Functional Safety Certified Expert- Iec 61508/ Iec 61511

Posted By: ELK1nG

Functional Safety Certified Expert- Iec 61508/ Iec 61511
Published 9/2022
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz
Language: English | Size: 1.79 GB | Duration: 6h 27m

Learn Functional Safety from beginning and become a expert

What you'll learn
Functional Safety
IEC 61508 & IEC 61511 Standard, Applicability and Usage Guideline
Hazard Identification using HAZOP, Fault Tree and other techniques. Explained with Industrial Examples
Safety Life Cycle as IEC-61508 and IEC-61511
SIL Verification using Markov Analysis, Simplified Equations, Faul Tree
Requirements
Engineering Background
Description
Functional safety is the most fundamental to every industry to ensure that the work environment is a place free of hazards. There is an ongoing demand of Functional Safety Professional across various industries like Oil & Gas, Petrochemical, Paper, Metals and mining. The main standard of Functional Safety IEC-61508 and IEC-61511 are discussed in detail and also applicability of standards are discussed. Lifecycle of SIL verification and validation also discussed.This course includes in-depth study of:Overview of functional safety and scope of IEC 61511Management of functional safetySafety lifecycle structureRisk evaluation and managementVerification, validation, assessment, and auditsSafety instrumented system (SIS) configuration managementProcess hazard and risk analysisDifferent techniques overviewPrevention and mitigation layers for hazardous eventAllocation of safety functions to protection layersLayers of protection analysis (LOPA) techniques and requirements for protection layersSIS safety requirements specification (SRS)Safety instrumented function (SIF) requirements (Functional and Integrity requiremennts0Application program requirements specificationsSIS design, engineering, and application programmingGeneral requirements and hardware conceptsHardware Fault Tolerance (HFT) conceptSelection of devices per IEC 61508 and IEC 61511Maintenance/engineering interface and testing design requirementsClassification of failuresQuantification of random failures, SIL VerificationApplication program development, design, and testing requirementsSIS testing and factory acceptance test (FAT)Installation, commissioning, and validation requirementsSIS validation planning and site acceptance test (SAT)Application program validation techniquesOperation, maintenance, modifications, and decommissioningRequirements to operate and maintain the SISProof testing and inspection for every SISAll chapters are discussed with practical industrial examples so that users can readily apply the tools and techniques.

Overview

Section 1: Introduction

Lecture 1 Introduction

Section 2: Functional Safety- Module-1

Lecture 2 Definition of Functional Safety

Lecture 3 Risk Reduction and Layers of Protection

Section 3: Safety System Design

Lecture 4 Lecture-1

Lecture 5 Lecture-2

Section 4: Functional Safety Life Cycle

Lecture 6 IEC 61508 Lifecycle

Lecture 7 IEC 61511 Life Cycle

Lecture 8 When to use IEC-61508 / IEC-61511

Section 5: Hazard and Risk Analyis

Lecture 9 Hazard Identification

Lecture 10 FMEA

Lecture 11 HAZOP

Lecture 12 Fault Tree Analysis

Lecture 13 Event Tree Analysis

Lecture 14 Difference between ETA and FTA

Lecture 15 Risk Reduction Techniques

Lecture 16 LOPA

Lecture 17 LOPA with Examples

Lecture 18 SRS

Lecture 19 SIF and SIS

Lecture 20 Different Techniques of Reliability Analysis

Lecture 21 SIL Verification Using Simplified Equation

Lecture 22 SIL Verification Using Markov Analysis

Lecture 23 Markov Analysis-Part 2

Lecture 24 Markov Analysis- Part 3

Section 6: Software Requirements

Lecture 25 Software Requirements as IEC 61511

Section 7: Annexures

Lecture 26 How to read SIL Certificate

Lecture 27 Safety Manual

Lecture 28 Redundancy of Valves

Section 8: Quiz

Anyone interested in Functional Safety, Process Safety, SIL Verification, LOPA,Anyone looking earn Functional Safety Certification