Accendo Reliability Webinar Series cover art

All Episodes

Accendo Reliability Webinar Series — 217 episodes

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Title
1

Reliability Management and Leadership

2

Using AI to Detect and Assess Imminent Failure

3

How to Model Switching Systems Perfectly

4

Fundamentals of Supplier Reliability

5

10 Reasons to do FMEAS with AI

6

Fundamentals of Product Warranty

7

Fundamentals of Reliability Maturity

8

Fundamentals of Failure Analysis

9

Parts Count Reliability Prediction

10

Fundamentals of Regression Analysis

11

Software Root Cause Analysis (with Fault Trees)

12

Fundamentals of Life Estimation

13

Fundamentals of Environmental Testing

14

What is Reliability?

15

Fundamentals of Success Testing

16

What is Accelerated Life Testing (ALT)?

17

Engineering Framework to Assess Equipment Reliability

18

The MTBF Sucks Here’s Why

19

Fundamentals of Derating

20

What is Weibull Probability Plotting?

21

Linking Customer Needs to Product Requirements and Robust Design

22

What are ‘Cut Sets’?

23

Fundamentals of Metric Monitoring

24

Confidence is a Measure of You (not our product)

25

Fundamentals of Allocation

26

What is the Lognormal Distribution and How does it Help Me

27

Alternatives to a Long ALT

28

Fundamentals of Ongoing Reliability Testing

29

Fundamentals of Early Field Results

30

What’s Wrong with Using FITs?

31

Fundamentals of System Effectiveness

32

What’s the Difference Between FMEA and FMECA?

33

Fundamentals of Reliability Goals

34

Using Fault Trees to Conduct Root Cause Analysis (RCA)

35

Fundamentals of a Professional Development Plan

36

3 Parameter Weibull Analysis

37

Fundamentals of Pareto Analysis

38

Understanding (how bad) the Exponential Distribution (is)

39

Fundamentals of Hypothesis Testing

40

Using FMEA (or Functional) Block Diagrams to Understand Your Item

41

Fundamentals of Process Capability

42

Using Monte Carlo Simulation

43

Fundamentals of Control Charts

44

AI Product Development and Deployment

45

The MTBF and Modeling System Reliability

46

Fundamentals of Safety Margins

47

How to Get Unstuck

48

Reliability of a ‘K out of N’ System

49

Fundamentals of Lessons Learned

50

Risk 101: Future of Quality

51

What is WeiBayes Analysis?

52

Dealing with Small Sample Sizes

53

Risk Based Auditing

54

Why Accendo Reliability

55

ISO 42001 — 10X Bigger Than ISO 9001

56

What is Fatigue?

57

Reliability as a Process

58

How do I link Process Capability Indices to Number (PPM) Defects?

59

Reliability Data

60

AI Decision Making: ‘Existential’ Threat or Salvation

61

Reliability is More than Testing

62

Understanding Context

63

What is the difference between Design and Process FMEAs?

64

Why You Should Avoid MTBF

65

Using ISO 31000 for Risk Based, Decision Making

66

How Do I Do MTBF Testing?

67

How to Learn ALT

68

Four Ways to Manage Supplier Risk

69

10 Reasons to Do Reliability

70

An Accelerated Life Testing Q&A

71

Communicating as a Reliability Engineer

72

What is ‘Supportability’ and How Does it Relate to Reliability?

73

Selecting a Reliability Method

74

Where does the Bell Curve come from?

75

Building a Reliability Plan

76

What is Highly Accelerated Life Testing (HALT)?

77

The State of Reliability Education

78

What is Accelerated Life Testing or ALT?

79

Design for Reliability – Stressors

80

Why Redundant Systems Aren’t Always Redundant

81

Reliability Occurs at the Point of Decision

82

What is the Weibull Distribution?

83

Focus on Failure Mechanisms

84

What is a ‘Fault Tree’?

85

Being a Great Reliability Engineer

86

What do you see in a ‘Probability’ Plot?

87

Practical Measurement Systems Analysis for Design – Work Smarter

88

Confidence in Reliability

89

Reliability and Maintenance

90

Basic Mathematical Symbols and Stuff

91

Risk Decision Making, Frameworks, and Assessments

92

How to Take the Guess Work out of Expert Judgment

93

How to Check a Regression Fit

94

What is Reliability Growth?

95

Reliability and Safety

96

What is Process Capability Analysis (PCA)?

97

Reliability and Quality

98

What is Statistical Process Control or SPC?

99

Why We Use Statistics

100

Accendo Reliability Mission, Vision, and Business Model

101

Let Me Tell You a Reliability Story

102

Supportability (and FMEAs/FMECAs)

103

Helping Products Survive Transportation

104

Discrete Distributions

105

Fundamentals of Interpreting Test Results

106

Reliability Life Models

107

9 Ways Reliability is Green Engineering

108

Deliberate Reliability Testing

109

Fault Tolerance

110

7+ Basic Quality Tools

111

So What is the Root Cause?

