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High-speed route
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The IEEE P370 Standard for High Speed PCB Interconnects

High speed PCB interconnects have continued to remain an active challenge in modeling and simulation, particularly when dealing with broadband signals. The IEEE P370 standard is a step towards addressing the challenges faced by many designers in determining broadband S-parameters for high speed structures up to 50 GHz. Although this standard has been in the works since 2015, it finally passed board approval and appears as an active draft standard.

Memory stick
Blog
Class-D Amplifier Design and PCB Layout

Amplifiers can come in all shapes and sizes, depending on their bandwidth, power consumption, and many other factors. A Class-D amplifier design is normally used with high fidelity audio systems, and circuits for a Class-D amplifier are not too difficult to build in a schematic. If you’ve never worked with a Class-D amplifier or you’re looking for a fun audio project, follow along with this PCB layout.

RAM text
Blog
DDR5 vs. DDR6: Here's What to Expect in RAM Modules

Modern digital systems throw the digital electronics textbooks out the window, and high-speed DDR memories are a perfect example of the paradigm shift that occurs when you jump into IC and PCB design. With DDR5 still being finalized, and DDR6 now being discussed, designers who are already comfortable with DDR4 will need to consider how their design practices should adjust to accommodate the constant doubling of data speeds in these high-speed memory technologies.

Explaining the Impedance of the Crystal
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Making the Most of Your Crystal Oscillator

In my experience, the somewhat vague information you might find in a typical crystal datasheet doesn’t enable an engineer to be wholly confident that their design expectations can be met. On the other hand, “blindly” adopting what the crystal datasheet says usually results in adequate frequency stability. If you want to get inside and uncover what is going on, you need to start thinking about the crystal as a phase-shifting network.

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On-Demand Webinar
Using Output Job Files for Rapid, Repeatable PCB Manufacturing Data Generation

An OutJob is simply a pre-configured set of outputs. Each output is configured with its own settings and its own output format, for example, output to a file or to a printer. OutJobs are very flexible – they can include as many or as few outputs as required and any number of OutJobs can be included in a project. The best approach is to use one OutJob to configure all outputs required for each specific type of output being generated from the project. 

Routed PCB
Blog
How Antipads Affect Signal Integrity in Your Multilayer PCB

Antipads on vias and landing pads are a point of contention in modern PCB design, and the debate around the use of these elements in a multilayer PCB is framed as a binary choice. Like thermal reliefs, ground plane splits, and orthogonal routing, the debate around antipads on landing pads and vias is framed as an always/never choice. With today’s modern PCBs, it pays to understand the effects of antipads on signal integrity.

PCB with RF elements
Blog
How to Design a Microstrip to Waveguide Transition

RF structures can be complicated to design and layout, particularly because many RF systems lead double lives as digital systems. Getting an analog signal out of a component and into a waveguide for high isolation routing is not so simple as placing a microstrip or stripline coming off your source component. Instead, you need to create a special microstrip to waveguide transition structure to ensure strong coupling into and out of your waveguide.

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Managing PCB Polygon Pour and Copper Features in Complex Layouts

Layouts for complex electrical systems may need to make extensive use of copper pour to provide ground nets, power nets, shielding, and other copper structures for power and signal integrity. Backplanes, motherboards, RF products, and many other complex layouts will make use of copper pour and polygons that can’t be easily placed as custom components. The rules-driven design engine in Altium Designer® also ensures that any PCB polygon pour you place in your PCB layout will comply with clearance rules and will be checked against other electrical design rules.

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On-Demand Webinar
Best Practices: Efficient Use of Snapping in Altium Designer

Getting your PCB layout design done takes patience and precision. Complex footprint geometries, board shape, and dense component placement require accurate primitive positioning. Each stage of PCB design needs a different snapping configuration. Often your settings can be excellent for one stage and be unfavorable for another. Learn more about different snapping usage patterns and best practices of efficient snappings.

