Analog for Digital Engineers · All levels
Supply Noise Coupling Paths and PSRR Across Frequency: Review Checklist
Review Checklist for Supply Noise Coupling Paths and PSRR Across Frequency.
Review checklist
Review Checklist for Supply Noise Coupling Paths and PSRR Across Frequency is anchored on PSRR(dB) versus frequency, output spur amplitude at switching harmonics, and supply-induced ENOB/SNDR degradation.. Convert observations into mechanism-backed and owner-bound actions.
Scope, setup, and workload metadata are explicit.
Mechanism classification is evidence-backed.
Ownership and rollback boundary are documented.
Validation matrix includes corner and stress replay checks.
Owners signed: power integrity owner, analog macro designer, package and board engineer, SoC integration owner, post-silicon validation owner.
Analog deep dive
Noise and SI closure is achieved by frequency-aware path analysis, not one-number guard-bands.
Concept diagram
NOISE PATH VIEW
source -> transfer function -> victim sensitivity -> system marginMetric graph
NOISE CLOSURE
path unknown ██████
path classified █████████
validated mitigations ███████Metrics and artifacts to collect
white/1-f noise decomposition
PSRR versus frequency profile
alias-folding sensitivity map
phase-noise to jitter integration summary
Mini case study
A broadband spur issue persisted until teams modeled package and return-path coupling instead of relying on low-frequency PSRR numbers.
Debug branches
Classify deterministic versus random contributors first.
Map dominant transfer path before adding generic filtering.
Use operating-mode-specific aggressor profiles in validation.
Senior review question
Ask: which source-path-victim boundary failed first, and which artifact proves it reproducibly?
Key takeaways
Tie every analog claim to one measurable metric and one proving artifact.
Prefer minimal reversible mitigations with explicit owner and rollback criteria.
Common pitfalls
Treating all noise as one scalar instead of path and frequency dependent behavior.
Changing multiple analog knobs at once and losing causality.
Declaring closure from nominal behavior without stress replay evidence.
Principal analog review addendum
Supply Noise Coupling Paths and PSRR Across Frequency should be reviewed as an end-to-end execution problem spanning architecture, implementation, and integration.
Use PSRR(dB) versus frequency, output spur amplitude at switching harmonics, and supply-induced ENOB/SNDR degradation. as the trigger metric and End-to-end supply-coupling map from board rail to critical analog nodes with PSRR-vs-frequency limits and spur budget signoff. as the proof contract.
Noise and SI closure is path-based: source, transfer, victim sensitivity, and operating envelope. Durable closure comes from explicit assumptions and owner accountability.