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Global Optical Interconnect Market By Product (Connectors, Optical Engines, Others), By Fiber Mode (Single Mode Fiber and Multimode Fiber), By Distance, By Data Rate, By Application, By Region, Forecast & Opportunities to 2026

The global optical interconnect market accounted for a value of USD 7.3 billion in 2019 and is projected to register growth at a CAGR of 12.1% during forecast period.

COVID-19 has impacted the optical interconnect market. The manufacturing units have to halt its production due to lockdown and the supply chain of finished products and raw material got disrupted due to travel restriction. The adoption of cloud computing segment is widely increasing as almost all the organizations are working from home due to outbreak of corona virus.

Definition:

The optical interconnects can be defines as a system of transmitting signals from one part of an integrated circuit to another IC through light. The optical interconnects are highly preferred over metal interconnect due to high latency and power consumption incurred by metal interconnects.

Market Dynamics (Drivers/Opportunities):

The demand for optical interconnect is increasing across the world due to increase in adoption of various technologies such as AI, IoT and machine learning around the globe. The demand for high performance computing applications is rapidly increasing. The deployment of datacenters is increasing rapidly around the world which results in high adoption of optical interconnect market during forecast period.

The adoption of big data analytics and cloud computing is increasing around the world. The demand for internet services across commercial, industrial and residential segment is increasing around the world. The technological advancement is increasing in cloud computing, AI and IoT. This increases demand and adoption of optical interconnect and drives growth in this market during forecast period.

Market Insights, by Fiber Mode

On the basis of fiber mode, the optical interconnect market is segmented into single mode fiber and multimode fiber. The multimode fiber segment is estimated to register growth at highest CAGR during forecast period. The demand for increased bandwidth for cloud computing application is increasing around the world. This fiber optical interconnects is used for data transmission in data centers for short distance. The multimode fiber is also used in high-performance computing applications. The adoption of cloud computing is increasing immensely which leads to increase in adoption of multimode fiber. This drives growth in multimode fiber during forecast period.

Market Insights, by Distance

On the basis of distance, the optical interconnect market is segmented into less than 1 KM, 1-10 Km, 11-100 Km and more than 100 Km. The less than 1 Km distance segment is estimated to grow at highest CAGR during forecast period. The large scale datacenters are transitioning towards high data rate components such as optical interconnects and adopting such components at large scale. The data centers are transmit data over short distance and it requires a high data transmission rate for transferring information. The demand for high-speed communication in the market is increasing rapidly and drives growth in the less than 1 Km segment during forecast period.

Market Insights, by Application

On the basis of application, the optical interconnect market is segmented into telecommunication and data communication. The data communication segment is estimated to dominate the market during forecast period. The adoption of cloud storage is increasing in the market and the technological advancement is taking place in the artificial intelligence, machine learning and deep learning. This increases data traffic across the networks which lead to high demand for high data rate transceivers which is used for efficient data communication. The data centers across the world are developing rapidly and this drives growth in data communication segment during forecast period.

Regional Insights

North America region is estimated to hold largest market share during forecast period. Various leading datacenter companies such as Facebook, Google, Amazon, Apple and Microsoft etc are present in this region and these companies consist of large number of hyperscale datacenters installed in this region. The datacenters widely adopt the optical interconnect and increases demand for such market. This drives growth in North America region during forecast period.

Key Companies & Market Share Insights

The key market players in optical interconnect industry are Lumentum Operation LLC, ll-VI Incorporated, Molex LLC, Innolight Technology, NVIDIA Corporation, Sumitomo Electric Industries, Broadcom Inc., TE Connectivity, Fujitsu Ltd., Infinera Corporation, Acacia Communications Inc., Accelink Technology Co., Juniper Networks Inc., Amphenol Corporation and Neophotonics Corporation.

Segments Covered in the Report

This report forecasts The Global Optical Interconnect Market, regional, and country levels and provides an analysis of the latest industry trends and opportunities in each of the sub-segments from 2020 to 2026. For the purpose of this study, Our Company has segmented the global optical interconnect market report on the basis of product, fiber mode, distance, data rate and application.