Backplane printed circuit boards
Blog
High Speed Backplane Design and PCB Layout Tips

If you need to connect multiple boards into a larger system and provide interconnections between them, you’ll likely use a backplane to arrange these boards. Backplanes are advanced boards that borrow some elements from high speed design, mechanical design, high voltage/high current design, and even RF design.  They carry their own set of standards that go beyond the reliability requirements in IPC.

M2 Sata PCB
Blog
PCIe 5.0 Signal Integrity and Analysis

The upcoming Gen6 version of PCIe is pushing the limits of signal integrity for many computer systems designers. As with any high-speed signaling standard, signal integrity is a major design consideration, which requires the right set of design and analysis techniques. Rather than digging deep to find PCIe 5.0 signal integrity requirements from PCI-SIG, we’ve compiled the important points for today’s PCB layout engineers. Layout engineers should pay attention here as these design requirements will become more stringent in later PCIe generations.

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Top 4 Time Wasters in PCB Design Collaboration

An essential aspect of project management is time management, especially when your design team is working remotely. Your time management strategy is team-based and individual, but time can easily get spent on important tasks when working as part of a team. So how can you streamline important collaboration tasks for your design team to increase productivity?

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Working with MCAD CoDesigner extension
MCAD CoDesigner Overview

The MCAD CoDesigner in Altium Designer allows for seamless design transfer between the Electrical and Mechanical designers. In this overview, we’ll show you how to transfer from Altium Designer to your CAD tool of choice, then how to resize the board, add mounting holes, add a new connector, and update the board design in Altium Designer.

Woman work remotely
Blog
Sharing Inside and Outside Your Altium 365 Workspace

In these days of easily-available internet and quarantines, everyone is working remotely. It’s nice being able to spend time with family and regain control over your schedule, but keeping track of projects and revisions while securing user access feels like its own job. With the right set of project and data management tools, you can easily share your data with collaborators without tracking email chains.

Server storage
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How Your Altium 365 Workspace Keeps You Organized

When I started using my Altium 365 Workspace for collaboration, I found I could make things run more smoothly when I kept things organized. However, I prevented any issues thanks to all the organization tools built into the Explorer panel within Altium Designer. Let’s take a look at how you can get the most value out of your Altium 365 Workspace in terms of organization and access management.

Man beside electrical schematic
Blog
How to Choose the Best PCB Manufacturer for Your Project

PCB manufacturing is competitive, and there is plenty of worldwide manufacturing capacity for new boards. If you’re looking for a manufacturer for your next project, it can be difficult to determine who is the best option to produce your board. Different fabricators and assemblers offer different levels of service, different capabilities, and access to different processes and materials. There are a lot of options to consider when selecting a manufacturer for your project.

Project history in Altium Designer
Blog
Getting Started with Revision Control in Altium 365

Ever since I started using Github and Google Docs, I fell in love with revision control. Instead of keeping multiple copies of essential files and time-stamping every revision, revision tracking information gets stored alongside the file. This environment works great for code, spreadsheets, and documents, and Altium brings these same features into PCB design.

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Blog
Image Processing Embedded Systems with Modular Hardware

With advances in industrial automation, automotive technology, remote sensing, and much more, image processing is taking center stage in many embedded systems. Image processing with older video systems was difficult or impossible due to the low quality of many imaging systems with perpetual uptime. Newer systems provide video with higher frame rates and higher resolution images, but these systems still needed to connect directly to a computer in order to enable any useful image processing applications.

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Blog
Any Angle Routing: When Should You Use It?

EDA tools have come a long way since the advent of personal computing. Now advanced routing features like auto-routers, interactive routing, length tuning, and pin-swapping are helping designers stay productive, especially as device and trace densities increase. Routing is normally restricted to 45-degree or right-angle turns with typical layout and routing tools, but more advanced PCB design software allows users to route at any angle they like. So which routing style should you use, and what are the advantages of any angle routing?

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Blog
Hardware-in-the-Loop Testing: An Introduction

If you do a search for “Hardware-in-the-Loop” testing, you will frequently find examples of complex, real-time systems. Article from National Instruments, for example, gives a nice explanation and background on what hardware-in-the-loop (HIL) is, and provides an example of testing electronic control units within an automobile. In this article, we will be focusing on a smaller, more bite-sized version of HIL testing concepts.

