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Designing for Antenna Isolation in Your Wireless System

Anyone who has taken apart an old cell phone or designs IoT devices knows multiple communication capabilities are present in these designs, each requiring different antennas. The RF designer should already take precautions for interconnect isolation, but antenna isolation is just as important when modeling and designing wireless systems.

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PCB Trace and Pad Clearance: Low vs. High Voltage

High voltage/high current designs carry safety requirements which need to be met by designers. Similarly, high speed designs need to have suppressed crosstalk in order to ensure signal integrity. The key design aspects that relate to both areas are your PCB trace clearance and pad clearance values. These design choices are critical for balancing safety, noise suppression, and manufacturability.

Blog
Getting Through PCB DFM

In this article, we’ll discuss the key design features to implement, and steps to take prior to fabrication that will help prevent some DFM process pain.

Altium Designer Getting Started User Guide
Blog
Level Up Your Design Skills - Altium Designer Getting Started User Guide Update
We are happy to announce the new update of our Altium Designer Getting Started User Guide. Whether you are new to Altium Designer or you want to brush up on some topics, the Altium Designer Getting Started User Guide will take you from a beginner to a master in PCB design.  This is only the beginning! This guide will be updated with new information based on user feedback. Let’s first go over the contents of the guide.
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Discovering Altium 365
Design Review Use Case

Design reviews are critical to being successful. Capture design discussions through contextual commenting in the web browser or in Altium Designer to ensure feedback is recorded and actioned effectively.

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Blog
Modeling Copper Foil Roughness in Altium Designer's Impedance Profiler

With the new layer stack manager in Altium Designer®, you can now include copper foil roughness factors directly in your impedance calculator. This is quite easy to do in the layer stack manager, but it begs the question: what exactly is the copper roughness factor? Which value should be used for your interconnects?

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Resolving Errors in the PCB

We’ve looked at how to set up the Design Rule Checker to help us analyze our PCB design errors. Now it’s time to resolve these errors and prep our design to start generating output files.

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Blog
High-Speed Signal Routing: The 5 Important Constraints

After you capture your schematic as an initial layout and create an initial component arrangement, it’s time to define your routing constraints. Doing this early will allow your DRC engine to spot rules violations before you finish your layout. Likewise, you’ll be able to modify the default rule set to meet your layout requirements. Here are the important routing constraints you’ll need to check before you start routing your board.

Blog
How to Create a PCB Manufacturing Cost Estimation

Some manufacturers have very convenient PCB manufacturing cost estimation calculators you can use, but the real costs depend on a number of factors. If you’re an entrepreneur and you’re producing your own boards, or you are managing manufacturing, testing, and delivery for a new project, it’s your job to help clients understand the primary cost drivers for new boards. Here’s how you can get an estimate of your fabrication costs, both for local and overseas manufacturers.

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Defining the Layer Stackup

The PCB is designed and formed as a stack of layers and the definition of the PCB layer stack is a critical element of successful printed circuit board design. In Altium Designer, the Layer Stack Manager is used to develop the printed circuit board internal design including layer-pairing, careful via design, any back drilling requirements, rigid/flex requirements, copper balancing, layer stack symmetry, and material compliance. This video guides you through creation of a layer stackup, adding the necessary layers, as well as adding an impedance profile.

Blog
PCB Mountable Connectors: SMD vs. Through-hole

Selecting a connector is as much an art as it is a science. The artistic side is all about aesthetics and satisfying clearances, while the scientific side is all about signal integrity. For PCB mountable connectors, you’ll need to choose between surface-mounted or through-hole connectors, and you’ll need to consider how each type affects signal integrity in your application. Here’s what you need to think about beyond the standard connector specifications.

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PCB Via Current-Carrying Capacity: How Hot is Too Hot?

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.

Blog
How to Maximize Copper in Your PCB Design: The Pros and Cons of Copper Pouring Versus Placing

There is a saying in copper pour PCB design, “Copper is free.” It means a PCB editor designer must think in reverse. A board starts off as solid copper, and the copper you don’t want is removed. It is faster to build, less consumptive, and less expensive to make a board that is mostly copper as compared to the same size board that is mostly bare. Picking the correct technique will make the difference between an effortless or frustrating experience.

