BSI PD IEC TR 63037:2019 – TC:2020 Edition
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Tracked Changes. Electrical interface specification for self ballasted lamps and controlgear in phase-cut dimmed lighting systems
Published By | Publication Date | Number of Pages |
BSI | 2020 | 80 |
PDF Catalog
PDF Pages | PDF Title |
---|---|
42 | undefined |
44 | CONTENTS |
46 | FOREWORD |
48 | INTRODUCTION |
49 | 1 Scope 2 Normative references 3 Terms, definitions, abbreviated terms and symbols 3.1 Terms and definitions |
51 | 3.2 Abbreviated terms and symbols |
53 | 4 General description 5 General requirements 5.1 Voltage rating 5.2 Frequency rating 5.3 Marking of controlgear |
54 | 6 Description of the lighting system and its components 6.1 Wiring method 6.2 Wiring diagram 7 Specifications 7.1 General Figures Figure 1 – Example of wiring diagram |
55 | 7.2 Electrical characteristics during the on-state of a lighting system 7.2.1 General 7.2.2 Electrical characteristics for leading edge dimming method |
56 | Figure 2 – Timing leading edge dimming method |
57 | Tables Table 1 – Nominal mains voltage 100 V; frequency 50 Hz or 60 Hz Table 2 – Nominal mains voltage 120 V; frequency 50 Hz or 60 Hz Table 3 – Nominal mains voltage 200 V; frequency 50 Hz or 60 Hz Table 4 – Nominal mains voltage 230 V; frequency 50 Hz or 60 Hz |
58 | Table 5 – Nominal mains voltage 277 V; frequency 50 Hz or 60 Hz Table 6 – Slew rate for voltage decrease across the phase-cut dimmer |
59 | Table 7 – Nominal mains voltage 100 V; frequency 50 Hz or 60 Hz Table 8 – Nominal mains voltage 120 V; frequency 50 Hz or 60 Hz Table 9 – Nominal mains voltage 200 V; frequency 50 Hz or 60 Hz |
60 | 7.2.3 Electrical characteristics for trailing edge dimming method Table 10 – Nominal mains voltage 230 V; frequency 50 Hz or 60 Hz Table 11 – Nominal mains voltage 277 V; frequency 50 Hz or 60 Hz |
61 | Figure 3 – Timing trailing edge dimming method |
62 | Table 12 – Nominal mains voltage from 100 V to 277 V; frequency 50 Hz or 60 Hz |
63 | Table 13 – Nominal mains voltage 100 V; frequency 50 Hz or 60 Hz Table 14 – Nominal mains voltage 120 V; frequency 50 Hz or 60 Hz |
64 | Table 15 – Nominal mains voltage 200 V; frequency 50 Hz or 60 Hz Table 16 – Nominal mains voltage 230 V; frequency 50 Hz or 60 Hz |
65 | 7.3 Electrical characteristics during the off-state of a lighting system Table 17 – Nominal mains voltage 277 V; frequency 50 Hz or 60 Hz |
66 | 7.4 Audible noise 7.5 Ghosting Table 18 – Currents and voltages for controlgear during the electronic off-state |
67 | 7.6 Flicker of light output 7.7 Dimming range 7.8 Maximum number of cycles Table 19 – Light output when connected to a dimmer |
68 | 8 Test procedures 8.1 General 8.2 Parameters 8.3 Tests for leading edge dimmable devices 8.3.1 General 8.3.2 Test related to the non-conducting phase Table 20 – Parameters for testing purposes |
69 | 8.3.3 Test related to the conducting phase and to the transition from the non-conducting to the conducting phase 8.4 Tests for trailing edge dimmable devices 8.4.1 General 8.4.2 Test related to the conducting phase Figure 4 – Test setup for testing the conducting phase |
70 | 8.4.3 Test related to the transition from the conducting phase to the non-conducting phase 8.4.4 Test related to the non-conducting phase 8.5 Tests for characteristics during electronic off-state Figure 5 – Test setup for the transition from conducting to the non-conducting phase |
71 | 8.6 Testing audible noise 8.6.1 General 8.6.2 Test setup Figure 6 – Test setup for the non-conducting phase |
72 | Figure 7 – Test enclosure Figure 8 – Geometry of microphone placement in relation to the DUT |
73 | 8.6.3 Test procedures 8.7 Testing ghosting 8.8 Measurement method for determining flicker |
74 | 8.9 Measurement method for determining dimming range Figure 9 – Test setup for determination of RMLO |
76 | Annex A (informative) Voltage shapes to be used for tests A.1 General A.2 Waveform description Figure A.1 – Waveform of AC voltage Figure A.2 – Waveform of AC voltage source |
77 | Annex B (informative) Equivalent phase-cut dimmer circuit Figure B.1 – Schematic diagram of EC_D circuit |
78 | Bibliography |