Looking to upskill or re-skill in the Compound Semiconductor sector? Through Cardiff and Vale College, and delivered by Cardiff University / Prifysgol Caerdydd, a suite of free, online and blended courses is now available, designed for anyone seeking to expand their knowledge in the fast-growing Compound Semiconductor industry. 🌐 Whether you’re already working in semiconductors and looking to deepen your expertise, or interested in re-skilling to enter this dynamic field, these courses offer flexible learning options that can fit around your life commitments. They’re also ideal for teachers, lecturers, and recent graduates wanting to support or join this thriving industry! Funded by the Cardiff Capital Region and the UK Government Prosperity Fund, this program supports the critical growth of technologies like 5G, driverless cars, IoT, AI, and aligns with sustainability and the net zero agenda. 🌍 📋 Available courses: - Cleanroom Protocols (L3 Part Time) - Online - Introduction to Compound Semiconductor Electronics (L3 Part Time) - Online - Introduction to Compound Semiconductor Photonics (L3 Part Time) - Online For course dates and enrollment information, visit Cardiff and Vale College's website: https://lnkd.in/eQwCvMpY #Semiconductors #Education #Upskill #Reskill #CompoundSemiconductors #CardiffUniversity #CardiffAndValeCollege #CareerDevelopment #NetZero #Innovation #AI #Technology
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#SwissChips is a new initiative to stimulate the #semiconductor industry. It fosters a collaboration between academia and industry. Domains included are for example autonomous #IoT devices, #edgeAI, and devices and sensors. https://lnkd.in/egvB3JYm
SwissChips Initiative to boost Swiss chip industry - News
siliconsemiconductor.net
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When I first began studying the CHIPS Act, I assumed it was solely about semiconductors and chips. However, I was surprised to find out that it talks so much more! I strongly feel that instead of merely running for technological advancements, the CHIPS Act focuses on using technology to create a better society for everyone, while inviting and encouraging contributions from all. Beyond semiconductor manufacturing, the act addresses vital topics, research plans, and processes crucial for the advancement of the civil society. In the coming months, I am committed to fully understanding the act with a priority on the following sections. ---- Sec 10222. Greenhouse gas measurement research. Sec 10234. Premise plumbing research Sec 10241. Educational outreach and support for underrepresented communities. Sec 10319. Incorporation of art and design into certain STEM education. Sec 10361. Advancing IoT for Precision Agriculture capabilities Sec 10635. Research funds accounting. ---- #CHIPSAct - "Creating Helpful Incentives to Produce Semiconductors"
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A one-stop platform empowering your journey in the dynamic world of Electronics! What We Offer: Cutting-Edge Consumer Electronics: Stay updated on the latest trends and innovations in consumer electronics. Expert Engineering Services: Leverage our team's expertise to turn your engineering ideas into reality. Personalized Career Guidance: Chart your course with tailored advice and support to navigate your engineering career path. Engaging STEM Education: Foster a love for science, technology, engineering, and math through interactive learning experiences. Comprehensive Video Lectures: Deepen your understanding with informative and accessible video lectures. Empowering Upskilling: Enhance your engineering skillset with targeted programs designed to bridge the gap between education and industry needs. Robotics & Automation: Dive into the exciting world of robots and automation, unlocking their potential across various applications. Demystifying IoT & Embedded Devices: Master the fundamentals and unleash the power of the Internet of Things and embedded devices. We're passionate about: Innovation: Shaping the future of consumer electronics with cutting-edge solutions. Education: Equipping aspiring engineers with the knowledge and skills to excel. Empowerment: Helping individuals achieve their full potential in the ever-evolving engineering landscape. Join the Ampnics Community! Stay tuned for exciting updates, insightful content, and valuable resources. Let's build the future of Consumer Electronics together! #Ampnics #ConsumerElectronics #EngineeringServices #CareerGuidance #STEMEducation #VideoLectures #Upskilling #EngineeringStudents #Robotics #Automation #IoT #EmbeddedDevices #Community #Innovation #Empowerment
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🔹The demand for professionals trained in the design and implementation of complex electronic systems is increasing, due to their crucial role in the development of emerging technologies. These systems are the backbone of critical applications in sectors such as telecommunications, medicine and industrial production, where precision and efficiency are essential. With this 100% online Professional Master’s Degree Electronic Systems Engineering you will delve into the design and analysis of embedded systems, microprocessors and IoT devices. Likewise, you will address advanced techniques in system simulation, hardware management and circuit design, equipping you with the tools and knowledge necessary to innovate and solve technical challenges in various industrial and technological applications. 🔸Sign up today and prepare to face technical challenges and innovate in the creation of efficient technological solutions adapted to contemporary needs. https://lnkd.in/d8xivjYd 🗓️ 1 year | 🔝 The highest rated university in the world by its students according to Trustpilot #techtitute #engineering #electronicsystems #embeddedsystems #microelectronics
