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Optoelectronic Components Market Size, Share & Industry Trends Analysis Report By Material, By Application, By Component (Sensor, LED, and Laser Diode & Infrared Components), By Vertical, By Regional Outlook and Forecast, 2023-2029

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    Report

  • 331 Pages
  • April 2023
  • Region: Global
  • Marqual IT Solutions Pvt. Ltd (KBV Research)
  • ID: 5806745
The Global Optoelectronic Components Market size is expected to reach $60.9 billion by 2029, rising at a market growth of 5.0% CAGR during the forecast period.

Electronic components known as optoelectronics are those that can detect and regulate light as well as convert electrical impulses into visible or infrared energy or the opposite. It is utilized in solar power supply, electric eyes, monitor and control circuits, as well as optical fiber communication systems. Optoelectronic components are used for stimulated emission in quantum cascade lasers and injection laser diodes. For safety, packaging, & digital imaging systems, optoelectronic components like image sensors and LEDs are employed. Optoelectronic components' low power consumption and the growing use of infrared electronics in cameras and autos are driving the demand for optoelectronic components.



The field of optoelectronics is sometimes also known as optronics. Imaging detectors, which use electronic image sensors as their basis, opto-isolators, which transfer analog or digital signals while retaining electrical isolation, and other similar devices are examples of optoelectronic devices. Laser technology, optical fiber communications, and other forms of optical metrology are just a few of the fields in which optoelectronic devices are used.

Semiconductor materials are a major component of optoelectronics. These have suitable bandgap energies for absorbing light, such as visible light and near-infrared, and their imperfect electric conductivity is also crucial for such applications. However, with the exception of some photodetectors that make use of the extrinsic photoelectric effect, dielectrics are difficult to use in both aspects, and metals are primarily used as conductors.

Indirect band gaps materials like silicon and germanium are frequently sufficient for taking advantage of absorption processes, for instance, in photodetectors, but are typically less suitable for generating light. Although there have been many different kinds of solutions found, this is a significant challenge for silicon photonics. Direct band gap components, particularly those of the III-V type, such as indium phosphide and gallium arsenide, are the foundation of a majority of emitting devices, such as laser diodes.

COVID-19 Impact Analysis

The fact that China was the center of the virus outbreak, and that Asia Pacific was the primary region for the production of semiconductors caused significant losses in the initial phases of the pandemic. However, the market is anticipated to pick up steam in the coming years as production facilities resume full-strength operations to fulfill the expanding demand for optoelectronic components throughout a range of industry verticals. In summation, the pandemic had an adverse impact on the market in the starting phases. Still, as the associated industries recover in the coming years, it will proliferate the growth of the market.

Market Growth Factors

Increasing applications of laser diodes

In laser generation, laser diodes are a common optoelectronic component with applications in anything from fiber Blu-ray/DVD recorders to printing, networking, and barcode readers. Additionally, the widespread use of electronic devices has led to the development of conventional display technology, with customers demanding displays with higher resolution and efficiency, which is fueling the growth of the optoelectronics sector and driving up demand for electronic gadgets. For a variety of applications, such as cutting, welding, and fabrication, high-power lasers are in high demand in the industrial sectors. Therefore, the growing advancements in laser diodes are anticipated to fuel market demand throughout the forecast period.

Rising demand for vehicle safety and luxury vehicles

Along with the shift to a new way of life, rising disposable income has impacted consumer behavior. The demand for luxury cars has increased as a result of these reasons, particularly in developing nations. The optoelectronic system is necessary for high-end features like autonomous driving and the incorporation of AI and IoT for an enhanced end-user experience. Automobiles are increasingly using ambient lighting, OLED and LED screens, and LED lights to offer luxury performance to customers. The automotive optoelectronic industry is primarily driven by the increase in demand for luxury vehicles. The market for optoelectronic components is expected to increase as a result of this shift in consumer attitudes toward safety while purchasing automobiles.

Market Restraining Factors

High prices of some optoelectronic components like LED

Optoelectronics is integrated into the workings of LED lighting, OLED displays, as well as LED televisions. However, both the price and manufacturing of LEDs are more challenging. One of the things preventing industrial expansion is the price differential between optoelectronics-based products and conventional commodities. Since LCD displays are more affordable than LED displays, customers might prefer optoelectronics-based products instead of those alternatives. The price of replacing spare parts is also higher than that of normal goods. These key issues limit the demand for optoelectronic components globally.

