Industry Trends : 400G Optical Transceivers Market Size, Shares : Strategies, and Forecasts, Worldwide, 2017 to 2023
Press Release - 09
May2018
Global
Research and Development News
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"400G
Optical Transceivers Market Size, Shares - Industry Trends,
Strategies, and Forecasts, Worldwide, 2017 to 2023"
with coming years Industries Trends, projections of Global Growth,
Major key player and Case study, Review, Share, Size, Effect.
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The growing
availability and cost effectiveness of 100 Gbps, and 400 Gbps devices
is one of the key factors boosting the demand for 400G optical
transceivers. These optical transceivers consume less power and are
thus in much demand. Also, 400G optical transceivers are not so
costly, and are thus being preferred. Some of the other benefits of
400G optical transceivers include their small size and the fact that
these transceivers are smart. The increasing efforts from the vendor
side in the industry are resulting to the development of high quality
technology and leading edge broadband network capability. They are
thus in high demand from mega data centers. The shift towards cloud
computing, increasing adoption of augmented reality, and high
penetration of IoT are working in favor of the global 400G optical
transceivers market. In addition to this, the penetration of
smartphones across the globe has also benefitted the growth of this
market.
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The 2016
study has 525 pages, 121 tables and figures. The vendors in the 400G
optical transceivers industry have invested in high-quality
technology and processes to develop leading edge broadband network
capability a being implemented in the mega data centers.
400G optical transceivers market driving forces
relate primarily to the implementation of networks within the mega
data centers and the interconnects between the data centers.
~
Software as a Service (SaaS) is a primary
offering.
- Global adoption of the Internet
- Driving rapid growth of the mega datacenter
- Data centers support Internet applications
- Online commerce
- Streaming video
- Social networking
- Cloud services
- Software as a Service (SaaS)
- 400G Transmitter / Transceivers
Leading vendors offer a broad product selection.
They are positioned with innovative technology. Optical module
manufacturers address the needs of all major networking equipment
vendors worldwide. Leading vendors have taken a leading role in
transforming the data communications and telecommunications equipment
market.
The shift has been away from utilizing discrete
optical components to leveraging the design and pay-asyougrow
flexibility offered by pluggable modules. 400G Optical transceiver
products are compliant with Ethernet, Fibre Channel, SONET/SDH/OTN
and PON standards. They generally operate at data rates of 400 Gb/s
and higher.
400G Transmitter / Transceivers are capable of
distances ranging from very short reach within a datacenter to
campus, access, metro, and long-haul reaches. They feature
outstanding performance. Units work over extended voltage and
temperature ranges. They are positioned to minimize jitter,
electromagnetic interference (EMI) and power dissipation.
Mega Datacenter Online Commerce, Streaming Video,
Social Networking, And Cloud Services are key to operations of mega
data centers.
Global adoption of online commerce, streaming
video, social networking, and cloud services such as Software as a
Service (SaaS) is driving rapid growth of the mega datacenter. The
storage and computing requirements supported by the datacenters
present new challenges to connectivity within the datacenter in terms
of bandwidth, transmission distance, power consumption, and cost.
The product portfolio offered by vendors for
telecom and datacenter and cloud applications effectively addresses
these requirements and challenges.
Covering data rates up to 400Gb/s in compact form
factors, vendor products enable green field deployments and the
upgrade of existing datacenters in a cost-effective manner. WAN telco
applications 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.
A 400G 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.
According to the research, “400G Optical
transceiver markets are driven by the use of mega data centers that
implement broadband networks in cloud computing environments. Video,
Internet adoption, and tablets drive demand for broadband mega data
centers. 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 400G optical transceivers as a
fundamental technology. Software as a Service (SaaS) is a primary
offering that will leverage 400 G optical transceivers in the mega
data center.”
