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Analog IC Design - Essential Insights - Coggle Diagram
Analog IC Design - Essential Insights
Part1: Opamp
L2: Two-stage Opamp and Miller Compensation
DC characteristic: bias, CMFB (diff-pair, CS)
Frequency response: Miller compensation
Miller effect
Zeros
p-z doublet
Miller with additional SF, CG
Miller with cascode 1st stage
L4: Other OPA structures & general analog issues
Advanced structures
Multi path
Nested Miller
Gain boosting
General Analog Issues (삭제, 시간없음)
PSRR
Noise
Matching
L1: Opamp Fundamentals and Simple Opamps
Cascode for high Ro (telescopic, folded cascode)
DC characteristic: Input/Output common range, bias for wide CMR, CMFB for fully differential
Frequency response: BW, Stability (signal, CMFB)
L3: Transient Response & Output Stage
Transient response
Linear settling, PM vs. Peaking
Slew rate
Output stage
Huijsing amp (+Ringamp bias)
L5: Design Example #1
Ex1-1) Single-ended CT amp design with folded cascode OTA: bias, gain, signal stability, CMFB stability, transient response, test bench
Ex1-2) Single-ended CT amp design with Huijsing amp
Part2: Discrete-time Analog
(Sampling and SC amps)
L6: SC Circuits-Part1: Sampling
Sampling, Design considerations
Dynamic amps for SC applications (Ring, FIA)
L7: SC Circuits-Part2: SC Amplifiers
Charge conservation, SC Amp, MDAC, SC Integrator, SC CMFB
L8: Design Example #2
SC gain amp
Ex2-1) Flip-around structure
Ex2-2) Charge redistribution structure
loop gain, stability (signal, CMFB), settling behavior (slew, exp), SC CMFB transient, etc