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Printed Electronics: The Future of Flexible and Cost-Effective Circuit Design

This article explores the rise of printed electronics as a lightweight, flexible, and cost-effective alternative to traditional PCB design. It highlights key benefits like reduced manufacturing costs, sustainability, and new design possibilities—especially in wearables, medical devices, and automotive applications. 

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Altium Designer's 25 Quantitative Benefits
Unveiling 86% Task Time Efficiency in Altium Designer 25

Watch how Altium Designer 25 saves time on PCB visualization. This short video shows a side-by-side comparison of the same task done in Altium Designer 25 vs. an external CAD tool—revealing big time and click savings. A great teaser to highlight the value of the unified design environment and promote the Benefit Calculator.

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Embedded thumbnail for AGND vs PGND: Proper Net Tie Connections in Power Regulator PCB Design
How-To's
AGND vs PGND: Proper Net Tie Connections in Power Regulator PCB Design

What’s the difference between AGND and PGND — and when should you use a net tie? Zach Peterson breaks down proper PCB layout for buck converters, grounding best practices, and why component placement matters in switching regulator designs.

Blog
New Routing Possibilities with Ultra HDI

Explore how Ultra HDI technology is redefining PCB design. This article breaks down the benefits and manufacturing considerations of Ultra HDI, and how it enables next-level routing density and miniaturization in advanced electronics.

Blog
3D-MID in Focus: Principles, Processes, and Practical Use

This article introduces 3D-MID (Mechatronic Integrated Devices), a technology that integrates circuitry into 3D plastic structures to reduce size, weight, and complexity. It explains the production process, use cases, and benefits of 3D-MID in sectors like automotive, medical, and consumer electronics.

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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.

Blog
Eliminate EMI and Signal Integrity Issues in Multi-Board PCB Designs

Ensure signal integrity and minimize EMI in complex electronics. Our new article explains how to address electromagnetic interference and signal integrity challenges in multi-board PCB designs, offering practical strategies and layout considerations for reliable system performance.

Embedded thumbnail for Say Goodbye to Disjointed Workflows: Unified Product Design in Altium Designer 25
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.

Embedded thumbnail for From Concept to Reality: Updated 3D-MID Demo in Altium Designer 25
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.

Blog
Mastering Component Templates in Altium Designer 25

Our new article by Dario Fresu explains how Component Templates in Altium Designer 25 Pro improve design consistency, reduce errors, and streamline collaboration. It highlights practical benefits like standardized naming, faster component creation, and scalability across projects. Includes examples of using templates with Altium 365™ to simplify complex component setup.

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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.

Blog
Wire Harness Design Guide for Development and Manufacturing

Designing a wire harness goes far beyond just connecting components—it’s about ensuring manufacturability, reliability, and compliance. This article walks you through the entire process, from initial design to production, helping you streamline development and avoid common pitfalls.

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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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Preparing for Medical Device Cybersecurity Assessments

Explore the key considerations and best practices for conducting cybersecurity assessments in medical device development. This article outlines how to identify potential threats, evaluate risks, and ensure compliance with evolving industry standards.

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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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HDI PCB design and HDI PCB manufacturing process
Blog
Design Basics for HDI and the HDI PCB Manufacturing Process

As the world of technology has evolved, so has the need to pack more capabilities into smaller packages. PCBs designed using high-density interconnect techniques tend to be smaller as more components are packed in a smaller space. An HDI PCB uses blind, buried, and micro vias, vias in pads, and very thin traces to pack more components into a smaller area. We’ll show you the design basics for HDI and how Altium Designer® can help you create a powerful HDI PCB.

All About PCB Test Points
Blog
Is It Printed or a Component? All About PCB Test Points

Test points in your electronic assembly will give you a location to access components and take important measurements to verify functionality. If you’ve never used a test point or you’re not sure if you need test points, keep reading to see what options you have for test point usage in your PCB layout.

How to Design to a Differential Impedance Specification
Blog
How to Design to a Differential Impedance Specification

The concept and implementation of differential impedance are both sometimes misunderstood. In addition, the design of a channel to reach a specific differential impedance is often done in a haphazard way. The very concept of differential impedance is something of a mathematical construct that doesn’t fully capture the behavior of each signal in a differential trace. Keep reading to see a bit more depth on how to design to a differential impedance spec and exactly what it means for your design.

