In this article, the focus is on understanding the key steps in designing structural composites with examples of aerospace components; i.e. wing and fuselage.
In this episode, we talk about how performance limitations of current microchips are being addressed by utilizing novel materials like graphene and bioinspired designs to address the needs of next generation computing and electronics.
In this episode, we talk about how the introduction of scent can enhance the VR experience and phobia treatment along with an implementation of mixed reality for automotive development which promises a more efficient development flow.
STM32 vs ESP32 compared on architecture, Wi-Fi, power, peripherals, toolchains, safety, and longevity. Current 2026 specs from vendor datasheets, plus a decision table.
This article presents a comprehensive technical analysis of CPLD vs FPGA, focusing on their architectural distinctions, performance metrics, design flows, and implementation methodologies.
CUDA Cores and Tensor Cores are specialized units within NVIDIA GPUs; the former are designed for a wide range of general GPU tasks, while the latter are specifically optimized to accelerate AI and deep learning through efficient matrix operations.
Discover the critical role of in-circuit testing in modern engineering, exploring its foundational principles, technological advancements, and real-world applications.
Measured in milliseconds, the response time to a tap on a smartphone’s screen might not be a “show stopping” issue, but a delay between an action and its reaction in the mobile gaming industry can make an important difference.
Researchers have developed a new kind of nanoelectronic device that could dramatically cut the energy consumed by artificial intelligence (AI) hardware by mimicking the human brain.
To help generative AI models create durable, real-world accessories and decor, the PhysiOpt system runs physics simulations and makes subtle tweaks to its 3D blueprints.
In this article, the focus is on understanding the key steps in designing structural composites with examples of aerospace components; i.e. wing and fuselage.
In this episode, we talk about how performance limitations of current microchips are being addressed by utilizing novel materials like graphene and bioinspired designs to address the needs of next generation computing and electronics.
In this episode, we talk about how the introduction of scent can enhance the VR experience and phobia treatment along with an implementation of mixed reality for automotive development which promises a more efficient development flow.
Axelera has recently joined the AI Innovation Center at High Tech Campus Eindhoven. The company is designing chips for AI on the edge with the aim to revolutionise the field and make AI accessible to everyone. They picked up an impressive 10 million euros in their seed investment round.
An air-breathing jet engine (turbofan) is widely used in aircraft propulsion. AFP systems are used for making the fan blades and containment casing for these jet engines. Here step by step process of making a jet engine blade via the AFP process is explained.
Cornell Tech researchers have developed a mixed-reality (XR) driving simulator system that could lower the cost of testing vehicle systems and interfaces, such as the turn signal and dashboard.
New Airspeeder EXA pilot Fabio Tischler AKA @fabreezy has been training hard in our Speeder flight simulator, in preparation for his first-ever flight test in the field.
A team of researchers has reviewed the state-of-the-art in ultra-compact batteries, finding challenges that lie in the path of dust-mote computing — and has proposed a clever approach to packing the power required into a tiny footprint.
Lightweighting isn’t a new concept in engineering, but its relevance and importance are evolving. Find out why lightweighting matters today and how you can maximize its potential benefits by applying the latest developments in engineering design technology.
Hardware and software engineers will be the lifeblood of tomorrow's connected world. Academia is working hard to ensure a steady supply, in part by adapting engineering education to train the next generation of IoT innovators.