BSI PD IEC GUIDE 115:2023 – TC
$186.33
Tracked Changes. Application of measurement uncertainty to conformity assessment activities in the electrotechnical sector
Published By | Publication Date | Number of Pages |
BSI | 2023 | 74 |
PDF Catalog
PDF Pages | PDF Title |
---|---|
1 | 30480450 |
47 | A-30473229 |
48 | undefined |
50 | English CONTENTS |
51 | FOREWORD |
53 | INTRODUCTION |
54 | 1 Scope 2 Normative references 3 Terms, definitions and symbols 3.1 Terms and definitions |
56 | 3.2 Symbols 4 Application of measurement uncertainty principles 4.1 General |
57 | 4.2 Background |
58 | 4.3 Measurement uncertainty principles – Application of procedures Figure 1 – Application of simple acceptance |
59 | 4.4 Reporting statements of conformity |
60 | Annex A (informative)Measurement uncertainty calculations for product conformity assessment testing A.1 Overview A.2 Guidance on making measurement uncertainty calculations A.2.1 General principles A.2.2 Uncertainty estimation approach A.2.3 Type A evaluation A.2.4 Type B evaluation |
61 | A.2.5 Individual uncertainties A.2.6 Summary of steps when estimating uncertainty Tables Table A.1 – Type B uncertainties |
64 | A.3 Measurement uncertainty examples A.3.1 General A.3.2 Example 1 Table A.2 – Temperature rise significant influencing factors |
65 | A.3.3 Example 2 Table A.3 – Temperature rise influencing factors to the measured value Table A.4 – Temperature rise uncertainty budget |
66 | A.3.4 Example 3 Table A.5 – Input test uncertainty budget |
67 | A.3.5 Example 4 Table A.6 – Input power test uncertainty budget |
68 | A.3.6 Example 5 Table A.7 – Leakage current measurement uncertainty budget |
69 | Table A.8 – Caliper gauge uncertainty budget |
70 | A.3.7 Example 6 Table A.9 – Torque measurement uncertainty budget |
72 | Bibliography |