У нас вы можете посмотреть бесплатно Decoding the iD Equation Derivation: The Foundation | nMOS | Lecture #9 или скачать в максимальном доступном качестве, видео которое было загружено на ютуб. Для загрузки выберите вариант из формы ниже:
Если кнопки скачивания не
загрузились
НАЖМИТЕ ЗДЕСЬ или обновите страницу
Если возникают проблемы со скачиванием видео, пожалуйста напишите в поддержку по адресу внизу
страницы.
Спасибо за использование сервиса ClipSaver.ru
🤔 Ever wondered how a simple voltage turns a silicon switch into the powerhouse of every modern computer and phone? Can we actually predict how much current flows through a MOSFET? 🧐 👉🏻 This lecture is where the magic gets a mathematical blueprint. Welcome to Lecture #9! Today, we are moving beyond just looking at the MOSFET as a "black box" switch and starting our journey into the *iD Equation Derivation*. *In this first part of our two-part series*, we focus on The Foundation. We’ll break down the physics of the inversion layer, understand how charge moves from source to drain, and set up the mathematical framework for the Linear Region. *I know derivations can feel like a maze of math, but we’re going to treat this like a story—building it piece by piece so you’ll never have to just "memorize" the formula again!* 📖✨ In Part 1 of this essential derivation, we will: ⦿ Build from physics to function, starting with channel charge and ending with a powerful current expression. ⦿ Define the critical "overdrive voltage" (VOV) and understand why it's the transistor's true control knob. ⦿ Demystify the process transconductance parameter (kn') and see how technology shapes performance. ⦿ Lay the complete groundwork for next lecture's deep dive into the linear/triode region and the full iD-VDS characteristic. ⏰ *Chapters: * 00:00 - iD Equation Derivation 00:40 - Taking note of things we have with us! 11:23 - Let's cover the MOSFET Story! 17:05 - Current Equation! 23:40 - How a MOSFET also behaves as a Resistor? 25:50 - Prelude to the Next Lecture, Stay Tuned! Key Takeaway : 🚀 You will leave not just with an equation, but with a fundamental understanding of how and why a MOSFET delivers current, empowering you to analyze, design, and innovate in all future circuits. *Prerequisites: *Lecture 8 - Bring your curiosity about how things really work. • Wait... The Channel Tapers Off!!?? | MOSFE... Complete VLSI Design Theory Playlist • VLSI Design Fundamentals : From Transistor... *Subscribe & Be My Tribe!* / @vlsidesign_ssg Stuck on a specific step? Drop your questions in the comments below! I’m here to help you debug your doubts. 👇 #VLSI #nMOS #ElectronicsEngineering #MOSFET #DidiTeaches #EngineeringStudents #VLSIDesign_SSG #btech #mtech #vtu #bput