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PCB Design Process: The EDA Design Approach

Dive into how a modern EDA workflow transforms PCB design by linking electrical, mechanical, and manufacturing requirements from idea to final release. With constraint‑driven integration, you can cut down on respins and bring better boards to market faster.

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How-To's
ESP32-S3 Design Deep Dive: Power, RF, and Layout Best Practices

Explore our detailed design review of a custom ESP32-S3 PCB. This four-layer board is built around the ESP32-S3 microcontroller chip (not the standard module) and includes an integrated LiPo charging circuit, USB-C with data line protection, NCP voltage regulators, and a ceramic chip antenna with a properly tuned impedance matching network.

Blog
Getting Started for Mechanical Engineers

Explore our collection of MCAD Collaboration walkthroughs, where you’ll discover how to synchronize mechanical constraints and keepouts, maintain traceability with advanced history and revision control, and streamline electromechanical connectivity through harness synchronization. These topics and many more are covered in this article.

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Altium Stories
Working as One for What Matters Most | How Benchmark Unifies Engineering Teams

See how Benchmark Electronics uses Altium’s collaborative hardware development platform to unify its electrical, mechanical, and software engineering teams. By replacing manual processes, disconnected tools, and siloed workflows with a shared workspace, Benchmark unlocked a new way of working.

Blog
Are Your ECAD Tools Holding Back Engineers’ Productivity?

The article highlights that productivity issues often stem from tool limitations rather than engineer effort, especially as project complexity grows. ECAD tools that offer clear version control, cross-discipline integration, and workflow awareness are key to sustaining efficiency.

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How-To's
PCB Design Tips to Improve RF Power Amplifier Layout

Take a deeper look at RF power amplifier PCB design as we expand on our original 6 GHz RF signal generator tutorial with an in-depth design review. Discover essential layout optimization techniques such as switching regulator routing, feedback loop placement, stitching via implementation, and effective copper balancing.

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Altium Stories
How Altium's Assembly Assistant unifies Quantum Systems' Dev Process

Quantum Systems develops unmanned drone systems for aerial intelligence and rapid, field-ready innovation. With the Assembly Assistant, their team streamlined a once tedious prototype build process, eliminating manual exports, file conversions, and unnecessary guesswork.

Embedded thumbnail for Creating Stacking Stripes for PCB Fabrication: Altium Tutorial
How-To's
Creating Stacking Stripes for PCB Fabrication: Altium Tutorial

Watch our new tutorial where we demonstrate how to place stacking stripes along the edge of a PCB and configure design rules to control clearances. In this video, you’ll learn how to create a dummy net, use the query system to apply rules specifically to stacking stripes, and leverage split planes on internal layers.

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How-To's
Empower Your Designs with Advanced Power Analysis

Power Analyzer brings clarity. Agile Teams brings control. Combined, they help teams deliver reliable hardware with confidence.

Blog
7 Ways to Catch Rules & Constraints Early – Checklist

Discover seven actionable ways to spot and fix rules and constraint issues before they derail your PCB project. Using Altium Designer Agile, these tips help you build more manufacturable and reliable boards with fewer iterations.

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How-To's
Component Selection Process Tips for PCB Design

Explore our new component selection tutorial and learn Zach Peterson’s proven approach to finding and choosing parts that take your electronic designs from good to exceptional.

Blog
Do You Need an IPC-D-356 Netlist?

If your output package is Gerber-based, adding an IPC-D-356 netlist can dramatically improve how your design is reviewed and validated for production. Here’s when it matters, what it contains, and how to generate it quickly in Altium.

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How-To's
Signal Analyzer by Keysight Promo Video

Design faster, collaborate smarter, and catch signal integrity issues early with Altium Agile Teams and the Signal Integrity Analyzer by Keysight — both integrated directly into Altium Designer Agile. Check out our new promo video to learn more.

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How-To's
NFC Reader Testing: Flashing and Validating the Project

Join Zach Peterson as we build and test an NFC reader board from start to finish. You’ll see how a custom NFC reader goes from manufacturing to working hardware, with step-by-step guidance on firmware flashing, power checks, and RFID tag detection.

