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Website: https://www.cmarobot.it
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Email: [email protected]
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Phone: 01845990306
Italian manufacturer of industrial painting and powder-coating robots. Specializes in self-learning spray robots for surface finishing applications, with third-party certified systems. Subsidiary of EFORT W.F.C. Holding.
RSF defines a common language for robot service capability, lifecycle operations, certification pathways, and service-provider networks.
Pudu Robotics showcased its entire product lineup at the 2026 World Artificial Intelligence Conference (WAIC 2026) held in Shanghai from July 17 to 20, including the world premiere of the next-generation semi-humanoid robot 'PUDU D7'. Attendees had the opportunity to take commemorative photos with 'PUDU D7' and receive unique snapshots from the robot's perspective. The event also featured a multi-robot cooperative demonstration with the quadruped robot 'PUDU D5', which autonomously navigated while avoiding pedestrians. The robots demonstrated their autonomous navigation capabilities on an obstacle course simulating gravel, steps, and slopes, achieving a maximum speed of 5 m/s during drift driving. Use cases for autonomous inspection in complex environments such as power substations and industrial parks were also presented. In addition to 'PUDU D7', Pudu Robotics exhibited various robots including the serving robot 'BellaBot', industrial transport robot 'PUDU T300', and commercial cleaning robots 'PUDU MT1 Max' and 'PUDU CC1 Pro', highlighting their applications across diverse industries such as food service, retail, manufacturing, and logistics. No further timeline was disclosed at the time of publication.
RobotStart.info 1 hour agoOn July 21, Humanoid, based in London, announced the completion of $152 million in Series A funding, achieving a post-money valuation of $1.35 billion. This funding round, led by strategic investors including Schaeffler and Bosch, marks the largest Series A funding for a humanoid robotics company in Europe, bringing the total funding to $270 million. The significance of this funding lies in its strategic partnerships. Schaeffler and Bosch are not only financial backers but also strategic collaborators, with Bosch establishing a manufacturing partnership with Humanoid. This collaboration aims to leverage their industrial expertise and technological capabilities to advance humanoid robotics from vision to industrial reality. Looking ahead, Humanoid plans to utilize the funding to focus on developing the next generation of humanoid platforms and scaling production of wheeled humanoid robots, with a Beta version expected to launch in Q4 2026. The investment from major European industrial players signals a growing momentum in the humanoid robotics sector in Europe.
leaderobot.com 3 hours ago Humanoid Robots Robotics Funding AI Technology Industrial AutomationOn July 21, SpaceX launched a dual-arm space robot named MRV from Cape Canaveral, Florida. Its mission is to extend the lifespan of aging satellites by attaching jetpacks to them in geostationary orbit, preventing them from becoming space debris. The first clients for this service are Luxembourg's SES and Australia's Optus, with each satellite's replacement costing up to hundreds of millions of dollars. This initiative is significant as it marks a shift in how satellites are viewed—not as disposable assets but as reusable ones that can be repaired and refueled. Northrop Grumman, the manufacturer of MRV, has experience in satellite servicing, having previously extended the lives of malfunctioning satellites. The MRV's capabilities may evolve to include repairing and repositioning active satellites and even removing defunct ones from busy orbits. Looking ahead, the success of MRV could pave the way for more advanced satellite servicing technologies. Just two weeks prior, another robotic spacecraft, LINK, was launched to rescue NASA's Swift Observatory, which is at risk of re-entering the atmosphere. As robotics play an increasingly vital role in space operations, the economic landscape of space could be fundamentally transformed.
leaderobot.com 3 hours ago Space Robotics Satellite Services Orbital Maintenance Space EconomyIn July, Texas Tech University Health Sciences Center (TTUHSC) welcomed its first cohort of general surgery residents, who began their training with the da Vinci Surgical System. This innovative approach aims to equip new surgeons with skills comparable to those at leading institutions like Mayo Clinic and hospitals in Dallas and Houston. The training program, led by Dr. Izzy Obokare, emphasizes a systematic learning process over five years, allowing residents to master robotic surgery techniques. The da Vinci Surgical System, approved by the FDA in 2024, features a tactile feedback system that enhances the surgical experience by reducing tissue trauma and promoting quicker recovery. TTUHSC's initiative aims to provide high-quality surgical care in the Texas Panhandle, minimizing the need for residents to travel to larger cities for advanced procedures. The program also includes an open experience event for healthcare providers to witness the capabilities of robotic surgery firsthand, showcasing the arrival of cutting-edge surgical technology in rural Texas.
leaderobot.com 3 hours ago Robotic Surgery Medical Technology Surgical Training Healthcare InnovationOn July 3, Katalyst Space Technologies launched its robotic spacecraft LINK from an aircraft at approximately 40,000 feet over the Pacific Ocean, targeting NASA's Neil Gehrels Swift Observatory. The $500 million satellite is descending towards Earth at an accelerated rate and is expected to re-enter the atmosphere as early as October if no intervention occurs. The Swift Observatory, operational since 2004, has been NASA's 'first responder' to cosmic events, capable of rapidly observing gamma-ray bursts. However, solar activity has caused the Earth's atmosphere to expand, leading to a rapid decay in the satellite's orbit from about 600 kilometers to approximately 360 kilometers. In September 2025, NASA awarded Katalyst a $30 million contract to complete the design and launch process within ten months. If successful, this mission will demonstrate that commercial spacecraft can capture a government satellite without a designated docking interface. This capability is crucial for the Hubble Space Telescope, which is also experiencing orbital decay. The Swift Observatory has paused scientific observations to conserve its orbit, and if all goes well, it may resume scanning the universe in September. The LINK mission highlights the growing issue of space debris and the need for satellite maintenance rather than treating them as disposable assets.
