| Status : Published | Published On : May, 2023 | Report Code : VRSME9119 | Industry : Semiconductor & Electronics | Available Format :
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Page : 250 |
Silicon Photonics, an emerging field of research that utilizes photonic systems to process, transform, generate, and transmit data faster within computer chips, is experiencing significant growth. This growth can be attributed to its affordability and energy efficiency. The global market size for Silicon Photonics was USD 1.8 billion in 2023 and is projected to reach USD 5.8 billion by 2030, with a CAGR of 26.9% during the forecast period from 2025 to 2030. Products such as silicon photonic waveguides, silicon optical modulators, silicon optical interconnects, silicon LEDs, and silicon photodetectors are currently available in the market. Additionally, the widespread adoption of Silicon Photonics across industries such as healthcare, military & defense, and metrology is expected to further boost market growth.
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The COVID-19 pandemic has had an impact on almost all industries globally owing to stringent lockdown measures and social distancing norms to curtail the spread of coronavirus. Also, the economic crisis that followed the epidemic could cause a major delay in the commercial roll-out of networking components, causing significant disruption in the supply chain. There was a decline in income of small and medium-sized businesses which are considered to be the backbone of the technological industry. Thus, industry players are facing several limitations in the supply chain.
Based on product, the global silicon photonics market is segregated into transceivers, variable optical attenuators, switches, cables, and sensors. The transceiver category dominates the silicon photonics market owing to its compact form, delivers high-speed performance in an optical communication system, and low power consumption capability.
On the basis of components, the global silicon photonics market is bifurcated into active components and passive components. The passive component is further divided into the optical waveguide, splitters, and isolators. The active component is further divided into the laser, optical modulators, photodetectors, and others. The laser segment is anticipated to contribute the largest share in the market owing to advancements in hybris silicon and tunable lasers. The market players can develop electrically powered lasers on a Silicon wafer that can be integrated with other photonic devices using a hybrid technique. This will expand their usage in numerous data centers and telecommunication applications, allowing countries like the United States, the United Kingdom, and France to increase network capacity. Companies are also embracing tunable lasers that use high-performance silicon photonics to meet the demanding needs of next-generation coherent optics. Compact tunable lasers also promise exceptional performance in developing applications like biomedical OCT and autonomous car LiDAR.
The global photonics market is divided into several categories based on application: data center & high-performance computing, telecommunication, military, defense, and aerospace, medical and life sciences, and sensing. Data Center and high-performance computing category is anticipated to hold the largest share in the market owing to the rising data center traffic, the surge in requirement for increased energy-efficient transmission, increased bandwidth capacity, and mounting volume of the global network will fuel the growth of the segment.
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Report Metric |
Details |
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Historical Period |
2020 - 2024 |
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Base Year Considered |
2025 |
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Forecast Period |
2026 - 2035 |
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Market Size in 2025 |
U.S.D. Billion |
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Revenue Forecast in 2035 |
U.S.D. Billion |
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Growth Rate |
% |
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Segments Covered in the Report |
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Report Scope |
Market Trends, Drivers, and Restraints; Revenue Estimation and Forecast; Segmentation Analysis; Impact of COVID-19; Companies’ Strategic Developments; Market Share Analysis of Key Players; Company Profiling |
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Regions Covered in the Report |
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Silicon photonics has propelled the growth of big data analytics and cloud computing to their maximum potential by avoiding data traffic congestion in a wide range of communications and computing applications. Furthermore, the advent of novel technologies like the Internet of Things (IoT), artificial intelligence (AI), augmented reality/ virtual reality (AR/VR), consumer-generated video, connected devices, cloud computing, and other high-performance computing applications have sparked the need for high data transfer capabilities to accumulate, manage, store, and access rapidly growing unstructured data. In addition, the development of "Industry 4.0" has aided the development of industrial automation owing to factors like decreasing robotics prices, readily available skills, ease of integration, and new capabilities.
