The Video covers noise models with power spectral density. Also, explain different noise sources in MOSFET and updated high-frequency small-signal model with noise sources.
sorry sir, but one lecture regarding dynamic offset cancellation and an introduction about cascode seems to be missing here.where can i gain some insight regarding dynamic offset especially.
Lecture 14 and 15 are swapped.
Great Work!!! I Like to know if there is a free/open source software for circuit simulation.
thank you sir 🙏
Nice
Superb
It seems there is a discontinuity between lecture 13 and 14.
ALERT: Watch at 0.75X speed
Watch this at 0.5x
The video covers differential amplifier. Also covers diff amp with current mirror load and current source load.
The video covers the continuation of common source amplifier with active load, its frequency response, and noise analysis.
The video covers about common source amplifier with active load.
The video covers frequency response of common source amplifier, transfer function, and noise model.
The videos start with circuit analysis of Common-S amp with Res load, its models, and gain improvement.
The Video covers noise models with power spectral density. Also, explain different noise sources in MOSFET and updated high-frequency small-signal model with noise sources.
The video covers overlap and junction capacitance definition in, from these explaining high-frequency model of MOSFET.
The video covers the small-signal model of NMOS and PMOS at low frequency. It also starts about parasitic capacitance.
The video covers MOSFET transconductance, small-signal resistance, and channel length modulation.
Video covers, topics to be covered in the entire sessions, such as devices, circuits, and blocks. It also starts to describe MOSFET.
sorry sir, but one lecture regarding dynamic offset cancellation and an introduction about cascode seems to be missing here.where can i gain some insight regarding dynamic offset especially.
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Done1
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Noise in MOSFETs
Does this type of CMFB suffer from limitations on output swing?
This is amazing, thank you so much
please kindly upload your video lecture designing ota in subthreshold region or kindly provide your mail id for discussion on this topic
Excellent Class..
I there is a typo in equivalent representation of MOS. The noise source between drain and source should be In2,ch.