BS EN IEC 62442-1:2018 – TC:2020 Edition
$186.33
Tracked Changes. Energy performance of lamp controlgear – Controlgear for fluorescent lamps. Method of measurement to determine the total input power of controlgear circuits and the efficiency of controlgear
Published By | Publication Date | Number of Pages |
BSI | 2020 | 58 |
IEC 62442-1:2018 is available as /2 which contains the International Standard and its Redline version, showing all changes of the technical content compared to the previous edition. IEC 62442-1:2018 defines a measurement and calculation method of the total input power for controlgear-lamp circuits when operating with their associated fluorescent lamp(s). The calculation method for the efficiency of the lamp controlgear is also defined. This document applies to electrical controlgear-lamp circuits consisting only of the controlgear and the lamp(s). It is intended for use on DC supplies up to 1 000 V and/or AC supplies up to 1 000 V at 50 Hz or 60 Hz. This second edition cancels and replaces the first edition published in 2011. This edition constitutes a technical revision and has been harmonized with IEC 62442-2 and IEC 624423.
PDF Catalog
PDF Pages | PDF Title |
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34 | undefined |
37 | Annex ZA(normative)Normative references to international publicationswith their corresponding European publications |
39 | English CONTENTS |
41 | FOREWORD |
43 | 1 Scope 2 Normative references |
44 | 3 Terms and definitions |
46 | 4 General 4.1 Applicability 4.2 Ballast lumen factor |
47 | 4.3 Dimmable controlgear 4.4 Multi-power and/or multi-number-lamp controlgear 4.5 General notes on tests 4.6 Sampling of controlgear for testing 4.7 Size of the test sample 4.8 Conditioning of lamps 4.9 Test voltages and frequencies |
48 | 4.10 Sensor and network connections 5 Method of measurement and calculation of total input power of controlgear�lamp circuits and the efficiency of controlgear 5.1 Correction for ballast lumen factor 5.2 Method of measurement Tables Table 1 – Typical nominal electricity supply details for some regions |
49 | 5.3 Measurement and calculation of the total input power of magnetic controlgear�lamp circuits 5.4 Calculation of the efficiency of electromagnetic controlgear 5.5 Measurement and calculation of the total input power of electronic controlgear�lamp circuits |
50 | 5.6 Calculation of the efficiency of electronic controlgear 5.7 Measuring the standby power |
51 | Annex A (normative) Energy performance measurement setup A.1 Measurement setup for electromagnetic controlgear A.2 Measurement setup for electronic controlgear A.2.1 Measurement of the total input power Figures Figure A.1 – Measurement of electromagnetic controlgear-lamp circuits |
52 | A.2.2 Measuring method of standby power A.2.3 Light output measurement Figure A.2 – Measurement of AC supplied electroniccontrolgear-lamp circuits Figure A.3 – Test setup for measuring standby power |
53 | Figure A.4 – Side view of light output measurement system Figure A.5 – Top view of light output measurement system |
54 | A.2.4 Distance to lamp related to lamp length: explanations |
55 | Figure A.6 – Configuration of lamp and photocell sensor |
56 | Annex B (informative) Application of the reference ballast when assessing lamps in electronic operation B.1 Calculation of the reference ballast impedance B.2 Method of adjusting the lamp power |
57 | Bibliography |