Component Outlook

Based on component, the optoelectronic components market is characterized into sensor, LED, and laser diode & infrared components. The laser diode and infrared components segment procured a considerable growth rate in the optoelectronic components market in 2022. The optoelectronic components used most frequently in laser generation are the laser diode and infrared components. Scaling down the dimensions of various devices and achieving high levels of integration in systems, including arrays of laser arrays, integrated systems, and light-emitting diodes with other electronic parts on the same chip, are the current market trends in optoelectronics.



Application Outlook

On the basis of application, the optoelectronic components market is classified into measurement, lighting, communications, security & surveillance, and others. The measurement segment acquired the largest revenue share in the optoelectronic components market in 2022. Measurement systems are utilized for a variety of tasks, including machine vision, process and operation monitoring, control, and experimental engineering analysis. They transform light signals from optoelectronic sensors to electric currents. The precision needed in metrology tasks presently further increases the demand for optoelectronic components.

Material Outlook

By material, the optoelectronic components market is divided into gallium nitride, gallium arsenide & gallium phosphide, silicon carbide, indium phosphide, and silicon germanium. The gallium arsenide and gallium phosphide segment garnered a remarkable growth rate in the optoelectronic components market in 2022. Fiber-optic communication and the rapid uptake of mobile phones are propelling the expansion of the segment. Gallium arsenide or GaAs is employed primarily for high-frequency as well as optoelectronic applications because it has electron motion processes that allow for quick and efficient light emission.

Vertical Outlook

Based on vertical, the optoelectronic components market is segmented into automotive, consumer electronics, telecommunication, military & aerospace, medical, residential, commercial, manufacturing, and others. The consumer electronics segment acquired the highest revenue share in the optoelectronic components market in 2022. Due to technological developments and the rising popularity of consumer goods, including sophisticated high-end cameras, copier machines, cellphones, flat & flexible television screens, blue-ray storage devices, and more, optoelectronic components are now being used more frequently in consumer electronics. The rapid expansion of the consumer electronics industry is boosting the growth of the segment.

Regional Outlook

Region wise, the optoelectronic components market is analyzed across North America, Europe, Asia Pacific, and LAMEA. The Asia Pacific segment procured the largest revenue share in the optoelectronic components market in 2022. The countries that have contributed most to the market expansion in the Asia Pacific region are India, South Korea, China, and Japan. The market in this region is projected to be fueled by expanding automotive, medical, and industrial manufacturing businesses as well as by an increase in demand for optoelectronic components from other regions. Additionally, the region is a significant producer of semiconductors, and thus, major market participants are present in the region.

The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include Hamamatsu Photonics K.K., OSRAM GmbH (AMS AG), TT electronics PLC, Vishay Intertechnology, Inc., ON Semiconductor Corporation, Cree, Inc. (SMART Global Holdings, Inc.), TRUMPF GmbH + Co. KG, Sick AG, Broadcom, Inc. and Samsung Electronics Co., Ltd. (Samsung Group).

Strategies Deployed in Optoelectronic Components Market

Partnerships, Collaborations and Agreements:

  • Mar-2023: ams OSRAM came into partnership with Avicena, a US-based developer of ultra-low-energy optical links. This partnership enables OSRAM to transform large and important markets.
  • Sep-2022: Hamamatsu came into collaboration with INFINITT North America, a developer of enterprise imaging solutions intended for healthcare. The collaboration involves jointly encouraging the use of Hamamatsu's whole slide scanners, and INFINITT Digital Pathology Solution (IDPS).
  • Nov-2021: TRUMPF came into partnership with LAYERTEC, a Germany-based manufacturer of optical components. The partnership focuses on the display industry. Further, this partnership reinforces TRUMPF's market presence.

Product Launches and Product Expansions:

  • Jul-2022: Vishay Intertechnology launched VCNT2025X01. VCNT2025X01 is a reflective optical sensor intended for multiple applications including, office, smart home, automotive, and industrial. The new sensor is AEC-Q101 qualified and RoHS-compliant, with multiple features including, a detection range of 0.3 mm to 4.5 mm, an emitter wavelength of 940 nm, an output current of 6.6 mA, a moisture sensitivity level of 3, etc.

Geographical Expansions:

  • Mar-2021: TT Electronics expanded it's already existing facility located in Bedlington, UK. The expansion enhances the company's operational and production capabilities.

Mergers and Acquisitions:

  • Jun-2022: Hamamatsu Photonics took over NKT Photonics, a Denmark-based manufacturer of fiber lasers and photonic crystal fibers. The acquisition expands the acquiring company's portfolio of solutions.

