Market Overview: Optical Transceivers: Market Shares and Forecasts, Worldwide, 2014 to 2020


Posted May 15, 2015 by pramodsing4

MRRSE.Com Announces addition of new report"Optical Transceivers"to its database

 
Albany, New York, May 05, 2015 : Market Research Reports Search Engine (MRRSE) has announced the addition of the report “ Optical Transceivers: Market Shares, Strategies, and Forecasts, Worldwide, 2014 to 2020”. According to this Wintergreen Research study, the global optical transceivers market’s revenue was recorded at US$3.2 billion in 2013 and is anticipated to be US$9.9 billion by 2020.

The global optical transceivers market will be driven by the cost-effectiveness and widening availability of 40 Gbps, 100 Gpbs, and 400 Gbps devices. The upcoming devices in the global optical transceivers market are less expensive, more compact, and utilize less power. Furthermore, the widespread use of 100 Gbps devices along with the elevated level of Internet traffic will greatly change communications infrastructure markets.
The global optical transceivers market is driven by the increasing adoption of high-speed serial transceivers. Servers, communications technology, and other electronic systems rely on high-speed serial transceivers. The worldwide adoption of the Internet is boosting the growth of mega datacenters. These data centers support social networking, streaming video, online commerce, and cloud services.
Optical transceiver products in the market are compatible with Fiber Channel, Ethernet, PON, SONET/SDH/OTN standards. These products usually operate on data rates of 10 Gbps, 40 Gbps, and 100 Gbps. Transmitters or transceivers can operate in distances ranging from a very short span to metro access, campus, and long-haul reaches. The outstanding performance delivered by optical transceivers has made them popular among end users.
The market leaders in the global optical transceivers industry are Oplink, Sumitomo, NEC, Photonics, Emcore Source, Fujitsu Avago, Finisar JDS Uniphase, and Electric. Leading vendors in the global optical transceivers market offer a wide range of products, which feature innovative technology. Optical module manufacturers provide solutions to all major networking equipment vendors globally. Additionally, key vendors have taken a leading role to transform the data- and tele- communications equipment market.
Browse Full Report With TOC : http://www.mrrse.com/optical-transceivers-market
Currently, designers are optimizing existing 40 Gbps modules to boost the 40 Gbps system capacity. Two system line cards are required to create a 40 Gbps link, the first one is for short reach and another for the line-side transponder.
Even though the global optical transceivers market will more than triple its value by 2020 as compared to total revenue generated in 2013, the lack of trained personnel will suppress this market. Consultants with extensive and specialized experience are required to achieve optical component network installation, design, maintenance, and updation. Optical components are needed to equip data centers, metro access, FTTx, core networks, long-haul services, and WAN.
Table of Contents

Optical Transceivers Executive Summary 34
Optical Transceivers Market Driving Forces 34
Transmitter / Transceivers 35
Global Adoption Of Online Commerce, Streaming Video, Social Networking, And Cloud Services 35
Optical Transport Network (OTN) / Optical Transceiver Components 36
10Gbps Optical Transceivers 37
Data Center Optical Transceivers 37
40Gbps Coherent Channel 37
100Gbps Modules vs. 40Gbps Modules 38
Optical Transceiver Market Driving Forces 39
Ongoing Transition To Media For Communications 43
Optical Transceiver Key Themes 44
Optical Transceivers Market Shares 45
Optical Transceiver Market Forecasts 47

1. Optical Transceiver Market Description And Market Dynamics 50
1.1 Global Adoption of the Internet 50
1.2 Growth Of The Global Economy 52
1.2.1 Global Economic Conditions Impact Optical Transceivers 53
1.3 Enterprise Information Accessed By Mobile Workers 54
1.3.1 Cloud Technology Brings Rapid Time to Value 56
1.4 Optical Transceiver Applicable Networks 57
1.4.1 Carrier Networking 58
1.4.2 Data Centers 60
1.4.3 Data Center Storage 61
1.5 Transceiver Definitions 61
1.6 Customer Plans for Optical Network Implementation 62
1.6.1 AT&T As An Optical Component Customer 62
1.6.2 AT&T Fiber Networks Provide Backbone Connectivity To Data Center 63
1.6.3 AT&T Voice Over IP (VoIP) 63
1.6.4 AT&T Optical Network Investment 65
1.6.5 Financial Centers Invest in Optical Networking 66
1.6.6 JPMorgan Chase spends $500 Million To Build A Data Center 66
1.6.7 Verizon Investment in Optical Networks 67
1.6.8 Verizon Investment in Data Center Networks 68
1.6.9 NTT Com Operation Of A Route That Connects Europe and Japan 68
1.6.10 Deutsche Telekom Application Delivery Network 71
1.7 Exponential Improvement In Silicon Manufacturing: Chips Contain 1 Billion Transistors 72
1.7.1 Moore’s law and Silicon Manufacturing 73
1.7.2 Failure of Chip I/O To Scale With Exponential Improvement In Silicon Manufacturing 73
1.7.3 Luxtera 74
1.7.4 Ikanos Next Generation VDSL Communications Processor 75
1.7.5 Ikanos Highly Integrated VDSL Communications Processor 77

