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GB/T 16849-2023 English PDF

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GB/T 16849-2023: Generic specification of optical amplifier
Status: Valid

GB/T 16849: Evolution and historical versions

Standard IDContents [version]USDSTEP2[PDF] delivered inStandard Title (Description)StatusPDF
GB/T 16849-2023English659 Add to Cart 6 days [Need to translate] Generic specification of optical amplifier Valid GB/T 16849-2023
GB/T 16849-2008English839 Add to Cart 4 days [Need to translate] Generic specification of optical fiber amplifier Obsolete GB/T 16849-2008
GB/T 16849-1997English519 Add to Cart 4 days [Need to translate] Generic specification on optical fibre amplifiers Obsolete GB/T 16849-1997

PDF similar to GB/T 16849-2023


Standard similar to GB/T 16849-2023

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Basic data

Standard ID GB/T 16849-2023 (GB/T16849-2023)
Description (Translated English) Generic specification of optical amplifier
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard M33
Classification of International Standard 33.180.30
Word Count Estimation 34,342
Date of Issue 2023-03-17
Date of Implementation 2023-10-01
Older Standard (superseded by this standard) GB/T 16849-2008
Issuing agency(ies) State Administration for Market Regulation, China National Standardization Administration

GB/T 16849-2023: Generic specification of optical amplifier

---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
ICS33:180:30 CCSM33 National Standards of People's Republic of China Replacing GB/T 16849-2008 General Specifications for Optical Amplifiers Released on 2023-03-17 2023-10-01 implementation State Administration for Market Regulation Released by the National Standardization Management Committee

table of contents

Preface III 1 Scope 1 2 Normative references 1 3 Terms and Definitions 1 4 Abbreviations 23 5 Overview 24 6 categories 25 7 requests 25 8 Reliability test 26 9 Electromagnetic Compatibility Test 28

foreword

This document is in accordance with the provisions of GB/T 1:1-2020 "Guidelines for Standardization Work Part 1: Structure and Drafting Rules for Standardization Documents" drafting: This document replaces GB/T 16849-2008 "General Specification for Optical Fiber Amplifiers": Compared with GB/T 16849-2008, except for structural adjustment and Apart from editorial changes, the main technical changes are as follows: --- Added some terms and definitions of optical amplifier parameters: operating wavelength band (see 3:3), doped fiber amplifier (see 3:4), array Erbium-doped fiber amplifier (see 3:5), multi-core erbium-doped fiber amplifier (see 3:6), semiconductor optical amplifier (see 3:7), Raman fiber amplifier amplifier (see 3:8), remote pump optical amplifier (see 3:12), single-channel optical amplifier (see 3:13), multi-channel optical amplifier (see 3:14), nominal working conditions (see 3:16), co-fiber pumping (see 3:66), foreign fiber pumping (see 3:67), remote pumping unit (see 3:68), remote gain unit (see 3:69), maximum allowable pump output power (see 3:70), minimum pump input power (see 3:71), reverse pumping (see 3:72), co-directional pumping (see 3:73), Raman pumping wavelength range (see 3:79), unamplified input light Power (see 3:80), splice loss (see 3:81), cross gain modulation isolation (see 3:88), gain ripple (see 3:91), gain slope rate (see 3:92), transient (see 3:93), reserved channel (see 3:94), saturated signal (see 3:95), download level (see 3:96), loading Rise time (see 3:97), download fall time (see 3:98), initial gain (see 3:99), final gain (see 3:100), gain offset difference (see 3:101), transient gain response time (see 3:102), transient gain overshoot (see 3:103), transient net gain overshoot (see 3:104), transient gain undershoot (see 3:105), transient net gain undershoot (see 3:106), maximum withstand power (see 3:112), box body Temperature (see 3:115), automatic pump power reduction (see 3:127); --- Changed the definition of the term "gain" (see 3:15, 3:1:1:1 of the:2006 edition), and changed the term "wavelength change" to "gain change "(see 3:24, 3:1:1:9 of the:2006 edition), change the term "small signal gain wavelength variation" to "small signal gain variation" (see 3:1:1:10 of 3:25,:2006 edition), changed the definition of the term "small signal gain stability" (see 3:31,:2006 edition 3:1:1:8 of the:2006 edition), change the term "wavelength band" to "operating wavelength range" (see 3:33, 3:1:1:11 of the:2006 edition), and replace the:2006 edition Change "power level" to "power" (see 3:41, 3:48, 3:49, 3:112, 3:1:1:26, 3:1:1:33, 3:1:1:34, 3:1:1:66), changed the definition of the term "main polarization state" (see 3:64, 3:1:1:32 of the:2006 edition), and changed the term "net open- Changed the term "operating temperature" to "operating ring Ambient (airflow) temperature" (see 3:1:1:52 of the:2006 edition of 3:114); --- Deleted some terms and definitions: power supply and control requirements (see 3:1:1:48 of the:2006 edition), gain cross saturation (see:2006 3:1:2:5 of the:2006 edition), mutual channel interference (see 3:1:2:6 of the:2006 edition), channel increase/decrease (steady-state) gain response (see:2006 version 3:1:2:9), channel increase/decrease instantaneous gain response (see:2006 version 3:1:2:10), channel increase/decrease instantaneous response time (see 3:1:2:11 of the:2006 edition), channel noise figure (see 3:1:2:12 of the:2006 edition), channel signal spontaneous emission noise Coefficient (see 3:1:2:13 of the:2006 edition), signal power behind the output connector (see 3:1:3:1:3 of the:2006 edition), working signal wavelength range (see 3:1:3:1:4 of the:2006 edition), output ASE power level (see 3:1:3:1:5 of the:2006 edition), maximum return Return light power (see 3:1:3:1:6 of the:2006 edition), input ASE power level (see 3:1:3:2:5 of the:2006 edition), equivalent total noise Index (see 3:1:4:11 of the:2006 edition); --- Changed the abbreviations (see Chapter 4, 3:2 of the:2006 edition); ---In the classification of Chinese and English codes, the content of hybrid optical amplifier (HYFA) and remote pumped optical amplifier (ROPA) has been added (see 6:2); ---In the classification, the digital code deletes the contents of the transmitter with optical amplifier (OAT) and the receiver with optical amplifier (OAR) (see 5:2 of the:2006 edition); --- Added environmental conditions, environmental compliance, laser safety, visual inspection and other requirements (see Chapter 7); ---Changed the requirements related to reliability and electromagnetic compatibility (see Chapter 8, Chapter 9, Chapter 7, Chapter 8, Chapter 9 of the:2006 edition): Please note that some contents of this document may refer to patents: The issuing agency of this document assumes no responsibility for identifying patents: This document is proposed by the Ministry of Industry and Information Technology of the People's Republic of China: This document is under the jurisdiction of the National Communications Standardization Technical Committee (SAC/TC485): This document is drafted by: China Information and Communication Technology Group Co:, Ltd:, China Academy of Information and Communications Technology, ZTE Corporation, Wuxi Dekeli Optoelectronics Technology Co:, Ltd: Drafters of this document: Fu Chengpeng, Chen Jun, Song Mengyang, Bu Qinlian, Yu Chunping, Jiang Yi, Le Menghui, Zhao Wenyu, Wu Chengbin, Li Xianqin: The release status of previous versions of this document and the documents it replaces are as follows: ---First published as GB/T 16849-1997 in:1997; ---The first revision in:2008; --- This is the second revision: General Specifications for Optical Amplifiers