Furthermore, with the rapid spread of COVID-19 in 2020, due to the increased adoption of work-from-home culture and increased e-learning activities, there has been a growing market for high-speed internet services. These data-intensive applications have increased the demand for high-speed broadband services, which in turn has increased the demand for silicon photonics technology.
The global photonics market is experiencing significant growth due to various factors that contribute to its expansion. One of the key drivers is the surging demand for enhanced bandwidth, driven by the need for increased data transfer capabilities and high-speed broadband services. This growing demand is paving the way for the industry's progress.
Moreover, the adoption of automated manufacturing practices is on the rise, which is propelling the growth of the photonics market. Advancements in silicon photonics technology are playing a crucial role in this acceleration. Silicon photonics offers numerous advantages such as reduced operating costs, lower environmental impact, minimized component heating, enhanced integration, improved reliability, decreased error rates, and high spectral efficacy. These benefits further bolster the industry's development.
Additionally, the automotive sector is embracing silicon photonics technology due to the rising demand for safety technologies like optimal vision in vehicles. Market leaders in this sector are focusing their efforts on integrating novel technologies into LiDAR chips to unlock the full potential of their automotive businesses.
In summary, the global photonics market is witnessing remarkable growth driven by the mounting demand for increased bandwidth, high-speed broadband services, and enhanced data transfer capabilities. The industry's progress is further propelled by the adoption of automated manufacturing practices and advancements in silicon photonics technology. Moreover, the automotive sector is embracing this technology to meet the demand for new safety technologies. Market leaders are actively integrating novel technologies into LiDAR chips to expand their automotive business potential.
The increased risk of thermal effect, implantation of silicon photonics components in small circuits, unproductive electroluminescence of bulky crystalline silicon, and complexity in the integration of on-chip laser will pose challenges in the growth of the silicon photonics market. Future developments, such as the vertical-cavity surface-emitting laser (VCSEL), are expected to limit the market's growth. Furthermore, the market is challenged with severe hurdles like high market volume and technical mismatches, both of which are anticipated to stymie the silicon photonics Market's growth.
The increased deployment of 5G networks and rising demand in telecom and data communication will create tremendous opportunities in the global silicon photonics market due to rapid security offerings that can be customized. Also, the surging demand for active optical cables, optical attenuators, and optical multiplexers will create massive opportunities in the global silicon photonics market outlook.
North America contributes the largest share in the silicon photonics market owing to its well-established telecom infrastructure, increased demand for high-performance, reduced cost, and customized components in life sciences, telecommunication, etc. will bolster the growth in the region.
Asia Pacific is anticipated to have the fastest growth in the silicon photonics market owing to the rising number of 5G deployment projects, massive investment in R&D activities of the telecom industry, and favorable initiatives by the government.
The market players are emphasizing innovations and R&D activities to have a competitive edge in the market. Furthermore, the industry players are entering into M&A, joint ventures, and partnerships along with developing a new product line, innovating existing products, and expanding their customer base in emerging economies to sustain themselves in the silicon photonics market.
Intel, one of the prominent leaders in silicon photonics, enables future data center bandwidth growth and next-generation 5G deployments with smaller form factors and greater speeds and is also introducing new optical integration platforms. By eliminating networking inefficiencies that might result in stranded compute capacity, this novel solution lowers the total cost of ownership and improves the performance of data center systems. Silicon Photonics contributes by Providing software-configurable, high-bandwidth access to computation and storage, and allows disaggregated data centers to use Software Defined Infrastructure (SDI) to decouple hardware and software resources.
Rockley is a leading developer and module supplier of integrated photonics chipsets, high-volume sensors, and communication systems. Light sources, active devices, passive devices, and optical coupling elements can all be integrated into a single silicon device using the Rockley development platform. Wearable devices with photonic integrated circuits (PICs) have lower costs, lower power consumption, and smaller sizes. Rockley Photonics is developing groundbreaking sensors in collaboration with VTT and bringing them to market.
