| name | msa-gauge-rr |
| description | Measurement System Analysis (MSA) and Gauge Repeatability & Reproducibility (Gauge R&R) — plan, execute, and interpret an MSA study for variable or attribute measurement systems. Use when qualifying a gauge for a new part, validating a measurement system before PPAP, interpreting Gauge R&R results, or auditing MSA studies for adequacy. Covers AIAG MSA 4th edition. |
| license | MIT |
| metadata | {"author":"RBraga01","version":"1.1","iso-9001":"7.1.5","iatf-16949":"7.1.5.1, 7.1.5.2","aiag-reference":"AIAG MSA 4th Edition","domain":"quality-engineering","subdomain":"measurement","industries":"automotive,electronics,aerospace,medical,general","status":"approved","created":"2026-06-06","last_updated":"2026-06-06","updated_by":"migmcc","reviewed_by":"RBraga01","standard_edition":"AIAG MSA 4th Edition (2010)"} |
Measurement System Analysis (MSA) / Gauge R&R
When to use
Use this skill when:
- Qualifying a measurement system for a new part or process (PPAP requirement)
- Interpreting Gauge R&R results — is this gauge acceptable?
- Auditing a supplier's MSA study for correctness and adequacy
- Selecting the right study type for a given measurement situation
- Investigating a quality problem where measurement error may be a factor
- Responding to a customer request for MSA data on a specific characteristic
Prerequisites
- The characteristic to be measured (product or process)
- The gauge or measurement system to be studied
- Production parts spanning the expected process variation (10 parts minimum)
- At least 2 trained appraisers who normally perform the measurement
- The specification (tolerance) for the characteristic
Workflow
Step 1 — Select the MSA study type
| Study type | When to use |
|---|
| Gauge R&R (crossed) | Variable data, 2–3 appraisers, each measures all parts (most common) |
| Gauge R&R (nested) | Variable data, parts are destroyed during measurement (e.g., tensile test) |
| Attribute MSA | Pass/fail, go/no-go, visual inspection — data is not a number |
| Bias study | Accuracy of a single gauge vs. a reference standard |
| Linearity study | Whether gauge accuracy is consistent across its measurement range |
| Stability study | Whether gauge accuracy drifts over time |
For PPAP: Crossed Gauge R&R is required for all variable gauges on special characteristics.
Step 2 — Crossed Gauge R&R study procedure
Setup:
- Minimum 10 parts selected to represent the full process variation range (not cherry-picked from centre of tolerance)
- Minimum 2 appraisers (3 preferred)
- Minimum 2 trials per appraiser per part (3 preferred)
- Parts randomly numbered and labelled — appraisers must not see each other's measurements
- Measurement conditions must match normal production conditions
Standard study design:
- 10 parts × 3 appraisers × 2 trials = 60 measurements
- 10 parts × 2 appraisers × 3 trials = 60 measurements
Execution:
- Appraiser A measures all 10 parts in random order — record results
- Appraiser B measures all 10 parts in random order — record results
- Appraiser C measures all 10 parts in random order — record results
- Repeat the cycle for trial 2 (and trial 3 if applicable)
- Appraisers must not see their own previous results or other appraisers' results during the study
Do NOT:
- Allow appraisers to adjust the gauge between trials
- Use parts that are all near the nominal value (no spread)
- Record only one trial (single measurement per appraiser per part is insufficient)
Step 3 — Interpret the results
%GRR (Gauge R&R as % of Total Variation or % of Tolerance)
| %GRR | Interpretation | Decision |
|---|
| < 10% | Excellent | ✅ Gauge accepted |
| 10% – 30% | Marginal | ⚠️ May be acceptable based on application — requires engineering review and customer approval |
| > 30% | Unacceptable | ❌ Gauge not suitable — investigate and improve before use in production |
Two calculation methods:
- % of Study Variation (% of TV): GRR / Total Variation × 100 — preferred when process is in control
- % of Tolerance: GRR / Tolerance × 100 — use when process capability is unknown or for attribute gauging
For PPAP, %GRR < 30% (tolerance method) is the typical customer acceptance criterion. <10% is the target.
