Thin film technologies for optoelectronic components in fiber optic communication

A. Perinati
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引用次数: 1

Abstract

'The Asian Routes Towards the Global Information Society' and 'Towards a Strategic Planning for the Global Information Society' will be the forum themes of 'Asia Telecom 97' and 'Telecom Interactice 97' events respectively, to be held by the International Telecommunication Union (ITU) in order to further telecommunication development around the world. International telecommunications network affects our life by keeping us in touch, bringing us world news and underpinning the global economy. Global tele-economy, global information infrastructure, global information society terms are more and more used to indicate the evolution towards an information- driven world where the access to information, communication and technologies is essential to the economic and social development in every country. Telecommunication industry can strongly contribute to this evolution together with broadcasting and computer industry, and fiber optic communications are expected to continue to grow up and share a relevant part of the total telecom market. In 1995 telecom market shown a 3.8 percent worldwide investment growth reaching a $545 billion value. According to 'Kessler Marketing Intelligence (KMI) Corp.' analysis of fiberoptics and multimedia market the amount of cabled fiber installed in U.S. will be around 11 million fiber-km in 1997 and 15 million fiber-km are predicted in the year 2000. Between 1995 and 1998 the undersea industry is estimated to deal with $13.9 billion as additional undersea cable systems investment in the global telecom network. In China beside satellite telecom stations and digital microwave systems 22 fiber optic backbones have been realized and another 23 systems are expected to be built in the Ninth Five-Year National Plan (1996 to approximately 2000) with a total length of nearly 30,000 sheat-km. The study, Fiber and Fiberoptic Cable Markets in China, recently released by KMI Corp. shows that fiber optic cable installation by MPT and other network operators will grow at an annual average rate of 22 percent from 1.3 million fiber-km in 1995 to 3.5 million fiber-km in 2000. The worldwide components market-cable, transceivers and connectors -- $6.1 billion in 1994, is forecasted to grow and show a 19 percent combined annual growth rate through the year 2000 when is predicted to reach $17.38 billion. Fiber-in-the-loop and widespread use of switched digital services will dominate this scenario being the fiber the best medium for transmitting multimedia services. As long as communication will partially replace transportation, multimedia services will push forward technology for systems and related components not only for higher performances but for lower cost too in order to get the consumers wanting to buy the new services. In the long distance transmission area (trunk network) higher integration of electronic and optoelectronic functions are required for transmitter and receiver in order to allow for higher system speed, moving from 2.5 Gb/s to 5, 10, 40 Gb/s; narrow band wavelength division multiplexing (WDM) filters are required for higher transmission capacity through multiwavelength technique and for optical amplifier. In the access area (distribution network) passive components as splitters, couplers, filters are needed together with optical amplifiers and transceivers for point-to-multipoint optical signal distribution: main issue in this area is the total cost to be paid by the customer for basic and new services. Multimedia services evolution, through fiber to the home and to the desktop approach, will be mainly affected by the availability of technologies suitable for component consistent integration, high yield manufacturing processes and final low cost. In this paper some of the optoelectronic components and related thin film technologies expected to mainly affect the fiber optic transmission evolution, either for long distance telecommunication systems or for subscriber network, are presented.
光纤通信中光电元件的薄膜技术
“迈向全球资讯社会的亚洲路线”及“迈向全球资讯社会的策略规划”将分别成为国际电信联盟(ITU)举办的“亚洲电讯97”及“电讯互动97”的论坛主题,以推动全球电讯的发展。国际电信网络通过使我们保持联系,为我们带来世界新闻和支撑全球经济来影响我们的生活。全球远程经济、全球信息基础设施、全球信息社会等术语越来越多地用于表示向信息驱动世界的演变,在这个世界中,获取信息、通信和技术对每个国家的经济和社会发展至关重要。通信业可以与广播和计算机产业一起为这一演变做出巨大贡献,光纤通信预计将继续增长,并在整个电信市场中占有相关份额。1995年,全球电信市场投资增长3.8%,达到5450亿美元。据KMI公司对光纤和多媒体市场的分析,1997年美国的有线光缆安装量将达到1100万公里左右,预计到2000年将达到1500万公里。1995年至1998年期间,海底工业估计将处理139亿美元的额外海底电缆系统投资,用于全球电信网络。在中国,除卫星电信站和数字微波系统外,已建成光纤主干网22条,预计在“九五”期间(1996年至2000年前后)还将建成光纤主干网23条,总长近3万公里。KMI公司最近发布的研究报告《中国光纤和光纤电缆市场》显示,MPT和其他网络运营商的光纤电缆安装将以年均22%的速度增长,从1995年的130万光纤公里增长到2000年的350万光纤公里。全球组件市场——电缆、收发器和连接器——1994年为61亿美元,预计到2000年将以19%的年综合增长率增长,预计将达到173.8亿美元。光纤在环路和交换数字业务的广泛使用将主导这种情况,因为光纤是传输多媒体业务的最佳介质。只要通信将部分取代运输,多媒体服务将推动系统和相关组件的技术,不仅提高性能,而且降低成本,以使消费者想要购买新的服务。在长距离传输区域(主干网络)中,为了实现更高的系统速度,需要发射机和接收机的电子和光电子功能的更高集成度,从2.5 Gb/s移动到5,10,40 Gb/s;窄带波分复用(WDM)滤波器需要通过多波长技术获得更高的传输容量和光放大器。在接入区(配电网)中,分路器、耦合器、滤波器等无源器件与光放大器、光收发器一起用于点对点的光信号分配,这一领域的主要问题是客户为基本业务和新业务支付的总成本。多媒体业务的发展,通过光纤到家庭和桌面的方式,将主要受到组件一致集成、高产量制造工艺和最终低成本的技术可用性的影响。本文介绍了一些光电元件和相关薄膜技术,这些光电元件和薄膜技术预计将主要影响光纤传输的发展,无论是用于长途电信系统还是用于用户网络。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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