In March 2022, NeoPhotonics Corporation, one of the prominent developers of silicon photonics and advanced hybrid photonic integrated circuit-based lasers, modules, and subsystems for bandwidth-intensive, high-speed communications networks, confirmed that it has demonstrated 120Gbaud operation in applications ranging from 800G LR transmission to 400G long haul transmission using its Indium Phosphide-based Coherent Receiver and Coherent Modulators, in combination with Distributed Feedback Lasers or Ultra-Narrow Linewidth Tunable Lasers.
In December 2021, The Intel® Research Center for Integrated Photonics for Data Center Interconnects was recently opened by Intel Labs. The objective of the center is to accelerate optical input/output (I/O) technological innovation in performance scaling and integration, with an emphasis on photonics technology and devices, CMOS circuits and link design, package integration, and fiber coupling. Intel Silicon Photonics Products include Intel® Silicon Photonics 100G PSM4 Optical Transceiver, Intel® Silicon Photonics 100G CWDM4 Optical Transceiver, Intel® Silicon Photonics 100G CWDM4 QSFP28 Optical Transceiver with Extended Temperature, Intel® 100G SR4 QSFP28 Optical Transceiver, etc.
Some of the industry players in the global silicon photonics market include Cisco Systems, Inc., Intel Corporation, NeoPhotonics Corporation, MACOM, STMicroelectronics, Rockley Photonics Ltd., SICOYA GMBH, Lumentum Operations LLC, Broadcom, and Hamamatsu Photonics K.K.
The silicon photonics market research includes a comprehensive market segmentation analysis as well as projections for the analysis period 2025-2030.
Segments Covered in the Report
Region Covered in the Report
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1. Research Overview
1.1. The Report Offers
1.2. Market Coverage
1.2.1. By Product
1.2.2. By Component
1.2.3. By Application
1.2.4. By Region
1.3. Research Phases
1.4. Limitations
1.5. Market Methodology
1.5.1. Data Sources
1.5.1.1. Primary Research
1.5.1.2. Secondary Research
1.5.2. Methodology
1.5.2.1. Data Exploration
1.5.2.2. Forecast Parameters
1.5.2.3. Data Validation
1.5.2.4. Assumptions
1.5.3. Study Period & Data Reporting Unit
2. Executive Summary
3. Industry Overview
3.1. Industry Dynamics
3.1.1. Market Growth Drivers
3.1.2. Market Restraints
3.1.3. Key Market Trends
3.1.4. Major Opportunities
3.2. Industry Ecosystem
3.2.1. Porter’s Five Forces Analysis
3.2.2. Recent Development Analysis
3.2.3. Value Chain Analysis
3.3. Competitive Insight
3.3.1. Competitive Position of Industry Players
3.3.2. Market Attractive Analysis
3.3.3. Market Share Analysis
4. Global Market Estimate and Forecast
4.1. Global Market Overview
4.2. Global Market Estimate and Forecast to 2030
5. Market Segmentation Estimate and Forecast
5.1. By Product
5.1.1. Transceiver
5.1.1.1. Market Definition
5.1.1.2. Market Estimation and Forecast to 2030
5.1.2. Variable Optical Attenuator
5.1.2.1. Market Definition
5.1.2.2. Market Estimation and Forecast to 2030
5.1.3. Switch
5.1.3.1. Market Definition
5.1.3.2. Market Estimation and Forecast to 2030
5.1.4. Cable
5.1.4.1. Market Definition
5.1.4.2. Market Estimation and Forecast to 2030
5.1.5. Sensor
5.1.5.1. Market Definition
5.1.5.2. Market Estimation and Forecast to 2030
5.2. By Component
5.2.1. Active Component
5.2.1.1. Market Definition
5.2.1.2. Market Estimation and Forecast to 2030
5.2.2. Passive Component
5.2.2.1. Market Definition
