Advanced Product Quality Planning is the framework of procedures and techniques used to develop products. Test.
Design Failure Modes & Effects Analysis and Failure Modes, Effects & Criticality Analysis are a step-by-step approach to identify and…
Design Review Based on Failure Modes is a focused approach of mitigating change risk within the product and process design….
Process Failure Modes and Effects Analysis is a step-by-step approach to identify and manage the risks of failures within the…
Production Part Approval Process is a standardized process in the automotive and aerospace industries that helps manufacturers and suppliers communicate…
Design for Manufacturing and Assembly is a combination of two methodologies; Design for Manufacture, which means the design for ease…
Lean Six Sigma – A structured and disciplined approach to making fact-based decisions that cover the DMAIC phases: Define; Measure;…
Design of experiments (DOE) – provides a systematic method to determine the relationship between factors affecting a process and the…
Reliability Engineering describes a focused approach to complete Reliability Engineering methods and how they will benefit your organization
Functional Safety describes how to implement a vehicle level functional safety program, create a HARA, and understand the interactions within…
Measurement System Analysis is an experimental and mathematical method of determining how much the variation within the measurement process contributes…
Statistical Process Control is a scientific visual method used to monitor, control and improve processes by eliminating special cause variation…
Fault Tree Analysis is a systematic, deductive (top-down), graphical methodology for defining a single specific undesirable event and determining all…
Machine Failure Modes and Effects Analysis is a methodical approach for identifying all possible equipment failures in a manufacturing or…
Root Cause Analysis – 8D is a methodical problem-solving process that covers the three common stages of correction: ⦁ Act…
QSB will provide a summary of how to assess shop floor manufacturing systems. Training will include control of nonconforming products,…
Poka-yoke is a technique for avoiding simple human error in the workplace. Also known as mistake-proofing, goof-proofing, and fail-safe work…
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Process Awareness
Ability and knowledge to participate in completing the FMEA Process
LEVEL 1
Competency
Ability and knowledge to lead a team in the FMEA Process
LEVEL 2
Proficient
Ability to teach and mentor Participants and Team Leads in the FMEA Process
LEVEL 3
Expert
Ability to lead an organization implementing FMEA
LEVEL 4
Please visit ReliatrainGov.com for more information about Government Services
Design for Manufacturing and Assembly is a combination of two methodologies; Design for Manufacture, which means the design for ease…
Process Failure Modes and Effects Analysis is a step-by-step approach to identify and manage the risks of failures within the…
Design Review Based on Failure Modes is a focused approach of mitigating change risk within the product and process design….
Design Failure Modes & Effects Analysis and Failure Modes, Effects & Criticality Analysis are a step-by-step approach to identify and…
Please visit ReliatrainGov.com for more information about Government Services
Process Failure Modes and Effects Analysis is a step-by-step approach to identify and manage the risks of failures within the…
Design Review Based on Failure Modes is a focused approach of mitigating change risk within the product and process design….
Design Failure Modes & Effects Analysis and Failure Modes, Effects & Criticality Analysis are a step-by-step approach to identify and…
Please visit ReliatrainGov.com for more information about Government Services
ISO 26262 Training Program
Functional Safety Basics ISO 26262 (FSB)
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COURSE DESCRIPTION
FSB (Functional Safety Basics) is an organized set of steps that will ensure your product development system fully comprehends Functional Safety elements and integrates ISO- 26262 standards into your organization’s best practices. This Functional Safety course comprehends industry best practices for safety readiness and organizes them into disciplined and logical steps.
Functional Safety is an overriding set of principles that ensures your organization comprehends risks caused by malfunctioning Electrical/Electronics (E/E) systems. Functional Safety is a subset of an organization’s System Safety processes. The ISO- 26262 standard is the guideline that defines and establishes the steps necessary to ensure that you have comprehended proper safety standards for E/E systems.
COURSE OBJECTIVES
This course is intended to provide an overview on Functional Safety. At the end of this course you should be able to:
• Define how Functional Safety is a subset of overall System Safety
• Define how the International Standard ISO-26262 impacts your organization’s Functional Safety program
• Define key definitions for Functional Safety
• Define how functions are assessed and defined in the ASIL levels
• Define how to conduct a HARA (Hazard Analysis and Risk Assessment)
COURSE OUTLINE
Functional Safety Basics provides the necessary background and tools to understand how to meet critical ISO- 26262 requirements and integrate these requirements upstream into your organizations Functional Safety systems.
This course will cover the following Functional Safety items:
• Functional Safety Analyses - Identify failure causes and effects of faults in safety-critical Items
• HARA – Hazard Analysis and Risk Assessment - Method to identify and categorize hazardous events of Items and to derive safety goals and ASILs
• ASIL - Automotive Safety Integrity Level - Used to specify Item's necessary requirements of ISO 26262 – QM, A, B, C, D
• Functional Safety Audit - examine Safety Plan and work products to verify that the Functional Safety Process requirements have been met
• Functional Safety Case (or Safety Case)- item safety requirements are complete and satisfied by evidence compiled from work products of the safety activities during development – reviewed collection of documents
• Functional Safety Concept - Specification of FSRs allocated to architectural elements and the interaction necessary to achieve the safety goals
• Functional Safety Requirement (FSR) - independent safety behavior or safety measures
• Safety Plan - manage and guide the execution of the functional safety activities of a project including dates, milestones, tasks, deliverables, responsibilities and resources
• Safety Goal - A top-level safety requirement derived from the HARA
• Technical Safety Requirement (TSR) – implementation specific requirements from TSRs that can be allocated to Software and Hardware elements
At the end of the training the participant will be required to take quizzes that test proficiency and complete a course survey based on the course material and the instructor. ReliaTrain uses the results of the quizzes and surveys to update the training to provide the best experience to participants.
COURSE PREREQUISITES
This is a Level One foundation training module and does not have required prerequisite training or experience. However, this course is a Prerequisite for higher level (Competency, Proficient, and Expert) FMEA Certification.
COURSE RECOMMENDED PARTICIPANTS
This course is intended for OEM’s and Suppliers in the areas of product design, systems engineering, product development, and quality.
This FSB training program is intended for all industries including but not limited to:
Commercial
Medical
Utilities
Aerospace
Consumer Lifestyle Products
Civil Engineering
Tooling and Equipment
Oil and Gas
Trains & Railroad Equipment
Military [DOD]
Government
Phones & Personal Devices
ReliaTrain offers mentoring, facilitation, and training support for Product and Process Development based on Quality and Reliability industry standards. ReliaTrain provides step-by-step methodologies that can be tailored to your organizational requirements. Let ReliaTrain experts support implementation of FSB methodology at your company.