HTME

COURSE OVERVIEW

IE0366 : Certified Functional Safety Professional (CFSP) Certified Functional Safety Expert (CFSE)
Certified Functional Safety Professional (CFSP) Certified Functional Safety Expert (CFSE)
OVERVIEW
COURSE TITLE : IE0366 : Certified Functional Safety Professional (CFSP) Certified Functional Safety Expert (CFSE)
COURSE DATE : Nov 10 - Nov 14 2024
DURATION : 5 Days
INSTRUCTOR : Mr. Greg Chantler
VENUE : Al Khobar, KSA
COURSE FEE : $ 7500
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OTHER SCHEDULED DATES
Date : May 06 - May 09 2024 (4 Days) Location : Abu Dhabi, UAE Classroom Fee (US$) : $ 7500 Course Info
Date : Aug 04 - Aug 07 2024 (4 Days) Location : Doha, Qatar Classroom Fee (US$) : $ 7500 Course Info
Date : Feb 09 - Feb 12 2025 (4 Days) Location : Dubai, UAE Classroom Fee (US$) : $ 7500 Course Info
Date : May 05 - May 08 2025 (4 Days) Location : Abu Dhabi, UAE Classroom Fee (US$) : $ 7500 Course Info
Date : Aug 04 - Aug 07 2025 (4 Days) Location : Doha, Qatar Classroom Fee (US$) : $ 7500 Course Info
Date : Nov 10 - Nov 13 2025 (4 Days) Location : Al Khobar, KSA Classroom Fee (US$) : $ 7500 Course Info

Course Description

This practical and highly-interactive course includes real-life case studies and exercises where participants will be engaged in a series of interactive small groups and class workshops. This course provides an overview of process industry safety engineering from the point of view of the risk analysts, process safety coordinators and control systems design engineers. It delivers a complete overview of the functional safety lifecycle. The course reviews process hazard analysis (PHA), consequence analysis, layer of protection analysis (LOPA), safety integrity level (SIL) traget selection, safety requirements specification (SRS) generation, failure rates, device and system reliability, SIF verification, SIF detailed design and operations requirements. This course forms a broad review in preparation for the Certified Functional Safety Professional (CFSP) process industry application engineering exams.During this interactive course, participants will learn the safety instrumented system; the principles of risk management; the safety lifecycle; the likelihood analysis; the tolerable risk; the safety instrumented system (SIS) failure; the failure rate to SIL; the single devices to system; the redundant architectures; the requirements to SIF; the SIF design and verification in the safety lifecycle and the detail design and operation.

TRAINING METHODOLOGY

This interactive training course includes the following training methodologies:

Lectures
Workshops & Work Presentations
Case Studies & Practical Exercises
Videos, Software & Simulators

In an unlikely event, the course instructor may modify the above training methodology for technical reasons.

VIRTUAL TRAINING (IF APPLICABLE)

If this course is delivered online as a Virtual Training, the following limitations will be applicable:

Certificates : Only soft copy certificates will be issued
Training Materials : Only soft copy materials will be issued
Training Methodology : 80% theory, 20% practical
Training Program : 4 hours per day, from 09:30 to 13:30

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