WinterGreen Research announces that it has published a
new study Optical Amplifiers: Market Shares, Strategy, and Forecasts,
Worldwide, 2013 to 2019. The 2013 study has 375 pages, 100 tables and figures.
Worldwide optical amplifier markets are poised to achieve significant growth as
the data in networks expands exponentially. As cloud systems proliferate and
wireless data takes hold the efficiencies brought by high speed end-to-end
optical networks are needed by carriers and in the data center. Optical
Amplifiers are evolving. There are various types including the EDFA, Raman, and
Semiconductor configurations. The EDFA optical amplifier units can be used in
telecom and datacom (SONET/SDH/DWDM/Gigabit Ethernet) applications to change an
electrical signal into an optical signal and vice versa. According to Susan
Eustis, lead author of the study, "Optical Amplifiers are used to update
the communications networks to manage broadband, to update the data center
networks to make them manage traffic with higher speeds, to implement the
backbone network for mobile communications. "Everything is going mobile.
This evolution is driven by mobile smart phones and tablets that provide
universal connectivity. With 6 billion cell phones in use and one billion smart
phones, soon to be 6 billion smart phones, a lot of people have access to
mobile communication. Video, cloud-based services, the internet, and
machine-to-machine (M2M) provide mobile connectivity. All these devices are
networked and drive significant traffic to the broadband network, stimulating
the need for optical transceivers." The optical amplifier component market
is intensely competitive. There is increasing demand for optical components as
communications markets grow in response to more use of smart phones and more
Internet transmission of data.
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The market for network infrastructure equipment and for
communications semiconductors offers attractive long-term growth: Data center
growth is in response in part to the growth of bid data, and in part to the
incredible bandwidth being consumed by video content. New programming is moving
to broadcast quality short videos that can be downloaded by users Users can
download broadcast quality news or training videos as broadband networks become
universally available. Low bandwidth video does not directly drive adoption of
optical components. It indirectly does by creating demand for broadband data
transport. Video capability at the high end of the market is creating need for
network high speed of transmission just because of the quantity of data being
transmitted. The Optical Transport Network (OTN) is a set of optical network
elements connected by optical fiber links. Optical network elements provide
transport, multiplexing, switching, management, supervision and survivability
of communication channels. Carrier Ethernet is emerging. Optical transceiver,
transmitter, receiver, and transponders support the implementation of the new
network capacity. Optical amplifier components are an innovation engine for the
network supporting end to end data transport over optical systems. Optical
components support and enable low-cost transport throughout the network.
Optical components are needed for high speed network infrastructure build-outs.
Table of Content:
OPTICAL AMPLIFIER EXECUTIVE
SUMMARY ES-1
Optical Amplifier Market Driving Forces ES-1
Optical Amplifiers compliant with EDFA, Raman, and
Semiconductor typesES-2
Optical Amplifier Market Driving Forces ES-2
Ongoing Transition To Media For Communications ES-6
Optical Amplifier Key Themes ES-6
Optical Component Amplifier Market Shares ES-7
Optical Component Amplifier Market Forecasts ES-10
1. OPTICAL AMPLIFIER MARKET DESCRIPTION AND MARKET DYNAMICS 1-1
1.1 Growth Of The Global Economy Becomes Steadily More Sluggish 1-1