1 Scope

This document defines the terms and definitions of optical amplifiers (OA), specifies the classification and requirements of optical amplifiers, and describes the corresponding tests method: This document applies to rare earth element-doped active fiber OA devices, optical amplifier subsystems, and Raman fiber amplifiers (RFA) device design, development, production and testing:

2 Normative references

The contents of the following documents constitute the essential provisions of this document through normative references in the text: Among them, dated references For documents, only the version corresponding to the date is applicable to this document; for undated reference documents, the latest version (including all amendments) is applicable to this document: GB/T 26125-2011 Six restricted substances in electrical and electronic products (lead, mercury, cadmium, hexavalent chromium, polybrominated biphenyls and polybrominated diphenyl ethers) Determination of GB/T 26572-2011 Limit requirements for restricted substances in electrical and electronic products YD/T 1766-2016 Optical transceivers for optical communications - failure criteria for reliability tests of modules YD/T 3127-2016 Hybrid Fiber Amplifier ANSI/ESDA/JEDEC-JS-001-2017 Electrostatic Discharge Sensitivity Test Human Body Model (HBM) Device Rating TelcordiaGR-63-CORE:2012 Network Equipment Manufacturing System Requirements: Physical Protection (NetworkEquipment- TelcordiaGR-468-CORE:2004 General Reliability Assurance Requirements for Optoelectronic Devices of Telecommunications Equipment (GenericReliability TelcordiaGR-1312-CORE::1999 General Specification for Optical Fiber Amplifiers and Proprietary DWDM Systems (GenericRequire-

3 Terms and Definitions

The following terms and definitions apply to this document: 3:1 input reference plane inputreferenceplane For lumped OA, n signals from transmitters Tx1, Tx2, , Txn each have a single wavelength λ1, λ2, , λn is multiplexed by an optical multiplexer (MUX) and delivered to the input of OA, as shown in Figure 1a):

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