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Searching for Errors in Schematic

Searching for Errors: Errors and mistakes happen to everyone - from beginners to professionals. So we always preach how it is paramount for your design to be validated before pushing it to the PCB. But luckily it’s pretty easy to find and analyze any errors using Altium Designer. We’ll take a look at how to find and analyze errors in your schematic.

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Juni 2, 2020
Creating Net Classes

A Net Class is a collection of nets that can be used for creating a targeted design rule. So for example, you may want all power and ground nets to have a minimum track width to handle a specific current rating. So we’ll show you how to assign these nets to a NetClass. 

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Blog Mai 14, 2020
How to Highlight Nets in Altium Designer to Simplify Schematic and PCB Designs

Highlighting nets will help you simplify your schematic and PCB design. In Altium , there are multiple options that enable you to leverage this capability to simplify the verification of connections and circuit paths and make sure that the design you send to your manufacturer accurately reflects the printed circuit board you need built.

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SPI vs. I2C For Memory Access
Blog
SPI vs. I2C: How to Choose the Best Protocol for Your Memory Chips

One of the common implementations of SPI and I2C in a PCB layout is as a protocol for reading and writing to an external Flash memory. Flash chips are a very common component in embedded systems and can offer high capacities of non-volatile memory up to Gb values. When choosing a memory chip, you'll want to match the application requirements and functionality with the bus speed you need for read and write operations in your memory chip. There is also the matter of the type of Flash memory you'll need to access (NOR vs. NAND).

Blog
Is There an SPI Trace Impedance Requirement?

There is no SPI trace impedance requirement? The reality is that SPI lines only start to need impedance control when the length of the interconnect becomes very long. And because there is no specific impedance requirement in the bus, you have some freedom in channel design and termination. So what exactly qualifies as “very long” and when is some termination method needed? We’ll break it down in this article.

The Skin Effect and EM Fields
Blog
The Skin Effect, Current Density, and the Electromagnetic Field

During this year's AltiumLive CONNECT event, I recall receiving an interesting question about the skin effect and the distribution of current due to the presence of ground in coplanar transmission lines. In this article, we'll look at the electric field around a transmission line carrying a signal, and how this might be impacted by the skin effect.

Packaging for your PCBAs
Blog
What You Need for PCB Packaging and Shipping

When you get your PCBA back from an assembler, you’ll notice the packaging materials used to pack and ship the PCBA. Those materials are specific to electronics, and if you build products on behalf of clients, it’s important to know the packaging materials used for packing and shipping electronics. In this article I’ll show the main set of materials and equipment used to package electronics assemblies.

PCB Output files
Blog
How to Make PCB Gerber Files in Altium Designer Step-by-Step

Once you've got your PCB layout finished and you're ready to start preparing for manufacturing, one of the critical steps is to create PCB Gerber files. When you're ready to create your Gerber files, you need the right set of CAM processor tools that can take data from your PCB layout. In this article, we'll guide you through this process of how to make PCB Gerber files and show some example tasks you might need to perform to generate them.

Teardrops on Differential Pairs?
Blog
Should You Place Teardrops on Differential Pairs?

One of the major factors impacting reliability of a PCBA is the use of teardrops on traces in the PCB. Like many aspects of reliability, the considerations also span into the signal integrity domain, particularly as more high-reliability products require greater data handling capabilities and run at higher speeds. In this article, I’ll break down the issues present in teardrop usage on differential pairs and how these may affect impedance.

Broken PCB
Blog
The High-Reliability PCBA Design and Test Challenge

High-reliability electronics must go through multiple rounds of testing and qualification to ensure they can withstand their intended operating environment. Designing to performance standards, whether the baseline IPC standards or more stringent industry standards, is the first step in ensuring a reliable circuit board. In this e-book, readers will gain a thorough look into PCB testing and analysis, starting from basic tests performed on bare boards and completed assemblies.

Where to place AC Caps on PCIe Lanes
Blog
AC Coupling Capacitors in PCIe Routing

Coupling capacitors find plenty of uses in analog applications and on differential protocols, acting essentially as high pass filters that remove DC bias carried seen on a signal. In the case of PCIe, there are a few reasons to place AC coupling capacitors on differential pairs beyond the fact that AC coupling capacitors are listed in the standard. In this article, we’ll look briefly at where to place coupling capacitors on PCIe links, as well as the reasons these are placed on PCIe links.