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2 Optical Transceivers Market Shares And Market Forecasts 78
2.1 Optical Transceivers Market Driving Forces 78
2.1.1 Transmitter / Transceivers 79
2.1.2 Global Adoption Of Online Commerce, Streaming Video, Social Networking, And Cloud Services 79
2.1.3 Optical Transport Network (OTN) / Optical Transceiver Components 80
2.1.4 10Gbps Optical Transceivers 81
2.1.5 Optical Transceiver Market Driving Forces 81
2.1.6 Ongoing Transition To Media For Communications 85
2.1.7 Optical Transceiver Key Themes 86
2.2 Optical Transceivers Market Shares 87
2.2.1 Finisar 105
2.2.2 Finisar Wavelength Selective Switches 106
2.2.3 Finisar Transmitters, Transceivers, and Transponders for Datacom and Telecom Applications 106
2.2.4 Finisar Transmitter / Transceivers 107
2.2.5 NeoPhotonics 108
2.2.6 JDSU Vertical Integration Results In Flexibility, Scalability 109
2.2.7 JDS Uniphase 109
2.2.8 Sumitomo Electric 113
2.2.9 Avago Technologies 113
2.2.10 Avago Technologies 114
2.2.11 Fujitsu Optical Components 116
2.2.12 Source Photonics 117
2.2.13 Source Photonics and China Mobile Communications Corporation (CMCC) 118
2.2.14 Oclaro 118
2.2.15 Oclaro Transceivers 119
2.2.16 Oclaro Extends Technology Leadership Position 119
2.2.17 Delta 120
2.2.18 NEC 120
2.2.19 Reflex’s 100GbE 122
2.2.20 Cube Optics 123
2.2.21 Transmode XFP Uses 123
2.2.22 Datacom Optical Transceivers, Market Shares 124
2.2.23 Telecom Optical Transceivers, Market Shares 127
2.3 Optical Transceiver Market Forecasts 129
2.3.1 Datacom and Telecom Optical Transceiver Segments 131
2.3.2 Data Center Optical Transceivers 135
2.3.3 Datacom Fibre Channel vs. Ethernet 137
2.3.4 Telecom Transceivers 140
2.3.5 Optical Transceiver 1G, 10G, 40G, 100G, and 400G Market Forecasts 142
2.3.6 Optical Transceiver 1G Market Forecasts 143
2.3.7 Optical Transceiver 10G Market Forecasts 145
2.3.8 Using 10 Gbps Devices To Implement 40 Gbps and 100 Gbps Port Capacity 148
2.3.9 Need For More Compact Pluggables Than The CFP 149
2.3.10 Tunable XFP Optical Transceivers 149
2.3.11 Optical Transceiver 40G Market Forecasts 150
2.3.12 Optical Transceiver 100G Market Forecasts 152
2.3.13 100Gbps Optical Transceivers 155
2.3.14 Optical Transceiver 400G Market Forecasts 156
2.3.15 Rising Internet Traffic Provides Need for High Speed Networks 158
2.3.16 Optical Transceiver Form Factors 163
2.3.17 CFP MSA for 40 and 100 GiGbps 165
2.3.18 Component Needs For Next-Generation Fixed And Mobile Access 166
2.3.19 40G, 100GBPS Transceiver Shipments Evolving; Utilities Hone In On M2M 167
2.3.20 Managing 10GBPS While Preparing For 40Gbps and 100Gbps 169
2.3.21 Networks Moving To Embrace An Ethernet Protocol 171
2.3.22 Modulation 174
2.3.23 40Gbps Coherent Channel 175
2.3.24 100Gbps Modules vs. 40Gbps Modules 176
2.3.25 Carrier Networking 176
2.3.26 Enterprise Networking 177
2.3.27 Return on Investment (ROI) of Component Needs For Next-Generation Fixed And Mobile Access Networks 177
2.3.28 Technological Trends Impact Data Center and Carrier Push for 40 Gbps and 100Gbps Transponders179
2.3.29 Types of Transceiver 181
2.4 Optical Component Transceiver Prices 182
2.4.1 Avago Technologies Fiber Optic Transceiver Cost structures 189
2.4.2 Measuring Cost -Per-Bit-Per-Kilometer 190
2.5 Optical Transceiver Regional Market Segments 191
2.5.1 Finisar Net Regional Sales 193
2.5.2 JDSU Regional Revenue 194
2.5.3 Oclaro Regional Sales 195


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Last Updated May 15, 2015