Optical Transceivers Market by Manufacturers,Types,Regions and Applications Research Report Forecast to 2022

“Optical Transceivers Industry”
WiseGuyReports.Com Publish a New Market Research Report On –“ Optical Transceivers Market by Manufacturers,Types,Regions and Applications Research Report Forecast to 2022”.


The vendors in the optical transceivers industry have invested in high-quality technology and processes to develop leading edge broadband network capability.

Internet, enterprise augmented reality, and IoT Drive optical network adoption as the mega data centers are poised for significant growth to support trillion-dollar app markets. Global adoption of the Internet is driving rapid growth of the mega datacenter and the need for very high speed network transmission. Optical transceivers are used to upgrade telecommunications networks and launch very large mega data centers. The development of innovative products is essential to keeping and growing market share.

An optical transceiver is a single, packaged device that works as a transmitter and receiver. An optical transceiver is used in an optical network to convert electrical signals to optical signals and optical signals to electrical signals. Optical transceivers are widely deployed in optical networking for broadband. Optical transceiver manufacturers test to ensure that their optical transceivers have compliance with the defined specifications. Testing of key optical parameters: transmitter optical power and receiver sensitivity is a big deal.

“Optical transceiver markets are driven by the use of broadband in every industry. Video, Internet adoption, and tablets drive demand for broadband. Markets are influenced by apps, augmented reality. IoT, the move to cloud computing and the adoption of smart phones by 9.5 billion people by 2020. Mega data centers that support online commerce, streaming video, social networking, and cloud services for every industry are expected to adopt optical transceivers as a fundamental technology. Software as a Service (SaaS) is a primary offering that will leverage optical transceivers in this mega data center.”



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The global optical transceiver market at $4.6 billion in 2015 up dramatically from $3.2 billion in 2013 is anticipated to grow to $41.1 billion by 2022 driven by the availability and cost effectiveness of 100 Gbps, and 400 Gbps devices. Next generation optical transceiver devices use less power, are less expensive, and are smarter and smaller. The adoption of widespread use of the 100 Gbps devices, followed by 400 Gbps devices and the vast increases in Internet traffic are core to helping manage change in the communications infrastructure markets.

Companies Profiled

Selected Market Leaders

  • Finisar
  • Broadcom
  • Fujitsu
  • Sumitomo
  • NEC
  • Emcore
  • Oplink Communications
  • Furukawa Electric
  • Lumentum
  • Oclaro
  • Source Photonics
  • NeoPhotonics
  • Innolight Technology
  • Accelink Technologies
  • NTT

Market Participants

  • 3SP Group
  • Accelink
  • ACON
  • Agilent Technologies
  • Analog Devices
  • Innolight Technology Corporation
  • Luna Innovations / Advanced Photonix
  • Menara Networks
  • Molex / Oplink
  • Champion Optical Network Engineering, LLC (Champion ONE)



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Table Of Contents – Major Key Points

1. Optical Transceiver Market Description And Market Dynamics 48
1.1 Optical Transceiver Definition 48
1.1.1 Internet, Enterprise Augmented Reality, and IoT Drives Optical Network Adoption 48
1.1.2 Always-On, High Data-Throughput Connectivity 51
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 55
1.3.1 Cloud Technology Brings Rapid Time to Value 56
1.4 Optical Transceiver Applicable Networks 58
1.4.1 Carrier Networking 59
1.4.2 Data Centers 60
1.4.3 Data Center Storage 61
1.5 Transceiver Definitions 62
1.6 Customer Plans for Optical Network Implementation 62
1.6.1 Optical Components 63
1.6.2 Fiber Networks Provide Backbone Connectivity To Data Center 63
1.6.3 Voice Over IP (VoIP) 64
1.6.4 Optical Network Investment 66
1.6.5 Financial Centers Invest in Optical Networking 66

