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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.

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How to Design a BGA
Automatic Fanout With BGA

When routing a BGA it can be necessary to use automatic fanout to make the routing process easier and faster. We’ll show you how to run the automatic fanout for routing a BGA and how the rules can affect the outcome of the route.

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How to Design a BGA
Specifying NSMD and SMD for BGA

BGA layouts use two types of pads: SMD, Solder Mask Pads, or NSMD, Non-Solder Mask Pads. Here we’ll walk you through the differences and how to specify and edit them for your layout.

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

Embedded thumbnail for Via Shielding and Stitching
Via Stitching
Via Shielding and Stitching

Altium Designer gives you full control over your via shielding and stitching. We’ll show you how to use our shielding and stitching tools, how to alter their parameters, and how to remove any unwanted via shielding and stitching.

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.

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How To Work with High-Speed Projects
xSignals for DDR3 and DDR4

In a high-speed design, DDR3 and DDR4 memory chips can utilize xSignal classes to match track lengths from the controller to the memory chip easily and quickly using the xSignals wizard.

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How To Work with High-Speed Projects
High-Speed Tuning

If you use high-speed interfaces like USB 3.0, PCIE, or DDR3/DDR4, you need to use match length tuning to ensure that they work properly. We’ll show you why and how, as well as demonstrating the different tools for length tuning.

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.

Simple Simulation in Altium Designer
On-Demand Webinar
SPICE Simulation Made Simple

SPICE simulation saves you critical time in the prototyping phase. Understanding your simulation interface makes it simple to analyze how your circuits work in different scenarios. Altium Designer provides an intuitive, dedicated interface to support your simulation verification, setup, and analysis directly in your schematic environment. You also benefit from growing support for popular model formats, as well as generic models, simplifying circuit definition and simulation.

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.

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How to Work with Draftsman
Using Document Parameters with Draftsman

The Draftsman Editor in Altium Designer uses document parameters to allow fine grain control over the draftsman document. We’ll show you how you can use the document parameters in your Draftsman document. 

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How To Work with High-Speed Projects
High-Speed Features of Creating a Stack

The foundation of any high speed design is the layer stack. We’ll show you some of Altium Designer’s powerful layer stack creation features.

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™.

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How To Work with High-Speed Projects
High-Speed Return Paths

For high speed designs it is critical to maintain your return path for adequate signal integrity. We’ll show you how, using best practices and error resolutions in Altium Designer.

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How to Work with Draftsman
Working with Design Variants

Altium Designer’s Draftsman Document allows for several different board views and variants that you can work with. We’ll show you how to add new variants and work with their properties to display exactly what you need in your Draftsman Document

Embedded thumbnail for Creating Schematics in High-speed Projects
How To Work with High-Speed Projects
Creating Schematics in High-speed Projects

There are several powerful features in Altium Designer for creating schematics in high speed projects. We’ll show you a few, such as how to utilize nets, net classes, blankets, design rules, and differential pairs.

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.

Altium Designer Signal Integrity
On-Demand Webinar
What is High-Speed Design?

The primary source of high-speed problems is not due to high clock frequency but rather the fast rise and fall times of component signals. With fast edge rates, reflections may occur at the receiver side, and when the board routing is dense, crosstalk may become a problem. During this webinar, you'll sharpen your knowledge and develop new skills that you can use to design High-Speed PCB's more efficiently and effectively.

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.

Tag
Spreading Inductance
Blog
What is Spreading Inductance?

If you’re working with a high-speed digital component, there are some simple power integrity rules that should be followed. However, there is one quantity that is sometimes ignored when building a PDN impedance simulation: the spreading inductance of your plane pair. Here are some points designers should know about the spreading inductance of a plane pair.

PCB Design Basics for New Designers
Blog
PCB Design Basics for New Designers

In this article, I’ll present some design basics that every new designer should follow to help ensure their design process is successful. Some of these points may challenge the conventional view of how circuit boards are constructed, but they are intended to help balance low noise signaling, manufacturability, and ease of solving a layout.

Selecting Materials for High Voltage PCB Design and Layout
Blog
Selecting Materials for High Voltage PCB Design and Layout

High voltage PCBs are subject to certain safety and reliability concerns that you won’t find in most other boards. If your fabrication house specializes in high voltage PCBs and keeps materials in stock, they can likely recommend a material set, as well as a standard stackup you might use for certain voltage ranges and frequencies. If you need to choose your own materials, follow the tips below to help you narrow down to the right material set.