5.2.2.2. Market Estimation and Forecast to 2030
5.3. By Application
5.3.1. Data Center & High-Performance Computing
5.3.1.1. Market Definition
5.3.1.2. Market Estimation and Forecast to 2030
5.3.2. Telecommunication
5.3.2.1. Market Definition
5.3.2.2. Market Estimation and Forecast to 2030
5.3.3. Military, Defense, and Aerospace
5.3.3.1. Market Definition
5.3.3.2. Market Estimation and Forecast to 2030
5.3.4. Medical and Life Sciences
5.3.4.1. Market Definition
5.3.4.2. Market Estimation and Forecast to 2030
5.3.5. Sensing
5.3.5.1. Market Definition
5.3.5.2. Market Estimation and Forecast to 2030
6. North America Market Estimate and Forecast
6.1. By Product
6.2. By Component
6.3. By Application
6.4. By Country
6.4.1. U.S. Market Estimate and Forecast
6.4.2. Canada Market Estimate and Forecast
6.4.3. Mexico Market Estimate and Forecast
7. Europe Market Estimate and Forecast
7.1. By Product
7.2. By Component
7.3. By Application
7.4. By Country
7.4.1. Germany Market Estimate and Forecast
7.4.2. France Market Estimate and Forecast
7.4.3. U.K. Market Estimate and Forecast
7.4.4. Italy Market Estimate and Forecast
7.4.5. Spain Market Estimate and Forecast
7.4.6. Rest of Europe Market Estimate and Forecast
8. Asia-Pacific Market Estimate and Forecast
8.1. By Product
8.2. By Component
8.3. By Application
8.4. By Country
8.4.1. China Market Estimate and Forecast
8.4.2. Japan Market Estimate and Forecast
8.4.3. India Market Estimate and Forecast
8.4.4. South Korea Market Estimate and Forecast
8.4.5. Singapore Market Estimate and Forecast
8.4.6. Rest of Asia-Pacific Market Estimate and Forecast
9. Rest of the World (RoW) Market Estimate and Forecast
9.1. By Product
9.2. By Component
9.3. By Application
9.4. By Country
9.4.1. Brazil Market Estimate and Forecast
9.4.2. Saudi Arabia Market Estimate and Forecast
9.4.3. South Africa Market Estimate and Forecast
9.4.4. Other Countries Market Estimate and Forecast
10. Company Profiles
10.1. Cisco Systems, Inc.
10.1.1. Snapshot
10.1.2. Overview
10.1.3. Offerings
10.1.4. Financial Insight
10.1.5. Recent Developments
10.2. Intel Corporation
10.2.1. Snapshot
10.2.2. Overview
10.2.3. Offerings
10.2.4. Financial Insight
10.2.5. Recent Developments
10.3. NeoPhotonics Corporation
10.3.1. Snapshot
10.3.2. Overview
10.3.3. Offerings
10.3.4. Financial Insight
10.3.5. Recent Developments
10.4. MACOM
10.4.1. Snapshot
10.4.2. Overview
10.4.3. Offerings
10.4.4. Financial Insight
10.4.5. Recent Developments
10.5. STMicroelectronics
10.5.1. Snapshot
10.5.2. Overview
10.5.3. Offerings
10.5.4. Financial Insight
10.5.5. Recent Developments
10.6. Rockley Photonics Ltd.
10.6.1. Snapshot
10.6.2. Overview
10.6.3. Offerings
10.6.4. Financial Insight
10.6.5. Recent Developments
10.7. SICOYA GMBH
10.7.1. Snapshot
10.7.2. Overview
10.7.3. Offerings
10.7.4. Financial Insight
10.7.5. Recent Developments
10.8. Lumentum Operations LLC
10.8.1. Snapshot
10.8.2. Overview
10.8.3. Offerings
10.8.4. Financial Insight
10.8.5. Recent Developments
10.9. Broadcom
10.9.1. Snapshot
10.9.2. Overview
10.9.3. Offerings
10.9.4. Financial Insight
10.9.5. Recent Developments
10.10. Hamamatsu Photonics K.K.
10.10.1. Snapshot
10.10.2. Overview
10.10.3. Offerings
10.10.4. Financial Insight
10.10.5. Recent Developments
11. Appendix
11.1. Exchange Rates
11.2. Abbreviations
Note: Financial insight and recent developments of different companies are subject to the availability of information in the secondary domain.
