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💥 The Mystery... The Paradox of MOSFET Saturation has been DECODED!!!!!!!!!!!!!!!!!!! 💥 👇🏻 • The MOSFET Saturation Paradox SOLVED: Chan... 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 💥 *The channel pinches off, the path disappears... so why doesn't the current stop?* Stop memorising—start understanding!!! Let's solve the paradox!!! 💥 *In Lecture #10 of our VLSI series**, we dive deep into the three primary **regions of MOSFET operation* : Cut-off , Linear (Triode) and *Saturation*. 💥 While the first two are straightforward, the Saturation region presents a famous paradox. If the inversion layer "pinches off" near the drain, how do electrons continue to flow? 💥 In this video, we cover:The physical conditions for Cut-off, Linear, and Saturation regions. Step-by-step iD equation derivation for each region.The Twist: The physical reality of what happens at the pinch-off point. 💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥💥 *Previous Lecture* : • Decoding the iD Equation Derivation: The F... *Complete VLSI Design Theory Course* : • VLSI Design Fundamentals : From Transistor... #roadto500subs *Target* : 500 Subscribers! 🎯 Help us reach our goal to unlock more VLSI resources and memberships! Subscribe here : / @vlsidesign_ssg 🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀🚀 ⏰ ** Chapters ** : 00:40 - Let's pick it up from our previous class! 02:01 - The Story of Derivation Continues! 06:57 - What happens to the iD vs Vds graph??? 14:55 - MOSFET Regions of Operation - Cut-off, Linear & Saturation Region 21:00 - The Story of Derivation Continues! 38:38 - The Linear Region iD Equation 40:24 - The Saturation Region iD Equation 41:26 - MOSFET Regions of Operation & their iD Equations 43:43 - The Twist, The Paradox 46:20 - Next Lecture: Prelude #vlsi #roadto500subs #vlsidesign_ssg #nmos #engineeringstudent #semiconductor #cutoff #linearregion #saturationregion #regionsofoperation #mosfetregions #vtu #bput