"Ingeniously Simple"
Manufacturer of modular automation systems including conveyors, linear motion units, and safety fencing.
Robotunits, founded in 1994 and headquartered in Dornbirn, Vorarlberg, Austria, develops and manufactures a comprehensive Modular Automation System for material handling and assembly industries. The product portfolio includes extrusion technology, conveyor technology (belt, timing belt, modular belt, and powered roller conveyors), linear motion systems, safety fence systems, totes systems, and multi-functional accessories. With 7 branches across Germany, Italy, the USA, and Australia, and over 23 sales partners worldwide, Robotunits operates globally while maintaining its reputation for highest-quality Austrian engineering.
The company's US operations are based in the United States serving North American manufacturing customers.
Primary type & automation activities this supplier delivers:
Flexible modular belt, timing belt, and powered roller conveyor solutions for industrial material handling.
Contact Robotunits Inc.
WEBSITE
http://www.robotunits.comPHONE
(732) 438-5000HEADQUARTERS
United States
Company Facts
Founded
1994
Primary Role
Manufacturer
Company Size
-
Primary Region
North America
Annual Sales
-
Funding Stage
-
Funding Total
-
Vention has inaugurated a physical AI research lab in Montreal aimed at advancing robotic manipulation for manufacturing applications. The lab, directed by Jimmy Li and advised by Joelle Pineau, will leverage industrial data and customer insights to develop scalable robotic systems. With a focus on real-world production challenges, the lab aims to create technologies that enhance reliability and reduce costs in automation. This initiative is significant as Vention's physical AI segment has seen a remarkable 400% revenue increase over the past year, indicating a growing demand for advanced automation solutions. The lab's unique approach integrates academic research with practical production feedback, allowing for rapid development and testing of new robotic systems. This model positions Vention to address complex manufacturing tasks that have traditionally been difficult to automate. Looking ahead, Vention's Montreal lab is expected to expand its team and generate new intellectual property. The company plans to release a public software development kit for its GRIIP manipulation pipeline, which breaks down robotic tasks into manageable stages. No further timeline was disclosed at the time of publication.
AIInsider 3 hours ago AI AI Funding & Investment Robotics Canada.Montreal computer vision industrial roboticsTactile sensing technology is gaining prominence in the robotics industry as humanoid robots transition from exhibition spaces to factory floors. Since 2026, funding in the tactile sensing sector has exceeded 7 billion yuan, with the penetration rate of tactile sensors in commercial humanoid dexterous hands rising from 20% to over 60% this year. This rapid growth is notable within the robotics components sector, highlighting a shift in robotic applications. While visual-language-action models have enhanced robots' environmental understanding and task planning, precision assembly and flexible grasping require tactile feedback for effective force control and slip detection. According to Qianjue Robotics founder Ma Daolin, tactile sensing is essential for high-precision industrial operations. The evolution of technology supports this need, as Qianjue Robotics' VTLA model integrates tactile modalities into traditional frameworks, enabling real-time perception of deformation, texture, and force distribution during contact. Their comprehensive tactile solution expands sensing from fingertips to palms, achieving a sensor density of 125 points per square centimeter and a force accuracy of 0.03 Newtons. As hardware costs decrease and data accumulation accelerates, tactile sensing is becoming a necessary capability in real-world operational scenarios.
leaderobot.com 6 hours ago Tactile Sensors Humanoid Robots Robotics Technology Industrial AutomationVention Inc. has inaugurated its Physical AI Lab in Montreal, focusing on robotic manipulation in manufacturing. This facility aims to generate high-quality data essential for training AI models that control next-generation robots. According to CEO Etienne Lacroix, the lab leverages Vention's extensive experience with hundreds of robot cells to enhance the capabilities of physical AI. The establishment of the lab is significant as it addresses the growing demand for reliable and economical automation solutions in manufacturing. Vention's technology stack, which includes hardware, software, and physical AI, has already been deployed in over 28,000 machines globally, including in 90 of the Fortune 500 companies. The lab's unique approach combines academic research with real-world production challenges, allowing for rapid advancements in AI capabilities. Looking ahead, Vention aims to validate new AI capabilities against the practical requirements of production lines, with a focus on complex manufacturing tasks. No further timeline was disclosed at the time of publication. The integration of industry feedback into the research process is expected to accelerate the development of effective automation solutions.
