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EN 61290-4-3:2015

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

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superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

Optical amplifiers - Test methods - Part 4-3: Power transient parameters - Single channel optical amplifiers in output power control

Superseded date

04-02-2022

Published date

20-11-2015

FOREWORD
1 Scope
2 Normative references
3 Terms, definitions and abbreviations
4 Apparatus
5 Test sample
6 Procedure
7 Calculations
8 Test results
Annex A (informative) - Overview of power transient events
        in single channel EDFA
Annex B (informative) - Background on power transient
        phenomena in a single channel EDFA
Annex C (informative) - Slew rate effect on transient
        gain response
Bibliography
Annex ZA (normative) - Normative references to
         international publications with their
         corresponding European publications

IEC 61290-4-3:2015(E) applies to output power controlled optically amplified, elementary sub-systems. It applies to optical fibre amplifiers (OFA) using active fibres containing rare-earth dopants, presently commercially available, as indicated in IEC 61291-1, as well as alternative optical amplifiers that can be used for single channel output power controlled operation, such as semiconductor optical amplifiers (SOA). The object of this standard is to provide the general background for optical amplifier (OA) power transients and its measurements and to indicate those IEC standard test methods for accurate and reliable measurements of the following transient parameters:- Transient power response;- Transient power overcompensation response;- Steady-state power offset;- Transient power response time. The stimulus and responses behaviours under consideration include:- Channel power increase (step transient);- Channel power reduction (inverse step transient);- Channel power increase/reduction (pulse transient);- Channel power reduction/increase (inverse pulse transient);- Channel power increase/reduction/increase (lightning bolt transient);- Channel power reduction/increase/reduction (inverse lightning bolt transient). These parameters have been included to provide a complete description of the transient behaviour of an output power transient controlled OA. The test definition defined here are applicable if the amplifier is an OFA or an alternative OA. However, the description in Annex A of this document concentrates on the physical performance of an OFA and provides a detailed description of the behaviour of OFA; it does not give a similar description of other OA types. Keywords: output power controlled optically amplified elementary sub-systems, optical fibre amplifiers, rare-earth dopants

Committee
CLC/SR 86C
DevelopmentNote
To be read in conjunction with EN 61290-1. (12/2015)
DocumentType
Standard
PublisherName
European Committee for Standards - Electrical
Status
Superseded
SupersededBy

I.S. EN IEC 61291-1:2018 OPTICAL AMPLIFIERS - PART 1: GENERIC SPECIFICATION
EN 61291-2:2016 Optical amplifiers - Part 2: Single channel applications - Performance specification template
BS EN 50152-3-2:2016 Railway applications. Fixed installations. Particular requirements for a.c. switchgear Measurement, control and protection devices for specific use in a.c. traction systems. Current transformers
BS EN 61291-2:2016 Optical amplifiers Single channel applications. Performance specification template
I.S. EN 61291-2:2016 OPTICAL AMPLIFIERS - PART 2: SINGLE CHANNEL APPLICATIONS - PERFORMANCE SPECIFICATION TEMPLATE
EN IEC 61291-1:2018 Optical amplifiers - Part 1: Generic specification

EN 61291-1:2012 Optical amplifiers - Part 1: Generic specification
IEC 61290-3-3:2013 Optical amplifiers - Test methods - Part 3-3: Noise figure parameters - Signal power to total ASE power ratio
IEC 61291-1:2012 Optical amplifiers - Part 1: Generic specification
IEC 61290-4-1:2016 Optical amplifiers - Test methods - Part 4-1: Gain transient parameters - Two-wavelength method

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