Shopping Cart

No products in the cart.

BS EN IEC 60068-3-1:2023

$102.76

Environmental testing – Supporting documentation and guidance. Cold and dry heat tests

Published By Publication Date Number of Pages
BSI 2023 20
Guaranteed Safe Checkout
Category:

If you have any questions, feel free to reach out to our online customer service team by clicking on the bottom right corner. We’re here to assist you 24/7.
Email:[email protected]

IEC 60068-3-1:2023 is available as IEC 60068-3-1:2023 RLV which contains the International Standard and its Redline version, showing all changes of the technical content compared to the previous edition.IEC 60068-3-1:2023 provides guidance regarding the performance of cold and dry heat tests. This third edition cancels and replaces the second edition published in 2011. This edition constitutes a technical revision. This edition includes the following significant technical changes with respect to the previous edition: a) information relating to specimen temperatures has been revised; b) information relating to tests of multiple specimens has been revised; c) the effect of air density has been added; d) a recommendation for corrective actions regarding IR radiation has been added; e) the requirements for the mounting and supports of the specimen have been revised.

PDF Catalog

PDF Pages PDF Title
2 undefined
4 European foreword
Endorsement notice
5 English
CONTENTS
6 FOREWORD
8 1 Scope
2 Normative references
3 Terms and definitions
9 4 Selection of test procedures
4.1 General background
4.1.1 General
4.1.2 Ambient temperature
4.1.3 Specimen temperatures
4.1.4 Non heat-dissipating specimens
4.1.5 Heat-dissipating specimens
10 4.2 Mechanisms of heat transfer
4.2.1 Convection
11 Figure 1 – Experimental data on the effect of airflow on the surface temperature of a wire-wound resistor – Radial airflow
12 Figure 2 – Experimental data on the effect of airflow on the surface temperature of a wire-wound resistor – Axial airflow
13 4.2.2 Radiation
Figure 3 – Temperature distribution on a cylinder with homogeneous heat generationin airflow of velocities (0,5, 1 and 2) m · s−1
14 4.2.3 Thermal conduction
4.2.4 Forced air circulation
4.3 Test chambers
4.3.1 General
15 4.3.2 Methods of achieving the required conditions in the test chamber
4.4 Measurements
4.4.1 Temperature
4.4.2 Air velocity
Table 1 – Influence parameters when testing heat-dissipating specimens
16 Annex A (informative) Effect of airflow on chamber conditions andon surface temperatures of test specimens
A.1 Calculation
A.2 Specimen temperature
A.3 Gradient between incoming and outgoing air
18 Bibliography
BS EN IEC 60068-3-1:2023
$102.76