TheRobotReport.com 12 hours ago Arms / Manipulators Artificial Intelligence Artificial Intelligence / Cognition Assembly Automotive Cameras / Imaging / VisionInbolt is addressing the growing need for automation in electronics manufacturing, particularly in the assembly of complex data center infrastructure. With their control platform, which includes CAD-based programming and real-time control, Inbolt has installed over 200 robot arms across more than 100 factories, powering over 40 million robot cycles last year. The shift towards AI server racks has created a demand for more precise robotic solutions, as traditional manual assembly methods struggle with the complexities of modern electronics. Inbolt's technology aims to increase automation from 20-30% to 90%, focusing on the precision required for tasks like screw driving and cable routing, which are critical in preventing costly errors. As the electronics industry evolves, Inbolt's advancements in robotics will be crucial for meeting the challenges of high-voltage safety and ergonomic handling. The ability to adapt to frequent design changes and maintain high precision will be key factors to watch in the future of electronics assembly automation.
roboticstomorrow-Robotics Sep 09, 2026Vention has inaugurated Canada's premier Physical AI and industrial robotics lab in Montreal, aimed at enhancing robotic manipulation through the integration of advanced AI research into scalable manufacturing solutions. This initiative is significant as it focuses on applied manufacturing use cases, industrial data collection, and the development of post-training foundation models for robotics, leveraging existing intellectual property while generating new innovations. Looking ahead, stakeholders should monitor the lab's progress in bridging AI research with practical manufacturing applications. No further timeline was disclosed at the time of publication.
RoboticsTomorrow.com Sep 09, 2026Andreas Friedrich, Managing Director of Technology & Strategy at Allegro MicroSystems, will present at RoboBusiness on October 20-21 in Santa Clara, focusing on advancements in robotic actuation technology. As humanoid robots evolve, accommodating the necessary hardware for movement becomes increasingly complex due to stringent size and weight constraints. The integration of artificial intelligence has enhanced humanoid robots' ability to perceive their environment and make decisions. However, translating these decisions into smooth and safe physical actions poses significant engineering challenges, especially as these robots transition from prototypes to operational machines that work alongside humans. The ongoing development of AI is crucial, but the physical limitations of humanoid robots will ultimately dictate how effectively this intelligence can be utilized. The shift towards higher voltage power architectures in humanoids illustrates the intricate relationship between electrical and mechanical design, highlighting the need for innovative solutions to overcome these challenges.
RoboticsBusinessReview.com Sep 08, 2026 Artificial Intelligence / Cognition Design / Development Humanoids NewsProductive Robotics has unveiled the Tregaskiss Tough Gun I.C.E. (Integrated Cooling Enhancer) torch, designed specifically for its 7-axis Blaze robotic welding systems. This new option aims to mitigate heat-related consumable failures that can occur during automated welding processes with high duty cycles. The introduction of the I.C.E. torch is significant as it addresses a common challenge in robotic welding—overheating of consumables. By enhancing cooling capabilities, Productive Robotics aims to improve the reliability and efficiency of its Blaze systems, which are increasingly utilized in demanding industrial applications. Looking ahead, the adoption of the Tregaskiss Tough Gun I.C.E. torch could lead to broader implementation of Productive Robotics' solutions in sectors requiring robust welding capabilities. No further timeline was disclosed at the time of publication.
RoboticsTomorrow.com Sep 08, 2026Recently, a medical team in China completed the world's first AI ultrasound robot-assisted interventional procedure for congenital heart disease. Conducted by the Cardiovascular Medicine Department of the Sixth Medical Center of the PLA General Hospital, this surgery marks a significant milestone in the clinical application of intelligent technology in healthcare. This breakthrough is crucial as it signifies the integration of artificial intelligence into one of the most critical aspects of surgical procedures: interpreting images, assessing positions, and aiding doctors in formulating operational plans. Traditionally, cardiovascular interventions heavily relied on physician experience, particularly in complex cases where accurate understanding of heart structure changes is essential. Looking ahead, the focus may shift from merely achieving higher precision with robotic arms to whether robots can comprehend medical images, analyze patient conditions, and adapt strategies in real-time. The integration of AI models, medical imaging, and robotic control systems will be vital for advancing surgical capabilities, especially in areas lacking experienced specialists.
