Bluhm Systeme (DE)

German manufacturer of industrial marking and labeling systems including inkjet coders, laser markers, and label applicators. Products serve traceability and coding requirements across production, logistics, and chemical industry sectors.

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Bluhm Systeme (DE)
Maarweg 33
Rheinbreitbach, Rheinland-Pfalz 53619
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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.

The Rise of Autonomous Mobile Robots in Industrial Automation

The Rise of Autonomous Mobile Robots in Industrial Automation

Autonomous Mobile Robots (AMRs) are rapidly transforming industrial automation, moving beyond traditional fixed conveyors and AGVs. Their flexibility meets the evolving demands of logistics driven by e-commerce growth, product customization, and labor shortages. AMRs utilize advanced technologies like sensors, cameras, LiDAR, and AI to navigate dynamically without fixed infrastructure. This adaptability is crucial as industries face fluctuating volumes and changing processes, making AMRs a vital component of modern supply chains. According to the International Federation of Robotics, AMRs are among the fastest-growing segments in professional robotics. As deployments increase in logistics centers, fleet management software is becoming as critical as the robots themselves, indicating a shift towards integrated automated solutions.

À la une IA Industrie Robotique AMR automatisation des entrepôts
FCC Proposes Stricter Restrictions on Foreign Drone Sales to Enhance National Security

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AMR and AGV Automated Packaging Automation Systems and Shuttles Components and Parts Conveying and Sortation Forklifts and Warehouse Vehicles
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On 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.

Humanoid Robots Robotics Funding AI Technology Industrial Automation
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SK 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.

Solid-State Batteries Industrial Robots Battery Technology Cost Efficiency
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On 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.

Surgical Robots AI in Healthcare Robotic Surgery Medical Technology
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Physical Intelligence Robotics AI Data Infrastructure