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Pengendalian Proses Statistik×Analisis Mode Kegagalan dan Efek (FMEA)×
BidangDesain EksperimenDesain Eksperimen
KeluargaProcess / pipelineProcess / pipeline
Tahun asal1924–19311949 (military); widespread industrial adoption 1970s–1980s
PencetusWalter A. ShewhartU.S. Military / NASA (formalized by MIL-P-1629, 1949)
TipeProcess monitoring and quality control methodProactive risk analysis technique
Sumber perintisShewhart, W. A. (1931). Economic Control of Quality of Manufactured Product. Van Nostrand. ISBN: 978-0873890762Stamatis, D. H. (2003). Failure Mode and Effect Analysis: FMEA from Theory to Execution (2nd ed.). ASQ Quality Press. ISBN: 978-0873895989
AliasSPC, statistical quality control, process control charting, Shewhart controlFMEA, Failure Modes and Effects Analysis, FMECA, Failure Mode Effects and Criticality Analysis
Terkait66
RingkasanStatistical Process Control (SPC) is a data-driven quality method that uses statistical techniques — primarily control charts — to monitor a manufacturing or service process over time. By distinguishing natural process variation (common cause) from unusual, actionable variation (special cause), SPC enables practitioners to maintain processes in a stable, predictable state and to detect problems early, before defective output reaches customers.Failure Mode and Effects Analysis (FMEA) is a structured, proactive risk management technique used to identify potential failure modes in a system, process, or product design, evaluate their consequences, and prioritize corrective actions before failures occur. Originally developed for the U.S. military in 1949 and later adopted by NASA, automotive, and manufacturing industries, FMEA is now a cornerstone quality-engineering tool embedded in standards such as AIAG-VDA and ISO 9001-aligned processes.
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ScholarGateBandingkan metode: Statistical Process Control · Failure Mode and Effects Analysis. Diakses 2026-06-17 dari https://scholargate.app/id/compare