leaderobot.com Sep 08, 2026 AI in Healthcare Surgical Robotics Medical Imaging Cardiovascular SurgeryMany predictive maintenance initiatives in robotics face a common hurdle: after installing sensors and training models, progress often halts. The anomaly score generated by these systems does not equate to actionable decisions, leading to a gap in the maintenance process. Without a technician assigned, confirmation of spare parts availability, and scheduling for repairs, the potential benefits of predictive maintenance remain unrealized. This issue is significant as it highlights the limitations of current predictive maintenance strategies in robotics. The inability to transition from data insights to actionable work orders can lead to increased downtime and inefficiencies in robot fleet management. Organizations investing in predictive maintenance technologies must address these operational challenges to fully leverage their investments and enhance productivity. Looking ahead, it will be crucial for companies to develop streamlined processes that connect predictive maintenance insights with practical maintenance actions. No further timeline was disclosed at the time of publication, but advancements in this area could lead to more effective management of robotic systems and improved operational efficiency.
RoboticsAndAutomationNews.com Sep 07, 2026 Artificial Intelligence Computing Factories Internet asset management condition monitoringFive vendor archetypes, MIR’s composite top ten, eight company profiles and six field deployments — every firm linked to the RobotToday supplier directory.
ByThomas Siew Sep 06, 2026The integration of pressure sensors into robotic grippers, such as the UMI gripper from XELA Robotics, significantly improves gripping accuracy. Unlike traditional methods that rely solely on motor current and position, pressure sensors provide critical real-time data on contact interactions, enabling better control during gripping tasks. This advancement is particularly crucial in industrial applications like bin picking and mixed-part handling, where the nature of contact can vary widely. By measuring distributed mechanical stress at the contact interface, pressure sensors allow for a nuanced understanding of how different materials respond to gripping forces, thus enhancing the reliability of robotic operations. Looking ahead, the continued development of pressure sensing technology in robotic systems will likely lead to more sophisticated interaction controls. No further timeline was disclosed at the time of publication.
RoboticsBusinessReview.com Sep 06, 2026 End Effectors / Grippers Grippers Human Robot Interaction / Haptics News Sensors / Sensing SystemsLinkage, tendon, direct drive or hybrid — and why hardware is converging while the DL1–DL5 manipulation scale decides who wins. Part 2 of 3.
ByThomas Siew Sep 04, 2026MIR Databank puts China dexterous hand shipments above 30,000 units in 2026, yet only 3.5% of 2025 demand came from factory production. Part 1 of 3.
ByThomas Siew Sep 04, 2026The third report in the WRC 2026 series. Report 1 mapped all 248 exhibitors by category and Report 2 covered the 139 that build finished robots. This one covers the 137 that build what goes inside them.
ByThomas Siew Aug 28, 2026WRC 2026 opens August 19 in Beijing with 300+ exhibitors, a first-ever SOE pavilion and a new Procurement Day, days after Unitree priced China's first mainland-listed humanoid robot IPO at a $9.04 billion valuation.
ByRobotToday Reporter Aug 08, 2026The book the field agreed to make free: full preprint PDF, video lectures and open code from the authors. Screw theory and kinematics, taught rigorously.
ByRSF Research Jul 31, 2026This week in robotics: the Humanoids Summit debuts in Tokyo, China assigns every humanoid robot a digital ID, Figure signs a Catalyst Brands deployment deal, and Unitree heads to a June 1 IPO hearing. May 23–29, 2026.
ByRobotToday Reporter May 30, 2026An in-depth analysis of the global industrial robotics market for 2025 — Chapter 1 of a 9-chapter bilingual research series. Covers market sizing consensus ($17.5–22 B USD), geographic deployment landscape, four real-world case studies (Ford, Volkswagen, BYD, Toyota), and 2025–2030 installation forecasts, with bilingual English-Chinese analysis for executives and investors.
BySimon Dicky May 07, 2026A comprehensive global robotics industry overview for 2025, analyzing 14 key market segments — from industrial and humanoid robots to logistics AMRs, military systems, and service robots — with expert market sizing, US case studies, five-year forecasts, and bilingual English-Chinese analysis for executives and investors.
ByRobotToday Reporter May 04, 2026China's 15th Five-Year Plan (2026–2030) elevates embodied intelligence to a national industrial priority for the first time. This RobotToday briefing analyses the plan's robotics directives, new standards framework, and competitive implications for European and North American industry.
ByKelly Stone Mar 14, 2026