Intermediate

DPMO Calculator — Defects Per Million Opportunities

Enter defects, units inspected, and opportunities per unit to calculate DPMO, the Six Sigma process sigma level, and process yield.
Number of ways a defect can occur in one unit
DPMO
500

Defects per million opportunities

Sigma level (σ)
4,79 σ
Process yield
99,95%
Total opportunities
10 000
Defect rate
0,05%
Sigma level: 4,79σ: 5σ (excellent)
Step by step
  1. 1

    Total opportunities

    1 000 × 10 = 10 000
  2. 2

    Defect ratio

    5 ÷ 10 000 = 0,0005
    Fraction of all opportunities that produced a defect.
  3. 3

    DPMO

    0,0005 × 1,000,000 = 500
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DPMO = (defects ÷ (units × opportunities)) × 1,000,000. The sigma level equals Φ⁻¹(1 − DPMO/10⁶) + 1.5, where the +1.5 is the long-term shift assumed by Six Sigma. A 3σ process has 66,807 DPMO and 93% yield; a 6σ process has just 3.4 DPMO and 99.99966% yield.

Formulė
DPMO = (Defects ÷ (Units × Opportunities)) × 1,000,000; Sigma = Φ⁻¹(1 − DPMO÷10⁶) + 1.5
How this is calculated

DPMO (Defects Per Million Opportunities) is the standard metric in Six Sigma quality management for comparing process performance on a common scale. An "opportunity" is any point in a process where a defect could occur. Total opportunities equal the number of units multiplied by the opportunities per unit. DPMO is then defects divided by total opportunities, scaled to one million: DPMO = (D ÷ (U × O)) × 1,000,000.

The Six Sigma level (σ) converts DPMO to a standard normal score using the inverse normal CDF plus the conventional ±1.5σ long-term shift: sigma = Φ⁻¹(1 − DPMO/1,000,000) + 1.5. This shift accounts for the fact that a real process mean drifts over time. The formula links DPMO to how many standard deviations the process mean sits from the nearest specification limit: a Six Sigma process produces at most 3.4 DPMO.

Process yield is the percentage of defect-free opportunities: yield = (1 − DPMO/1,000,000) × 100%. The sigma-level gauge runs from 0 (very poor) to 6 (world-class). Typical manufacturing operates at 3–4σ; highly reliable industries (aerospace, medical devices) target 5–6σ.

Dažnai užduodami klausimai

A Six Sigma process produces at most 3.4 defects per million opportunities (assuming the long-term ±1.5σ mean shift). That corresponds to a process yield of 99.99966%. In practice very few processes reach this level.

An opportunity is any point, step, component, or characteristic where a failure to meet the specification is possible. For a form, each field is one opportunity. For a circuit board, each solder joint is one opportunity. Be consistent across batches for valid comparisons.

At 3σ (66,807 DPMO, ≈93.3% yield) the process is considered below average for most manufacturing. At 4σ (6,210 DPMO, ≈99.4% yield) it meets many commercial standards. At 6σ (3.4 DPMO, 99.99966% yield) it is world-class.

Taip pat žinomas kaip

defects per million opportunities
six sigma dpmo
sigma level calculator
process yield calculator
dpmo to sigma level
quality defect metric
six sigma process capability

APA

TG we-Calculate Editorial Team. (2026). DPMO Calculator — Defects Per Million Opportunities [Online calculator]. TG we-Calculate. https://we-calculate.com/lt/calculator/dpmo-calculator

Chicago

TG we-Calculate Editorial Team. "DPMO Calculator — Defects Per Million Opportunities." TG we-Calculate. 2026. https://we-calculate.com/lt/calculator/dpmo-calculator.

IEEE

TG we-Calculate Editorial Team, "DPMO Calculator — Defects Per Million Opportunities," TG we-Calculate, 2026. [Online]. Available: https://we-calculate.com/lt/calculator/dpmo-calculator

BibTeX

@misc{wecalculate_dpmo_calculator, title = {DPMO Calculator — Defects Per Million Opportunities}, author = {{TG we-Calculate Editorial Team}}, howpublished = {\url{https://we-calculate.com/lt/calculator/dpmo-calculator}}, year = {2026}, note = {TG we-Calculate} }

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