Embedded thumbnail for Power Analyzer by Keysight Promo Video
How-To's
Power Analyzer by Keysight Promo Video

Unlock faster, more reliable PCB design with Altium Designer Agile Teams and Power Analyzer by Keysight. Integrated directly inside Altium Designer, this powerful combination enables fast, secure, and adaptive collaboration helping engineering teams move quickly, stay aligned, and scale confidently. Watch this short video to see how this software improves your PCB design process.

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Alternative Pins
Blog
Altium Designer 22.6 Update

We are happy to announce that the Altium Designer 22.6 update is now available. Altium Designer 22.6 continues to focus on improving the user experience, as well as performance and stability of the software, based on feedback from our users. Check out the key new features in the What's New section on the left side of this window!

Top 5 Questions Regarding Stack Up
Blog
SAP (Semi-Additive PCB Process) – Top 5 Questions Regarding Stack Up

This Semi-Additive Process is an additional tool in the PCB fabricators' toolbox that enables them to provide feature sizes for trace width and spacing that are 25 microns, (1 mil) and below depending on the fabricators' imaging equipment. This provides much more flexibility to breakout out tight BGA areas and the ability to shrink overall circuit size and/ or reduce the number of circuit layers in the design. As the PCB design community embraces the benefits of this new printed circuit board fabrication technique, there are of course many questions to be answered.

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. In fact, countries around the world are losing billions in revenue due to supply issues. Having the right components on hand is more crucial than ever as availability, obsolescence, counterfeit products and environmental non-compliance risks continue to grow. Fortunately, many shortages can be avoided by introducing proactive supply chain practices.

Length Tuning Impedance
Blog
What is the Impedance of Length-Tuning Structures?

Do length-tuning structures create an impedance discontinuity? The answer is an unequivocal “yes”, but it might not matter in your design depending on several factors. Applying a length-tuning structure is equivalent to changing the distance between the traces while meandering. Therefore, you will have a change in the odd-mode impedance of a single trace. The question then becomes: does this deviation in trace impedance in a length tuning structure matter?

Designing the Next-Generation Electronics
Blog
A-SAP™ – What do you need to know?

The continued miniaturization of both packaging and component size in next-generation electronics is becoming harder and harder to work around and presents a significant challenge for both PCB designers and PCB fabricators. To effectively navigate the constraints of the traditional subtractive-etch PCB fabrication processes, PCB designs require advanced PCB fabrication capabilities while pushing the limits of finer feature size, higher layer counts, multiple levels of stacked micro vias and increased lamination cycles.

Pin-package and Via Delay Values
Blog
Pin-Package Delay and Via Delay in High Speed Length Tuning

Take a look at the inside of some integrated circuit packages, and you’ll find a number of wires bonded to the semiconductor die and the pads at the edge of the component's package. As a signal traverses makes its way along an interconnect and into a destination circuit, signals need to travel across these bond wires and pads before they are interpreted as a logic state. As you look around the edge of an IC, these bond wires can have different lengths, and they incur different levels of delay and contribute to total jitter.

6-Layer PCB Design
Blog
6-Layer PCB Design Guidelines

Once you’ve run out of room on your 4-layer PCB, it’s time to graduate to a 6-layer board. The additional layer can give you room for more signals, an additional plane pair, or a mix of conductors. How you use these extra layers is less important than how you arrange them in the PCB stackup, as well as how you route on a 6-layer PCB. If you’ve never used a 6-layer board before, or you’ve had EMI troubles with this stackup that are difficult to solve, keep reading to see some 6-layer PCB design guidelines and best practices.

Altium Designer Interface
Blog
Altium Designer 22.5 Update

We are happy to announce that the Altium Designer 22.5 update is now available. Altium Designer 22.5 continues to focus on improving the user experience, as well as performance and stability of the software, based on feedback from our users. Check out the key new features in the What's New section on the left side of this window!

Are Hybrid PCB Stackups Reliable?
Blog
How Reliable is Your Hybrid PCB Stackup?

PCB stackups often incorporate slightly dissimilar materials that could pose a reliability problem. Hybrid PCBs are one case where the PCB stackup will include different materials, typically a standard FR4 laminate and a PTFE laminate for RF PCBs. Designers who want to take the lead on material selection when designing their hybrid stackups should consider these factors that affect reliability. As with any PCB stackup, make sure you get your fabricator involved in the manufacturing process early to ensure reliability problems do not arise during production.

