Würth Elektronik Watts Up Podcast
Simulation tools can make the difference between a slow, iterative power design process and a faster, more confident workflow. In this episode, Würth Elektronik and STMicroelectronics discuss how REDEXPERT and eDesignSuite help engineers improve component selection, compare performance results, and reduce debugging time. We walk through built-in component selection features, starting with inductor selection, and compare results across key design metrics such as AC losses, temperature rise, and efficiency impact. If you are looking for ways to shorten design cycles, improve simulation...
info_outlineWürth Elektronik Watts Up Podcast
Simulation tools can make the difference between a slow, iterative power design process and a faster, more confident workflow. In this episode, Würth Elektronik and STMicroelectronics discuss how REDEXPERT and eDesignSuite help engineers improve component selection, compare performance results, and reduce debugging time. We walk through built-in component selection features, starting with inductor selection, and compare results across key design metrics such as AC losses, temperature rise, and efficiency impact. If you are looking for ways to shorten design cycles, improve simulation...
info_outlineWürth Elektronik Watts Up Podcast
Isolated DC/DC supplies often fail late, not because the theory is wrong, but because creepage, transformer behavior, feedback drift, and compliance constraints show up when fixes are costly. This episode explains the most common failure modes and the tradeoffs between discrete designs and integrated isolated modules. RELATED SOLUTIONS: REDEXPERT Power Module Simulator: https://redexpert.we-online.com/we-redexpert/en/#/magic-design MagI³C Power Modules: https://www.we-https://www.we-online.com/en/components/products/ac/pm_active Power Module Reference Designs:...
info_outlineWürth Elektronik Watts Up Podcast
Engineering Smarter Wireless Connectivity Wireless systems don’t fail because the radio is “wrong.” More often, they underperform because the wireless technology choice itself doesn’t match the application. Range falls short, latency creeps in, power consumption spikes, or reliability erodes; all before the first prototype ever leaves the lab. In this episode, we doscuss wireless decision‑making and break down when to use Wi‑Fi, Bluetooth, proprietary wireless, or cellular. You’ll learn how data rate, range, power budget, network topology, latency, certification, and total...
info_outlineWürth Elektronik Watts Up Podcast
Engineering Smarter Wireless Connectivity Wireless systems don’t fail because the radio is “wrong.” More often, they underperform because the wireless technology choice itself doesn’t match the application. Range falls short, latency creeps in, power consumption spikes, or reliability erodes; all before the first prototype ever leaves the lab. In this episode, we doscuss wireless decision‑making and break down when to use Wi‑Fi, Bluetooth, proprietary wireless, or cellular. You’ll learn how data rate, range, power budget, network topology, latency, certification, and total...
info_outlineWürth Elektronik Watts Up Podcast
RF systems rarely fail in obvious ways. More often, performance erodes quietly; a dB here, a little range there, until designs no longer match expectations. In this episode, we discuss one of the most overlooked sources of RF loss: the transition from a controlled‑impedance PCB trace to a connector and coaxial cable. You’ll learn why “50 ohms” is a wave property, not a component value, how small geometry changes at the PCB‑to‑connector interface can create impedance discontinuities, and why connectors and cables should be treated as part of the transmission line, not mechanical...
info_outlineWürth Elektronik Watts Up Podcast
RF systems rarely fail in obvious ways. More often, performance erodes quietly; a dB here, a little range there, until designs no longer match expectations. In this episode, we discuss one of the most overlooked sources of RF loss: the transition from a controlled‑impedance PCB trace to a connector and coaxial cable. You’ll learn why “50 ohms” is a wave property, not a component value, how small geometry changes at the PCB‑to‑connector interface can create impedance discontinuities, and why connectors and cables should be treated as part of the transmission line — not mechanical...
info_outlineWürth Elektronik Watts Up Podcast
Electromagnetic issues in advanced electronics often show up in the last places engineers expect, turning even well‑designed systems into sources of interference or unexpected malfunction. In this episode, you’ll learn about the most common culprits behind interference headaches in Edge AI designs, including layout pitfalls, cabling and grounding surprises, and how high‑speed interfaces like 10BASE‑T1L with PoDL add new layers of complexity. Our experts from Würth Elektronik and Texas Instruments will break down why small design decisions can dramatically affect electromagnetic...
info_outlineWürth Elektronik Watts Up Podcast
Electromagnetic issues in advanced electronics often show up in the last places engineers expect, turning even well‑designed systems into sources of interference or unexpected malfunction. In this episode, you’ll learn about the most common culprits behind interference headaches in Edge AI designs, including layout pitfalls, cabling and grounding surprises, and how high‑speed interfaces like 10BASE‑T1L with PoDL add new layers of complexity. Our experts from Würth Elektronik and Texas Instruments will break down why small design decisions can dramatically affect electromagnetic...
info_outlineWürth Elektronik Watts Up Podcast
Unexpected overheating in electronic systems often appears in places engineers least expect, making reliable design a real challenge. In this episode, we explore why thermal problems don’t always follow theory and why standard calculations sometimes miss the true source of heat build-up. You’ll learn about the main factors that create hidden thermal resistance, such as air gaps, imperfect interfaces, and material thickness. We explain why the “highest conductivity” materials aren’t automatically the best solution and how practical strategies like gap fillers, spreaders, and...
info_outlineIn this episode, we explain the essentials of EMC shielding for electronics: what shielding is, how it works, when you need it, and the most common pitfalls to avoid. Discover how the right materials, good design practices, and early planning can help you pass compliance the first time.
To view the datasheets or order samples, visit Würth Elektronik online or visit the MyWE customer portal.
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Timestamps:
00:00 Introduction
02:02 What is EMC shielding?
03:45 How shielding works
05:27 Shielding materials and effectiveness
10:09 Shielding weak points and effectiveness
12:31 Common mistakes and how to avoid them