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Industry 4.0 is the term used to describe the fourth industrial revolution, which combines advanced digital and physical technologies, such as Internet of Things (IoT), data analytics, artificial intelligence, robotics, additive manufacturing, advanced materials and augmented reality, to create a greater physical-digital-physical connection. This integration enables the creation of intelligent, connected and autonomous systems, capable of adapting, learning and optimizing operations in real time. Nanotechnology Future 1.Nanomedicine 2.Nanorobotics(Artifical Intelligence in Nanotechnology) 3.Additive Manufacturing 4.Advanced Materials 5.Growth of Vlsi Technology 5.Internet of Things 6.Microbial Technology 7. Intelligent System 8.Polymer Science and Engineering
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Excited to Begin a New Learning Journey in Embedded System Design! 🎉 I'm thrilled to share that I’ve recently enrolled in a Post Graduate Diploma in Embedded System Design (ESD) 🚀 This course will allow me to deepen my understanding of embedded systems and enhance my technical skills in hardware-software integration, real-time operating systems, and microcontroller programming. As technology continues to evolve rapidly, I believe this knowledge will be critical in driving innovation in industries such as IoT, automotive, and consumer electronics. Looking forward to learning from experienced professionals, collaborating with fellow learners, and applying these skills to real-world challenges. Here’s to continuous growth and exploring new horizons in technology! 💡 #EmbeddedSystems #ESD #ContinuousLearning #TechInnovation #ProfessionalDevelopment #IoT #EmbeddedDesign
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🎉 Excited to Share: My Custom LoRa PCB for Remote Temperature Monitoring! 🎉 As a student at Saxion Hogeschool, I am thrilled to announce the successful creation of my LoRa PCB from scratch! 🛠️ This project has been a journey of learning and innovation, and I couldn't be prouder of the results. The primary function of my LoRa PCB is to utilize the LoRa 868MHz technology to transmit temperature data to another PCB remotely. 🌡️ This innovative solution opens up avenues for remote monitoring in various industries, offering real-time insights and data-driven decision-making. Through countless hours of designing, prototyping, and testing, I've gained invaluable hands-on experience in PCB design, LoRa technology, and temperature monitoring systems. This project has not only enhanced my technical skills but also reinforced the importance of perseverance and problem-solving in the field of engineering. I am immensely grateful for the guidance and support from my professors, peers, and the resources provided by Saxion Hogeschool. Their encouragement and mentorship have been instrumental in the successful completion of this project. Looking ahead, I am excited to continue exploring the endless possibilities of IoT and embedded systems, leveraging technology to address real-world challenges and drive meaningful impact. I invite you to join me in celebrating this achievement and exploring the boundless opportunities that lie ahead in the world of innovation and engineering! 💡 #LoRa #PCBDesign #EngineeringExcellence #IoT #Innovation
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University of South Florida researchers Almuthanna Nassar, PhD (now a staff data scientist with Walmart Global Tech) and Professor Yasin Yılmaz (USF Electrical Engineering) were granted U.S. Patent 12137030 today (Nov. 5, 2024). Coincidentally, Dr. Yilmaz teaches Signals & Systems which my daughter, Lea is taking next semester. The patented technology invented by Drs. Nassar and Yilmaz implement deep reinforcement learning to enhance network slicing in 5G for vehicular systems and smart cities. By using fog nodes coordinated with edge controllers, the system allocates resources in response to real-time demand, addressing latency requirements in urban IoT applications. This approach supports low-latency services like autonomous driving, air quality monitoring, and smart lighting, aiming to improve resource use and efficiency in dynamic urban environments. #5G #SmartCities #IoT #NetworkSlicing #EdgeComputing #VehicularSystems #DeepReinforcementLearning #ResourceAllocation #AutonomousDriving #FogComputing #UrbanTechnology Well done Smith & Hopen, PA partner Nicholas Pfeifer, USF Technology Transfer and everyone at the firm in getting this patent through issuance. USF is a founding member of the National Academy of Inventors. Also thanks to Lea's twin brother, Anton Hopen Jr (also attending USF) that produced this video and captioned summary of the patent grant.
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Hello!I am happy to share my first time speech competition experience. In this,I have spoken about the innovations of engineering fields.After joining as a ece student,I have learnt tremenous engineering innovations.Even electronics is live when there is a fan,light,mobile phones,social media etc...Electronics can be stop anywhere in the world.Many emerging circuits are built for application purposes.Even in many IoT based systems,Chip design, embedded systems,signal processing,whatever may be there is an electronics. My motive is to built many innovations ecofriendly.
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Foundational science doesn't have to be complex. Consider this simple electronics circuit with just three components that doubles as a smart lighting system and a light sensor. This project highlights the crucial role of transistors in modern day electronics. At STEMonsters, this is how we prioritize fundamental concepts before delving into advanced topics. Often, this means explaining to parents why we don’t immediately teach robotics and IoT to 8 year olds. "One doesn't need a rifle to kill a mosquito," - an advice from my HoD at #iitd has profoundly influenced my approach when designing the curriculum for STEMonsters programs. It underscores that true innovation stems from a solid foundational understanding and the ability to create solutions based on first principles. For all those who align with me on learning through first principles, how do you explain its significance to parents when they ask for the more "glamorous" courses instead? Would love to know your perspective! #stemeducation #scienceeducation #electronics #stemeducationforkids #innovativelearning #foundationlearning #handsonlearning #firstprinciplesthinking
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