Scope of the Study

By Material

  • Gallium Nitride
  • Gallium Arsenide & Gallium Phosphide
  • Silicon Carbide
  • Indium Phosphide
  • Silicon Germanium

By Application

  • Measurement
  • Lighting
  • Communication
  • Security & Surveillance
  • Others

By Component

  • Sensor
  • LED
  • Laser Diode & Infrared Components

By Vertical

  • Consumer Electronics
  • Telecommunication
  • Automotive
  • Military & Aerospace
  • Medical
  • Manufacturing
  • Commercial
  • Residential
  • Others

By Geography

  • North America
  • US
  • Canada
  • Mexico
  • Rest of North America
  • Europe
  • Germany
  • UK
  • France
  • Russia
  • Spain
  • Italy
  • Rest of Europe
  • Asia Pacific
  • China
  • Japan
  • India
  • South Korea
  • Singapore
  • Malaysia
  • Rest of Asia Pacific
  • LAMEA
  • Brazil
  • Argentina
  • UAE
  • Saudi Arabia
  • South Africa
  • Nigeria
  • Rest of LAMEA

Key Market Players

List of Companies Profiled in the Report:

  • Hamamatsu Photonics K.K.
  • OSRAM GmbH (AMS AG)
  • TT electronics PLC
  • Vishay Intertechnology, Inc.
  • ON Semiconductor Corporation
  • Cree, Inc. (SMART Global Holdings, Inc.)
  • TRUMPF GmbH + Co. KG
  • Sick AG
  • Broadcom, Inc.
  • Samsung Electronics Co., Ltd. (Samsung Group)

