Abstract The Global Silicon Photonics market has fuelled the market demand owing to increasing electronic devices and the need for power connectivity The global silicon photonics market expected to increase market value by USD 5.0 billion, with spurring CAGR in the forecast period from 2020-2027. The market demand for the global silicon photonics is emerging due to rising consumer electronics demand, IT and telecommunication, and commercials driving the market demand. For optical communications, silicon photonics is a cutting-edge technology that can bring more reliable and cheaper products and can achieve the high data rate density required by switches five years later. It has attracted essential manufacturers in the field of data communication infrastructure. Moreover, with the emerging internet penetration and various advanced technology such as artificial intelligence, cloud computing, video streaming, and internet of things is driving network traffic thus, fueling the market demand for optics transceivers. The data center's growth has fueled the need for internal transmission, which is solved by silicon photonics. Silicon photonics is an essential optical communication technology that can provide more reliable and economical products and achieve the high data rate density required by switches in the next five years. Therefore, it attracts essential manufacturers in the field of data communication infrastructure. Product overview in the Global Silicon Photonics Market Based on the product, the global silicon photonics market bifurcated into Transceivers, Switches, Variable Optical Attenuators, Cables, Sensors. The transceivers segment is dominating the global silicon photonics market in the forecast period. It is mainly due to the use of transmission to help the tiny chips provide high-speed routers and switches in data centers that support 100 gigabits per second transmission. The transceiver provides a high coupling rate, low power consumption, and low price. Application overview in the Global Silicon Photonics Market Based on the application, the global silicon photonics market segmented into Data Center and High-performance Computing, Telecommunication, Military & Defense, Life Sciences, Sensing. The data center and high-performance computing segment dominate the market share for the global silicon photonics market. It is mainly due to the emerging volume of a worldwide network, and data center traffic needs an interconnection scheme with cost-effective, high energy efficiency, and high bandwidth magnitude. The use of silicon photonics is widely increasing to solve the bottleneck problem by providing an intrinsically secure feature to obtain robust bandwidth and efficient power interconnection with lower cost. Component overview in the Global Silicon Photonics Market Based on the component, the global silicon photonics market segmented into Lasers, Modulators, Photo Detectors, Wavelength-Division Multiplexing (WDM) filters. The Wavelength-Division Multiplexing (WDM) filter segment captures the highest share in the forecast period from 2020-2027. It is mainly owing to the use of wavelength-division multiplexing technology that multiples various optical carrier signals onto single optical fiber by using a different wavelength of laser light. Thus, the use of silicon photonics with wavelength-division multiplexing to implement a versatile circuit that provides low cost and high bandwidth. Region overview in the Global Silicon Photonics Market Based on