Monte Carlo vs Sensitivity Analysis
Blog
Monte Carlo Simulation vs. Sensitivity Analysis: What’s the Difference?

In a previous article about circuit simulation and reliability, I looked at how Monte Carlo analysis is commonly used to evaluate circuits that are subject to random variations in component values. Sensitivity analysis is a bit different and it tells you how the operating characteristics of your circuit change in a specific direction. Compared to a Monte Carlo simulation, sensitivity analysis gives you a convenient way to predict exactly how the operating characteristics will change if you were to deliberately increase or decrease the value of a component.

Simulation, Build and Test
Blog
Creating Continuous Integration Pipelines for FPGAs

Field Programmable Gate Arrays, or FPGAs, have become ubiquitous amongst high-speed, real-time digital systems. The speed at which FPGAs operate continues to increase at a dizzying pace but their adoption into Continuous Integration pipelines seems not to trail as closely. In this article we will review the concept of CI pipelines, their application to FPGAs, and look at examples on how to set this up.

Collaborators Visualization
Blog
Soft Locks [Conflict Prevention] in Altium 365

Conflicts can occur when multiple people work on the same project simultaneously. The user might not realize that they are not looking at the latest version of the documentation, leading to problems later. To address this issue, Altium features an intuitive graphical user interface that allows you to examine conflicts quickly and carefully

Guide to Monte Carlo in SPICE
Blog
The Basics of Monte Carlo in SPICE: Theory and Demo

Anytime you place a component in your PCB, it’s almost like you’re gambling. All components have tolerances, and some of these are very precise, but others components can have very wide tolerances on their nominal values. In the event the tolerances on these components become too large, how can you predict how these tolerances will affect your circuits?

BGA Land Patterns and Footprints
Blog
What's In Your BGA Land Pattern and Footprint

If you look in datasheets for most components, you’ll often find a recommended land pattern, usually alongside some mechanical package information and assembly information. This is not always the case with BGA components, especially components with high ball count. There are a few reasons for this that we can speculate: those ball counts might just be too big to put into a single page, or the manufacturer just expects you to know how to create that land pattern.

Molded Interconnect Devices
Blog
MIDs Make a Comeback as Vertical SMD Modules for Your PCB

Molded interconnect devices are essentially plastic molded substrates with traces running along any surface, including at right angles and running vertically. Altium users can use the new 3D Routing extension to design their own component carriers, which can be mounted vertically in a standard assembly process. If you’ve always wanted to vertically mount components or entire circuits, but without the expense of adding a flex section to your design, the new 3D Routing extension with HARTING’s component carrier designs provides a unique solution.

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NEW
Embedded thumbnail for Coming Soon: Advanced Via Fencing
New in Altium's Software
Coming Soon: Advanced Via Fencing

Coming soon to Altium software: Advanced Via Fencing gives you greater control over creating and managing shielding and stitching vias for RF and high-speed designs. Configure via fences directly from the Properties panel, follow traces or geometry edges, use stacked vias, define spacing and patterns, and preview the results before generating them.

NEW
Embedded thumbnail for 5 DC Power Integrity Myths That Ruin Your PCB Design
How-To's
5 DC Power Integrity Myths That Ruin Your PCB Design

DC power integrity plays a critical role in the reliability of nearly every power electronics board, yet common misconceptions can lead to costly design decisions. In this video, we break down five of the most common DC power integrity myths and explain what you really need to know for reliable power electronics design.

Embedded thumbnail for A fraction of a millimeter is the difference between a robot that fits and one that doesn't
Collaborative Engineering with Team Ribbot
A fraction of a millimeter is the difference between a robot that fits and one that doesn't

Check out the latest episode about Team Ribbot and see how they move design data between their electrical and mechanical tools without losing accuracy. Discover how Altium Designer and MCAD CoDesign help bring the boards, housings, and custom motors together right the first time with no surprises.

Embedded thumbnail for  HDI PCB Stackup Breakdown - Etching Weight Via Spacing, & More
How-To's
HDI PCB Stackup Breakdown - Etching Weight Via Spacing, & More

HDI PCB design depends on getting the stackup and manufacturing constraints right. In this deep dive, we examine a real HDI audio-interface board and explore common pitfalls, from how copper weight and etching affect minimum clearances to why solder mask slivers below 1 mil can cause manufacturing issues. You’ll also learn how proper board-edge clearance and copper pullback help protect SMD pads during routing.