1.2 Enterprise Information Accessed By Mobile Workers 1-5
1.3 Optical Amplifier Applicable Networks
1.4 Amplifier Definitions 1-12
1.5 Customer Plans for Optical Network Implementation 1-13
Optical Amplifier Market Driving Forces ES-1
Optical Amplifiers compliant with EDFA, Raman, and
Semiconductor typesES-2
Optical Amplifier Market Driving Forces ES-2
Ongoing Transition To Media For Communications ES-6
Optical Amplifier Key Themes ES-6
Optical Component Amplifier Market Shares ES-7
Optical Component Amplifier Market Forecasts ES-10
1. OPTICAL AMPLIFIER MARKET DESCRIPTION AND MARKET DYNAMICS 1-1
1.1 Growth Of The Global Economy Becomes Steadily More Sluggish 1-1
1.2 Enterprise Information Accessed By Mobile Workers 1-5
1.3 Optical Amplifier Applicable Networks
1.4 Amplifier Definitions 1-12
1.5 Customer Plans for Optical Network Implementation 1-13
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2. OPTICAL AMPLIFIER MARKET
SHARES AND FORECASTS 2-1
2.1 Optical Amplifier Market Driving Forces 2-1
2.2 Optical Component Amplifier Market Shares 2-7
2.3 Optical Component Amplifier Market Forecasts 2-18
2.4 Optical Component Market Forecasts 2-46
2.5 Optical Component Amplifier Prices 2-49
2.6 Optical Amplifier Regional Market Segments 2-58
3. OPTICAL AMPLIFIER PRODUCTS DESCRIPTION 3-1
3.1 JDSU Optical Amplifiers 3-1
3.2 Finisar 3-9
3.3 Oclaro PureGain PG3000 3-21
3.4 Furukawa Electric Amplifiers 3-22
3.5 3SP Group 3-26
2.1 Optical Amplifier Market Driving Forces 2-1
2.2 Optical Component Amplifier Market Shares 2-7
2.3 Optical Component Amplifier Market Forecasts 2-18
2.4 Optical Component Market Forecasts 2-46
2.5 Optical Component Amplifier Prices 2-49
2.6 Optical Amplifier Regional Market Segments 2-58
3. OPTICAL AMPLIFIER PRODUCTS DESCRIPTION 3-1
3.1 JDSU Optical Amplifiers 3-1
3.2 Finisar 3-9
3.3 Oclaro PureGain PG3000 3-21
3.4 Furukawa Electric Amplifiers 3-22
3.5 3SP Group 3-26
3.6 Accelink 3-28
3.7 Advanced Photonix - Picometrix 3-30
3.8 Alcatel Lucent 3-31
3.9 Oplink 3-33
3.10 Triquint 3-34
3.11 Photon-X Optical Amplifiers 3-40
3.7 Advanced Photonix - Picometrix 3-30
3.8 Alcatel Lucent 3-31
3.9 Oplink 3-33
3.10 Triquint 3-34
3.11 Photon-X Optical Amplifiers 3-40
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4. OPTICAL AMPLIFIER
TECHNOLOGY 4-1
4.1 Erbium Doped Fiber Optical Amplifiers 4-1
4.2 Ethernet Emerges as Only Network Standard 4-5
4.3 WDM-PON Technologies 4-8
4.4 Phase Modulation Minimizes Size And Power Of 40Gbps Transponders 4-10
4.5 FTTx Device Management 4-16
4.6 Finisar Technology 4-18
4.7 Vitesse Transimpedance Amplifiers 4-21
4.8 Rohm Semiconductor Amplifiers & Linear 4-28
4.1 Erbium Doped Fiber Optical Amplifiers 4-1
4.2 Ethernet Emerges as Only Network Standard 4-5
4.3 WDM-PON Technologies 4-8
4.4 Phase Modulation Minimizes Size And Power Of 40Gbps Transponders 4-10
4.5 FTTx Device Management 4-16
4.6 Finisar Technology 4-18
4.7 Vitesse Transimpedance Amplifiers 4-21
4.8 Rohm Semiconductor Amplifiers & Linear 4-28
5. OPTICAL COMPONENTS COMPANY
DESCRIPTION 5-1
5.1 3SP Group 5-1
5.2 Accelink 5-3
5.3 ACON 5-6
5.4 Advanced Photonix 5-9
5.5 Agilent Technologies 5-18
5.6 Alcatel-Lucent 5-18
5.7 Analog Devices 5-21
5.8 Avago Technologies 5-40
5.9 Broadcom 5-44
5.10 Cube Optics 5-53
5.11 Emcore 5-54
5.12 Finisar 5-56
5.13 Foxconn Technology Group 5-73
5.14 Fujitsu Next Generation 100GbE Optical Transceiver 5-75
5.15 Furukawa Electric Business Segments 5-77
5.1 3SP Group 5-1
5.2 Accelink 5-3
5.3 ACON 5-6
5.4 Advanced Photonix 5-9
5.5 Agilent Technologies 5-18
5.6 Alcatel-Lucent 5-18
5.7 Analog Devices 5-21
5.8 Avago Technologies 5-40
5.9 Broadcom 5-44
5.10 Cube Optics 5-53
5.11 Emcore 5-54
5.12 Finisar 5-56
5.13 Foxconn Technology Group 5-73
5.14 Fujitsu Next Generation 100GbE Optical Transceiver 5-75
5.15 Furukawa Electric Business Segments 5-77
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