leaderobot.com 3 hours ago Space Robotics Satellite Recovery Commercial Spaceflight Space Debris ManagementSK On has announced that solid-state batteries can allow industrial robots to operate for up to 8 hours, addressing a significant limitation of current lithium-ion batteries, which typically provide only 1 to 2 hours of runtime. This advancement could reduce downtime in 24-hour production lines, where frequent battery changes are necessary. However, the cost implications are substantial. Currently, lithium-ion batteries account for less than 2% of the total cost of industrial robots, but switching to solid-state batteries could increase this to approximately 8%, resulting in a fourfold rise in overall costs. For instance, Tesla's Optimus robot has a battery cost of about $300, which is only 0.5% of its total hardware cost. SK On has developed a total cost of ownership (TCO) model that factors in the costs of spare batteries, charging downtime, and additional backup machines, suggesting that solid-state batteries may be more economical in the long run for continuous operation scenarios. The company has completed a solid-state battery pilot plant in Daejeon, South Korea, and plans to commercialize two battery technologies by 2028 and 2029, respectively. No further timeline was disclosed at the time of publication.
leaderobot.com 3 hours ago Solid-State Batteries Industrial Robots Battery Technology Cost EfficiencyOn July 21, Medtronic announced the development of a real-time AI computing platform, the Touch Surgery assistance platform, for its Hugo surgical robot. This platform integrates NVIDIA's computing infrastructure and runs Medtronic's FDA-approved AI application, Instrument Exit Point (IEP), which alerts surgeons when instruments are at risk of going out of view during procedures. This advancement is significant as it redefines safety boundaries in surgical procedures, allowing for enhanced real-time monitoring and decision-making. Medtronic's Chief Technology Officer, Jim Pecher, emphasized that real-time AI represents a fundamental evolution in surgical support, shifting from merely assisting surgeons to enabling smarter, faster actions that have a greater impact. Looking ahead, Medtronic plans to showcase the Touch Surgery platform at the upcoming robotic surgery conference in Florida. While IEP currently offers basic functionality, the company aims to expand its capabilities into laparoscopic surgery and integrate additional AI applications, marking a pivotal step towards cognitive assistance in surgical robotics.
leaderobot.com 3 hours ago Surgical Robots AI in Healthcare Robotic Surgery Medical TechnologyOn June 24, two major earthquakes struck northern Venezuela, resulting in over 5,000 deaths and significant injuries and displacements. In response, a specialized rescue team from Carnegie Mellon University (CMU) deployed snake-like robots to assist in search efforts. From June 30 to July 3, the CMU robotics team collaborated with the Red Cross and international volunteers in La Guaira, one of the hardest-hit cities, to search through collapsed buildings. The snake robots, designed to navigate tight spaces, provided crucial visual information to rescuers, although no survivors were found. The technology helped confirm that several locations were free of trapped individuals, offering vital reassurance to families and aiding in the elimination of false leads during the critical golden hour of rescue operations. This initiative was inspired by Beatriz Gonzalez, a Venezuelan tech worker, who reached out to CMU after learning about the robots' previous success in the 2017 Mexico City earthquake. The CMU team faced numerous challenges, including equipment failures and communication barriers, but adapted by leveraging their diverse skills. Professor Howie Choset emphasized the unique capability of academic institutions to mobilize resources effectively. Following this deployment, the team plans to address the technical and operational shortcomings revealed during the mission, aiming to enhance the robots for future disaster scenarios.
leaderobot.com 3 hours ago Search and Rescue Robotics Disaster Response Technology Robotics Innovation Earthquake RecoveryRun Robotics introduced the world's first hybrid 'Centaur' robot at the WAIC 2026 in Shanghai, redefining humanoid robotics. This innovative design features a four-wheeled all-terrain chassis combined with a humanoid upper body equipped with robotic arms, enabling it to navigate complex terrains and perform tasks in hazardous environments. The significance of this development lies in its potential applications in areas deemed unsafe for humans and inaccessible to traditional robots, such as steel mills, oil fields, and disaster sites. With over 95% of its core components sourced domestically, the Centaur robot showcases China's growing capabilities in advanced robotics manufacturing. Looking ahead, Run Robotics plans to complete an automated assembly line by Q4 2026 and has already secured commercial orders for the Centaur robot. This innovation not only highlights the strength of China's robotics industry but also emphasizes a shift in design philosophy—robots need not resemble humans but must be effective in their tasks.
leaderobot.com 3 hours ago Hybrid Robots Robotics Innovation AI Technology Industrial AutomationResearchers at the Massachusetts Institute of Technology (MIT) have developed a flying robot that weighs less than a paperclip and is the size of a cassette tape, capable of navigating through tight spaces in disaster scenarios. Published on July 21 in 'Science Advances', this micro flying robot achieves insect-level speed, acceleration, and maneuverability, including continuous flips and sharp turns. The significance of this development lies in its advanced artificial intelligence control system, which enables the robot to perform complex flight maneuvers in real-time despite its lightweight design. The new control system has improved the robot's flight speed by 447% and acceleration by 255%, allowing it to execute ten consecutive backflips in just 11 seconds with minimal deviation. Looking ahead, the research team aims to integrate lightweight cameras and sensors into the robot, enabling it to autonomously navigate through real-world debris and tight spaces. This bionic flight behavior will enhance its ability to locate survivors in disaster situations, potentially transforming rescue operations from traditional probing methods to direct visual assessments.
leaderobot.com 3 hours ago Micro Flying Robots Disaster Rescue Technology AI Control Systems Robotics Autonomous Navigation
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