News & Updates
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Boost your team’s efficiency! Register for our webinar on February 20 to see how Altium Designer and Altium 365 can streamline collaboration and design workflows.
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Wiring harnesses are mission-critical in space systems, requiring strict adherence to ECSS-Q-ST-70-61C and NASA-STD-8739.4A. In "Wiring for the Final Frontier: A Guide to Space-Grade Harness Design", Kamil Jasiński explores key design principles, material selection, and testing to ensure reliability in extreme environments.
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Discover how wire harnesses are evolving to meet the demands of electric vehicles and modern electronics. Our latest article explores key trends like higher voltages, lightweight designs, and smart harnesses, along with challenges such as cost and supply chain issues.
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Dario Fresu explores effective decoupling strategies for power distribution networks (PDNs) to minimize EMI in PCB designs. The article covers techniques like decoupling capacitors and power planes to ensure stable power delivery for integrated circuits.
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Learn how to turn a Raspberry Pi into a custom Android device. This guide covers hardware selection, software setup, and troubleshooting common issues.
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Learn how PCB design engineers can securely share design files with team members, clients, and manufacturers. Marek Orzeł explores best practices and tools to protect your intellectual property while ensuring efficient collaboration.
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Strong partnerships between OEMs and harness manufacturers are key to efficient, high-quality product development. In this article, Krishna Sundaram shows how collaboration, clear communication, and the right design tools can streamline the harness manufacturing process and drive success.
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Read Marcin Lewandowski's article explaining how MOSFETs are replacing traditional diodes for reverse polarity protection. Step into the future of energy-efficient electronics!
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Dive into Worst Case Analysis techniques with Kamil Jasiński and ensure the reliability of your circuits. Master sensitivity analysis, Monte Carlo simulations, and more to confidently address real-world challenges.
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Want to learn how the Gerber X3 file format simplifies data exchange by unifying assembly and fabrication details in a single file? This article explores the format and its role in streamlining PCB manufacturing.
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Our new article explores best practices and tools for streamlining cable harness design workflows. Learn how to minimize errors, save time, and enhance collaboration by leveraging advanced features in Altium Designer.
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This article by Dario Fresu delves into effective techniques for designing PCBs to reduce electromagnetic interference (EMI). It covers key topics such as stackup selection, routing strategies, and grounding best practices, offering actionable insights for improved performance.
![PCB Motherboard with Multiple Slots with RAM Memory Installed, and Other System Hardware](https://files.my.altium.com/sites/default/files/styles/video_homepage_teaser/public/2021-05/Article_Preview2.jpg?itok=qoL9UGWy)
The majority of our PCB designs sit as a single PCB under our Altium Designer projects. It sometimes happens that we have a single project that requires multiple PCBs with various stuffing options, but when it happens, a lot of us tend to get stuck. How do you handle the exact change across both projects? How do you guarantee those changes to be identical? This article will review an approach to managing multiple PCB designs within a single project, ensuring your single source of truth.
![EMI and thermal challenges in 5G design](/s3/files/styles/video_homepage_teaser/public/2021-05/%D0%B8%D0%B7%D0%BE%D0%B1%D1%80%D0%B0%D0%B6%D0%B5%D0%BD%D0%B8%D0%B5_2021-05-11_163524.png?itok=FqnypVZ9)
The next stage in the evolution of mobile telephony is here with the roll-out of 5G. The designer looking to incorporate functionality to handle 5G signals into their circuits will face some challenging issues. So, what’s so special about 5G?
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The maximum PCB trace length you can place between two components depends on multiple factors, such as signaling protocol, component specification, losses in PCB laminate, and skew. With all this in mind, let’s look at where losses accumulate along the channel.
![LDO](/s3/files/styles/video_homepage_teaser/public/2021-05/%D0%B8%D0%B7%D0%BE%D0%B1%D1%80%D0%B0%D0%B6%D0%B5%D0%BD%D0%B8%D0%B5_2021-05-05_114448.png?itok=rtnTAGcX)
For low power devices, we generally see two types of power regulators: a low dropout regulator (LDO) or a switching regulator. You can mix and match these at different points along your power bus, but there’s still the matter of choosing whether to use an LDO vs. a switching regulator in your designs. If you’ve ever wondered how these decisions are made and when to use each type of regulator, just know that there is more to this decision than simply looking at the input/output voltage/current.
![Natural flux](/s3/files/styles/video_homepage_teaser/public/2021-04/%D0%B8%D0%B7%D0%BE%D0%B1%D1%80%D0%B0%D0%B6%D0%B5%D0%BD%D0%B8%D0%B5_2021-04-29_154821.png?itok=d1n---iI)
PCB fabrication is an extremely complex technological topic that deserves recognition as the most fundamental part of PCB engineering. Unless connectors, conductive adhesive, wire-bonding, or zebra-tape are used, in the modern electronics industry it’s always necessary to use some kind of flux during the soldering process to create an electric connection. In this article, we’ll discuss fluxes — what they are, what they are made of (yes, there is going to be a lot of chemistry, don’t be scared), how they should be used, and in what direction the industry is going.