geography, the global silicon photonics market segmented into North America, Europe, Asia Pacific, South America, and Middle East & Africa. North America is the world's fastest-growing global silicon photonics market, accounting for the largest share. It is mainly due to the increasing use of silicon photonics owes to its unique features that consume less power, are cost-effective, and have high efficiency and small size. The silicon photonics aim is to reduce the cost of high-speed internet fueling its share in North America. Global Silicon Photonics Market: Competitive Landscape Companies such as Goal Zero, Jackery, Duracell, Milwaukee Tool, Anker Technology, Indiegogo, EcoFlow, Lion Energy, and others are players for the global portable power station market.
Content Global Silicon Photonics Market Report Content 1.Research Strategic Development 1.1.Market Modelling 1.2.Product Analysis 1.3.Market Trend and Economic Factors Analysis 1.4.Market Segmental Analysis 1.5.Geographical Mapping 1.6.Country Wise Segregation 2.Research Methodology 2.1.Identification of Target Market 2.2.Data Acquisition 2.3.Refining of Data/ Data Transformations 2.4.Data Validation through Primary Techniques 2.5.Exploratory Data Analysis 2.6.Graphical Techniques/Analysis 2.7.Quantitative Techniques/Analysis 2.8.Visual Result/Presentation 3.Executive Summary 4.Market Insights 4.1.Economic Factor Analysis 4.1.1.Drivers 4.1.2.Trends 4.1.3.Opportunities 4.1.4.Challenges 4.2.Competitors & Product Analysis 4.3.Regulatory Framework 4.4.Company market share analysis, 2019 4.5.Porter’s Five forces analysis 4.6.New Investment Analysis 4.7.PESTEL Analysis 5.Global Silicon Photonics Market Overview 5.1.Market Size & Forecast, 2016-2027 5.1.1.Demand 5.1.1.1.By Value (USD Million) 5.2.Market Share & Forecast, 2016-2027 5.2.1.By Product 5.2.1.1.Transceivers 5.2.1.2.Variable Optical Attenuators 5.2.1.3.Switches 5.2.1.4.Cables 5.2.1.5.Sensors 5.2.2.By Component 5.2.2.1.Lasers 5.2.2.2.Modulators 5.2.2.3.Photo Detectors 5.2.2.4.Wavelength-Division Multiplexing (WDM) filters 5.2.3.By Application 5.2.3.1.Data Center and High-performance Computing 5.2.3.2.Telecommunication 5.2.3.3.Military, Defense, and Aerospace 5.2.3.4.Medical and Life Science 5.2.3.5.Sensing 5.2.4.By Region 5.2.4.1.Europe 5.2.4.2.North America 5.2.4.3.Asia Pacific 5.2.4.4.South America 5.2.4.5.Middle East & Africa 6.Europe Silicon Photonics Market Overview 6.1.Europe Silicon Photonics Market Size & Forecast, 2016-2027 6.1.1.Demand 6.1.1.1.By Value (USD Million) 6.2.Europe Silicon Photonics Market Share & Forecast, 2016-2027 6.2.1.By Product 6.2.1.1.Transceivers 6.2.1.2.Variable Optical Attenuators 6.2.1.3.Switches 6.2.1.4.Cables 6.2.1.5.Sensors 6.2.2.By Component 6.2.2.1.Lasers 6.2.2.2.Modulators 6.2.2.3.Photo Detectors 6.2.2.4.Wavelength-Division Multiplexing (WDM) filters 6.2.3.By Application 6.2.3.1.Data Center and High-performance Computing 6.2.3.2.Telecommunication 6.2.3.3.Military, Defense, and Aerospace 6.2.3.4.Medical and Life Science 6.2.3.5.Sensing 6.2.4.By Country 6.2.4.1.Germany 6.2.4.2.UK 6.2.4.3.France 6.2.4.4.Italy 6.2.4.5.Rest of Europe 6.2.5.Company Market Share (Top 3-5) 6.2.6.Economic Impact Study on Europe Silicon Photonics Market 7.North America Silicon Photonics Market Overview 7.1.North America Silicon Photonics Market Size & Forecast, 2016-2027 7.1.1.Demand 7.1.1.1.By Value (USD Million) 7.2.North America Silicon Photonics Market Share & Forecast, 2016-2027 7.2.1.By Product 7.2.1.1.Transceivers 7.2.1.2.Variable Optical