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Table of Contents

Chapter 1. Market Scope & Methodology
1.1 Market Definition
1.2 Objectives
1.3 Market Scope
1.4 Segmentation
1.4.1 Global Optoelectronic Components Market, by Material
1.4.2 Global Optoelectronic Components Market, by Application
1.4.3 Global Optoelectronic Components Market, by Component
1.4.4 Global Optoelectronic Components Market, by Vertical
1.4.5 Global Optoelectronic Components Market, by Geography
1.5 Methodology for the research
Chapter 2. Market Overview
2.1 Introduction
2.1.1 Overview
2.1.1.1 Market Composition & Scenario
2.2 Key Factors Impacting the Market
2.2.1 Market Drivers
2.2.2 Market Restraints
Chapter 3. Recent Strategies Deployed in Optoelectronic Components Market
Chapter 4. Global Optoelectronic Components Market by Material
4.1 Global Gallium Nitride Market by Region
4.2 Global Gallium Arsenide & Gallium Phosphide Market by Region
4.3 Global Silicon Carbide Market by Region
4.4 Global Indium Phosphide Market by Region
4.5 Global Silicon Germanium Market by Region
Chapter 5. Global Optoelectronic Components Market by Application
5.1 Global Measurement Market by Region
5.2 Global Lighting Market by Region
5.3 Global Communication Market by Region
5.4 Global Security & Surveillance Market by Region
5.5 Global Others Market by Region
Chapter 6. Global Optoelectronic Components Market by Component
6.1 Global Sensor Market by Region
6.2 Global LED Market by Region
6.3 Global Laser Diode & Infrared Components Market by Region
Chapter 7. Global Optoelectronic Components Market by Vertical
7.1 Global Consumer Electronics Market by Region
7.2 Global Telecommunication Market by Region
7.3 Global Automotive Market by Region
7.4 Global Military & Aerospace Market by Region
7.5 Global Medical Market by Region
7.6 Global Manufacturing Market by Region
7.7 Global Commercial Market by Region
7.8 Global Residential Market by Region
7.9 Global Others Market by Region
Chapter 8. Global Optoelectronic Components Market by Region
8.1 North America Optoelectronic Components Market
8.1.1 North America Optoelectronic Components Market by Material
8.1.1.1 North America Gallium Nitride Market by Country
8.1.1.2 North America Gallium Arsenide & Gallium Phosphide Market by Country
8.1.1.3 North America Silicon Carbide Market by Country
8.1.1.4 North America Indium Phosphide Market by Country
8.1.1.5 North America Silicon Germanium Market by Country
8.1.2 North America Optoelectronic Components Market by Application
8.1.2.1 North America Measurement Market by Country
8.1.2.2 North America Lighting Market by Country
8.1.2.3 North America Communication Market by Country
8.1.2.4 North America Security & Surveillance Market by Country
8.1.2.5 North America Others Market by Country
8.1.3 North America Optoelectronic Components Market by Component
8.1.3.1 North America Sensor Market by Country
8.1.3.2 North America LED Market by Country
8.1.3.3 North America Laser Diode & Infrared Components Market by Country
8.1.4 North America Optoelectronic Components Market by Vertical
8.1.4.1 North America Consumer Electronics Market by Country
8.1.4.2 North America Telecommunication Market by Country
8.1.4.3 North America Automotive Market by Country
8.1.4.4 North America Military & Aerospace Market by Country
8.1.4.5 North America Medical Market by Country
8.1.4.6 North America Manufacturing Market by Country
8.1.4.7 North America Commercial Market by Country
8.1.4.8 North America Residential Market by Country
8.1.4.9 North America Others Market by Country
8.1.5 North America Optoelectronic Components Market by Country
8.1.5.1 US Optoelectronic Components Market
8.1.5.1.1 US Optoelectronic Components Market by Material
8.1.5.1.2 US Optoelectronic Components Market by Application
8.1.5.1.3 US Optoelectronic Components Market by Component
8.1.5.1.4 US Optoelectronic Components Market by Vertical
8.1.5.2 Canada Optoelectronic Components Market
8.1.5.2.1 Canada Optoelectronic Components Market by Material
8.1.5.2.2 Canada Optoelectronic Components Market by Application
8.1.5.2.3 Canada Optoelectronic Components Market by Component
8.1.5.2.4 Canada Optoelectronic Components Market by Vertical
8.1.5.3 Mexico Optoelectronic Components Market
8.1.5.3.1 Mexico Optoelectronic Components Market by Material
8.1.5.3.2 Mexico Optoelectronic Components Market by Application
8.1.5.3.3 Mexico Optoelectronic Components Market by Component
8.1.5.3.4 Mexico Optoelectronic Components Market by Vertical
8.1.5.4 Rest of North America Optoelectronic Components Market
8.1.5.4.1 Rest of North America Optoelectronic Components Market by Material
8.1.5.4.2 Rest of North America Optoelectronic Components Market by Application