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Rigid-Flex in Altium Designer
Blog
Support for Rigid-Flex in Altium Designer

Rigid-flex in Altium Designer starts with designing a manufacturable PCB layer stack complete with via transitions and any calculated impedance requirements. Flex sections also need to be placed in the layer stack before moving into the PCB layout. Once inside the PCB editor, bending lines can be clearly defined in the PCB layout, and these can be visualized in Altium Designer's 3D PCB design tools. Keep reading to see how Altium Designer supports your flex and rigid-flex designs.

Specifying your stackup
Blog
Communicating PCB Layer Stackup Needs to Manufacturers

In the business of PCB design, communicating needs to manufacturers and vendors is a top priority. The context of our requests is sometimes lost either by not providing the correct information, not listing enough information, or not giving any information. Although the experienced PCB designer can take steps to specify everything they want to see in their PCB stackup, eventaully the manufacturer will handle that decision in an effort to balance available materials with processing capabilities and yield.

Risk Vs. Reward
Blog
Risk Vs. Reward

During the recent IPC APEX expo, there was a lot of discussion about SAP, or semi-additive PCB processes.  As with any new technology adoption there were people that are excited to jump right in and start designing with much finer feature sizes and work through the inevitable changes to the traditional thought process. Others are in a "let’s wait and see" mode and of course there are a few skeptics there as well, so keep reading to learn more.

Parasitic Extraction for your traces
Blog
Parasitic Extraction with an Electromagnetic Solver in PCB Routing

Parasitic extraction: the integrated circuit design community must grapple with this task on a daily basis, especially once gate features are reduced below ~350 nm and chips run at high switching speeds. The PCB community also has to deal with this idea in order to better design power delivery networks, interconnects with precise impedance, and properly quantify crosstalk and coupling mechanisms.

PCB
Blog
Ebook: PDN Simulation and Analysis Guide

Most designers don’t realize they need to worry about power integrity until they have a power integrity problem. Other designers might build boards that can’t handle the demands of modern digital and high frequency components, and they may not realize the problems that lurk in their power delivery network (PDN). Although the basic concepts involved in designing for power integrity are well-known, myths about power integrity abound, and designers need tools to help them evaluate and qualify power integrity in a PDN.

Ferrites in PDN Simulation
Blog
Ferrite Beads and Transfer Impedance in a PDN Simulation

The use of ferrites in a PDN is one design recommendation that is fraught with unclear guidance and over-generalized recommendations. If you see an application note or a reference design that recommends placing a ferrite in a PDN, should you follow this in your specific design, or should you ignore this and focus on adding capacitance? 

PCB Design Outputs
Blog
Overview of PCB Design Output Files

Before your board can be put into production and prepared for assembly, you have to generate a set of files that assist your manufacturer. These are your PCB design output files, also known as manufacturing files, fabrication data, assembly files, and a host of other names. Before you send your design file off to a manufacturer in an email, make sure to get a list of their required fabrication and assembly files first. If you’re a new designer, take some time to read over the basic PCB manufacturing file extensions below.

How transformers work
Blog
Transformer Theory Made Simple

Transformers can provide very effective signal isolation and are used to manipulate AC voltage and current levels. They can achieve all this with a greater than 95% power efficiency, which is why we commonly see them used in bench power supplies, audio gear, computers, kitchen appliances, and wall-warts. However, transformer theory can be unintuitive and in this article we answer on questions about them

Take advantage of the VCS-based workflow in Altium 365
Blog
Using Altium 365 Over Your Vanilla Version Control System

There are all sorts of version control systems (VCS) out there that people have been using with their PCB design software. As discussed in Why Use a Version Control System, we looked at different options ranging for local hard drive storage to sophisticated online revisioning systems. In this article we will be reviewing the differences between a standard VCS and Altium 365.

Recovering Copper Losses
Blog
Recover Conductor Losses By Clearing Your PCB Ground Layer

Controlled impedance routing at high frequencies is difficult enough, and it's important to make sure that you stay within your loss budget on long routes or in lossy media. When you have to route a long trace or a long differential pair to a connector or another component, what can you do if you're reaching the end of your loss budget? In this article, we’ll take a look at the skip reference routing method and explain how it can help recover some loss budget in a lossy interconnect.

