If the concept of having the fate of humanity lie in the hands of an ill-equipped underdog who has to go to outer space to accomplish the impossible feels familiar, it should. You've seen a similar ...
Named after the Italian word for "21," Ventuno Q is Qualcomm's first attempt to soothe the wary Arduino community. The UK chip designer acquired the Italian ...
It's Day 1 at embedded world 2026 in Nuremberg. Here we report on new tech and industry trends in the embedded systems industry.
Back in school, I spent more hours than I can count hunched over an Arduino Uno – blinking LEDs, wiring up sensors, and building clunky robots that barely worked but felt like magic. The Uno was ...
With VENTUNO Q, AI can finally move from the cloud into the physical world. This platform makes it possible to build machines that perceive, decide, and act — all on a single ...
Named after the Italian word for twenty-one​, VENTUNO Q builds on the iconic legacy of the popular Arduino® UNOâ„¢ family and embodies the company’s coming of age as it prepares to celebrate its ...
VENTUNO Q eliminates multi-device complexity because it delivers synchronized perception, decision, and action on a single board. The main processor runs Ubuntu and Linux Debian with upstream support, ...
Pune: Students of Vidya Valley School have secured first place in the Ninth Grade Small Group Category at the 2025 Live Healthy in Space International.
Will Cogley on MSN
3D printed Arduino hexapod robot project introduction
In this series I will be documenting my design and testing process for making a 3D printed arduino hexapod. This video sets up the basic premise of the project with a quick test of a servo controlled ...
Arduino and Qualcomm Technologies, Inc. have announced the launch of Hackster's first global developer contest of 2026, inviting engineers, makers, and innovators worldwide to build groundbreaking ...
There may be a fungus on your future bill of materials if mushroom-based memristors become a viable memory element.
The collaboration will help students learn by building real, intelligent devices that run AI locally, reducing reliance on the cloud and making the learning more practical for real-world use.
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