High-speed serial transceivers form the backbone
of networks. Communications, servers and many other electronic
systems depend on high-speed serial transceivers. Global adoption of
the Internet is driving rapid growth of the mega datacenter. Data
centers support online commerce, streaming video, social networking,
and cloud services.
Leading vendors offer a broad product selection.
They are positioned with innovative technology. 400 G optical module
manufacturers address the needs of major networking interconnect
equipment vendors and companies building mega data centers. Leading
vendors have taken a leading role in transforming the data
communications and tele-communications equipment market.
The global 400 G optical transceiver market is
expected to be at $22.6 billion in 2023 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 large mega data center and communications interconnect and
infrastructure markets.
Companies Profiled
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Selected Market Leaders
- Finisar
- Lumentum
- Broadcom
- Oclaro
- Fujitsu
- Source Photonics
- Sumitomo
- NeoPhotonics
- NEC
- Innolight Technology
- Emcore
- Accelink Technologies
- Oplink Communications
- NTT
- Furukawa Electric
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Market Participants
- Acacia
- ACON
- Applied Optoelectronics
- GigPeak
- Huawei
- Inphi
- IPG Photonics
- Nokia
- Qorvo
- Viavi Solutions
- Xilinx
~
Key Topics
- 400G Optical Transceiver
- Augmented Reality
- Internet of Things (IoT)
- Network Core
- DWDM
- Data rates 100 Gb/s
- Data rates 400 Gb/s
- Mega Data Center Optimized
- Internet Protocol Traffic
- Mobile Backhaul
- Broadband Optical Sector
– More
Clear Details get Table of
Contents_https://www.researchmoz.us/400g-optical-transceivers-market-shares-strategies-and-forecasts-worldwide-2017-to-2023-report.html/toc
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400G
Optical Transceivers Executive Summary 24
400G Optical Transceivers Market Driving Forces 24
400G Transmitter / Transceivers 25
Mega Datacenter Online Commerce, Streaming Video, Social Networking, And Cloud Services 25
400G Optical Transceivers Market Driving Forces 24
400G Transmitter / Transceivers 25
Mega Datacenter Online Commerce, Streaming Video, Social Networking, And Cloud Services 25
1. 400G Optical Transceiver Market
Description and Market Dynamics 32
1.1 400G Optical Transceiver Definition 32
1.1.1 Internet, Enterprise Augmented Reality, and IoT Drives Optical Network Adoption 33
1.1.2 Always-On, High Data-Throughput Connectivity 35
1.1.3 Rapid Proliferation of IoT is Driving Mega Data Center Growth 36
1.2 Growth Of The Global Economy 37
1.2.1 Global Economic Conditions Impact Optical Transceivers 38
1.3 Enterprise Information Accessed By Mobile Workers 39
1.3.1 Cloud Technology Brings Rapid Time to Value 41
1.3.1 In Mega Data Center Cloud Computing Making Individual Circuits And Devices Unimportant Is A Primary Aim Of Fabric Architecture 42
1.3.2 Digital Data Expanding Exponentially, Global IP Traffic Passes Zettabyte (1000 Exabytes) Threshold44
1.3.3 Explosion of Data Inside Cloud 2.0 Mega Data Center with Multi-Threading 45
1.3.4 Cloud 2.0 Mega Data Center Multi-Threading Automates Systems Integration 45
1.3.5 Fixed Broadband Speeds (in Mbps), 2015–2020 46