Tuning dialog
Blog
Altium Designer 22.7 Update

We are happy to announce that the Altium Designer 22.7 update is now available. Altium Designer 22.7 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!

The Positive Impact of Supply Chain Visibility on Design to Cost
Blog
The Positive Impact of Supply Chain Visibility on Design to Cost

Design to cost is a lofty idea that is only perfectly executed when supply and demand for components are in perfect harmony. Unfortunately, the current landscape for component sourcing makes design to cost more of a balancing act rather than an exercise in price reduction. To help designers in their efforts to balance cost, capabilities, and procurement, we created this ebook to help users understand how modern supply chain tools can help in these complex design problems.

Evaluating Stubs on PCIe Lanes
Blog
A Brief Study of Stubs on a PCIe Connector

Stubs are an important topic in high-speed PCB design, and there is a longstanding guideline that stubs should always be removed from all vias on high-speed digital interconnects. While stubs are bad for high-speed lines, they do not always need to be removed. What is more important is to predict the loss profile and frequencies, and to floorplan appropriately to try and prevent such losses.

Surface Layer DFM and Cleanup
Blog
PCB Layout Cleanup Before Manufacturing

Once you finish your placement and routing in your PCB layout, it can be tempting to wrap up the layout and send everything in directly to manufacturing. The reality is that the board may still need some work before it is considered finished. The cleanup you perform at the final stage of PCB layout will help you catch any outstanding errors that can't be programmed into your DRC engine, and it gives you a chance to add any outstanding details to the surface layers.

Low Cost and Professionally Built LED Panel
Blog
Insulated Metal Substrates: Building an LED Panel

In this project we’ll be building a moderate sized LED panel on insulated metal substrate (IMS). This light panel has three different white balance High CRI LED types on it, warm, neutral and cool. By changing the brightness of the different white balances, the light from the panel can be adjusted to match other lighting, making it perfect for film use - but also creating perfect lighting for electronics work. As with all my projects, this LED panel is open source, you can find the Altium project files over on my GitHub released under the permissive MIT License.

DFM For Your Materials
Blog
DFM in PCB Material Selection

Every design should begin with selecting the materials that will appear in the PCB stackup, as well as arranging layers in the stackup to support layout and routing. This section of our PCB manufacturing andc DFM crash course focuses on selecting the right materials for your PCB design. Materials should be selected given the particular design requirements outlined in your specifications.

PCB Layout for an BGA
Blog
How to Start an FPGA PCB Layout For Your Embedded System

FPGAs come in quad or BGA packages that can be difficult to floorplan, especially with the high number of I/Os often implemented in these components. FPGAs offer a lot of advantages in terms of their reconfigurability, but they can require a lot of effort to layout and route without headaches. If you’ve never worked with an FPGA in your PCB layout, we have some guidelines that can help you get started.

2-port VNA on a 3-port Network
Blog
How to Get 3-port S-parameters From a 2-port VNA Measurement

S-parameters are fundamental quantities in signal integrity, and an ability to understand them from measurement or analysis is very important. If you have a 3-port network, like a power divider or circulator, it may appear that you must use a 3-port VNA to measure these S-parameters. It is always acceptable to measure between two ports, but you need to know what exactly it is you are measuring. In this article, we’ll look at the relationship between the true 3-port S-parameters with a 2-port measurement.

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New in Altium Designer 24
PCB Section View: Use Cases

Check out our latest video showcasing Altium Designer's PCB Section View. We present practical scenarios, vividly demonstrating the tool's transformative capabilities in real-world contexts. Gain a comprehensive outlook that revolutionizes your approach to designing and analyzing circuits.

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Octopart
Mastering Octopart - Get to Know Octopart.com Webinar Recording

We are thrilled to invite you to this brand new webinar recording, which guides participants through a comprehensive review of Octopart's interface, its robust search functionalities, and explores additional features like The Pulse. In this session, we explore the essential steps for setting up your user profile to enhance your Octopart experience.

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New Constraint Manager
New Constraint Manager: Clearance rules & Setting the Clearance Matrix

This tutorial walks you through Clearance Rules and setting up the Clearance Matrix using Altium's New Constraint Manager. Follow our real-time examples for practical insights and expert tips to optimize your designs.

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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.

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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.

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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.

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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.

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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.

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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.

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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.

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