This article provides an in-depth exploration of the evolution, fundamental concepts, diverse types, operating principles, and practical applications of ASICs.
This article provides an in-depth exploration of the evolution, fundamental concepts, diverse types, operating principles, and practical applications of ASICs.
LPWA is an abbreviation for Low-Power Wide-Area. It is also referred to as Low-Power Wide-Area Network (LPWAN). LPWA is wireless communication technology that features low power consumption and wide-area and long-distance communication.
Explore IoT security solutions with insights into the threat landscape, secure architectures, and best practices for engineers building resilient connected systems.
This article explores how automated CI/CD pipelines replace fragile manual build processes with reproducible, auditable workflows that improve compliance, reduce defects, and accelerate development in regulated embedded systems
Join Prof. Fei Chen as he explores advanced bimanual manipulation and teleoperation techniques shaping the future of intelligent human-like robots in this expert-led robotics session.
The ETH spin-off Flink Robotics wants to revolutionize the handling of packages. Its founders Moritz Geilinger and Simon Huber have developed software that allows robots to work together and quickly take on new tasks.
This article provides an in-depth exploration of the evolution, fundamental concepts, diverse types, operating principles, and practical applications of ASICs.
LPWA is an abbreviation for Low-Power Wide-Area. It is also referred to as Low-Power Wide-Area Network (LPWAN). LPWA is wireless communication technology that features low power consumption and wide-area and long-distance communication.
An international collaboration between EPFL and the University of Glasgow has led to an advanced machine-learning algorithm to effectively detect concealed manufacturing defects in wind turbine composite blades – before turbines are put into service.
As network reliability is increasingly tested by aging power infrastructure and the complex demands of renewable energy, cellular IoT provides timely solutions.
In this episode, we talk about how a driven undergraduate student from Columbia University mapped fingerprints from different fingers of the same person - which was widely known to be impossible by the experts in the field - using publicly available data and machine learning.
MATT Framework is the core software application that was designed to allow users to calibrate, prototype, develop testing scenarios, and manually operate the MATT robot, making it as easy to interact with as possible.
Battery performance is crucial for the successful operation of IoT devices, particularly in remote or inaccessible locations. They rely on battery power to sustain their operation over extended periods, and maximizing battery life directly impacts longevity, maintenance costs, and user experience.
Condition Monitoring with LoRaWAN: A guide to its effectiveness in industrial maintenance, the transition from traditional methods, and overcoming implementation challenges
Researchers have developed a virtual reality application where a range of 3D modelling tools can be opened and controlled using just the movement of a user’s hand.
New research from Carnegie Mellon University’s Department of Mechanical Engineering and the Human+AI Design Initiative underlines the adage “teamwork makes the dream work,” especially when it comes to human-AI collaboration.