DFT / ATPG · All levels

Coverage Closure: Silicon PPA Impact

Silicon PPA Impact for Coverage Closure.

Silicon impact

Pattern quality decisions impact production escapes and test time.

Area drivers

  • compression logic footprint

  • hold buffers from scan paths

Power drivers

  • shift toggling peaks

  • capture burst stress

Timing impact

  • test-clock skew

  • shift/capture path sensitivity

PD consequences

  • chain route detours

  • placement hotspots near test logic

Verification burden

  • pattern replay correlation

  • diagnosis reproducibility

diagram
SILICON IMPACT - Coverage Closure
area/power/timing/yield tradeoff

Takeaways

  • Signoff needs silicon evidence

  • Ownership clarity accelerates closure

Design option snapshot

diagram
CHAIN BALANCE - Coverage Closure

chain length
  ^
  |      o        o
  |   o    o  o
  | o
  +-----------------------------> chain index

Tight spread reduces shift time and hold-fix burden.

DFT deep dive

ATPG quality comes from fault model choice plus legal constraints, not raw pattern volume alone.

Concept diagram

diagram
ATPG FLOW

fault model -> constraints -> generation -> simulation -> coverage closure -> signoff

Metric graph

diagram
COVERAGE GAP

target coverage
  ^
  |      o before closure
  |          o after fixes
  +---------------------> iteration

Reports and artifacts

  • fault model coverage

  • untestable class report

  • constraint legality errors

  • pattern signoff memo

Mini case study

Transition coverage stalled due to clock constraints mismatch; updated at-speed capture definitions recovered target.

Debug branches

  • Classify untestable faults

  • Diff ATPG constraints each run

  • Pair coverage with pattern budget

Senior review question

Ask: what evidence proves this DFT decision is safe for production?

Key takeaways

  • State metric, lot/corner context, and pattern tag with every claim.

  • Treat timing, power, and quality as one signoff problem.

Common pitfalls

  • Chasing coverage without legality checks.

  • Ignoring test-power side effects of pattern changes.

  • Debugging silicon without reproducible tags.

Principal DFT review addendum

Coverage closure uses targeted analysis of undetected faults, constraints, and design-for-test hooks to close quality gaps without exploding pattern volume.

Metric: coverage gap to target, dominant undetected classes, closure iteration count