List of Tables
Table 1 Sources
Table 2 Study Periods
Table 3 Data Reporting Unit
Table 4 Global Silicon Photonics Market Size, By Product, 2018 - 2023 (USD Billion)
Table 5 Global Silicon Photonics Market Size, By Product, 2025–2030 (USD Billion)
Table 6 Global Silicon Photonics Market Size, By Component, 2018 - 2023 (USD Billion)
Table 7 Global Silicon Photonics Market Size, By Component, 2025–2030 (USD Billion)
Table 8 Global Silicon Photonics Market Size, By Application, 2018 - 2023 (USD Billion)
Table 9 Global Silicon Photonics Market Size, By Application, 2025–2030 (USD Billion)
Table 10 Global Silicon Photonics Market Size, By Region, 2018 - 2023 (USD Billion)
Table 11 Global Silicon Photonics Market Size, By Region, 2025–2030 (USD Billion)
Table 12 North America Silicon Photonics Market Size, By Product, 2018 - 2023 (USD Billion)
Table 13 North America Silicon Photonics Market Size, By Product, 2025–2030 (USD Billion)
Table 14 North America Silicon Photonics Market Size, By Component, 2018 - 2023 (USD Billion)
Table 15 North America Silicon Photonics Market Size, By Component, 2025–2030 (USD Billion)
Table 16 North America Silicon Photonics Market Size, By Application, 2018 - 2023 (USD Billion)
Table 17 North America Silicon Photonics Market Size, By Application, 2025–2030 (USD Billion)
Table 18 North America Silicon Photonics Market Size, By Region, 2018 - 2023 (USD Billion)
Table 19 North America Silicon Photonics Market Size, By Region, 2025–2030 (USD Billion)
Table 20 Europe Silicon Photonics Market Size, By Product, 2018 - 2023 (USD Billion)
Table 21 Europe Silicon Photonics Market Size, By Product, 2025–2030 (USD Billion)
Table 22 Europe Silicon Photonics Market Size, By Component, 2018 - 2023 (USD Billion)
Table 23 Europe Silicon Photonics Market Size, By Component, 2025–2030 (USD Billion)
Table 24 Europe Silicon Photonics Market Size, By Application, 2018 - 2023 (USD Billion)
Table 25 Europe Silicon Photonics Market Size, By Application, 2025–2030 (USD Billion)
Table 26 Europe Silicon Photonics Market Size, By Region, 2018 - 2023 (USD Billion)
Table 27 Europe Silicon Photonics Market Size, By Region, 2025–2030 (USD Billion)
Table 28 Asia-Pacific Silicon Photonics Market Size, By Product, 2018 - 2023 (USD Billion)
Table 29 Asia-Pacific Silicon Photonics Market Size, By Product, 2025–2030 (USD Billion)
Table 30 Asia-Pacific Silicon Photonics Market Size, By Component, 2018 - 2023 (USD Billion)
Table 31 Asia-Pacific Silicon Photonics Market Size, By Component, 2025–2030 (USD Billion)
Table 32 Asia-Pacific Silicon Photonics Market Size, By Application, 2018 - 2023 (USD Billion)
Table 33 Asia-Pacific Silicon Photonics Market Size, By Application, 2025–2030 (USD Billion)
Table 34 Asia-Pacific Silicon Photonics Market Size, By Region, 2018 - 2023 (USD Billion)
Table 35 Asia-Pacific Silicon Photonics Market Size, By Region, 2025–2030 (USD Billion)
Table 36 RoW Silicon Photonics Market Size, By Product, 2018 - 2023 (USD Billion)
Table 37 RoW Silicon Photonics Market Size, By Product, 2025–2030 (USD Billion)
Table 38 RoW Silicon Photonics Market Size, By Component, 2018 - 2023 (USD Billion)
Table 39 RoW Silicon Photonics Market Size, By Component, 2025–2030 (USD Billion)
Table 40 RoW Silicon Photonics Market Size, By Application, 2018 - 2023 (USD Billion)
Table 41 RoW Silicon Photonics Market Size, By Application, 2025–2030 (USD Billion)
Table 42 RoW Silicon Photonics Market Size, By Region, 2018 - 2023 (USD Billion)
Table 43 RoW Silicon Photonics Market Size, By Region, 2025–2030 (USD Billion)
Table 44 Snapshot – Cisco Systems, Inc.