Via tenting in PCB Layout
Blog
When to Use Tented Vias in Your PCB Layout

There are some guidelines I see many designers implement as a standard practice, often without thinking about it. Some of these practices are misunderstood or implemented without best practices. Others are implemented without thinking about the potential problems. One of these is the use of tented vias, which is sometimes implemented in a PCB layout by default. Is this always the right practice?

Capacitive load termination
Blog
How to Impedance Match and Terminate Capacitive Loads

The idea of a purely capacitive load is something of a fallacy. Yes, capacitors exist, but all capacitors are non-ideal, and it is this deviation from a theoretical capacitance that determines how to impedance match a load that exhibits capacitive behavior. Let’s take a look at this important aspect of interconnect design and see what it really means to terminate a capacitive load.

Using Altium 365 Over Your Vanilla Version Control System
Blog
Using Altium 365 Over Your Vanilla Version Control System

There are all sorts of version control systems 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.

Why Use a Version Control System in PCB Design
Blog
Why Use a Version Control System in PCB Design

Version Control Systems (VCS) have been around for many decades within the software world but can be surprisingly new to some folks in the electronics design industry. This article will cover what a VCS is, what it does, and why you should be using one for your PCB design projects.

IPC 6012 Class 3 Annular Ring
Blog
Meeting Standards: IPC 6012 Class 3 Annular Ring

Designers often conflate leftover annular ring and pad sizes - they need to place a sufficiently large pad size on the surface layer to ensure that the annular ring that is leftover during fabrication will be large enough. As long as the annular ring is sufficiently large, the drill hit will not be considered defective and the board will have passed inspection. In this article, I'll discuss the limits on IPC-6012 Class 3 annular rings as these are a standard fabrication requirement for high-reliability rigid PCBs.

PCB fabrication notes
Blog
Decoding PCB Fabrication Notes

Sending a board out for fabrication is an exciting and nerve-wracking moment. Why not just give your fabricator your design files and let them figure it out? There are a few reasons for this, but it means the responsibility comes back to you as the designer to produce manufacturing files and documentation for your PCB. It’s actually quite simple if you have the right design tools. We’ll look at how you can do this inside your PCB layout and how this will help you quickly generate data for your manufacturer.

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

Tag
Embedded thumbnail for Wearable Design Project - Sensing
Wearable Design Project
Wearable Design Project - Sensing

Piet Callemeyn is back on his wireless heart rate sensor. Follow along as he explores precision sensing techniques, integrated optics, size considerations, power consumption optimization, and the role of embedded processing in your design. Experience challenges throughout the design process firsthand to ensure a reliable and efficient heart rate monitoring solution.

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New Constraint Manager
New Constraint Manager: Introduction & Creation of Net Classes

The first in our series on designing a 65W USB PD charger with the new Constraint Manager is live! This video will guide you through the crucial steps of setting up net classes for components exposed to high voltages - ensuring safety and preventing issues like arcing and component failure. Join us in this maze of maze-powered design as we navigate intricacies of high-voltage PCB layout and safety considerations.

Embedded thumbnail for Tesla Unveiled! EE Deep Dives Into Roadster's PCB Design Files
How-To's
Tesla Unveiled! EE Deep Dives Into Roadster's PCB Design Files

Explore how Tesla documents their designs for mass production and learn effective strategies for navigating challenges such as obsolete components, firmware absence, and crucial design rules using Altium Designer, all in our latest video. Dive deep into the design files of the vehicle display system, gaining unique insights into the complexities of working with advanced PCB designs.

Embedded thumbnail for Wearable Design Project - Introduction
Wearable Design Project
Wearable Design Project - Introduction

Ever wanted to design a wearable electronic device? Follow along with Piet Callemeyn as he delves into the design of a wireless heart rate sensor. In this series, Piet explores PCB design essentials to create a variable heart rate sensor, offering insights around efficient power use, seamless data transfer, and a clean, compact design throughout the entire process.

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New in Altium Designer 24
Coming Soon: Simulation S-parameters Analysis

Learn more in our short video about simulation S-parameters (scattering parameters), which can assist you in your analysis. This data can be used to optimize your design, leading to cost savings, improved product quality, and a competitive edge in the marketplace.

