0 model. This next-generation vision-language-action model enhances morphological generalization, degrees of freedom support, and deployment efficiency, addressing a critical gap in the embodied AI industry. The significance of LingBot-VLA 2.0 lies in its extensive pre-training on 60,000 hours of real-world data, which includes interactions from 20 different robot morphologies. This upgrade allows for improved whole-body control and dual-arm manipulation, achieving leading scores on benchmarks, thus demonstrating its effectiveness in industrial-scale deployment. Looking ahead, the introduction of a version optimized for efficient post-training and a threefold increase in inference efficiency positions LingBot-VLA 2.0 as a strong contender for real-time commercial applications. No further timeline was disclosed at the time of publication.
RoboticsAndAutomationNews.com By Sam Francis Jul 17, 2026 Computing Robot simulation artificial intelligence dual-arm robots embodied ai humanoid robots
IEEE Spectrum robotics has released its weekly roundup of notable robotics videos and upcoming events, including the ICRA 2026 conference scheduled for June 1-5, 2026, in Vienna. Among the highlights, Westwood Robotics unveiled THEMIS Gen2.5, the first commercial full-size humanoid robot capable of walking and manipulating objects simultaneously. This advancement builds on Helix's previous work, which demonstrated a single neural network controlling a humanoid's upper body, now expanded to encompass the entire robot's functions. In a demonstration of practical applications, Kimberly Elenberg from Carnegie Mellon University showcased how data from robotic responders can enhance life-saving efforts during mass casualty incidents. Meanwhile, Sphero continues to thrive in the competitive educational robotics market since its inception in 2011. Innovative flight testing methods were discussed by Zipline, emphasizing the importance of testing drones in extreme conditions. Additionally, researchers from the University of Tokyo introduced a concept of 3D-printing both skin and skeleton, while LimX presented small bipedal robots capable of skiing and resembling dinosaurs. The EPFL Reconfigurable Robotics Lab introduced a novel user-guided control system for modular robots, demonstrating its effectiveness through various tasks. Texas A&M University showcased its Quadrotor Biplane Tailsitter (QBiT) UAVs, which combine the agility of quadrotor drones with the efficiency of fixed-wing aircraft. Lastly, DARPA announced a new challenge aimed at developing drones capable of carrying payloads exceeding four times their weight, promising to transform drone usage across multiple sectors.
Spectrum.ieee.orgAutomaton By Evan Ackerman Jan 30, 2026 Humanoid-robots Video-friday Commercial-robots Drones Educational-robots Bipedal-robots
Kystdesign has entered into a landmark agreement with DeepOcean to supply cutting-edge E-ROV technology, responding to the increasing demand for fully electric remotely operated vehicles (ROVs) in upcoming inspection, maintenance, and repair (IMR) contracts. The deal includes the delivery of two ZEEROV IMR versions and one ZOROV observation ROV, with options for an additional six ZEEROV IMRs and three ZOROVs. Furthermore, the contract outlines the potential development of four specialized electric ROVs designed for more demanding construction tasks and operations in challenging ocean currents. The first units are expected to be delivered by January 2027. This agreement represents a significant advancement in E-ROV technology, aiming to enhance sustainability in offshore operations moving forward.
ROVplanet.com By ROV Planet Jun 18, 2025 kystdesign agreement deepocean e-rov technology
Helix, an innovative Vision-Language-Action model, has been developed to enhance humanoid robotics by providing full upper-body control and facilitating collaboration among multiple robots. This cutting-edge technology enables robots to execute tasks involving new objects through natural language prompts, significantly improving their versatility and usability. Notably, Helix operates efficiently on low-power GPUs, positioning it for commercial applications. With its capabilities, Helix is set to revolutionize the field of robotics, making advanced robotic interactions more accessible and practical for various industries.
figure.ai By Figure AI Feb 20, 2025 robotics AI machine learning humanoid robots automation
Truck owners are being urged to pay close attention to changes in ride quality, as neglecting these signs can significantly reduce tire lifespan and compromise safety on the highway. Experts warn that failing to address common tire issues can lead to sudden blowouts, posing a serious risk to drivers and others on the road. With the increasing reliance on trucks for transportation and logistics, understanding how to identify and resolve tire problems is crucial for maintaining optimal vehicle performance. Owners are encouraged to regularly inspect their tires and seek professional assistance when necessary to ensure their rigs operate safely and efficiently under pressure.
RoboticsAndAutomationNews.com By Sam Francis Jun 16, 2026 Engineering automation news commercial vehicles fleet maintenance fleet operations fleet safetyRSF defines a common language for robot service capability, lifecycle operations, certification pathways, and service-provider networks.