Omnicell

Omnicell provides pharmacy automation systems including robotic medication dispensing, smart cabinets, and workflow software for hospitals and pharmacies. Its Titan XT supports autonomous pharmacy operations and supply chain management.

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Omnicell
4220 North Freeway Blvd
Fort Worth, Texas 76137
RobotToday Initiative

Robotics needs a service framework.

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

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Former Meituan Drone Executive Joins Tsinghua University Startup for Home Robotics

Former Meituan Drone Executive Joins Tsinghua University Startup for Home Robotics

In April 2023, Tsinghua University's assistant professor Xu Huazhe co-founded a home robotics company called 'Kuaike Robotics,' which recently secured significant angel funding. On July 21, Liu Shuo, former head of drone commercialization at Meituan, joined Kuaike Robotics to lead its commercial operations. This move signals a shift in the robotics industry towards practical solutions for household tasks. The emergence of Kuaike Robotics highlights a strategic differentiation from Xu's previous venture, Xinghai Tu, which focuses on humanoid robots. Kuaike Robotics aims to develop wheeled robots with dual arms, targeting household chores rather than pursuing the complexities of bipedal humanoid designs. This pragmatic approach addresses the challenges of cost, reliability, and safety that humanoid robots face in domestic environments. Liu Shuo's extensive experience in drone logistics and service delivery will be instrumental in navigating the commercialization of home robotics. The transition from drone delivery to household tasks may seem vast, but both fields share common challenges in service execution, emphasizing task success rates and user experience. No further timeline was disclosed at the time of publication.

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Selecting Effective Process Optimization Tools: Methods, Techniques, and Technologies

Selecting Effective Process Optimization Tools: Methods, Techniques, and Technologies

Organizations often face challenges not due to a lack of process optimization tools, but from selecting them without first identifying improvement needs. For instance, a team may invest in workflow software when the core issue is an unclear process, or apply Lean techniques to problems stemming from uncontrolled variation. Understanding the categories of process optimization tools—improvement methodologies, analytical techniques, and software—is crucial. Effective optimization starts with defining the problem and establishing a measurable baseline before integrating the right methods and technologies. Tools like Lean and Six Sigma are frameworks rather than standalone applications, and their effectiveness relies on proper implementation. Looking ahead, organizations should focus on aligning their optimization tools with specific performance issues and data availability. The combination of methods and technologies should aim to enhance outcomes without creating unacceptable trade-offs. No universal list of optimal tools exists, as the right choices depend on the unique context of each organization.

Computing Engineering Industry Software artificial intelligence bpm
Generative Bionics Launches Gene.01 Humanoid with Advanced Smart Skin for Industrial Use

Generative Bionics Launches Gene.01 Humanoid with Advanced Smart Skin for Industrial Use

Generative Bionics has introduced significant enhancements to its Gene.01 humanoid robot, aimed at industrial applications. Developed in six months, this robot features full-body tactile sensing and a physics-native AI system, allowing it to better perceive and respond to its environment. Unlike traditional humanoids, Gene.01 is a customizable platform designed for specific industrial needs, emphasizing safer human-robot collaboration. The importance of Gene.01 lies in its innovative design that integrates tactile sensing with AI, enhancing interaction safety in shared workspaces. Its smart skin detects touch, proximity, force, and temperature, enabling the robot to sense human presence before contact. This capability allows workers to physically guide the robot, addressing the limitations of vision-only systems in complex manipulation tasks. Looking ahead, Generative Bionics plans to release Gene.01's digital twin as open source, facilitating easier integration into existing robotics and AI environments. This initiative aims to provide a common foundation for developers, enhancing simulation and application development for Physical AI. No further timeline was disclosed at the time of publication.

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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.

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INTRA-LOG Expo 2026 Expands with New Features in São Paulo

INTRA-LOG Expo 2026 Expands with New Features in São Paulo

The INTRA-LOG Expo South America 2026 will be held from September 15-17 at Expo Center Norte in São Paulo, featuring expanded exhibition space and a broader program. This year's event has doubled its footprint, with 95% of the space sold, and is expected to attract over 400 brands and 8,000 visitors, reflecting the growing demand for intralogistics solutions. The significance of this expo lies in its focus on robotics, automation, and AI technologies that are becoming integral to logistics operations in Latin America. With at least 20% of exhibitors coming from outside Brazil, the event serves as a gateway for global technology providers to enter the regional market. The Robotics & Automation Summit will address the evolving role of these technologies in enhancing productivity and safety in logistics. Looking ahead, the expo will also introduce the INTRA-LOG Smart Solutions Honors to recognize innovative leaders in the field. Additionally, the concurrent Label & Pack Expo will showcase advancements in packaging and traceability technologies, further enriching the event's offerings. No further timeline was disclosed at the time of publication.

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Rimnot and Yuantu Launch 10K-Unit Robot Deployment for Server Manufacturing

Rimnot and Yuantu Launch 10K-Unit Robot Deployment for Server Manufacturing

Rimnot, a newly established physical AI startup, has announced a partnership with Yuantu to deploy 10,000 industrial robots in server manufacturing. This initiative was unveiled during the World Artificial Intelligence Conference (WAIC), where the companies showcased their robots' capability to adapt to environments in just 30 minutes. This deployment is significant as it represents a major step forward in integrating physical AI into industrial applications, particularly in the server manufacturing sector. The collaboration between Rimnot and Yuantu highlights the growing trend of leveraging advanced robotics to enhance production efficiency and adaptability in manufacturing processes. Looking ahead, industry observers will be keen to monitor the progress of this deployment and its impact on server manufacturing. The ability of these robots to quickly adapt to different environments could set a new standard for operational flexibility in the industry. No further timeline was disclosed at the time of publication.

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Texas Tech Surgeons Initiate Training with Advanced da Vinci Surgical System

Texas Tech Surgeons Initiate Training with Advanced da Vinci Surgical System

In 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.

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SK On's Solid-State Batteries Could Enable 8-Hour Robot Operation Despite Cost Increase

SK On's Solid-State Batteries Could Enable 8-Hour Robot Operation Despite Cost Increase

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.

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Medtronic Unveils Real-Time AI Platform for Hugo Surgical Robots to Rival Da Vinci

Medtronic Unveils Real-Time AI Platform for Hugo Surgical Robots to Rival Da Vinci

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.

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Recent discussions at the 2026 World Artificial Intelligence Conference highlighted the challenges and opportunities in achieving a 'GPT moment' for robotics. Experts emphasized that while large language models have thrived on vast data, robotics lacks a comparable 'physical internet' for learning. The consensus is that the next phase of embodied intelligence must focus on creating systems that can continuously generate physical experiences and learn from failures. The conversation revealed differing opinions on when robotics might reach its 'ChatGPT moment,' with predictions ranging from two to five years. However, experts agree that the real challenge lies not in creating impressive demos but in scaling 'experience' rather than just data. Current embodied intelligence data is significantly less than that of leading language models, highlighting a critical gap in the field. As the industry evolves, the need for a robust data infrastructure akin to the internet for language models becomes apparent. Experts pointed out that achieving a high success rate in robotic tasks will require extensive data, potentially in the order of hundreds of millions of hours. This underscores the urgent need for the robotics sector to develop its own data ecosystem to foster growth and innovation.

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