Attenuators 7.2.1.3.Switches 7.2.1.4.Cables 7.2.1.5.Sensors 7.2.2.By Component 7.2.2.1.Lasers 7.2.2.2.Modulators 7.2.2.3.Photo Detectors 7.2.2.4.Wavelength-Division Multiplexing (WDM) filters 7.2.3.By Application 7.2.3.1.Data Center and High-performance Computing 7.2.3.2.Telecommunication 7.2.3.3.Military, Defense, and Aerospace 7.2.3.4.Medical and Life Science 7.2.3.5.Sensing 7.2.4.By Country 7.2.4.1.US 7.2.4.2.Canada 7.2.4.3.Mexico 7.2.5.Company Market Share (Top 3-5) 7.2.6.Economic Impact Study on North America Silicon Photonics Market 8.Asia Pacific Silicon Photonics Market Overview 8.1.Asia Pacific Silicon Photonics Market Size & Forecast, 2016-2027 8.1.1.Demand 8.1.1.1.By Value (USD Million) 8.2.Asia Pacific Silicon Photonics Market Share & Forecast, 2016-2027 8.2.1.By Product 8.2.1.1.Transceivers 8.2.1.2.Variable Optical Attenuators 8.2.1.3.Switches 8.2.1.4.Cables 8.2.1.5.Sensors 8.2.2.By Component 8.2.2.1.Lasers 8.2.2.2.Modulators 8.2.2.3.Photo Detectors 8.2.2.4.Wavelength-Division Multiplexing (WDM) filters 8.2.3.By Application 8.2.3.1.Data Center and High-performance Computing 8.2.3.2.Telecommunication 8.2.3.3.Military, Defense, and Aerospace 8.2.3.4.Medical and Life Science 8.2.3.5.Sensing 8.2.4.By Country 8.2.4.1.China 8.2.4.2.India 8.2.4.3.Japan 8.2.4.4.Australia 8.2.4.5.Rest of Asia Pacific 8.2.5.Company Market Share (Top 3-5) 8.2.6.Economic Silicon Photonics Market Overview 8.3.South America Silicon Photonics Market Size & Forecast, 2016-2027 8.3.1.Demand 8.3.1.1.By Value (USD Million) 8.4.South America Silicon Photonics Market Share & Forecast, 2016-2027 8.4.1.By Product 8.4.1.1.Transceivers 8.4.1.2.Variable Optical Attenuators 8.4.1.3.Switches 8.4.1.4.Cables 8.4.1.5.Sensors 8.4.2.By Component 8.4.2.1.Lasers 8.4.2.2.Modulators 8.4.2.3.Photo Detectors 8.4.2.4.Wavelength-Division Multiplexing (WDM) filters 8.4.3.By Application 8.4.3.1.Data Center and High-performance Computing 8.4.3.2.Telecommunication 8.4.3.3.Military, Defense, and Aerospace 8.4.3.4.Medical and Life Science 8.4.3.5.Sensing 8.4.4.By Country 8.4.4.1.Brazil 8.4.4.2.Argentina 8.4.4.3.Rest of South America 8.4.5.Company Market Share (Top 3-5) 8.4.6.Economic Impact Study on South America Silicon Photonics Market 9.Middle East & Africa Silicon Photonics Market Overview 9.1.Middle East & Africa Silicon Photonics Market Size & Forecast, 2016-2027 9.1.1.Demand 9.1.1.1.By Value (USD Million) 9.2.Middle East & Africa Silicon Photonics Market Share & Forecast, 2016-2027 9.2.1.By Product 9.2.1.1.Transceivers 9.2.1.2.Variable Optical Attenuators 9.2.1.3.Switches 9.2.1.4.Cables 9.2.1.5.Sensors 9.2.2.By Component 9.2.2.1.Lasers 9.2.2.2.Modulators 9.2.2.3.Photo Detectors 9.2.2.4.Wavelength-Division Multiplexing (WDM) filters 9.2.3.By Application 9.2.3.1.Data Center and High-performance Computing 9.2.3.2.Telecommunication 9.2.3.3.Military, Defense, and Aerospace 9.2.3.4.Medical and Life Science 9.2.3.5.Sensing 9.2.4.By Country 9.2.4.1.Saudi Arabia 9.2.4.2.UAE 9.2.4.3.South Africa 9.2.4.4.Rest of Middle East & Africa 9.2.5.Company Market Share (Top 3-5) 9.2.6.Economic Impact Study on Middle East & Africa Silicon Photonics Market 10.Competitor Analysis 10.1.Company Description 10.2.Financial Analysis 10.3.Key Products 10.4.Key Management Personnel 10.5.Contact Address 10.6.SWOT Analysis 10.7.Company Profile 10.7.1.1.CISCO 10.7.1.2.Intel 10.7.1.3.MACOM 10.7.1.4.GlobalFoundries 10.7.1.5.NeoPhotonics 10.7.1.6.InPhi 10.7.1.7.Mellanox 10.7.1.8.II-VI Incorporated 10.7.1.9.Rockley Photonics 10.7.1.10.Other players