112

The Good, the Bad, and the Ugly Reliability Discussions

113

How to Make a Decision

114

Fundamentals of Design for Reliability

115

10 Reasons to do FMEAs

116

How to Plan an ALT

117

Fixing the Irrelevance of Reliability in Your Organization: Just ask ‘why’

118

Reliability Making Money 2 — Case Study of just looking at a Weibull plot

119

Acceleration Factors with Examples

120

Reliability Making Money

121

Three Approaches to Accelerated Life Testing

122

Looking Forward with Reliability Engineering

123

Reliability Analysis … now what? Part 4

124

Reliability Engineering and Risk Analysis

125

Reliability Analysis … now what? Part 3

126

Preventing Moisture and Corrosion Damage on Electronics in Harsh Conditions

127

6 Essential Reliability Engineering Formulas

128

Reliability Analysis … now what? Part 2

129

Essential Reliability Engineering Techniques

130

Reliability Analysis … now what?

131

Practical Use of Stress-Strength Models to Develop Specifications

132

Essential Reliability Engineering Concepts

133

So what is up with this ‘Bayesian’ analysis stuff

134

The Survivorship Bias Principal

135

Selecting Reliability Engineering Tools

136

The Reliability Value Map. It is a thing.

137

Overview of Life Testing in Minitab

138

What to Do About MTBF Use

139

Optimizing Servicing Intervals and Witchcraft. There actually is a difference.

140

Reliability Engineering versus Quality Engineering

141

PDFs, CDFs, and other ‘Fs’ — What the hell are they?

142

How to Learn Reliability Engineering

143

Weibull Probability Plotting

144

3 Ways to Do Reliability Allocation

145

Why Reliability Engineering Is Important

146

How is Reliability Engineering Changing?

147

3 Steps to Improve Your Reliability Culture

148

Interpreting Standard Testing Results

149

Creating Effective Reliability Graphics

150

Fundamentals of the Cost of Unreliability

151

Fundamentals of Measurement System Analysis

152

What You Need to Know About MTBF

153

Fundamentals of Field Data Analysis

154

Fundamentals of Tolerance Analysis

155

Fundamentals of Monte Carlo Analysis

156

Using Available Weather Data

157

Improve Your Reliability Teaching Skills

158

Fundamentals of Physics of Failure

159

Fundamentals of Reliability Related Standards

160

Fundamentals of Reliability Testing

161

Fundamentals of Human Factors

162

Fundamentals of Stress-Strength Analysis

163

10 Keys for Maximizing the Benefits of Your SPC Program

164

Process Capability, Tolerance, and Reliability

165

Fundamentals of Stress Screening

166

Fundamentals of Environmental and Use Conditions

167

Fundamentals of Sample Size Determination

168

Fundamentals of Weibull Analysis

169

Fundamentals of Hazard Analysis

170

Fundamentals of Cost of Poor Reliability

171

Fundamentals of Root Cause Analysis

172

Fundamentals of Reliability Performance Monitoring

173

A Review of the 2018 ASQ CRE Body of Knowledge

174

Practical Application of DOE

175

Fundamentals of Risk

176

Reliability Integration into the Product Development Process

177

Fundamentals of RBD

178

Fundamentals of ALT

179

Fundamentals of HALT

180

Creating an Effective Reliability Plan

181

Selecting the Right Reliability Tools

182

Fundamentals of FMEA

183

Fundamentals of FRACAS

184

Is Reliability Testing Always Necessary?

185

Reliability Apportionment and How to Do It

186

Basic Steps to Building Your Reliability Plan

187

What To Do When A Customer Requests MTBF

188

Time to Failure Data Analysis for Your Factory Equipment

189

Collecting and Analyzing Your Field Data

190

Predicting the Value of a Reliability Goal in Your Organization

191

Understanding and Controlling Process Variation

192

How to Build Your Influence as a Reliability Engineer

193

Life Cycle Cost Analysis for a Reliability Engineer

194

Does a Certification Make You a Professional Reliability Engineer?

195

How to Create an ALT Plan

196

2016 Status of Reliability Education

197

How to Prepare for the ASQ CRE Exam

198

Exploring Alternatives to MTBF

199

Creating Meaningful Reliability Predictions

200

Asking a Vendor for Reliability Data

201

Creating Unique Reliability Tests

202

Reliability and Statistical Process Control

203

Reliability and Tolerance Analysis

204

Reliability Projects and Programs

205

Reliability Distributions and Their Use

206

R Software and Reliability

207

Making Use of Reliability Statistics

208

Getting Started with Reliability Engineering

209

Select the Right Accelerated Life Test Approach

210

Create a Meaningful Environmental Test Plan

211

Break the “we’ve always done it this way” cycle

212

Building a Reliability Plan

213

Establishing Reliability Goals

214

Intro to Reliability Engineering Management

215

Successful Career in Reliability Engineering

216

SPC Sample Size

217

Finding Value with Reliability Tasks