Optical Interconnect Market Size & Forecast (2017-2026)

  1. Research Framework
    • Market Definition and Product Overview
    • Market Segmentation
  2. Research Methodology
    • Qualitative Research
      • Primary & Secondary Sources
    • Quantitative Research
      • Primary & Secondary Sources
    • Breakdown of Primary Research Respondents, By Region
      • Secondary Research
      • Primary Research
    • Breakdown of Primary Research Respondents, By Industry Participants
      • Market Size Estimation
      • Assumption for the Study
      • Market Breakdown & Data Triangulation
  1. Executive Summary
    • Market Snapshot
  2. Industry Insights
    • Industry ecosystem analysis
      • Value Chain Analysis
    • Industry impact and forces
      • Growth Drivers
      • Challenges &Restraints
      • Opportunities
    • Disruptive Technological Analysis
    • Regulatory framework
      • North America
      • Europe
      • Asia Pacific
      • Middle East & Africa
      • South America
    • Growth potential analysis, 2019
    • Porter’s Five forces analysis
    • Pricing Analysis
      • North America
      • Europe
      • Asia Pacific
      • Middle East & Africa
      • South America
  1. COVID – Impact Analysis
    • North America
    • Europe
    • Asia Pacific
    • Middle East & Africa
    • South America
  2. Optical Interconnect Market, By Fiber Mode, Market Size & Forecast To 2026

(USD Million 2017,2018, 2019, 2020, 2021-e-2026-p)

  • Introduction
  • Single Mode Fiber
  • Multimode Fiber
  1. Optical Interconnect Market, By Distance, Market Size & Forecast To 2026

(USD Million 2017,2018, 2019, 2020, 2021-e-2026-p)

  • Introduction
  • Less than 1 KM
  • 1-10 Km
  • 11-100 Km
  • More than 100 Km
  1. Optical Interconnect Market, By Data Rate, Market Size & Forecast To 2026

(USD Million 2017,2018, 2019, 2020, 2021-e-2026-p)

  • Introduction
  • Less than 10 Gbps
  • 10 Gbps-40 Gbps
  • 41 Gbps-100 Gbps
  • More than 100 Gbps
  1. Optical Interconnect Market, By Application, Market Size & Forecast To 2026

(USD Million 2017,2018, 2019, 2020, 2021-e-2026-p)

  • Introduction
  • Telecommunication
  • Data Communication
  1. Optical Interconnect Market, By Region, Market Size & Forecast To 2026

(USD Million 2017,2018, 2019, 2020, 2021-e-2026-p)

  • Introduction
  • North America Market Size & Forecast To 2026
    • Market Overview
    • COVID-19 Impact
    • By Fiber Mode
    • By Distance
    • By Data Rate
    • By Application
    • By Country
      • USA
        • By Application
      • Canada
      • Mexico
    • South America Market Size & Forecast To 2026
      • Market Overview
      • COVID-19 Impact
      • By Fiber Mode
      • By Distance
      • By Data Rate
      • By Application
      • By Country
        • Brazil
          • By Application
        • Argentina
        • Chile
        • Rest of South America
      • Europe Market Size & Forecast To 2026
        • Market Overview
        • COVID-19 Impact
        • By Fiber Mode
        • By Distance
        • By Data Rate
        • By Application
        • By Country
          • UK
            • By Application
          • Germany
          • France
          • Italy
          • Rest of Europe
        • APAC Market Size & Forecast To 2026
          • Market Overview
          • COVID-19 Impact
          • By Fiber Mode
          • By Distance
          • By Data Rate
          • By Application
          • By Country
            • China
              • By Application
            • India
            • Japan
            • South Korea
            • Australia
            • Rest of APAC
          • Middle East & Africa Market Size & Forecast To 2026
            • Market Overview
            • COVID-19 Impact
            • By Fiber Mode
            • By Distance
            • By Data Rate
            • By Application
            • By Country
              • Saudi Arabia
                • By Application
              • UAE
              • Qatar
              • Kuwait
              • South Africa
              • Rest of Middle East & Africa
  1. Competitive Landscaping
    • Competitive Benchmarking
      • Market Share Analysis, 2019
      • Global Presence and Growth Strategies
        • Mergers & Acquisitions
        • New Product Launches
        • Investments Trends
        • R&D Initiatives
  1. Company Profile
    • Neophotonics Corporation
      • Company Overview
      • Financial Overview
      • Product Portfolio
      • Recent Developments
      • SWOT Analysis
      • Strategic Outlook
    • Lumentum Operation LLC
    • ll-VI Incorporated
    • Molex LLC
    • Innolight Technology
    • NVIDIA Corporation
    • Sumitomo Electric Industries
    • Broadcom Inc.
    • TE Connectivity
    • Fujitsu Ltd.
    • Infinera Corporation
    • Acacia Communications Inc.
    • Accelink Technology Co.
    • Juniper Networks Inc.
    • Amphenol Corporation
  2. Appendix
    • Interrelated Market