The Global Silicon Photonics market has fuelled the market demand owing to increasing electronic devices and the need for power connectivity The global silicon photonics market expected to increase market value by USD 5.0 billion, with spurring CAGR in the forecast period from 2020-2027. The market demand for the global silicon photonics is emerging due to rising consumer electronics demand, IT and telecommunication, and commercials driving the market demand. For optical communications, silicon photonics is a cutting-edge technology that can bring more reliable and cheaper products and can achieve the high data rate density required by switches five years later. It has attracted essential manufacturers in the field of data communication infrastructure. Moreover, with the emerging internet penetration and various advanced technology such as artificial intelligence, cloud computing, video streaming, and internet of things is driving network traffic thus, fueling the market demand for optics transceivers. The data center's growth has fueled the need for internal transmission, which is solved by silicon photonics. Silicon photonics is an essential optical communication technology that can provide more reliable and economical products and achieve the high data rate density required by switches in the next five years. Therefore, it attracts essential manufacturers in the field of data communication infrastructure. Product overview in the Global Silicon Photonics Market Based on the product, the global silicon photonics market bifurcated into Transceivers, Switches, Variable Optical Attenuators, Cables, Sensors. The transceivers segment is dominating the global silicon photonics market in the forecast period. It is mainly due to the use of transmission to help the tiny chips provide high-speed routers and switches in data centers that support 100 gigabits per second transmission. The transceiver provides a high coupling rate, low power consumption, and low price. Application overview in the Global Silicon Photonics Market Based on the application, the global silicon photonics market segmented into Data Center and High-performance Computing, Telecommunication, Military & Defense, Life Sciences, Sensing. The data center and high-performance computing segment dominate the market share for the global silicon photonics market. It is mainly due to the emerging volume of a worldwide network, and data center traffic needs an interconnection scheme with cost-effective, high energy efficiency, and high bandwidth magnitude. The use of silicon photonics is widely increasing to solve the bottleneck problem by providing an intrinsically secure feature to obtain robust bandwidth and efficient power interconnection with lower cost. Component overview in the Global Silicon Photonics Market Based on the component, the global silicon photonics market segmented into Lasers, Modulators, Photo Detectors, Wavelength-Division Multiplexing (WDM) filters. The Wavelength-Division Multiplexing (WDM) filter segment captures the highest share in the forecast period from 2020-2027. It is mainly owing to the use of wavelength-division multiplexing technology that multiples various optical carrier signals onto single optical fiber by using a different wavelength of laser light. Thus, the use of silicon photonics with wavelength-division multiplexing to implement a versatile circuit that provides low cost and high bandwidth. Region overview in the Global Silicon Photonics Market Based on