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Overview of Satellite EMC Testing

Overview of Satellite EMC Testing

As satellites get smaller and more complex, EMC becomes critical. This white paper covers when to test, key regulatory considerations, electromagnetic environmental effect (E3), and how FFT-based methods improve EMI detection. Worth a read if you're working on NewSpace satellites or satellites in general.


Guide to Lean Requirements for Space Engineering

Guide to Lean Requirements for Space Engineering

Optimize your space‑engineering workflows with practical strategies to modernize requirements management, improve traceability, and prevent costly project failures. Download the Space Requirements Management Guide to learn how high‑performing teams accelerate development without compromising reliability.


Mastering Power Factor Correction

Mastering Power Factor Correction

Download the eBook to learn how modern PFC architectures, control strategies, and simulation tools enable higher efficiency and performance in today’s power electronics systems.


On Track with EN 50155

On Track with EN 50155

EN 50155 compliance isn't just a checkbox, it's the starting point for reliable railway power design. Bel is keeping you on track with a practical guide to understanding the standard and selecting the right ruggedized power converters for your rolling stock application.


The Future of Robotics: Technologies, Architectures, and Design Considerations

The Future of Robotics: Technologies, Architectures, and Design Considerations

Explore how AI, connectivity, and edge computing are shaping next-generation robotics systems. Download the report to understand key technologies driving future automation.


Overcoming Challenges through Indirect Time-of-Flight Advancements

Overcoming Challenges through Indirect Time-of-Flight Advancements

Learn how indirect Time-of-Flight depth sensing enables accurate occupancy, access control, and security systems in modern smart buildings.


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.


Designing Energy-Efficient IoT Systems for Sustainable Infrastructure

Designing Energy-Efficient IoT Systems for Sustainable Infrastructure

Download the white paper to design energy-efficient IoT systems with practical power optimization, connectivity choices, and scalable approaches for sustainable deployments.


Accelerate Firmware Development in Motion Control Applications

Accelerate Firmware Development in Motion Control Applications

Learn how ADI Trinamic TMC-API simplifies and accelerates motion control firmware development, from setup and code generation to flashing and debugging on evaluation platforms.


Programmable Power Supplies: Enabling Advanced Semiconductor Manufacturing

Programmable Power Supplies: Enabling Advanced Semiconductor Manufacturing

In semiconductor manufacturing, power instability can impact process consistency and test repeatability. This white paper highlights how programmable power contributes to stable front-end processing and reliable back-end screening.


Mixer Technology For Advanced Communications, Part 1: Mixer Basics

Mixer Technology For Advanced Communications, Part 1: Mixer Basics

Explore the fundamentals of RF and microwave mixers and their impact on 5G and emerging 6G systems. Build the foundation needed to make smarter, system-level design decisions.


Using ADI Trinamic’s IC Software API and Examples

Using ADI Trinamic’s IC Software API and Examples

This application note from Analog Devices explains how to use the Trinamic TMC-API to simplify firmware development for motion control ICs in embedded and industrial systems. It outlines development setup, build, flashing, and debugging workflows using tools such as J-Link and DAPLink, along with integration into evaluation platforms like the LandungsbrueckeV3. The note also introduces PyTrinamic for Python-based scripting and rapid prototyping, enabling scalable and portable motion control firmware development.


Understanding High Speed ADC Testing and Evaluation

Understanding High Speed ADC Testing and Evaluation

High-speed ADCs are critical in communications, data acquisition, and signal processing systems, and require precise testing to ensure low noise, high accuracy, and reliable performance. This application note from Analog Devices explains dynamic and static test methods, including FFT analysis, dither testing, noise power ratio, and full-power bandwidth measurements, while highlighting the use of the HSC-ADC-EVALC platform with VisualAnalog and SPIController software.


Next-Gen SDR Transceiver Delivers Big Advances in Frequency Hopping (FH)

Next-Gen SDR Transceiver Delivers Big Advances in Frequency Hopping (FH)

In this white paper, learn how the ADRV9002 SDR transceiver delivers advanced frequency hopping (FH) with dual-PLL architecture, multichip synchronization, and digital predistortion, enabling fast, secure, and reliable operation for applications like Link 16 and MIMO systems. Its flexible hop tables, PLL muxing, and channel setup capabilities support single- and dual-channel modes, on-the-fly frequency updates, and precise transition and dwell timing for high spectrum efficiency and minimal interference.


Smart Monitoring Improves Distribution-Grid Reliability

Smart Monitoring Improves Distribution-Grid Reliability

In this application note, learn how smart powerline monitors help utilities improve distribution-grid reliability by measuring voltage, current, power, and power factor across all phases, while addressing challenges like aging equipment, nonlinear loads, EV adoption, and distributed generation. Using high-accuracy ADCs and mixed-signal ICs, these monitors enable real-time calculations, predictive maintenance, and edge-of-grid monitoring for faster problem detection and response.


Simplify Design and Enhance Performance with Precision Signal Chain μModule Solutions

Simplify Design and Enhance Performance with Precision Signal Chain μModule Solutions

In this white paper, learn how precision signal chain μModule solutions from Analog Devices integrate amplification, filtering, data conversion, and power management into compact system-in-package devices for communications, industrial, and automotive applications. By leveraging heterogeneous integration and iPassives technology, these solutions reduce footprint, minimize parasitics, improve dynamic range and noise performance, and shorten development time.


SIMO Switching Regulators: Extending Battery Life for Hearables and Wearables

SIMO Switching Regulators: Extending Battery Life for Hearables and Wearables

Used in hearables and wearables, single-inductor multiple-output (SIMO) switching regulators extend battery life by replacing multi-inductor and LDO-based power architectures with a compact, high-efficiency buck-boost design. This white paper from Maxim Integrated (now a part of Analog Devices) explains how SIMO technology time-multiplexes energy across multiple outputs, reduces component count, lowers quiescent current, and optimizes inductor utilization for space-constrained devices.


Quad HDMI Input Fast Switching Solution with ADV7612

Quad HDMI Input Fast Switching Solution with ADV7612

In this application note from Analog Devices, learn how to implement a quad-input HDMI receiver using dual ADV7612 devices and an ADV7511 transmitter, focusing on fast switching, signal integrity, and reliable I2C control. It details bus management, tri-stating, trace routing, and termination strategies for video, audio, and line-locked clock signals, along with optional CEC and interrupt handling.


Meeting Biasing Requirements of Externally Biased RF/Microwave Amplifiers

Meeting Biasing Requirements of Externally Biased RF/Microwave Amplifiers

Externally biased RF and microwave amplifiers require precise biasing and power sequencing to ensure optimal performance, including high gain, linearity, and efficiency, while minimizing part-to-part variation. Analog Devices’ active bias controllers, such as the HMC980LP4E, HMC981LP3E, and HMC920LP5E, maintain constant drain current, generate negative gate voltages, and simplify system design for single- and multi-stage amplifiers. This application note details circuit implementation, VGATE and VNEG adjustments, daisy-chain operation, and protection features, enabling reliable, consistent amplifier performance with reduced external components.


LVDS and M-LVDS Circuit Implementation Guide

LVDS and M-LVDS Circuit Implementation Guide

In this application note from Analog Devices, learn how LVDS and M-LVDS enable high-speed, low-power, and noise-immune data transmission for industrial and high-performance digital systems. It outlines key design considerations including topology selection, signaling characteristics, termination, PCB layout, and managing jitter and skew to maintain signal integrity at data rates up to and beyond 1 Gbps.