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Ultra-Low-Profile Current Sensing for Next-Generation Power Architectures

Ultra-Low-Profile Current Sensing for Next-Generation Power Architectures

Learn how ultra-low-profile current sensing helps engineers overcome mechanical, thermal, and routing challenges in today's high-density power architectures for AI, servers, and advanced electronics.


The Rise of the AI Data Center

The Rise of the AI Data Center

AI workloads create power instability that standard data center infrastructure can't handle. Download Delta's white paper to learn how purpose-built UPS and energy management systems address load volatility at scale.


Sharper Vision, Smarter Machines: Image Sensors for Drones and Robotics

Sharper Vision, Smarter Machines: Image Sensors for Drones and Robotics

Explore how advanced CMOS image sensors are enabling smarter drones and robots with enhanced perception, depth sensing, navigation, and low-light performance.


Enabling Smarter Industrial 3D Sensing with Hyperlux™ ID

Enabling Smarter Industrial 3D Sensing with Hyperlux™ ID

Discover how advanced iToF and dToF sensing technologies support industrial automation with accurate depth mapping, reduced motion artifacts, and long-range 3D perception.


Powering Tomorrow: The Rising Power Demands of Modern Data Centers

Powering Tomorrow: The Rising Power Demands of Modern Data Centers

As AI data centers race to meet exploding power demands, traditional sensing and power delivery methods are hitting their limits — learn how advanced magnetic current sensors and high-voltage gate drivers are enabling the efficiency, protection, and power density that next-generation architectures require.


Improving Server and Industrial Power Supplies with SiC JFETs

Improving Server and Industrial Power Supplies with SiC JFETs

Explore how SiC cascode JFETs boost efficiency, power density, and reliability in AI data center and industrial PSUs with practical design and integration insights.


Building Secure, Wireless Edge AI Systems Faster With the Nitrogen95 SMARC

Building Secure, Wireless Edge AI Systems Faster With the Nitrogen95 SMARC

Download the white paper to learn how the Nitrogen95 SMARC platform accelerates the development of secure, wireless edge AI systems with integrated AI processing, advanced vision capabilities, and pre-certified connectivity.


Real-Time Computing at the Edge: Enabling Mixed-Criticality Workloads

Real-Time Computing at the Edge: Enabling Mixed-Criticality Workloads

Learn how Intel® Core™ Ultra Processors Series 2 (Arrow Lake), Intel® TCC, and Advantech platforms enable deterministic, AI-ready mixed-criticality edge computing. Download the white paper to explore scalable real-time industrial system design.


The Brains Behind Advanced Robots: Accelerating the Future of Robotics with Powerful, Consolidated Computing

The Brains Behind Advanced Robots: Accelerating the Future of Robotics with Powerful, Consolidated Computing

Learn how compact, unified computing platforms help support AI, sensing, and control in mobile robots built for real-world operation.


All Ethernet to the Edge: 10BASE−T1S

All Ethernet to the Edge: 10BASE−T1S

What does it take to move a Factory 4.0, an automotive network, or a smart building system design to ‘All Etherent’ approach? This white paper from onsemi explains how 10BASE-T1S is the missing link for these challenges and the advantages the protocol brings.


A Signal Integrity Guide to HSD PCB Design

A Signal Integrity Guide to HSD PCB Design

Download this comprehensive guide and get a blueprint for mastering Signal Integrity fundamentals in complex, high-speed PCB systems.


Ensure Long Life Code with VTI’s RESTful Driverless Software

Ensure Long Life Code with VTI’s RESTful Driverless Software

Future-Proof Your Test Systems: Discover Driverless Control with VTI’s RESTful Software Traditional driver-based architectures are holding your test systems back—creating costly dependencies and risking obsolescence. Learn how VTI’s RESTful approach delivers platform independence, scalability, and long-term reliability.


Powering the Next Generation of High-Efficiency Power Systems with onsemi EliteSiC Technology

Powering the Next Generation of High-Efficiency Power Systems with onsemi EliteSiC Technology

Discover onsemi’s EliteSiC cascode JFET design toolkit — 33 resources to help engineers design higher-efficiency, higher-density power systems.


Choosing the Right Semiconductor Technology for 800 V AI Data Center Power

Choosing the Right Semiconductor Technology for 800 V AI Data Center Power

This application note compares GaN HEMTs, SiC MOSFETs, and SiC cascode JFETs for high-voltage intermediate bus converters in AI datacenters, highlighting their conduction, switching, and gate-drive characteristics at high frequencies. While all three technologies achieve similar overall efficiency in resonant LLC converters, CJFETs stand out for their lower cost, simpler gate drive, and minimal snubber requirements. The note also shows that a three-phase LLC topology offers the best system-level advantages.


Memory Innovation at the Edge: Power Efficiency Meets Green Manufacturing

Memory Innovation at the Edge: Power Efficiency Meets Green Manufacturing

Discover how Winbond’s low-power memory and Customized Memory Solutions (CMS) advance sustainable, high-performance design for AI, automotive, and industrial applications. Download the white paper to learn more.


Industrial Wireless Solutions: The Ultimate Wi-Fi 7 Solutions for Industrial Innovation

Industrial Wireless Solutions: The Ultimate Wi-Fi 7 Solutions for Industrial Innovation

Download the eBook to discover how Advantech’s Wi-Fi 7 solutions are driving industrial connectivity and accelerating AIoT innovation.


Robotic Arms Reach for a New Horizon

Robotic Arms Reach for a New Horizon

Download the white paper to explore how software-driven platforms and AI are reshaping the future of robotic arm design and performance.


Advancing Power Circuits with SiC JFETs

Advancing Power Circuits with SiC JFETs

This tutorial highlights the role of Silicon Carbide (SiC) JFETs in modern circuit protection, emphasizing their faster and safer current interruption compared to traditional electromechanical breakers. It explains key features such as on-chip temperature and current sensing, inrush current limiting, and overcurrent protection, showing how SiC JFETs manage power surges efficiently without complex external circuitry. Evaluation results confirm their effectiveness in real-world applications, positioning SiC JFETs as a critical technology for high-power systems and the growing demands of the AI-powered data center revolution.


System Solution Guide: AI Data Center

System Solution Guide: AI Data Center

AI data centers require specialized power solutions to support high-performance servers, networking equipment, and storage systems, with rising energy demands driving the adoption of efficient wide bandgap (WBG) materials like SiC and GaN. The guide explores AI data center architecture and power systems, covering components such as racks, PSUs, UPS, BBUs, Solid State Transformers, PDUs, and the shift to high-voltage DC bus bars for improved efficiency and power density. onsemi provides advanced power solutions for AI data centers.


Electronics in Medical Equipment: Component Choices Driven by Forces of Regulation, Miniaturization and Data Sharing

Electronics in Medical Equipment: Component Choices Driven by Forces of Regulation, Miniaturization and Data Sharing

Access Panasonic’s whitepaper to optimize your component choices and build a stronger foundation for the future of medtech.