geography, the global silicon photonics market segmented into North America, Europe, Asia Pacific, South America, and Middle East & Africa. North America is the world's fastest-growing global silicon photonics market, accounting for the largest share. It is mainly due to the increasing use of silicon photonics owes to its unique features that consume less power, are cost-effective, and have high efficiency and small size. The silicon photonics aim is to reduce the cost of high-speed internet fueling its share in North America. Global Silicon Photonics Market: Competitive Landscape Companies such as Goal Zero, Jackery, Duracell, Milwaukee Tool, Anker Technology, Indiegogo, EcoFlow, Lion Energy, and others are players for the global portable power station market.
Global Silicon Photonics Market Report Content 1.Research Strategic Development 1.1.Market Modelling 1.2.Product Analysis 1.3.Market Trend and Economic Factors Analysis 1.4.Market Segmental Analysis 1.5.Geographical Mapping 1.6.Country Wise Segregation 2.Research Methodology 2.1.Identification of Target Market 2.2.Data Acquisition 2.3.Refining of Data/ Data Transformations 2.4.Data Validation through Primary Techniques 2.5.Exploratory Data Analysis 2.6.Graphical Techniques/Analysis 2.7.Quantitative Techniques/Analysis 2.8.Visual Result/Presentation 3.Executive Summary 4.Market Insights 4.1.Economic Factor Analysis 4.1.1.Drivers 4.1.2.Trends 4.1.3.Opportunities 4.1.4.Challenges 4.2.Competitors & Product Analysis 4.3.Regulatory Framework 4.4.Company market share analysis, 2019 4.5.Porter’s Five forces analysis 4.6.New Investment Analysis 4.7.PESTEL Analysis 5.Global Silicon Photonics Market Overview 5.1.Market Size & Forecast, 2016-2027 5.1.1.Demand 5.1.1.1.By Value (USD Million) 5.2.Market Share & Forecast, 2016-2027 5.2.1.By Product 5.2.1.1.Transceivers 5.2.1.2.Variable Optical Attenuators 5.2.1.3.Switches 5.2.1.4.Cables 5.2.1.5.Sensors 5.2.2.By Component 5.2.2.1.Lasers 5.2.2.2.Modulators 5.2.2.3.Photo Detectors 5.2.2.4.Wavelength-Division Multiplexing (WDM) filters 5.2.3.By Application 5.2.3.1.Data Center and High-performance Computing 5.2.3.2.Telecommunication 5.2.3.3.Military, Defense, and Aerospace 5.2.3.4.Medical and Life Science 5.2.3.5.Sensing 5.2.4.By Region 5.2.4.1.Europe 5.2.4.2.North America 5.2.4.3.Asia Pacific 5.2.4.4.South America 5.2.4.5.Middle East & Africa 6.Europe Silicon Photonics Market Overview 6.1.Europe Silicon Photonics Market Size & Forecast, 2016-2027 6.1.1.Demand 6.1.1.1.By Value (USD Million) 6.2.Europe Silicon Photonics Market Share & Forecast, 2016-2027 6.2.1.By Product 6.2.1.1.Transceivers 6.2.1.2.Variable Optical Attenuators 6.2.1.3.Switches 6.2.1.4.Cables 6.2.1.5.Sensors 6.2.2.By Component 6.2.2.1.Lasers 6.2.2.2.Modulators 6.2.2.3.Photo Detectors 6.2.2.4.Wavelength-Division Multiplexing (WDM) filters 6.2.3.By Application 6.2.3.1.Data Center and High-performance Computing 6.2.3.2.Telecommunication 6.2.3.3.Military, Defense, and Aerospace 6.2.3.4.Medical and Life Science 6.2.3.5.Sensing 6.2.4.By Country 6.2.4.1.Germany 6.2.4.2.UK 6.2.4.3.France 6.2.4.4.Italy 6.2.4.5.Rest of Europe 6.2.5.Company Market Share (Top 3-5) 6.2.6.Economic Impact Study on Europe Silicon Photonics Market 7.North America Silicon Photonics Market Overview 7.1.North America Silicon Photonics Market Size & Forecast, 2016-2027 7.1.1.Demand 7.1.1.1.By Value (USD Million) 7.2.North America Silicon Photonics Market Share & Forecast, 2016-2027 7.2.1.By Product 7.2.1.1.Transceivers 7.2.1.2.Variable Optical Attenuators 