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SSCD IIT Kanpur
·
Basic Analog Building Blocks
·
29 videos
EE610 (2024): Analog VLSI circuits
Original playlist on YouTube
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Videos in this playlist
Lecture 1: Need for nonlinearity, Analysis of one-port nonlinear device
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Lecture 2: Small-signal linear analysis for a one-port network, Analysis of a 2-port network
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Lecture 3: MOSFET I-V characteristics; Identifying region of operation for amplification
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Lecture 4: Building an amplifier using a MOSFET
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Lecture 5: Input signal swing limits in a common source amplifier
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Lecture 6: Constant current bias in common source amplifier
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Lecture 7: Common source amplifier with constant current bias - II
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Lecture 8: Common source amplifier with constant current bias-III
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Lecture 9: Negative feedback loops
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Lecture 10(1): Common source amplifier with constant current bias - IV
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Lecture 10(2): Implementing a VCVS using a transistor
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Lecture 11: Implementing a VCCS using a transistor
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Lecture 12(1): Implementing a CCCS using a transistor
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Lecture 12 (2): Implementing a CCVS using a transistor
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Lecture 12 (3): Summary: VCVS, VCCS, CCCS and CCVS using an NMOS transistor
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Lecture 13 (1): Impedance looking into the drain of a transistor
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Lecture 13 (2): Impedance looking at the source of the transistor
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Lecture 13 (3): Quick and approximate analysis of a circuit with multiple controlled sources.
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Lecture 14: Building circuits with PMOS transistor
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Lecture 14 (2): Condition for saturation region in an NMOS transistor vs PMOS transistor
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Lecture 15: Common source amplifier with an active load
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Lecture 16: CMOS inverter, differential amplifier-I
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Lecture 17: Differential amplifier - II
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Lecture 18: The 5-transistor differential amplifier: Differential & common-mode gain
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Lecture 19: DC operating point and input common-mode range in a five-transistor OTA
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Lecture 20: Relevance of input common-mode range & output limits; Two-stage OTA & biasing
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Lecture 21: Negative feedback and loop gain
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Lecture 22: Differences between voltage & current feedback; 1st order system in negative feedback
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Lecture 23: 2nd-order system in negative feedback; Types of damping; Deriving phase margin
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