1.4 Enterprise IT Control Centers 48
1.5 Optical Transceiver Applicable Networks 50
1.5.1 Carrier Networking 51
1.5.2 Data Centers 53
1.5.3 Data Center Storage 54
1.6 Transceiver Definitions 54
1.7 Customer Plans for 400G Optical Network Implementation 55
1.7.1 Optical Components 55
1.7.2 Fiber Networks Provide Backbone Connectivity To Data Center 56
1.7.3 Voice Over IP (VoIP) 57
1.7.4 Optical Network Investment 59
1.7.5 Financial Centers Invest in Optical Networking 59
1.1 400G Optical Transceiver Definition 32
1.1.1 Internet, Enterprise Augmented Reality, and IoT Drives Optical Network Adoption 33
1.1.2 Always-On, High Data-Throughput Connectivity 35
1.1.3 Rapid Proliferation of IoT is Driving Mega Data Center Growth 36
1.2 Growth Of The Global Economy 37
1.2.1 Global Economic Conditions Impact Optical Transceivers 38
1.3 Enterprise Information Accessed By Mobile Workers 39
1.3.1 Cloud Technology Brings Rapid Time to Value 41
1.3.1 In Mega Data Center Cloud Computing Making Individual Circuits And Devices Unimportant Is A Primary Aim Of Fabric Architecture 42
1.3.2 Digital Data Expanding Exponentially, Global IP Traffic Passes Zettabyte (1000 Exabytes) Threshold44
1.3.3 Explosion of Data Inside Cloud 2.0 Mega Data Center with Multi-Threading 45
1.3.4 Cloud 2.0 Mega Data Center Multi-Threading Automates Systems Integration 45
1.3.5 Fixed Broadband Speeds (in Mbps), 2015–2020 46
1.4 Enterprise IT Control Centers 48
1.5 Optical Transceiver Applicable Networks 50
1.5.1 Carrier Networking 51
1.5.2 Data Centers 53
1.5.3 Data Center Storage 54
1.6 Transceiver Definitions 54
1.7 Customer Plans for 400G Optical Network Implementation 55
1.7.1 Optical Components 55
1.7.2 Fiber Networks Provide Backbone Connectivity To Data Center 56
1.7.3 Voice Over IP (VoIP) 57
1.7.4 Optical Network Investment 59
1.7.5 Financial Centers Invest in Optical Networking 59
2 400G Optical Transceivers Market Shares
and Market Forecasts 61
2.1 400G Optical Transceivers Market Driving Forces 61
2.1.1 400G Transmitter / Transceivers 62
2.1.2 Mega Datacenter Online Commerce, Streaming Video, Social Networking, And Cloud Services 62
2.1.3 400G Optical Transport Network (OTN) / Optical Transceiver Components 63
2.1.4 400 Gbps Optical Transceivers 64
2.1.5 An Ecosystem Forms to Drive 400G Forward 65
2.1.6 400G Deals Winning Hand for Data Centers 69
2.1.7 400G for Data Center Interconnects 71
2.1.8 400G Optical Transceiver Market Driving Forces 73
2.1.9 Ongoing Transition To Media For Communications 77
2.1.10 400G Optical Transceiver Key Themes 78
2.2 400G Optical Transceivers Market Shares 79
2.2.1 Finisar 82
2.2.2 Finisar Wavelength Selective Switches 83
2.2.3 Finisar Transmitters, Transceivers, and Transponders for Datacom and Telecom Applications 83
2.2.4 Finisar Transmitter / Transceivers 84
2.2.5 NeoPhotonics 85
2.2.6 Lumentum Vertical Integration Results In Flexibility, Scalability 86
2.2.7 Lumentum 87
2.2.8 Sumitomo Electric 90
2.2.9 Broadcom 90
2.2.10 Broadcom Technologies 91
2.2.11 Fujitsu Optical Components 92
2.2.12 Source Photonics 93
2.2.13 Source Photonics and China Mobile Communications Corporation (CMCC) 94
2.2.14 Oclaro 95
2.2.15 Oclaro Extends Technology Leadership Position 97
2.2.16 NEC 98
2.2.17 NeoPhotonics Revenue 99