2 Optical Transceivers Market Shares And Market Forecasts 68
2.1 Optical Transceivers Market Driving Forces 68
2.1.1 Transmitter / Transceivers 69
2.1.2 Mega Datacenter Online Commerce, Streaming Video, Social Networking, And Cloud Services 69
2.1.3 Optical Transport Network (OTN) / Optical Transceiver Components 70
2.1.4 100 Gbps Optical Transceivers 71
2.1.5 Optical Transceiver Market Driving Forces 72
2.1.6 Ongoing Transition To Media For Communications 76
2.1.7 Optical Transceiver Key Themes 77
2.2 Optical Transceivers Market Shares 78
2.2.1 Finisar 96
2.2.2 Finisar Wavelength Selective Switches 97
2.2.3 Finisar Transmitters, Transceivers, and Transponders for Datacom and Telecom Applications 97
2.2.4 Finisar Transmitter / Transceivers 98
2.2.5 NeoPhotonics 99
2.2.6 Lumentum Vertical Integration Results In Flexibility, Scalability 100
2.2.7 Lumentum 101
2.2.8 Sumitomo Electric 104
2.2.9 Broadcom 104
2.2.10 Broadcom Technologies 105
2.2.11 Fujitsu Optical Components 106
2.2.12 Source Photonics 107
2.2.13 Source Photonics and China Mobile Communications Corporation (CMCC) 108
2.2.14 Oclaro 108
2.2.15 Oclaro Extends Technology Leadership Position 111
2.2.16 NEC 111
2.2.17 NeoPhotonics Revenue 112
2.3 Datacom Optical Transceivers, Market Shares 113
2.3.1 Telecom Optical Transceivers, Market Shares 115
2.4 Optical Transceiver Market Forecasts 116
2.4.1 Optical Transceiver Data Center Market Forecasts 120
2.4.2 Datacom and Telecom Optical Transceiver Segments 124
2.4.3 Datacom and Data Center Optical Transceivers 132
2.4.4 Datacom Ethernet 136
2.4.5 Telecom Transceivers 138
2.4.6 Optical Transceiver 40G and under, 100G, and 400G Market Forecasts, Units and Dollars 142
2.4.7 Optical Transceiver 40G Market Forecasts 145
2.4.8 Optical Transceiver 100G Market Forecasts 146
2.4.9 Optical Transceiver 400G Market Forecasts 147
2.4.10 Rising Internet Traffic Provides Need for High Speed Networks 147
2.4.11 Optical Transceiver Form Factors 152
2.4.12 Component Needs For Next-Generation Fixed And Mobile Access 153
2.4.13 40G, 100GBPS Transceiver Shipments Evolving: 154
2.4.14 Networks Moving To Embrace An Ethernet Protocol 154
2.4.15 Carrier Networking 155
2.4.16 Enterprise Networking 156
2.4.17 Return on Investment (ROI) of Component Needs For Next-Generation Fixed And Mobile Access Networks 156
2.4.18 Types of Transceiver 158
2.5 Optical Component Transceiver Prices 159
2.5.1 Measuring Cost -Per-Bit-Per-Kilometer 166
2.6 Optical Transceiver Regional Market Segments 167

3 Optical Transceiver Product Description 169
3.1 Finisar Transmitter / Transceivers 169
3.1.1 Finisar 100GBASE-SR4 100m QSFP28 Optical Transceiver 170
3.1.2 Finisar 100GBASE-SR4, OTU4 & 128G Fibre Channel Multirate 100m QSFP28 Optical Transceiver172
3.1.3 Finisar 100GE CWDM4 2 km QSFP28 Optical Transceiver 174
3.1.4 Finisar 40GBASE-SR4 150m Gen2 QSFP+ Optical Transceiver 176
3.1.5 Finisar 56G InfiniBand FDR/SAS 3.0/40G Ethernet 60m QSFP+ Optical Transceiver 178
3.1.6 Finisar 40G Ethernet LM4 140m Duplex Multimode QSFP+ Optical Transceiver 180
3.1.7 Finisar 40GBASE-LR4 2km Lite QSFP+ Optical Transceiver 182
3.1.8 Finisar 40GBASE-ER4 Multirate 40km QSFP+ Optical Transceiver 184
3.1.9 Finisar 4x10GBASE-LR/W and OTN 10km QSFP+ Optical Transceiver 186
3.1.10 Finisar 100GBASE-SR4 100m CFP4 Optical Transceiver 188
3.1.11 Finisar 100GBASE-LR4 10km CFP2 Optical Transceiver 190


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