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GB/T 28511.1-2024 English PDF

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GB/T 28511.1-2024: Integrated optical path devices based on planar lightwave circuit - Part 1: Optical power splitter based on planar lightwave circuit(PLC) technology
Status: Valid

GB/T 28511.1: Historical versions

Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 28511.1-2024609 Add to Cart 5 days Integrated optical path devices based on planar lightwave circuit - Part 1: Optical power splitter based on planar lightwave circuit(PLC) technology Valid
GB/T 28511.1-2012329 Add to Cart 3 days Integrated optical path devices based on planar light wave circuit -- Part 1: Optical power splitter based on PLC technology Valid

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YD/T 2554.1   GB/T 9771.1   GB/T 20186.1   GB/T 28511.2   GB/T 28504.3   GB/T 28504.2   

Basic data

Standard ID: GB/T 28511.1-2024 (GB/T28511.1-2024)
Description (Translated English): Integrated optical path devices based on planar lightwave circuit - Part 1: Optical power splitter based on planar lightwave circuit(PLC) technology
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: M33
Classification of International Standard: 33.180.10
Word Count Estimation: 30,333
Date of Issue: 2024-10-26
Date of Implementation: 2025-02-01
Older Standard (superseded by this standard): GB/T 28511.1-2012
Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration

GB/T 28511.1-2024: Integrated optical path devices based on planar lightwave circuit - Part 1: Optical power splitter based on planar lightwave circuit(PLC) technology


---This is an excerpt. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.), auto-downloaded/delivered in 9 seconds, can be purchased online: https://www.ChineseStandard.net/PDF.aspx/GBT28511.1-2024
ICS 33.180.10 CCSM33 National Standard of the People's Republic of China Replaces GB/T 28511.1-2012 Planar waveguide integrated optical circuit devices Part 1. Optical power splitter based on planar lightguide (PLC) Released on October 26, 2024 Implementation on February 1, 2025 State Administration for Market Regulation The National Standardization Administration issued

Table of Contents

Preface III Introduction V 1 Scope 1 2 Normative references 1 3 Terms and Definitions 1 4 Abbreviations 3 5 categories 3 5.1 Classification by number of input/output ports 3 5.2 Classification by optical interface type 3 6 Technical Requirements 4 6.1 Optical properties 4 6.2 High power transmission performance requirements 5 6.3 Appearance requirements 5 6.4 Environmental Compliance 5 7 Test Method 6 7.1 Test Environment 6 7.2 Test conditions 6 7.3 Working Bandwidth 7 7.4 Insertion loss 10 7.5 Directionality 12 7.6 Channel Uniformity 13 7.7 Polarization-dependent loss 13 7.8 Return Loss 14 8 Reliability Test 15 8.1 Reliability test environment requirements 15 8.2 Reliability test requirements 15 8.3 Failure criteria 17 9 Inspection Rules 17 9.1 Inspection categories 17 9.2 Factory Inspection 17 9.3 Type inspection 18 10 Marking, packaging, transportation and storage 19 10.1 Signs 19 10.2 Packaging 19 10.3 Transportation 19 10.4 Storage 19 Appendix A (Informative) Schematic diagram of device packaging structure 20 A.1 Adapter-type optical splitter 20 A.2 Plug-type optical splitter 22 A.3 Pigtail Optical Splitter 23 Preface 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 is Part 1 of GB/T 28511 Planar Waveguide Integrated Optical Devices. GB/T 28511 has been published as follows part. --- Part 1.Optical power splitters based on planar lightguide (PLC); --- Part 2.Dense Wavelength Division Multiplexing (DWDM) filters based on arrayed waveguide grating (AWG) technology. This document replaces GB/T 28511.1-2012 "Planar lightguide integrated optical circuit devices Part 1.Planar lightguide (PLC) based Compared with GB/T 28511.1-2012, in addition to structural adjustments and editorial changes, the main technical changes are as follows. a) Modified some terms and definitions. Optical power splitter (see 3.1,.2012 edition 3.1), channel insertion loss/insertion loss (see 3.6, 3.5 of the.2012 edition), channel uniformity (see 3.8, 3.7 of the.2012 edition), polarization-dependent loss (see 3.9,.2012 edition) 3.8 of.2012), definition of return loss (see 3.10, 3.9 of.2012 edition); added some terms and definitions. PLC devices (see 3.4), PLC components (see 3.5), jumpers (see 3.11); b) Added a chapter on “Abbreviations” (see Chapter 4); c) The classification by operating bandwidth has been deleted (see 4.1 of the.2012 edition); the classification by optical interface type has been added (see 5.2); d) Added 1×2, 1×12, 1×128, and 1×256 categories and corresponding indicators, and changed 1×4, 1×8, 1×16, 1×24, Parameters and notes for 1×32 and 1×64 (see Table 1, Table 1 of the.2012 edition); e) Added 2×2, 2×12, 2×128, and 2×256 categories and corresponding indicators, and changed 2×4, 2×8, 2×16, 2×24, Parameters and notes for 2×32 and 2×64 (see Table 2, Table 2 of the.2012 edition); f) Added high power transmission performance requirements (see 6.2); g) Added packaging structure (see 6.3); h) The appearance requirements have been changed (see 6.3, 6.1 of the.2012 edition); i) Changed the environmental compliance requirements (see 6.4, Chapter 8 of the.2012 edition); j) The description of the test environment has been changed (see 7.1, 6.2 of the.2012 edition); k) Changed the requirements for broadband light sources in test equipment (see 7.2.2, 6.3.2 of the.2012 edition), optical power meters (see 7.2.3, 6.3.4 of the.2012 edition), requirements for polarization controllers (see 7.2.4, 6.3.5 of the.2012 edition), and requirements for spectrum analyzers (See 7.2.5, 6.3.6 of the.2012 edition), added requirements for high-power light sources in test equipment (see 7.2.8), return loss test The requirements for the test equipment (see 7.2.9) and the requirements for the scrambling unit in the test equipment (see 6.3.3 of the.2012 edition) and the device lead terminals are deleted. Requirements for optical fiber (cable) length (see 6.3.8 of the.2012 edition); l) Modified some test methods. operating bandwidth (see 7.3, 6.7 of the.2012 edition), insertion loss (see 7.4, 6.4.2), Directivity (see 7.5, 6.5 of the.2012 edition), Channel Uniformity (see 7.6, 6.6 of the.2012 edition), Polarization Dependent Loss (See 7.7, 6.8 of the.2012 edition); Return loss (See 7.8, 6.9 of the.2012 edition); m) Changed the mechanical shock, variable frequency vibration, optical fiber distortion, optical fiber side pull, optical fiber cable retention, low temperature storage, high temperature and high humidity storage Test conditions; the name of high temperature storage has been changed (see Table 4, Table 3 of the.2012 edition); n) The failure criteria (8.3, Table 3 of the.2012 edition) have been changed; o) Type inspection has been changed (see 9.3, 9.2 of the.2012 edition); p) Added marking requirements (see 10.1.2), pollution control marking (see 10.1.3), and handling methods for overdue storage (see 10.4). Please note that some of the contents of this document may involve patents. The issuing organization of this document does not assume the 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 was drafted by. China Information and Communications Technology Group Co., Ltd., China Academy of Information and Communications Technology, and LongMei Communication Technology (Shenzhen) Co., Ltd., Henan Shijia Photonics Technology Co., Ltd. The main drafters of this document are. Ma Weidong, Kong Xiangjian, Song Mengyang, Liu Wenjun, Liu Deqiang, Ma Guangpeng, and Wu Yuanda. The previous versions of this document and the documents it replaces are as follows. ---First published in.2012 as GB/T 28511.1-2012; ---This is the first revision.

