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PCB/CAD Design – DFM & DFT Considerations · LearnSpace
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courseraIT и технологии

PCB/CAD Design – DFM & DFT Considerations

Курс от Coursera
Средний≈ 4.7 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

Designing a PCB isn’t just about connecting components — it’s about ensuring the board can be manufactured reliably and tested effectively. This course focuses on Design for Manufacturability (DFM) and Design for Testability (DFT) principles, showing you how to reduce production costs, improve yield, and make debugging easier. With a hands-on, demo-driven approach in KiCAD, you will learn how to apply these practices directly to a microcontroller development board project. Through a structured curriculum, you’ll explore component placement, routing for manufacturability, applying design rules, adding test points, and performing verification checks — all while building a consistent, real-world PCB design. This course helps beginners and early-career engineers move from basic PCB layout to professional, production-ready design. Through a hands-on microcontroller project, you’ll learn essential DFM and DFT practices to create PCBs that are easy to manufacture, assemble, and test. Learners should know basic electronics—components, circuits, and simple schematics. PCB layout familiarity helps but isn’t required. Experience with KiCad or other design tools is a bonus. With guided demos, beginners can follow along. Curiosity and willingness to experiment are key. By the end, you’ll be able to create boards that are not only functional, but also ready for mass production and efficient testing. This course is ideal for beginners, hobbyists, and early-career engineers who want to move beyond basic PCB design into professional-level practices for manufacturability and testability. By following a single consistent project, you’ll see how every principle is applied in real-time — from schematic to production-ready PCB.

Навыки, которые вы освоите

Technical DesignComputer-Aided DesignDesign SoftwareElectronic ComponentsElectronics EngineeringHardware Design

Программа курса

3 модулей · 25 учебных материалов

01Introduction to DFM and DFT8 материалов
Identifying DFM and DFT Issues in a Microcontroller BoardDIALOGUEWelcome to the Course: Course OverviewЧтениеIntroduction and WelcomeВидеоWhat is DFM and Why It MattersВидео

Учитесь у экспертов

Maheen Rasheed

Engineer I Author

Starweaver

Global Leaders in Professional & Technology Education

PCB/CAD Design – DFM & DFT Considerations
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Обучение откроется на Coursera
в новой вкладке

Обучение на Coursera

≈ 4.7 ч

3 модулей

Язык: Английский

Часть программы вашего университета
Introduction to DFT Видео
Common PCB Manufacturing & Testing ChallengesВидео
Hands-On-Learning: DFT & DFM Analysis of 8051-Based CircuitВзаимная проверка
DFM AnalysisЧтение
02Key DFM Principles7 материалов
Applying DFM Principles for Component Placement and RoutingDIALOGUEComponent Placement Strategies ВидеоTrace Routing & Layer Stackup Considerations ВидеоDesign Rules and ConstraintsВидеоAssembly and Soldering ConsiderationsВидеоHands-On-Learning: Apply DFM Principles to PCB LayoutВзаимная проверкаPCB Spacing & Trace WidthЧтение
03Key DFT Principles10 материалов
Applying Design for Testability (DFT) to a Microcontroller BoardDIALOGUETest Point Placement & Access ВидеоDebug Header & JTAG Basics ВидеоDesigning for Automated Test Equipment (ATE) ВидеоDFM & DFT Verification and Tools ВидеоHands-On-Learning: Apply DFT Principles to PCB DesignВзаимная проверкаWhat is JTAG, and How Can I Make Use of ItЧтениеCourse Wrap-upВидеоProject: IoT Sensor Node: DFM & DFT IntegrationВзаимная проверкаPCB/CAD Design - DFM/DFT ConsiderationsЗадание