Altium 365 SOC 2 Type 1 Certified
Blog
Announcing SOC 2 Type 1 Certification for Altium 365

We are pleased to announce that Altium 365 is officially SOC 2 Type 1 certified. System and Organization Controls (SOC) 2 is a widely recognized attestation of security compliance defined by the AICPA and is considered the standard for ensuring data security and operational maturity. A SOC 2 certification provides valuable information for companies to assess the quality of the security provided by a service such as Altium 365.

Three ways to manage your BOM costs
Blog
Improving Supply Chain Success with BOM Management

It’s no secret that component shortages have become more frequent this year. Companies will continue to grapple with supply chain challenges into 2022 and beyond. The impact of manufacturing delays can be substantial if a part is not available. Delays occur and sales plans get put on hold. It can also be very expensive and risky to replace parts from multiple sources. Fortunately, many shortages can be avoided by introducing proactive supply chain practices.

Reliability and failure analysis
Blog
Overview of PCB/PCBA Reliability and Failure Analysis

Reliability testing and failure analysis of a PCB/PCBA go hand-in-hand; when designs are stressed to the limit, their failure modes need to be determined through thorough inspection and analysis. To get started on this topic, it’s important to understand the qualification aspects that will govern your bare board design and the PCBA. We’ll look at the various dimensions of PCB/PCBA reliability, as well as some of the standard failure analysis techniques used to identify potential design change requirements.

Plane and Cavity Resonances
Blog
When Do PCB Power Plane Resonances Occur?

By now, designers should be aware of some important behavior involved in power delivery to components in a PCB, particularly for digital components. All digital components produce and manipulate wideband signals, where the frequency content theoretically extends up to infinite frequency. As such, some radiation may propagate through your PCB, leading to resonant behavior that is not observed on the power rail.

Selecting a plating material
Blog
How to Choose PCB Plating for Your Finished Board

Once your board passes through the standard PCB fabrication process, the bare copper in your PCB will be ready for the application of a surface finish. PCB plating is applied to protect any copper in your PCB that would be exposed through the solder mask, whether it’s a pad, via, or other conductive element. In this article, I’ll run over the different PCB plating material options and their advantages in your PCB. 

What is the PCB Supply Chain?
Blog
What is the PCB Supply Chain?

The PCB supply chain encompasses multiple components, raw materials, and the PCB itself. PCBs and PCB assemblies are often the most technically complex components that are purchased for electronic assemblies and products. The complexity of modern PCBs leads to several challenges for a supply chain management team that may be significantly different when compared with other commodities the team manages. In this brief guide, we'll look in-depth at the PCB supply chain, and specifically what falls within the purview of a procurement and supply chain management team.

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Altium Stories
Students at Monash UAS Fly Higher with Altium Solutions to Power Their Autonomous Drone Technology

Discover how the Monash Uncrewed Aerial Systems team leverages Altium Designer, MCAD CoDesigner, and Altium 365 to develop custom drone boards for critical humanitarian missions.

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New in Altium Designer 25
Say Goodbye to Disjointed Workflows: Unified Product Design in Altium Designer 25

Check an overview of how Altium Designer 25 unifies Multi-Board and Harness Design into a seamless, efficient workflow for faster, error-free product development.

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New in Altium Designer 25
From Concept to Reality: Updated 3D-MID Demo in Altium Designer 25

A walkthrough of the new 3D-MID capabilities in Altium Designer 25. Covers setting up a 3D PCB document, component placement on curved surfaces, routing with grids and sketches, exporting for LDS manufacturing, and generating a 3D pick-and-place file.

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Altium Designer's 25 Quantitative Benefits
Take 66% of Your Time Back with Custom Pad Stack in Altium Designer 25

This video demonstrates the measurable productivity gains of using the Custom Pad Stack tool in Altium Designer 25. It compares a detailed QFN-32 footprint customization process across versions, showing a significant reduction in time and mouse clicks—2 min 5 sec vs. 6 min 2 sec, and 45 vs. 116 clicks.