8.1.5.4.3 Rest of North America Optoelectronic Components Market by Component
8.1.5.4.4 Rest of North America Optoelectronic Components Market by Vertical
8.2 Europe Optoelectronic Components Market
8.2.1 Europe Optoelectronic Components Market by Material
8.2.1.1 Europe Gallium Nitride Market by Country
8.2.1.2 Europe Gallium Arsenide & Gallium Phosphide Market by Country
8.2.1.3 Europe Silicon Carbide Market by Country
8.2.1.4 Europe Indium Phosphide Market by Country
8.2.1.5 Europe Silicon Germanium Market by Country
8.2.2 Europe Optoelectronic Components Market by Application
8.2.2.1 Europe Measurement Market by Country
8.2.2.2 Europe Lighting Market by Country
8.2.2.3 Europe Communication Market by Country
8.2.2.4 Europe Security & Surveillance Market by Country
8.2.2.5 Europe Others Market by Country
8.2.3 Europe Optoelectronic Components Market by Component
8.2.3.1 Europe Sensor Market by Country
8.2.3.2 Europe LED Market by Country
8.2.3.3 Europe Laser Diode & Infrared Components Market by Country
8.2.4 Europe Optoelectronic Components Market by Vertical
8.2.4.1 Europe Consumer Electronics Market by Country
8.2.4.2 Europe Telecommunication Market by Country
8.2.4.3 Europe Automotive Market by Country
8.2.4.4 Europe Military & Aerospace Market by Country
8.2.4.5 Europe Medical Market by Country
8.2.4.6 Europe Manufacturing Market by Country
8.2.4.7 Europe Commercial Market by Country
8.2.4.8 Europe Residential Market by Country
8.2.4.9 Europe Others Market by Country
8.2.5 Europe Optoelectronic Components Market by Country
8.2.5.1 Germany Optoelectronic Components Market
8.2.5.1.1 Germany Optoelectronic Components Market by Material
8.2.5.1.2 Germany Optoelectronic Components Market by Application
8.2.5.1.3 Germany Optoelectronic Components Market by Component
8.2.5.1.4 Germany Optoelectronic Components Market by Vertical
8.2.5.2 UK Optoelectronic Components Market
8.2.5.2.1 UK Optoelectronic Components Market by Material
8.2.5.2.2 UK Optoelectronic Components Market by Application
8.2.5.2.3 UK Optoelectronic Components Market by Component
8.2.5.2.4 UK Optoelectronic Components Market by Vertical
8.2.5.3 France Optoelectronic Components Market
8.2.5.3.1 France Optoelectronic Components Market by Material
8.2.5.3.2 France Optoelectronic Components Market by Application
8.2.5.3.3 France Optoelectronic Components Market by Component
8.2.5.3.4 France Optoelectronic Components Market by Vertical
8.2.5.4 Russia Optoelectronic Components Market
8.2.5.4.1 Russia Optoelectronic Components Market by Material
8.2.5.4.2 Russia Optoelectronic Components Market by Application
8.2.5.4.3 Russia Optoelectronic Components Market by Component
8.2.5.4.4 Russia Optoelectronic Components Market by Vertical
8.2.5.5 Spain Optoelectronic Components Market
8.2.5.5.1 Spain Optoelectronic Components Market by Material
8.2.5.5.2 Spain Optoelectronic Components Market by Application
8.2.5.5.3 Spain Optoelectronic Components Market by Component
8.2.5.5.4 Spain Optoelectronic Components Market by Vertical
8.2.5.6 Italy Optoelectronic Components Market
8.2.5.6.1 Italy Optoelectronic Components Market by Material
8.2.5.6.2 Italy Optoelectronic Components Market by Application
8.2.5.6.3 Italy Optoelectronic Components Market by Component
8.2.5.6.4 Italy Optoelectronic Components Market by Vertical
8.2.5.7 Rest of Europe Optoelectronic Components Market
8.2.5.7.1 Rest of Europe Optoelectronic Components Market by Material
8.2.5.7.2 Rest of Europe Optoelectronic Components Market by Application
8.2.5.7.3 Rest of Europe Optoelectronic Components Market by Component
8.2.5.7.4 Rest of Europe Optoelectronic Components Market by Vertical
8.3 Asia Pacific Optoelectronic Components Market
8.3.1 Asia Pacific Optoelectronic Components Market by Material
8.3.1.1 Asia Pacific Gallium Nitride Market by Country
8.3.1.2 Asia Pacific Gallium Arsenide & Gallium Phosphide Market by Country
8.3.1.3 Asia Pacific Silicon Carbide Market by Country
8.3.1.4 Asia Pacific Indium Phosphide Market by Country
8.3.1.5 Asia Pacific Silicon Germanium Market by Country
8.3.2 Asia Pacific Optoelectronic Components Market by Application
8.3.2.1 Asia Pacific Measurement Market by Country
8.3.2.2 Asia Pacific Lighting Market by Country
8.3.2.3 Asia Pacific Communication Market by Country
8.3.2.4 Asia Pacific Security & Surveillance Market by Country
8.3.2.5 Asia Pacific Others Market by Country
8.3.3 Asia Pacific Optoelectronic Components Market by Component
8.3.3.1 Asia Pacific Sensor Market by Country
8.3.3.2 Asia Pacific LED Market by Country
8.3.3.3 Asia Pacific Laser Diode & Infrared Components Market by Country
8.3.4 Asia Pacific Optoelectronic Components Market by Vertical
8.3.4.1 Asia Pacific Consumer Electronics Market by Country