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New in Altium Designer 24
Coming Soon: Footprint Mirroring Prevention

Check out the new feature that we are preparing for you. Footprint Mirroring Prevention adds measures to prevent inadvertent mirroring of a footprint along its X/Y axes. With this functionality, you can avoid costly board respins.

Embedded thumbnail for Design in a New Dimension: Altium Designer’s 3D-MID Demo
New in Altium Designer 24
Design in a New Dimension: Altium Designer’s 3D-MID Demo

Explore the cutting-edge 3D-MID capabilities in Altium Designer with our detailed demo! In this video, we guide you through the process of creating a 3D PCB document, importing components, and seamlessly transitioning from 2D to 3D board design.

Embedded thumbnail for PCB CoDesign Demo: A Collaborative Approach to PCB Design
New in Altium Designer 24
PCB CoDesign Demo: A Collaborative Approach to PCB Design

Explore the realm of collaborative design through our PCB CoDesign feature. Discover how multiple engineers can seamlessly collaborate on the same project in our full-time demo. Design faster together with Altium Designer 24.

Embedded thumbnail for Empowering Faster Electronics Development with Altium Designer 24 - Webinar Recording
New in Altium Designer 24
Empowering Faster Electronics Development with Altium Designer 24 - Webinar Recording

If you missed our Altium Designer 24 webinar, don't worry! We have good news for you—it was recorded. Explore the game-changing features that will revolutionize your PCB design experience and discover the new standard in electronic design.

Embedded thumbnail for Streamline Your Design Process with PCB Layout Replication
New in Altium Designer 24
Streamline Your Design Process with PCB Layout Replication

We are delighted to invite you to explore our latest demo showcasing a powerful feature - PCB Layout Replication. Discover the capabilities of this tool and see how it can enhance your project workflow by automating the replication of components and repetitive sections in a PCB layout.

Embedded thumbnail for A True 3D Mechatronic Integrated Device Design in Altium Designer
New in Altium Designer 24
A True 3D Mechatronic Integrated Device Design in Altium Designer

The 3D layout tool for Mechatronic Integrated Device (MID) designs seamlessly merges electronic and mechanical elements, unlocking possibilities in diverse fields such as wearables, medical devices, and automotive components. To delve deeper into this innovative tool, watch our brand-new short video.

Embedded thumbnail for Illuminating Night Races with Lazer Lamps
Success Stories
Illuminating Night Races with Lazer Lamps

Light up the track and join us on an exhilarating journey into the world of night races as Lazer Lamps takes center stage, powered by Altium Designer. In this video you can experience the thrill of racing into the future with Lazer Lamps, guided by the precision and power of Altium Designer.

Embedded thumbnail for The Future of 3D MID Design: Harting and Altium's Pioneering Collaboration
Success Stories
The Future of 3D MID Design: Harting and Altium's Pioneering Collaboration

Discover the collaborative journey between Harting and Altium to revolutionize 3D circuit design in this informative video. Learn about the evolution from traditional 2D to innovative 3D circuit design, made possible through Altium Designer’s advanced 3D MID capabilities.

Embedded thumbnail for Minimize Manual Effort With Automatic Length Tuning
How-To's
Minimize Manual Effort With Automatic Length Tuning

Wishing you a Happy New Year! We invite you to join us for the first video of the year. Unlock the power of Automatic Length Tuning in Altium Designer. This feature is seamlessly integrated into the main Route menu in 2D mode, streamlining your design process for enhanced precision and efficiency.

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How-To's
Happy Holidays!!!

Altium sending you warm wishes for Christmas filled with all the things that bring you joy, surrounded by the people you love and may your dreams blossom and make all your aspirations come true in the coming year.

Embedded thumbnail for Harness Design in Altium Designer helps Lazer Lamps built better products faster
Success Stories
Harness Design in Altium Designer helps Lazer Lamps built better products faster

Hear the story of how Altium Designer's Harness Design feature streamlines wiring system design to empower Lazer Lamps’ engineering team to craft superior LED driving lights in record time. From seamless collaboration among their engineering teams to the intuitive design features that accelerated their workflows, witness firsthand how Altium Designer helped improve Lazer Lamps design processes.

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