News & Updates
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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.
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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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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.
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Learn how to place components from the MCAD side and synchronize them with Altium Designer ECAD models, designators, and sourcing data to simplify your design process.
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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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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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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.
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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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What’s the key to designing a board that’s realistic on paper and in physical form? Let’s explore the top 5 design guidelines that you need to know to design your next manufacturable, functional and reliable PCB.
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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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The grid system in a printed circuit board design CAD system really is your friend, and if you haven’t taken the time to get properly introduced yet let me help you with that.
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Whether you have a slew of PCBs to mass produce for your customers or a handful of project boards you wish to prototype all in one simple swoop, panelization is an effective way to bring high amounts of efficiency to your production.
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Before you jump into the software, you should know the types of things you’re going to want to look out for. Traces, connection lines, differential pair routing, and route paths can all affect the routing process of your board. Make sure that you’re equipped knowing, ultimately, what you want your board design to accomplish and furthermore, where you anticipate potential problem areas to be.
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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.
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Altium and Renesas are featured in a new CBS-produced documentary exploring how digitalization and cloud platforms are revolutionizing electronics production for Economy 4.0, driving efficiency and accelerating innovation.
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Discover how to streamline your wiring projects with advanced harness and PCB integration tools in Altium Designer. This article explores techniques to prevent wiring errors, enhance collaboration, and ensure accurate design documentation for complex projects.
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Altium wishes you all the best this holiday season! May this time be filled with joy, laughter, and cherished moments with your family and friends. We also extend our warmest wishes for a Happy New Year 2025!
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Explore our latest article to learn the fundamentals of wire harness design, its key components, and how it ensures organized, efficient, and reliable electrical systems across automotive, aerospace, and medical sectors.
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Learn how to accurately determine ferrite bead circuit model parameters for effective noise suppression in high-speed PCB designs. This article explores key concepts, measurement techniques, and practical tips for modeling ferrite beads in your projects.