2.3 Datacom and Telecom Optical Transceivers, Market Shares 100
2.3.1 Datacom and Telecom Optical Transceiver Segments 100
2.4 Datacom Optical Transceivers, Market Shares 110
2.4.1 Telecom Optical Transceivers, Market Shares 113
2.5 400G Optical Transceiver Market Forecasts 114
2.5.1 Telecom Optical Transceivers 121
2.5.2 Optical Transceiver Mega Data Center Market Forecasts 122
2.5.3 Datacom and Data Center Optical Transceivers 126
2.5.4 Datacom Ethernet 130
2.5.5 Mega Data Center Optical Transceivers 133
2.5.6 Making Individual Circuits And Devices Unimportant Is A Primary Aim Of Fabric Architecture 136
2.5.7 Cloud 2.0 Mega Data Center Market Driving Forces 138
2.5.8 Rising Internet Traffic Provides Need for High Speed Networks 145
2.5.9 Optical Transceiver Form Factors 149
2.5.10 Component Needs For Next-Generation Fixed And Mobile Access 150
2.5.11 40G, 100GBPS Transceiver Shipments Evolving: 151
2.5.12 Networks Moving To Embrace An Ethernet Protocol 151
2.1 400G Optical Transceivers Market Driving Forces 61
2.1.1 400G Transmitter / Transceivers 62
2.1.2 Mega Datacenter Online Commerce, Streaming Video, Social Networking, And Cloud Services 62
2.1.3 400G Optical Transport Network (OTN) / Optical Transceiver Components 63
2.1.4 400 Gbps Optical Transceivers 64
2.1.5 An Ecosystem Forms to Drive 400G Forward 65
2.1.6 400G Deals Winning Hand for Data Centers 69
2.1.7 400G for Data Center Interconnects 71
2.1.8 400G Optical Transceiver Market Driving Forces 73
2.1.9 Ongoing Transition To Media For Communications 77
2.1.10 400G Optical Transceiver Key Themes 78
2.2 400G Optical Transceivers Market Shares 79
2.2.1 Finisar 82
2.2.2 Finisar Wavelength Selective Switches 83
2.2.3 Finisar Transmitters, Transceivers, and Transponders for Datacom and Telecom Applications 83
2.2.4 Finisar Transmitter / Transceivers 84
2.2.5 NeoPhotonics 85
2.2.6 Lumentum Vertical Integration Results In Flexibility, Scalability 86
2.2.7 Lumentum 87
2.2.8 Sumitomo Electric 90
2.2.9 Broadcom 90
2.2.10 Broadcom Technologies 91
2.2.11 Fujitsu Optical Components 92
2.2.12 Source Photonics 93
2.2.13 Source Photonics and China Mobile Communications Corporation (CMCC) 94
2.2.14 Oclaro 95
2.2.15 Oclaro Extends Technology Leadership Position 97
2.2.16 NEC 98
2.2.17 NeoPhotonics Revenue 99
2.3 Datacom and Telecom Optical Transceivers, Market Shares 100
2.3.1 Datacom and Telecom Optical Transceiver Segments 100
2.4 Datacom Optical Transceivers, Market Shares 110
2.4.1 Telecom Optical Transceivers, Market Shares 113
2.5 400G Optical Transceiver Market Forecasts 114
2.5.1 Telecom Optical Transceivers 121
2.5.2 Optical Transceiver Mega Data Center Market Forecasts 122
2.5.3 Datacom and Data Center Optical Transceivers 126
2.5.4 Datacom Ethernet 130
2.5.5 Mega Data Center Optical Transceivers 133
2.5.6 Making Individual Circuits And Devices Unimportant Is A Primary Aim Of Fabric Architecture 136
2.5.7 Cloud 2.0 Mega Data Center Market Driving Forces 138
2.5.8 Rising Internet Traffic Provides Need for High Speed Networks 145
2.5.9 Optical Transceiver Form Factors 149
2.5.10 Component Needs For Next-Generation Fixed And Mobile Access 150
2.5.11 40G, 100GBPS Transceiver Shipments Evolving: 151
2.5.12 Networks Moving To Embrace An Ethernet Protocol 151
Continue.....
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