Product Lifecycle Management in Electronics Manufacturing
Blog
Product Lifecycle Management in Electronics Manufacturing

An effective product lifecycle management (PLM) solution will integrate the tools and processes employed to design, develop and manufacture a new device. This solution goes beyond engineering activities to include the project management, process control, and financial management of the end-to-end business processes. PLM solutions create this collaborative environment where product development can flourish, bringing additional benefits in efficiencies and transparent communications, breaking silos, and speeding up the development process.

Tight versus loose coupling
Blog
Should You Use Tight vs. Loose Differential Pair Spacing and Coupling?

In this article, we want to get closer to a realistic description of tight coupling vs. loose coupling in terms of differential pair spacing, as well as how the differential pair spacing affects things like impedance, differential-mode noise, reception of common-mode noise, and termination. As we’ll see, the focus on tight coupling has its merits, but it’s often cited as necessary for the wrong reasons.

Engineering Design Review Guide
Blog
How to Solve Your Engineering Design Review Challenges

You’ve possibly gone through plenty of engineering design reviews, both on the front-end of a project and the back-end before manufacturing. Engineering design reviews are performed to accomplish multiple objectives, and with many engineering teams taking a systems-based approach to design and production, electronics design teams will need to review much more than just a PCB layout and BOM. Today’s challenges with sourcing, manufacturability, reliability, and mechanical constraints are all areas that must be confronted in real designs

Schematic Review Checklist
Blog
Schematic Review Checklist

One of the most common points of failure of a device occurs even before you start to layout your circuit board. Mistakes in your schematic design can easily make their way all the way into prototypes or production without a second thought once layout starts. In this article, I’m not going to extol the virtues of a good schematic design. Instead, this article is a simple no frills checklist.

Via current carrying capacity for PCBs
Blog
PCB Via Current-Carrying Capacity: How Hot is Too Hot?

One common question from designers is current-carrying capacity of conductors in a PCB. Trace and via current-carrying capacity are legitimate design points to focus on when designing a new board that will carry high current. The goal is to keep conductor temperatures below some appropriate limit, which then helps keep components on the board cool. Let’s dig into the current state of thermal demands on vias in PCBs and how they compare to internal and external PCB traces.

PCB Shield
Blog
Phalanx, not Failure: PCB Shielding to Protect Your Design

A combination of good printed circuit board design and good shielding mitigates EMI. Good PCB design for EMI shielding revolves around the layout, the placement of filters, and ground planes. A well-designed PCB minimizes parasitic capacitance and ground loops. Keep reading to learn more about PCB shielding.

Man working in Altium Designer
Blog
Best Practices in Hardware Version Control Systems

Any project can get very complex, and the PCB design team needs to track revisions throughout a project. Why worry about tracking revisions? In the event you ever receive changes to product functional requirements, major changes are made to your product’s architecture, or you’re ready to finalize the design and prepare for fabrication, it’s best to clone a project at its current state and begin working on a new version. Keeping track of all these design changes in a PCB design project takes the type of hardware version control tools you’ll find in Altium 365™.

Copper pour and via stitching
Blog
Copper Pour and Via Stitching: Do You Need Them in a PCB Layout?

To pour or not to pour, to stitch or not to stitch… Over many years, some common “rules of thumb” have become very popular and, ultimately, taken a bit out of context. Rules of thumb are not always wrong, but taking PCB design recommendations out of context helps justify bad design practices, and it can even affect the producibility of your board. Like many aspects of a physical PCB layout, via stitching and copper pour can be like acid: quite useful if implemented properly, but also dangerous if used indiscriminately.

MOSFET Components
Blog
Should You Use Power MOSFETs in Series?

Power MOSFETs enable a huge range of electronic systems, specifically in situations where BJTs are not useful or efficient. MOSFETs can be used in high current systems in parallel arrangements, but what about their use in series? Both arrangements of MOSFETs have their pitfalls that designers should consider. Let’s look at MOSFETs in series as they are quite useful in certain systems, but be careful to design your circuits and your PCB for reliability.

MLCC controlled ESR capacitor
Blog
Controlled ESR Capacitors: Should You Use Them for Power Integrity?

I can’t think of a single product I’ve built that doesn’t require capacitors. We often talk a lot about effective series inductance (ESL) in capacitors and its effects on power integrity. What about effective series resistance (ESR)? Is there a technique you can use to determine the appropriate level of resistance, and can you use ESR to your advantage?

