Since its beginning three decades ago, our engineers have been involved with this robotics competition, preparing budding engineers for the bumps in the road ahead. https://lnkd.in/eTZXpqaR
U.S. Army DEVCOM Ground Vehicle Systems Center’s Post
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The Programmable Robot: A Landmark in Robotics. Built in 1954, the first programmable robot marked a significant step in the field of robotics. #RoboticsEvolution #TechMilestones
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The Programmable Robot: A Landmark in Robotics. Built in 1954, the first programmable robot marked a significant step in the field of robotics. #RoboticsEvolution #TechMilestones
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How are robotics shaping the future of technology and society? Robotics technologies are advancing rapidly, with applications ranging from autonomous vehicles and industrial automation to healthcare assistance and space exploration. As robots become more integrated into our daily lives, they have the potential to revolutionize industries, improve efficiency, and enhance quality of life for people around the world. Stay informed about the latest developments in robotics, engage in discussions on the ethical and societal implications of robotics, and explore opportunities to learn about robotics engineering and programming. Join the conversation on robotics in the comments or DM me to explore the fascinating world of robots! 🤖 #Robotics #FutureTech #Innovation #STEM
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The Programmable Robot: A Landmark in Robotics. Built in 1954, the first programmable robot marked a significant step in the field of robotics. #RoboticsEvolution #TechMilestones
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The Programmable Robot: A Landmark in Robotics. Built in 1954, the first programmable robot marked a significant step in the field of robotics. #RoboticsEvolution #TechMilestones
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Cyberworks Robotics: Pioneering Edge case Solutions for Autonomous Robotics The widespread adoption of Autonomous Mobile Robots (AMRs) and mobile equipment has fallen short of earlier predictions, primarily due to persistent challenges in "edge-case" scenarios that developers initially underestimated. These complexities result in intermittent failures, demanding frequent operator interventions underscoring the current inadequacies for commercial standards. Addressing these challenges necessitates a focus on developing solutions that enhance the reliability of AMRs and industrial equipment applications, such as floor scrubbing, material handling, indoor logistics, and personal indoor transport. Successfully mitigating these edge-cases is crucial for achieving a 99% reduction in operator interventions within dynamic commercial environments, as demonstrated by recent advancements. The core requirements for industry-wide success in this domain include: 1. Advanced Navigation Software: Developments in navigation software that include robust safety failsafe systems, cloud-based fleet management, and flexible hardware architectures are imperative. 2. Experiential Learning: A comprehensive understanding of real-world scenarios is crucial. This involves rigorous, long-term field-testing to refine technologies, avoiding pitfalls that have affected early entrants into the autonomy market. 3. Simulation for Validation: Utilizing cloud-based proprietary simulators that operate continuously to generate millions of real-world scenarios is essential. This approach ensures the validation of technology and the accumulation of thousands of operational hours for maximum reliability. 4. Collaborative Research: Ongoing collaborations with leading universities and tech institutions, such as NVIDIA, Intel, and AWS, are essential for staying at the forefront of technological innovation. Fulfilling these industry needs is pivotal for reshaping workplaces and contributing to heightened safety, job satisfaction, and operational efficiency. The ultimate goal is to enable continuous workforce persistence without incurring additional societal costs. In the pursuit of these advancements, Cyberworks Robotics has specialized in delivering solutions that have demonstrated a 99% decrease in interventions. By addressing the fundamental industry needs outlined above, Cyberworks aims to contribute to a future where autonomy serves as a catalyst for positive change #autonomousvehicles #Cyberworks #AutonomousNavigation #InnovationForChange #FutureTechnology -- Treefrog Accelerator Ontario Centre of Innovation Innovation Factory Hamilton Communitech MaRS Discovery District ventureLAB CITM - Centre for Integrated Transportation and Mobility NGen Canada Canadian Food Innovation Network ARIBO 1871 Flite Mobileheroes 通訊大賽 Corey Clothier Katie Clothier Meredot - EV Wireless Charging
Autonomous Navigation Technology for OEM Equipment | Cyberworks Robotics | Canada
cyberworksrobotics.com
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Let’s connect to chat about this exciting Alta Robotics Technology!
The fastest RLT available with an industry-leading top speed of up to 6.7 MPH. Paired with the most advanced navigation system in the industry, RLT from Alta Robotics maximizes throughput operational efficiencies with human and robot collaboration. Robotic Lift Trucks (RLT) https://lnkd.in/e9rfs3UA
Intro to Alta Robotics
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The robotics field is booming in the USA, driven by intense competition and cutting-edge technology. With 7 of the world’s top 10 tech giants based in the US, there's a surge in demand for robotics engineers. Keep reading via our latest article 👉 https://lnkd.in/ei4auTjf #robotics #roboticsengineers #techgrowth #engineering #usa #technicaljobs
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Yes, BMW is going faster than any other tech company 🤐 • BMW Manufacturing has entered into a partnership with humanoid robotics startup Figure to deploy its robots at the automaker’s facility in Spartanburg, South Carolina. • While the exact number of robots was not disclosed, the partnership will begin with small quantities and expand based on performance targets. • Figure’s humanoids will be integrated into BMW’s manufacturing processes, handling tasks in the body shop, sheet metal, and warehouse. • The goal is to make certain physical tasks more efficient, allowing human workers to focus on more critical aspects of the job. #bmw #figure #robotics
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