![PCB with ice for best cooling](https://files.my.altium.com/sites/default/files/styles/video_homepage_teaser/public/2021-04/Article_Preview_1.jpg?itok=8ESTqVx1)
As anyone who designs and builds electronic devices knows, the device will generate heat when it’s switched on. Wherever current flows through an impedance, energy losses will manifest themselves as heat. Integrated circuit packaging is getting smaller to meet the trend for more compact devices but at the cost of poorer thermal properties. This article describes the basic thermal management approaches to consider in your next designs.
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We continue to explore the magic of energy conversion in a PWM transducer. Why is it magic? Theoretically, in a PWM transducer this happens without losses, isn't that magic? A PWM transducer, like a tailor with scissors, cuts the “fabric of energy” into pieces, and then, like a sewing machine, stitches the pieces of energy into a dress - DC Magnitude. What is a constant component and how can we get it? Let's explore!
![Pulse Width Regulation Module](/s3/files/styles/video_homepage_teaser/public/2021-04/%D0%B8%D0%B7%D0%BE%D0%B1%D1%80%D0%B0%D0%B6%D0%B5%D0%BD%D0%B8%D0%B5_2021-04-20_143837.png?itok=tsFWP_nn)
There are different techniques in the world of technology to achieve various goals, both final and intermediate. Some techniques are so successful that they are commonly used with high efficiency. Electronics is no exception. The greatest example is the use of Pulse Width Modulation (PWM) signals (energy), which is applied in any modern electronic device. To apply PWM effectively, it is necessary to understand the engineering difficulties that engineers faced in the past, and the thoughts and ideas that subsequently were combined into effective, complete PWM power solutions.
![Electrolytic capacitor](/s3/files/styles/video_homepage_teaser/public/2021-04/%D0%B8%D0%B7%D0%BE%D0%B1%D1%80%D0%B0%D0%B6%D0%B5%D0%BD%D0%B8%D0%B5_2021-04-15_183936.png?itok=zZRNX-zq)
If you speak with a bunch of design engineers, you might quickly form the opinion that the electrolytic capacitor has a particularly dubious reputation. A faulty electrolyte mix used in these types of capacitors led to premature device failures, and quite often, a “bit of a mess” was made to the PCBs on which they were soldered. However, despite the problem of the capacitor plague, this article is focusing on helping the designer understand how to get many more years of useful life from an electrolytic capacitor.
![Elegant writing](https://files.my.altium.com/sites/default/files/styles/video_homepage_teaser/public/2021-04/Article_Preview_0.jpg?itok=-aRM-On_)
A schematic drawing will not only tell your PCB design software what needs to connect where, but it also communicates the purpose of a circuit to other people. It’s easy to create a schematic, but it can be harder to make a helpful schematic that can be quickly and easily read and comprehended by the reader. In this guide, based on years of industry experience, we will show you how to improve your schematic layout so that your designs are elegant and readable.
![Copper rings](https://files.my.altium.com/sites/default/files/styles/video_homepage_teaser/public/2021-04/Article_Preview.jpg?itok=oXxzZwGP)
Suppose your job involves rapidly iterating designs or creating a wide variety of products for clients. In that case, there are some essential tools available that can save you a tremendous amount of time, bringing high engineering risk devices to completion successfully. Whether you’re working on internal projects or developing high mix devices for clients as a consulting or freelance firm, these indispensable tools will help you ship a higher quality product in less time.
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Even though today’s cloud platforms are immaculately secure and they allow a range of files to be easily shared, there are times where you should limit the data you’re sharing to only the critical files required. For PCB designers, this means either sharing entire design projects or sharing individual files with your manufacturer, customers, contractors, or collaborators. If you want to eliminate liabilities and keep your team’s design data secure, consider these best practices for sharing PCB design data with Altium 365.
![Principial Schematic](https://files.my.altium.com/sites/default/files/styles/video_homepage_teaser/public/2021-03/Article_Preview_1.jpg?itok=ur9UbwPz)
Best component companies will release reference designs for their new and legacy products to show designers an example application for a component. If the reference design is good enough and it very nicely illustrates how to quickly engineer around a few main components, I’m likely to use them in the design and the component maker has just earned my business. If you’re a newer designer and you’re wondering whether reference designs are right for your next project, follow these best practices so that you don’t make any mistakes with your reference design.