introduction

Planar optical waveguide integrated optical circuit devices are a core device of optical communication information technology. The device is manufactured based on planar optical waveguide technology and can realize It can now distribute and transmit the power and wavelength of light wave signals. Grid (AWG) dense wavelength division multiplexing (DWDM) filter, etc. Carry out the work of formulating standards for planar optical waveguide integrated devices, unify and standardize planar optical waveguide integrated devices. The key parameters of planar optical waveguide integrated devices are conducive to promoting the standardized development of the relevant industrial chain of planar optical waveguide integrated devices in my country. GB/T 28511 is intended to standardize the technical requirements, test methods, reliability tests, inspection rules and markings, and packaging of planar optical waveguide integrated optical circuit devices. The requirements for packaging, transportation and storage are planned to consist of two parts. --- Part 1.Optical power splitters based on planar light waveguide (PLC). The purpose is to specify planar light waveguide optical power splitters Technical requirements, test methods, reliability tests, inspection rules, as well as marking, packaging, transportation and storage. --- Part 2.Dense Wavelength Division Multiplexing (DWDM) filters based on arrayed waveguide grating (AWG) technology. The purpose is to specify Technical requirements, test methods, reliability tests, and inspection of arrayed waveguide grating (AWG) dense wavelength division multiplexing (DWDM) filters Inspection rules as well as marking, packaging, transportation and storage. Planar waveguide integrated optical devices Part 1. Optical power splitter based on planar lightguide (PLC) 1 Scope This document defines the terms and Definitions, abbreviations, specifies requirements for optical characteristics, transmission performance, packaging structure, etc., describes corresponding test methods, specifies inspection rules, Marking, packaging, transportation and storage, etc. This document applies to the design, development, production and inspection of single-mode fiber-coupled PLC optical splitter equalizing devices and components. 2 Normative references The contents of the following documents constitute the essential clauses of this document through normative references in this document. For referenced documents without a date, only the version corresponding to that date applies to this document; for referenced documents without a date, the latest version (including all amendments) applies to This document. GB/T 191 Pictorial symbols for packaging, storage and transportation GB/T 2828.1 Sampling procedures for inspection by attributes Part 1.Sampling plans for batch inspection based on acceptance quality limit (AQL) GB/T 18311.2-2001 Fiber optic interconnecting devices and passive components Basic test and measurement procedures Part 3-2.Inspection and measuring polarization dependence of single-mode fiber optics GB/T 20440-2006 Technical requirements for dense wavelength division multiplexers/demultiplexers GB/T 26572 Limit requirements for restricted substances in electrical and electronic products GB/T 39560 (all parts) Determination of certain substances in electrical and electronic products SJ/T 11364-2014 Labeling Requirements for Restricted Use of Hazardous Substances in Electrical and Electronic Products components) 3 Terms and Definitions The following terms and definitions apply to this document. 3.1 Optical power splitter opticalpowersplitter Optical passive devices used to realize power coupling and distribution functions of optical signals. 3.2 An optical power splitter manufactured using planar optical waveguide technology. 3.3 operating bandwidth The optical wavelength range that meets the optical performance index requirements of PLC optical splitters.
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