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Criterion
Paper illustration for PDCA Cycle.
Operations
PDCA Cycle
Paper illustration for Hypothesis-Driven Troubleshooting.
Engineering
Hypothesis-Driven Troubleshooting
Paper illustration for Kaizen Event.
Operations
Kaizen Event
Paper illustration for Fault Isolation.
Engineering
Fault Isolation
Purposedifferent
For an improvement that still has to prove itself in everyday work, the method runs it through small learning loops. It connects planning, checking, and standardization into a repeatable learning mode.When systems fail unexpectedly, spontaneous attempts often produce more noise than insight. Hypothesis-driven Troubleshooting translates symptoms into testable assumptions and makes troubleshooting learnable.For a tightly scoped process segment with noticeable waste, the method bundles shared energy for change. It suits situations that call for fast learning loops and visible adjustments.In technical failures, the visible symptom often gets mixed up with the actual cause. Fault Isolation narrows the fault space and progressively reduces which part of the system is truly affected.
Complexitydifferent
LowMediumMediumMedium
Timedifferent
1 h bis mehrere Wochen30-240 min0.5-5 Tage30-180 min
Participantsdifferent
1-81-64-101-6
Formatdifferent
Workshop + asyncWorkshop + asyncWorkshopWorkshop + async
Outputdifferent
PDCA Log, Experiment Plan, Learning Outcome, Standard ChangeHypothesis Log, Test Plan, Evidence Notes, Diagnosis SummaryKaizen Charter, Waste List, Improvement Experiments, Standard Work UpdateFault Isolation Map, Test Log, Excluded Hypotheses, Narrowed Fault Area
Tagsno overlap
Continuous improvementLeanExperiments
TroubleshootingProblem solvingDiagnosis
LeanContinuous improvementOperations
TroubleshootingDiagnosisEngineering
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