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Tolerance stack-up calculator.

Add up to 12 stacked dimensions, each with its own ± tolerance, and see the worst-case and statistical (RSS) accumulated tolerance. Use it for assembly clearance planning, datum-stack analysis, and detecting when a tight final tolerance is being driven by accumulated mid-stack values.

Stack chain

Add dimensions to the stack.

Enter mean dimension and ± tolerance for each link. Use a negative mean for subtractive directions (e.g., when measuring back from one face to another). Up to 12 rows.

Result

Mean stack
Worst-case ± tolerance
Sum of all individual tolerances
RSS ± tolerance
Root-sum-of-squares (statistical, ±3σ)
Stack range
Send these numbers to a quote →

Worst-case adds tolerances arithmetically. RSS uses statistical accumulation (assumes each tolerance is independent and normally distributed at ±3σ). RSS is appropriate for assemblies where component variation is genuinely random; worst-case is the safer choice when correlation is possible.

When to use which

Worst-case vs RSS.

  • Worst-case for safety-critical: use when assembly failure has high consequences (aerospace, medical, defense). Pessimistic — assumes all tolerances stack against you simultaneously.
  • RSS for production statistical: assumes random independent variation across many parts. Realistic for high-volume production where mean-of-mean centering is enforced through SPC.
  • RSS gives ~30–60% tighter bounds, growing with chain length: for a 6-link chain with equal tolerances, RSS gives √6 = 2.45× single tolerance, vs worst-case 6× single tolerance.
  • Don't mix in correlated dimensions: if two links come off the same datum and shift together, treat them as one combined link, not two independent ones.

For tolerance-cost trade-offs, see tolerance vs cost ladder.

Have a part that needs these tolerances held?

Send your drawing and we'll confirm what we can hold and quote inspection to match. Aerospace, medical, and defense work welcome.

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