Number of Distinct Categories (ndc)
ndc = 1.41 × (Part Variation / GRR)
| ndc | Interpretation |
|---|
| ≥ 5 | ✅ Gauge can distinguish adequate number of categories |
| 3 – 4 | ⚠️ Gauge can be used for go/no-go decisions only |
| 1 – 2 | ❌ Gauge cannot distinguish parts — unacceptable |
ndc ≥ 5 is required for measurement systems used on special characteristics.
Repeatability vs. Reproducibility
| Component | Description | Common cause |
|---|
| EV (Equipment Variation / Repeatability) | Variation when same appraiser measures same part multiple times | Gauge imprecision, worn parts, environment |
| AV (Appraiser Variation / Reproducibility) | Variation between different appraisers measuring the same part | Training inconsistency, measurement technique, gauge setup |
If EV > AV: investigate gauge (calibration, maintenance, resolution)
If AV > EV: investigate training, measurement procedure, gauge fixture/setup
When %GRR > 30% — improving the measurement system
A result >30% means the gauge is not suitable for production use. Do not proceed to PPAP — investigate and retest. Common root causes and actions:
| Root cause (high EV) | Action |
|---|
| Gauge resolution too coarse | Replace with a gauge of finer resolution (rule: resolution ≤ 10% of tolerance) |
| Gauge worn or damaged | Inspect, recalibrate, or replace the gauge |
| Environmental interference (vibration, temperature) | Move measurement to a stable environment; add fixture if needed |
| Inconsistent part fixturing | Design a repeatable fixture or measurement aid |
| Root cause (high AV) | Action |
|---|
| Measurement technique varies by appraiser | Develop a standardised measurement instruction (WI with photos/video) |
| Gauge difficult to read or position | Redesign fixture; add a datum locator; use a self-positioning gauge |
| Training gap | Retrain all appraisers using the standardised measurement WI; repeat the study |
After implementing improvements: re-run the full study. Do not accept a %GRR > 30% result with a customer waiver unless the characteristic is non-critical and the customer explicitly agrees in writing.
Step 4 — Attribute MSA (pass/fail gauges)
For go/no-go gauges, visual inspection, and any pass/fail decision:
Expanded attribute study (recommended for PPAP):
- 50 parts spanning the full range (include parts near the accept/reject boundary)
- 3 appraisers × 3 trials per part = 450 measurements
- Calculate % agreement (within appraiser and between appraisers)
- Calculate kappa statistic (Cohen's kappa ≥ 0.9 is acceptable)
Short method (minimum acceptable):
- 20 parts × 2 appraisers × 2 trials
- 90% agreement within and between appraisers required
- Include borderline parts near the specification limit
Step 5 — Audit an existing MSA study
When reviewing a supplier's or internal MSA, check:
Validation criteria
An MSA study is acceptable for PPAP when:
- %GRR < 30% (tolerance method) — <10% preferred
- ndc ≥ 5
- Study conducted with production appraisers using production gauges in production conditions
- Parts selected from the full process variation range
- Results documented with part numbers, appraiser IDs, gauge ID, and calibration reference
Common mistakes
- Parts selected near the nominal value only — artificially inflates ndc and understates GRR
- Appraiser A re-measures all parts immediately — not the same as separate trials (must separate in time)
- Using metrology lab gauges for an MSA of a production line gauge — study must use the same gauge in the same conditions
- %GRR > 30% submitted in PPAP without explanation or customer waiver
- Gauge calibration expired at time of MSA study — study is invalid
- ndc < 5 on a special characteristic — automatic PPAP finding in IATF audits
- Attribute MSA with only 2 appraisers and no borderline parts — study has no discriminating power
Output Format
At the start of each use, ask the user:
"How would you like to receive the output?
A — Structured Markdown (formatted tables and sections, ready to copy)
B — Plain tables (simplified structure for Excel or Word)
C — Narrative report (flowing text for a formal document or email)
Default: A."
Adapt all output sections to the chosen format. If the platform or session context already defines a format preference, skip this question.
Changelog
| Version | Date | Author | Change |
|---|
| 1.0 | 2026-06-06 | @RBraga01 | Initial release |
| 1.1 | 2026-06-06 | @migmcc | Added improvement guidance for %GRR > 30% — root cause table for high EV and high AV with corrective actions |