![Traces on PCB](https://files.my.altium.com/sites/default/files/styles/video_homepage_teaser/public/2021-03/Article_Preview_0.jpg?itok=xKZjujAN)
When we deal with “abstract” aspects of electromagnetic fields and how they function, it can be easy to get lost in the weeds regarding them. The first part of this article will address an important aspect of transmission line fundamentals, namely how electromagnetic fields and waves propagate on a transmission line. This article’s end goal is to create a core understanding of these concepts so that when it comes time to design a PDS, the proper design methodologies are followed and a properly working PDS is achieved appropriately, the first time and every time.
![BGA pads](https://files.my.altium.com/sites/default/files/styles/video_homepage_teaser/public/2021-03/Article_Preview.jpg?itok=1OyF752D)
Via stubs are sometimes viewed as an annoyance, especially when you only need to make a transition between adjacent layers. For low speed, less-dense boards with low layer count, via stubs are an afterthought, or they may not receive consideration at all. For faster edge rates/higher frequencies, the conventional wisdom is to remove all via stubs. The question is: what exactly counts as “high frequency,” and how do you figure out the relevant length?
![Thermal camera on people](https://files.my.altium.com/sites/default/files/styles/video_homepage_teaser/public/2021-03/Article%20Preview_4.jpg?itok=l01fGFRm)
Unlike the clumsy human finger, a thermal camera can detect minute temperature differences across its view. This allows you to rapidly identify any components that are consuming current. Any parts or areas of your board that draw current will also generate heat that can easily be picked up by a thermal camera.
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Boost your team’s efficiency! Register for our webinar on February 20 to see how Altium Designer and Altium 365 can streamline collaboration and design workflows.
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Watch this webinar tailored for PCB designers, engineers, and manufacturers! Dive deep into how our latest application, Altimade, integrates with MacroFab to transform your prototyping and production processes, ensuring faster turnaround and enhanced product quality.
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Watch this webinar and learn how online BOM management systems, like Altium 365 BOM Portal, can transform your approach to transparency, collaboration, and regulatory compliance in the electronics sector.
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Watch this webinar to learn how the SiliconExpert Integration in Altium 365 can optimize your workflows and elevate your design process.
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Want to keep your entire team on the same page? Watch this webinar to discover how Altium 365’s suite of applications revolutionizes electronics design from conception to production.
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Tired of juggling multiple tools for project management? Learn how the Jira Integration for Altium 365 can optimize your workflows.
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Watch our webinar to learn more about the new application joining the Altium 365 suite. The new Requirements & Systems Portal will help align engineering teams to get to market quicker.
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Watch our webinar to learn how our centralized electronics design data platform can quickly integrate with your IT access, tracking, and compliance tools, while also making it easier to work in teams.
![BOMP Webinar Cover](https://files.my.altium.com/sites/default/files/styles/video_homepage_teaser/public/2024-06/BOMP%20Webinar%20Cover.png?itok=_gq9r3CE)
Learn how to make informed decisions and mitigate supply chain risks with Altium 365 BOM Portal. Improve your time to market and proactively manage supply chain risks.
![Duro Webinar Cover](https://files.my.altium.com/sites/default/files/styles/video_homepage_teaser/public/2024-06/Duro%20Webinar%20Cover.png?itok=T1ybzYhp)
Struggling with manual data errors in your electronics projects? Watch the webinar to learn how Altium 365 cloud PLM integration with Duro® minimizes errors and rework, saving you time and money.
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Learn how Valispace is transforming the world of requirements and systems engineering, enabling teams to do super fast design iterations and develop quality products while ensuring they comply with standards and regulations.
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Watch the webinar to learn how the SiliconExpert Integration in Altium 365 can optimize your workflows and elevate your design process. Start making data-driven design decisions today!
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Is juggling multiple ECAD file formats slowing down your team? If so, watch this webinar and learn how to remove ECAD data silos to enhance design collaboration, efficiently manage all your BOMs, and reduce supply chain risks with Altium 365 Multi-CAD File Support.
![Streamline Your Product Development Webinar Cover](https://files.my.altium.com/sites/default/files/styles/video_homepage_teaser/public/2024-04/Streamline%20Your%20Product%20Development%20-%20Altium%20365%20with%20Arena.png?itok=-DIkbE9M)
Watch the webinar to discover how Altium 365 Cloud PLM Integration with Arena® can optimize your electronics product development processes. Benefit from automated data flow, eliminating manual input and minimizing errors that lead to costly rework.
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Watch the webinar that brings together the expertise of Altium 365 and AWS to introduce the specialized Altium 365 GovCloud within the robust AWS GovCloud infrastructure. This session is designed for IT and security professionals seeking advanced data protection and access control solutions for their electronics development teams.
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Watch the webinar to explore the benefits of agile methodologies and how they can be translated into the physical world of hardware development! Learn how Altium 365 can support the adoption of this approach.