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How-To's
PCB Stackups in Reverse?

Watch our new tutorial on reverse PCB stackups — a unique approach that combines thin internal layers with thicker outer cores for specialized applications. Learn how to implement reverse stackups effectively in Altium Designer, understand key manufacturability constraints, and explore Rogers materials specifically suited for this technique.

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New in Altium Designer 25
Design Smarter - Harness, Multi-board, and MCAD CoDesign in Action

This webinar highlights how Altium Designer 25, with a Pro or Enterprise subscription, enables seamless ECAD-MCAD collaboration using Harness and Multi-board Design tools and the advanced MCAD CoDesigner. Viewers will learn how to integrate harness designs, optimize multi-board systems for enclosure fit, and synchronize designs with SolidWorks, PTC Creo, and Autodesk Inventor.

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New in Altium Designer 25
Unified Login in Altium Designer 25

We've unified the login experience across Altium Designer, Altium 365, and the Altium website—one set of credentials is all you need. This update simplifies access, enhances security, and improves session management for a smoother user experience.

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How-To's
Custom Ethernet Switch Powers Up: Assembly to Working Hardware Test

Watch our latest video as host Zach Peterson presents his custom Ethernet switch PCB. He walks through the design in Altium Designer, programs the firmware, and tests the board in a real server environment using both copper and fiber connections. This video showcases the complete journey from PCB design to fully functional hardware.

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How-To's
Mastering Pad and Via Templates (or Padstacks) in Altium Designer

Learn how to create, export, and reuse Pad and Via templates (Padstacks) in Altium Designer. This tutorial covers standardized libraries to optimize PCB design and ensure consistency across projects.

Embedded thumbnail for Power Rail Routing Mastery: Multiple Voltage Planes in Altium Designer
How-To's
Power Rail Routing Mastery: Multiple Voltage Planes in Altium Designer

Want to design a complex Power Distribution Network (PDN)? Watch our exclusive tutorial to learn expert techniques for routing 10+ power rails on a single PCB layer—while minimizing EMI and ensuring signal integrity.

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Altium Designer's 25 Quantitative Benefits
Unveiling 99% Task Time Efficiency

This video showcases Altium Designer 25’s PCB Section View, a powerful tool for detailed circuit analysis and optimization. Learn how it enhances precision, improves performance, and simplifies complex PCB layouts with real-world applications.

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How-To's
Bottom Terminated Component Guide: Footprint Design Best Practices

Want to create a reliable footprint for your PCB design? Watch our latest video with Zach Peterson and learn best practices for designing PCB footprints for bottom-terminated components. This tutorial covers how to properly design paste masks for QFNs, BGAs, and other bottom-terminated packages to prevent common assembly issues.

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Altium Designer's 25 Quantitative Benefits
Design 4x Faster with Altium Designer 25

PCB CoDesign in Altium Designer 25 enables multiple engineers to collaborate on a single PCB design, saving over 10 minutes and 300+ clicks. With an intuitive compare-and-merge workflow, teams can efficiently resolve conflicts and streamline their design process. Check out this video to learn more, and use the Benefit Calculator to see your potential time savings: https://www.altium.com/benefit-calculator.

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New in Altium Designer 25
Empowering Hybrid Designs with Wire Bonding

Our latest whitepaper on Wire Bonding technology is now available! It explores the role of wire bonding in modern PCB design and how Altium Designer 25 enhances the process with dedicated features. Access it here: Wire Bonding Whitepaper.

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Altium Designer's 25 Quantitative Benefits
8 Times Faster Simulations Using Altium Designer 25

Speed up your simulations with Altium Designer 25—now up to 8x faster! Watch our comparison to see how built-in simulation slashes processing time, saving you valuable minutes on every task.

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Harness Design Top 5 Improvements in Altium Designer 25

Harness Design in Altium Designer 25 just got a major upgrade! This video showcases the top five new features that improve flexibility, organization, and efficiency in your wiring workflow. Watch now to see these enhancements in action and take your designs to the next level!

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