Ground Pour, Impedance and Losses
Blog
Microstrip Ground Clearance Part 2: How Clearance Affects Losses

If your goal is to hit a target impedance, and you’re worried about how nearby pour might affect impedance, you can get closer than the limits set by the 3W rule. But what are the effects on losses? If the reason for this question isn’t obvious, or if you’re not up-to-date on the finer points of transmission line design, then keep reading to see how nearby ground pour can affect losses in impedance-controlled interconnects.

Choosing the Right Microphone for Embedded Applications
Blog
Choosing the Right Microphone for Embedded Applications

If you need to capture sound waves for your electrical device to process, you'll need a microphone. However, microphones these days have become very advanced, and there are so many options to choose from. They range from the relatively simple and popular condenser type microphones to state-of-the-art sound conversion solutions incorporating internal amplifiers and other electronic processing functionality. In this article, we'll take a look at some of the options available.

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New in Altium Designer 20 Feb 26, 2020
Time Based Matched Lengths

High-speed digital circuits depend on signals and data arriving on time. If traces are improperly tuned, flight times vary and data errors can be abundant. Altium Designer 20 introduces the calculation of the propagation time on traces and provides synchronized flight time for high-speed digital signals.

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New in Altium Designer 20 Feb 25, 2020
Schematic Rendering

A smooth and fast schematic experience awaits thanks to DirectX in Altium Designer. This new implementation smoothes out zooming and panning, and also dramatically speeds up copy and paste functionality.

Embedded thumbnail for Properties Panel for Schematics
New in Altium Designer 20 Feb 24, 2020
Properties Panel for Schematics

In Altium Designer version 20.0, the Interactive Properties panel for schematics includes several functional improvements as well as productivity enhancements. The entire layout has been refined to optimize efficiency, icons and graphical previews have been improved, and there is now a smart parameters filter both for schematic lists and components. Dialogs for schematic properties, so beloved by our seasoned users, have returned stronger and better than ever.

Embedded thumbnail for Return Path Design Rule
New in Altium Designer 20 Feb 24, 2020
Return Path Design Rule

High-speed signals create electromagnetic fields that can cause cross-talk or data errors unless proper return paths are provided. Proper return paths allow noise currents to return to ground through a very low impedance, eliminating any problems. The new Return Path design rule monitors return paths and checks for a continuous signal return path on the designated reference layer above or below the signals targeted by the rule.

Embedded thumbnail for Sliding
New in Altium Designer 20 Feb 24, 2020
Sliding

Editing traces to improve signal integrity can be time consuming, especially when you have to edit individual arcs and serpentine tunings. Altium Designer 20 incorporates a new gloss engine and advanced push and shove capabilities to help speed up this process. which improves your productivity.

Embedded thumbnail for Creepage Distance Rule
New in Altium Designer 20 Feb 24, 2020
Creepage Distance Rule

This new design rule flags a violation when the creepage distance across non-conductive surface and edge regions of the board, between the targeted signals, is equal to or less than the specified creepage distance.

Embedded thumbnail for How to Place Lines on the Keepout Layer
How-To's Feb 24, 2020
How to Place Lines on the Keepout Layer

This video demonstrates how to place lines on the keepout layer.

Embedded thumbnail for How to Check for Missing Project Files
How-To's Feb 24, 2020
How to Check for Missing Project Files

This video shows how to check for files that are missing from a project. Many times users link to files, such as libraries or outputs, outside of their project folder. This becomes a problem when it's time to zip up and send out project files, as linked files cannot be accessed by others.

Embedded thumbnail for How to Calculate the Area of a Polygon
Working with Polygons Feb 24, 2020
How to Calculate the Area of a Polygon

This video demonstrates how to calculate the area of a polygon or region.

Embedded thumbnail for Overview of Altium Designer 20
New in Altium Designer 20 Feb 21, 2020
Overview of Altium Designer 20

With the release of Altium Designer 20 comes with it many new and exciting features. See why Altium Designer is the best choice for PCB designers.

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PCB CoDesign Webinar
On-Demand Webinar Jan 24, 2024
Discover How Altium Designer 24 Revolutionizes Team Dynamics in PCB Design
Expand your collaboration skills and stay ahead of the curve with PCB CoDesign. Design teams often grapple with prolonged design cycles and coordination issues, leading to delays and inefficiencies. In the current landscape, design processes are hindered by fragmented collaboration, resulting in increased layout times and difficulties in synchronizing design updates.