Research Methodology

1.1     Research Methodology

The process of market research at PAN Market Consulting is very intuitive being iterative in nature and usually follows the path where Information gathered from secondary research is used to build data models, which are than validated from primary participants. Then same cycle repeats where, according to inputs from primary participants, additional secondary research is done, and new information type is again incorporated into data model. The process continues till desired level of information is not generated.

To calculate the market size, the report considers the revenue generated from the sales of the product/services. The revenue generated from the sales of product/services has been calculated through primary and secondary research. The report also analyses the key players operating in the market at the global level which are identified through secondary research and a corresponding detailed analysis of the top vendors in the market. The market size calculation also includes product segmentation determined using secondary sources and verified through primary sources.

1.2     Secondary Research

The secondary research source that are typically referred to include, but are not limited to:

  • Company websites, annual reports, financial reports, broker reports, investor presentations and SEC filings
  • Internal and external proprietary databases, relevant patent and regulatory databases
  • National government documents, statistical databases and market reports
  • News articles, press releases and web-casts specific to the companies operating in the market

The source for secondary research includes but is not limited to Factiva, Hoovers and Statista

SecondaryResearch

1.3     Primary Research

We conduct primary interviews on an ongoing basis with industry participants and commentators in order to validate data and analysis. A typical research interview fulfills the following end users:

  • It provides first-hand information on the market size, market trends, growth trends, competitive landscape, future outlook etc.
  • Helps in validating and strengthening the secondary research findings
  • Further develops the analysis team’s expertise and market understanding
  • Primary research involves E-mail interactions, telephonic interviews as well as face-to-face interviews for each market, category, segment and sub-segment across geographies

The participants who typically take part in such a process include, but are not limited to:

  • Industry participants: CEOs, VPs, marketing/ product managers, market intelligence managers and national sales managers
  • Purchasing managers, technical personnel, distributors and resellers
  • Outside experts: Investment bankers, valuation experts, research analysts specializing in specific markets
  • Key opinion leaders specializing in different areas corresponding to different industry end users

1.4     Models

Where no hard data is available, we use modeling and estimates in order to produce comprehensive data sets. A rigorous methodology is adopted in which the available hard data is cross referenced with the following data products to produce estimates:

  • Demographic data: Population split by segment
  • Macro-economic indicators: GDP, etc.
  • Industry indicators: Expenditure, product stage & infrastructure, sector growth and facilities.

Data is then cross checked by the expert panel.

1.4.1 Company Share Analysis Model

Company share analysis is used to derive the size of global market. As well as study of revenues of companies for last three to five years also provide the base for forecasting the market size and its growth rate. This model is built in following steps:

ResearchMethodology1

1.4.2 Revenue Based Modeling

Revenue based models can be built in two ways – Top-Down or Bottom-Up irrespective of industry. Market size estimated from company share analysis acts as a validation point for bottom-up approach whereas it acts as starting point for top-down approach.

ResearchMethodology2

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