Table 45 Snapshot – Intel Corporation
Table 46 Snapshot – NeoPhotonics Corporation
Table 47 Snapshot – MACOM
Table 48 Snapshot – STMicroelectronics
Table 49 Snapshot – Rockley Photonics Ltd.
Table 50 Snapshot – SICOYA GMBH
Table 51 Snapshot – Lumentum Operations LLC
Table 52 Snapshot – Broadcom
Table 53 Snapshot – Hamamatsu Photonics K.K.
List of Figures
Figure 1 Market Coverage
Figure 2 Research Phases
Figure 3 Secondary Sources for Different Parameters
Figure 4 Methodology
Figure 5 Data Mining & Exploration
Figure 6 Data Triangulation
Figure 7 Assumptions for Market Estimation and Forecast
Figure 8 Market Synopsis
Figure 9 Global Silicon Photonics Market - Growth Drivers and Restraints
Figure 10 Competitive Benchmark
Figure 11 Global Silicon Photonics Market Highlight
Figure 12 Global Silicon Photonics Market Size, By Service, 2018 - 2030 (USD Billion)
Figure 13 Global Silicon Photonics Market Size, By Component, 2018 - 2030 (USD Billion)
Figure 14 Global Silicon Photonics Market Size, By Application, 2018 - 2030 (USD Billion)
Figure 15 Global Silicon Photonics Market Size, By Region, 2018 - 2030 (USD Billion)
Figure 16 North America Silicon Photonics Market Highlight
Figure 17 North America Silicon Photonics Market Size, By Service, 2018 - 2030 (USD Billion)
Figure 18 North America Silicon Photonics Market Size, By Component, 2018 - 2030 (USD Billion)
Figure 19 North America Silicon Photonics Market Size, By Application, 2018 - 2030 (USD Billion)
Figure 20 North America Silicon Photonics Market Size, By Region, 2018 - 2030 (USD Billion)
Figure 21 Europe Silicon Photonics Market Highlight
Figure 22 Europe Silicon Photonics Market Size, By Service, 2018 - 2030 (USD Billion)
Figure 23 Europe Silicon Photonics Market Size, By Component, 2018 - 2030 (USD Billion)
Figure 24 Europe Silicon Photonics Market Size, By Application, 2018 - 2030 (USD Billion)
Figure 25 Europe Silicon Photonics Market Size, By Region, 2018 - 2030 (USD Billion)
Figure 26 Asia-Pacific Silicon Photonics Market Highlight
Figure 27 Asia-Pacific Silicon Photonics Market Size, By Service, 2018 - 2030 (USD Billion)
Figure 28 Asia-Pacific Silicon Photonics Market Size, By Component, 2018 - 2030 (USD Billion)
Figure 29 Asia-Pacific Silicon Photonics Market Size, By Application, 2018 - 2030 (USD Billion)
Figure 30 Asia-Pacific Silicon Photonics Market Size, By Region, 2018 - 2030 (USD Billion)
Figure 31 RoW Silicon Photonics Market Highlight
Figure 32 RoW Silicon Photonics Market Size, By Service, 2018 - 2030 (USD Billion)
Figure 33 RoW Silicon Photonics Market Size, By Component, 2018 - 2030 (USD Billion)
Figure 34 RoW Silicon Photonics Market Size, By Application, 2018 - 2030 (USD Billion)
Figure 35 RoW Silicon Photonics Market Size, By Region, 2018 - 2030 (USD Billion)
Global Silicon Photonics Market Coverage
Product Insight and Forecast 2025-2030
Component Insight and Forecast 2025-2030
Application Insight and Forecast 2025-2030
Geographical Segmentation
Silicon Photonics Market by Region
North America
Europe
Asia-Pacific (APAC)
Rest of the World (RoW)
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