BSI PD IEC TR 61292-8:2019
$102.76
Optical amplifiers – High-power amplifiers
Published By | Publication Date | Number of Pages |
BSI | 2019 | 22 |
This document deals with high-power optical amplifiers. It provides general information relating to high-power optical amplifiers with an output power greater than 500 mW for the fibre communication field. It covers the following aspects:
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general information;
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example of the optical amplifier’s configuration realizing high optical output power;
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test method for optical output power and gain;
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considerations on high-power optical amplifiers.
Potential applications of high-power optical amplifiers are briefly reviewed in Annex A.
Informative IEC documents related to high optical power are listed in Annex B.
PDF Catalog
PDF Pages | PDF Title |
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2 | undefined |
4 | CONTENTS |
5 | FOREWORD |
7 | INTRODUCTION |
8 | 1 Scope 2 Normative references 3 Terms, definitions, and abbreviated terms 3.1 Terms and definitions 3.2 Abbreviated terms |
9 | 4 General 5 Configuration 5.1 EDFAs using combined single-mode pump laser diodes Figures Figure 1 – Schematic diagram of EDFA using multiplexed single-mode pump lasers |
10 | Figure 2 – Output characteristics of a high-power EDFA Figure 3 – Schematic diagram of an EDFA using a cascaded Raman resonator |
11 | 5.2 Cladding pumped fibre amplifier 5.2.1 General 5.2.2 Cladding-pumped methodology Figure 4 – Schematic diagram of a cladding-pumped fibre amplifier Figure 5 – Schematic of cladding pumping |
12 | Figure 6 – Schematic structure of end-pumping Figure 7 – Schematic structure of a fibre bundle power combiner |
13 | Figure 8 – V-groove side pumping arrangement Figure 9 – Schematic diagram of a cross section of an example of double-cladding fibre |
14 | Figure 10 – Cross-section of the hole-assisted double cladding fibre Figure 11 – Typical optical output power vs drive current on 980-nm multimode pump laser modules |
15 | 6 Test method Figure 12 – Configuration of double-cladding pumped amplifier Figure 13 – Typical power conversion efficiency (PCE) of erbium – ytterbium co-doped double-clad (DC) fibre amplifier |
16 | 7 Special considerations for high-power optical amplifiers 7.1 Design considerations 7.2 Handling and safety consideration Figure 14 –Test setup to measure optical output power and gain |
17 | Annex A (informative) Application of high-power OAs A.1 General A.2 Power amplifier for FTTH PON systems A.3 Ultra-long-haul DWDM transport system Figure A.1 – Schematic diagram of FTTH system adapted high-power OA |
18 | Annex B (informative)IEC documents on high optical power |
19 | Bibliography |