SMPTE EG 2069-2012 SMPTE ST 297 Optical SDI Networks.pdf
《SMPTE EG 2069-2012 SMPTE ST 297 Optical SDI Networks.pdf》由会员分享,可在线阅读,更多相关《SMPTE EG 2069-2012 SMPTE ST 297 Optical SDI Networks.pdf(52页珍藏版)》请在麦多课文档分享上搜索。
1、 Copyright 2012 by THE SOCIETY OF MOTION PICTURE AND TELEVISION ENGINEERS 3 Barker Avenue, White Plains, NY 10601 (914) 761-1100 Approved August 1, 2012 Table of Contents Page Foreword . 2 Intellectual Property 2 Introduction 2 1 Scope . 3 2 Optical SDI Networks . 3 2.1 Optical Components . 3 3 Opti
2、cal Data Transmission . 12 3.1 Laser Modulation 12 3.2 Encoding/Decoding 12 3.3 Pathological Patterns . 12 4 Optical System Architecture . 13 4.1 Optical Fiber . 13 4.2 Fiber Connectors 17 4.3 Handling . 22 4.4 Splicing . 23 5 Fiber Optic Multiplexing 24 5.1 Time Division Multiplexing (TDM) 24 5.2 W
3、avelength Division Multiplexing (WDM) 24 6 SFP Modules 27 6.1 Pin Assignment 28 6.2 EEPROM 29 6.3 Digital Diagnostic Monitoring . 29 6.4 SFP Labeling 29 7 Link Budgeting . 30 7.1 Power Budget . 30 7.2 Calculating Link Distance . 32 8 System / Network Evaluation . 35 8.1 Receiver Testing 35 8.2 Trans
4、mitter Testing 38 8.3 System Testing 39 9 Safety and Regulatory Requirements . 41 Annex A Simple Optical Transmitter Design (Informative) 42 Annex B Simple Optical Receiver Design (Informative) 44 Annex C Bibliography (Informative) . 45 Annex D Glossary of Terms (Informative) 46 Page 1 of 52 pages S
5、MPTE EG 2069:2012 SMPTE ENGINEERING GUIDELINE SMPTE ST 297 Optical SDI Networks SMPTE EG 2069:2012 Page 2 of 52 pages Foreword SMPTE (the Society of Motion Picture and Television Engineers) is an internationally-recognized standards developing organization. Headquartered and incorporated in the Unit
6、ed States of America, SMPTE has members in over 80 countries on six continents. SMPTEs Engineering Documents, including Standards, Recommended Practices, and Engineering Guidelines, are prepared by SMPTEs Technology Committees. Participation in these Committees is open to all with a bona fide intere
7、st in their work. SMPTE cooperates closely with other standards-developing organizations, including ISO, IEC and ITU. SMPTE Engineering Documents are drafted in accordance with the rules given in Part XIII of its Operations Manual. SMPTE EG 2069 was prepared by Technology Committee 32NF. Intellectua
8、l Property At the time of publication no notice had been received by SMPTE claiming patent rights essential to the implementation of this standard. However, attention is drawn to the possibility that some of the elements of this document may be the subject of patent rights. SMPTE shall not be held r
9、esponsible for identifying any or all such patent rights. Introduction International standards for the real-time transmission of video, audio, data and metadata over optical digital interfaces have been in existence for a number of years. SMPTE ST 297 standardizes the requirements for a “Serial Digi
10、tal Fiber Transmission System for SMPTE ST 259, SMPTE ST 344, SMPTE ST 292-1 and SMPTE ST 424 Signals” which cover all SMPTE SDI rates up to and including 3 Gb/s. The design, installation, setup and evaluation of an optical digital interface used in professional broadcast applications, differs from
11、a typical coax (copper), digital interface and from optical interfaces used in datacom / telecom enterprise or carrier systems. Different optimizations in the network components used for optical connectivity for SDI interfaces must be considered in order to ensure a robust, reliable Optical digital
12、network. This Engineering Guideline outlines the key components of an optical digital Interface developed in accordance with SMPTE ST 297. It documents methods and best practice for the design, installation, setup and evaluation of SMPTE ST 297 optical digital interfaces, and illustrates how the rob
13、ustness of an optical SDI link can be evaluated. SMPTE EG 2069:2012 Page 3 of 52 pages 1 Scope This engineering guideline provides guidance on the implementation of SMPTE ST 297 optical SDI networks in the following areas: Network: - Basics components of an optical network - Multimode versus Single
14、mode fiber - Link budget how to calculate, important factors - Differences between Optical SDI interfaces and components and datacom interfaces and components - Issues arising from the use of non-optimized ST 297 optical components - Optical attenuators why are they required and when to use them - O
15、ptical isolators why are they required and when to use them Evaluation of an optical system and its components: - Test and measurement equipment - Test and measurement methodology - Important test parameters - Ensuring interoperability 2 Optical SDI Networks As broadcasters upgrade their facilities
16、to support the carriage and distribution of higher frame rate formats such as 1080p50/60; image formats with increased dynamic range such as 12-bits for digital cinema; the carriage of stereoscopic 3D image formats; “Quad-Full HD” images etc, an increasing number of fiber optic systems are being dep
17、loyed. Fiber based systems offer a number of advantages over coax based systems, including high performance over long link distances, virtually unlimited bandwidth, reduced sensitivity to electrical interference and smaller lighter trunking. To deploy a robust optical network, careful selection and
18、evaluation of the components is required. 2.1 Optical Components A basic optical transmission system consists of several components illustrated in the block diagram shown in Figure 1. The main components are: a) transmitter, containing the optical source and a means of modulating the optical output
19、from the source with the signal to be transmitted; b) the transmission medium; in this case, the optical fiber; c) a receiver, containing the photo-detector which converts the received optical power back into the electrical waveform; SMPTE EG 2069:2012 Page 4 of 52 pages Figure 1 Basic Optical Trans
20、mission System The following sections explore the main components of an optical transmission system as well as the different form factors used in a typical deployment. 2.1.1 Transmitters Optical transmitters are devices that include an optical source and signal conditioning electronics to inject a s
21、ignal into a fiber. The type of optical source used in the transmitter will affect the performance and ultimately the distance a signal can travel within the fiber. Although several types of optical sources have been (and are still used), in data transmission, lasers are the predominant sources in o
22、ptical SDI transmitters. See Annex A for more details on transmitter design. 2.1.1.1 Lasers Lasers are predominantly used as sources in an optical transmission system. LASERs, an acronym Light Amplification by the Stimulated Emission of Radiation produce a coherent light with a narrow spectral width
23、 through, as the name implies, stimulated emission. Applying current to a semiconductor laser excites electrons to produce photons with a very specific wavelength and phase. These photons collect in a cavity where they reflect off opposing mirrors to travel back and forth through the lasing medium.
24、In the process, they stimulate other electrons and can cause the emission of more photons of the same wavelength and phase. A cascade effect occurs, resulting in the propagation of many photons of the same wavelength and phase. Coherent light is emitted from two opposite faces. The front face couple
- 1.请仔细阅读文档,确保文档完整性,对于不预览、不比对内容而直接下载带来的问题本站不予受理。
- 2.下载的文档,不会出现我们的网址水印。
- 3、该文档所得收入(下载+内容+预览)归上传者、原创作者;如果您是本文档原作者,请点此认领!既往收益都归您。
下载文档到电脑,查找使用更方便
10000 积分 0人已下载
下载 | 加入VIP,交流精品资源 |
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- SMPTEEG20692012SMPTEST297OPTICALSDINETWORKSPDF

链接地址:http://www.mydoc123.com/p-1046263.html