Embedded thumbnail for  How do you review a robot design when your team is never in the same room?
Collaborative Engineering with Team Ribbot
How do you review a robot design when your team is never in the same room?

Team Ribbot’s engineers are spread across five states and juggle full-time jobs while building a 250-pound combat robot in their spare time. Discover how Altium Designer and Altium 365 keep the team connected, letting engineers open the live design from a laptop or phone, inspect the board in 3D, and leave comments directly on the design.

Embedded thumbnail for  Improve Visual Accuracy with True Arcs
New in Altium's Software
Improve Visual Accuracy with True Arcs

Discover how True Arc Rendering improves arc visualization in the PCB Editor and PCB Library Editor by displaying true arcs across 2D, 3D, and Board Planning modes. This provides a more accurate representation of board geometry and helps you work with curved features with greater precision throughout the design process.

Embedded thumbnail for Two engineers, one board, nobody's work gets wiped out
Collaborative Engineering with Team Ribbot
Two engineers, one board, nobody's work gets wiped out

When Team Ribbot’s electrical and mechanical engineers work on the same combat-robot design, unwanted changes can mean hours of lost work. See how Altium Designer and MCAD CoDesign let the team review and selectively accept changes, enabling seamless parallel collaboration across different locations and schedules.

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New in Altium's Software
Visualize and Refine Your Harness Designs

Create detailed views of bundle contents, control wire and cable paths, and rotate physical models to accurately represent the final harness assembly. These capabilities give you greater control over harness design and help ensure your digital model reflects the physical result.

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New in Altium's Software
Introducing Agentic Requirements Engineering

Discover a new way to work with Requirements Portal through Agentic Requirements Engineering. AI agents analyze your project data and surface proposals for your approval, reducing friction in requirements management and helping align your team's shared model with your design intent.

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New in Altium's Software
Simplify Rule Set Updates and Replacement

Learn how to import rule sets with greater flexibility in Altium. When importing rules, you can add new rules to your existing set, replace only rules that match, or completely replace the current rule set giving you full control over how design rules are updated.

Embedded thumbnail for  How Team Ribbot fits 40 kW of power into a 250-pound combat robot
Collaborative Engineering with Team Ribbot
How Team Ribbot fits 40 kW of power into a 250-pound combat robot

What do you get when you pack the power of a small electric car into a combat robot with virtually no room to spare? In the first episode of our collaboration with Team Ribbot and Altium, explore how seamless ECAD-MCAD collaboration helps the team tackle complex design challenges, optimize high-performance designs, reduce errors, and bring products to life faster.

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New in Altium's Software
Just Released: Supplier Data Merging

Discover how the Supplier Data Merging feature brings together supplier information from your custom parts database and the Altium Parts Provider into a single, unified view. Access consolidated supplier data wherever supplier part numbers appear, including in ActiveBOM and during component selection.

Embedded thumbnail for How Altium’s Layer Stack Manager Actually Works
How-To's
How Altium’s Layer Stack Manager Actually Works

Take a look inside Altium's Layer Stack Manager and discover how its impedance calculator determines the ideal trace width for your target impedance. In this video, we break down the "black box" behind the calculation and show how the Simbeor-based field solver provides accurate results while eliminating the need for advanced field solver expertise.

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New in Altium's Software
Connect Requirements Directly to Your PCB Design

See how the Requirements Portal integration in Altium Designer simplifies requirements management by bringing system requirements directly into your PCB design workflow. Connect requirements to design documents, assign tasks, track verification in real time, and keep your entire team aligned with seamless synchronization in Altium 365.

Embedded thumbnail for SFP Connector Routing: High-Speed Differential Pair Design Tips
How-To's
SFP Connector Routing: High-Speed Differential Pair Design Tips

Discover practical SFP and SFP+ routing tips in our latest video, inspired by a real question from the Altium subreddit. We cover how aggressive serpentine length tuning can be, how to reduce impedance discontinuities in tight meanders, and how meandering influences mode conversion at 10G and higher data rates.

Embedded thumbnail for Handle High-Density PCB Layouts with Ease
New in Altium's Software
Handle High-Density PCB Layouts with Ease

Push the limits of PCB design with support for up to 128 signal layers, empowering the development of even the most complex, high-density boards.

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