7.2.1.3.Switches 7.2.1.4.Cables 7.2.1.5.Sensors 7.2.2.By Component 7.2.2.1.Lasers 7.2.2.2.Modulators 7.2.2.3.Photo Detectors 7.2.2.4.Wavelength-Division Multiplexing (WDM) filters 7.2.3.By Application 7.2.3.1.Data Center and High-performance Computing 7.2.3.2.Telecommunication 7.2.3.3.Military, Defense, and Aerospace 7.2.3.4.Medical and Life Science 7.2.3.5.Sensing 7.2.4.By Country 7.2.4.1.US 7.2.4.2.Canada 7.2.4.3.Mexico 7.2.5.Company Market Share (Top 3-5) 7.2.6.Economic Impact Study on North America Silicon Photonics Market 8.Asia Pacific Silicon Photonics Market Overview 8.1.Asia Pacific Silicon Photonics Market Size & Forecast, 2016-2027 8.1.1.Demand 8.1.1.1.By Value (USD Million) 8.2.Asia Pacific Silicon Photonics Market Share & Forecast, 2016-2027 8.2.1.By Product 8.2.1.1.Transceivers 8.2.1.2.Variable Optical Attenuators 8.2.1.3.Switches 8.2.1.4.Cables 8.2.1.5.Sensors 8.2.2.By Component 8.2.2.1.Lasers 8.2.2.2.Modulators 8.2.2.3.Photo Detectors 8.2.2.4.Wavelength-Division Multiplexing (WDM) filters 8.2.3.By Application 8.2.3.1.Data Center and High-performance Computing 8.2.3.2.Telecommunication 8.2.3.3.Military, Defense, and Aerospace 8.2.3.4.Medical and Life Science 8.2.3.5.Sensing 8.2.4.By Country 8.2.4.1.China 8.2.4.2.India 8.2.4.3.Japan 8.2.4.4.Australia 8.2.4.5.Rest of Asia Pacific 8.2.5.Company Market Share (Top 3-5) 8.2.6.Economic Silicon Photonics Market Overview 8.3.South America Silicon Photonics Market Size & Forecast, 2016-2027 8.3.1.Demand 8.3.1.1.By Value (USD Million) 8.4.South America Silicon Photonics Market Share & Forecast, 2016-2027 8.4.1.By Product 8.4.1.1.Transceivers 8.4.1.2.Variable Optical Attenuators 8.4.1.3.Switches 8.4.1.4.Cables 8.4.1.5.Sensors 8.4.2.By Component 8.4.2.1.Lasers 8.4.2.2.Modulators 8.4.2.3.Photo Detectors 8.4.2.4.Wavelength-Division Multiplexing (WDM) filters 8.4.3.By Application 8.4.3.1.Data Center and High-performance Computing 8.4.3.2.Telecommunication 8.4.3.3.Military, Defense, and Aerospace 8.4.3.4.Medical and Life Science 8.4.3.5.Sensing 8.4.4.By Country 8.4.4.1.Brazil 8.4.4.2.Argentina 8.4.4.3.Rest of South America 8.4.5.Company Market Share (Top 3-5) 8.4.6.Economic Impact Study on South America Silicon Photonics Market 9.Middle East & Africa Silicon Photonics Market Overview 9.1.Middle East & Africa Silicon Photonics Market Size & Forecast, 2016-2027 9.1.1.Demand 9.1.1.1.By Value (USD Million) 9.2.Middle East & Africa Silicon Photonics Market Share & Forecast, 2016-2027 9.2.1.By Product 9.2.1.1.Transceivers 9.2.1.2.Variable Optical Attenuators 9.2.1.3.Switches 9.2.1.4.Cables 9.2.1.5.Sensors 9.2.2.By Component 9.2.2.1.Lasers 9.2.2.2.Modulators 9.2.2.3.Photo Detectors 9.2.2.4.Wavelength-Division Multiplexing (WDM) filters 9.2.3.By Application 9.2.3.1.Data Center and High-performance Computing 9.2.3.2.Telecommunication 9.2.3.3.Military, Defense, and Aerospace 9.2.3.4.Medical and Life Science 9.2.3.5.Sensing 9.2.4.By Country 9.2.4.1.Saudi Arabia 9.2.4.2.UAE 9.2.4.3.South Africa 9.2.4.4.Rest of Middle East & Africa 9.2.5.Company Market Share (Top 3-5) 9.2.6.Economic Impact Study on Middle East & Africa Silicon Photonics Market 10.Competitor Analysis 10.1.Company Description 10.2.Financial Analysis 10.3.Key Products 10.4.Key Management Personnel 10.5.Contact Address 10.6.SWOT Analysis 10.7.Company Profile 10.7.1.1.CISCO 10.7.1.2.Intel 10.7.1.3.MACOM 10.7.1.4.GlobalFoundries 10.7.1.5.NeoPhotonics 10.7.1.6.InPhi 10.7.1.7.Mellanox 10.7.1.8.II-VI Incorporated 10.7.1.9.Rockley Photonics 10.7.1.10.Other players