8.3.4.2 Asia Pacific Telecommunication Market by Country
8.3.4.3 Asia Pacific Automotive Market by Country
8.3.4.4 Asia Pacific Military & Aerospace Market by Country
8.3.4.5 Asia Pacific Medical Market by Country
8.3.4.6 Asia Pacific Manufacturing Market by Country
8.3.4.7 Asia Pacific Commercial Market by Country
8.3.4.8 Asia Pacific Residential Market by Country
8.3.4.9 Asia Pacific Others Market by Country
8.3.5 Asia Pacific Optoelectronic Components Market by Country
8.3.5.1 China Optoelectronic Components Market
8.3.5.1.1 China Optoelectronic Components Market by Material
8.3.5.1.2 China Optoelectronic Components Market by Application
8.3.5.1.3 China Optoelectronic Components Market by Component
8.3.5.1.4 China Optoelectronic Components Market by Vertical
8.3.5.2 Japan Optoelectronic Components Market
8.3.5.2.1 Japan Optoelectronic Components Market by Material
8.3.5.2.2 Japan Optoelectronic Components Market by Application
8.3.5.2.3 Japan Optoelectronic Components Market by Component
8.3.5.2.4 Japan Optoelectronic Components Market by Vertical
8.3.5.3 India Optoelectronic Components Market
8.3.5.3.1 India Optoelectronic Components Market by Material
8.3.5.3.2 India Optoelectronic Components Market by Application
8.3.5.3.3 India Optoelectronic Components Market by Component
8.3.5.3.4 India Optoelectronic Components Market by Vertical
8.3.5.4 South Korea Optoelectronic Components Market
8.3.5.4.1 South Korea Optoelectronic Components Market by Material
8.3.5.4.2 South Korea Optoelectronic Components Market by Application
8.3.5.4.3 South Korea Optoelectronic Components Market by Component
8.3.5.4.4 South Korea Optoelectronic Components Market by Vertical
8.3.5.5 Singapore Optoelectronic Components Market
8.3.5.5.1 Singapore Optoelectronic Components Market by Material
8.3.5.5.2 Singapore Optoelectronic Components Market by Application
8.3.5.5.3 Singapore Optoelectronic Components Market by Component
8.3.5.5.4 Singapore Optoelectronic Components Market by Vertical
8.3.5.6 Malaysia Optoelectronic Components Market
8.3.5.6.1 Malaysia Optoelectronic Components Market by Material
8.3.5.6.2 Malaysia Optoelectronic Components Market by Application
8.3.5.6.3 Malaysia Optoelectronic Components Market by Component
8.3.5.6.4 Malaysia Optoelectronic Components Market by Vertical
8.3.5.7 Rest of Asia Pacific Optoelectronic Components Market
8.3.5.7.1 Rest of Asia Pacific Optoelectronic Components Market by Material
8.3.5.7.2 Rest of Asia Pacific Optoelectronic Components Market by Application
8.3.5.7.3 Rest of Asia Pacific Optoelectronic Components Market by Component
8.3.5.7.4 Rest of Asia Pacific Optoelectronic Components Market by Vertical
8.4 LAMEA Optoelectronic Components Market
8.4.1 LAMEA Optoelectronic Components Market by Material
8.4.1.1 LAMEA Gallium Nitride Market by Country
8.4.1.2 LAMEA Gallium Arsenide & Gallium Phosphide Market by Country
8.4.1.3 LAMEA Silicon Carbide Market by Country
8.4.1.4 LAMEA Indium Phosphide Market by Country
8.4.1.5 LAMEA Silicon Germanium Market by Country
8.4.2 LAMEA Optoelectronic Components Market by Application
8.4.2.1 LAMEA Measurement Market by Country
8.4.2.2 LAMEA Lighting Market by Country
8.4.2.3 LAMEA Communication Market by Country
8.4.2.4 LAMEA Security & Surveillance Market by Country
8.4.2.5 LAMEA Others Market by Country
8.4.3 LAMEA Optoelectronic Components Market by Component
8.4.3.1 LAMEA Sensor Market by Country
8.4.3.2 LAMEA LED Market by Country
8.4.3.3 LAMEA Laser Diode & Infrared Components Market by Country
8.4.4 LAMEA Optoelectronic Components Market by Vertical
8.4.4.1 LAMEA Consumer Electronics Market by Country
8.4.4.2 LAMEA Telecommunication Market by Country
8.4.4.3 LAMEA Automotive Market by Country
8.4.4.4 LAMEA Military & Aerospace Market by Country
8.4.4.5 LAMEA Medical Market by Country
8.4.4.6 LAMEA Manufacturing Market by Country
8.4.4.7 LAMEA Commercial Market by Country
8.4.4.8 LAMEA Residential Market by Country
8.4.4.9 LAMEA Others Market by Country
8.4.5 LAMEA Optoelectronic Components Market by Country
8.4.5.1 Brazil Optoelectronic Components Market
8.4.5.1.1 Brazil Optoelectronic Components Market by Material
8.4.5.1.2 Brazil Optoelectronic Components Market by Application
8.4.5.1.3 Brazil Optoelectronic Components Market by Component
8.4.5.1.4 Brazil Optoelectronic Components Market by Vertical
8.4.5.2 Argentina Optoelectronic Components Market
8.4.5.2.1 Argentina Optoelectronic Components Market by Material
8.4.5.2.2 Argentina Optoelectronic Components Market by Application
8.4.5.2.3 Argentina Optoelectronic Components Market by Component
8.4.5.2.4 Argentina Optoelectronic Components Market by Vertical
8.4.5.3 UAE Optoelectronic Components Market
8.4.5.3.1 UAE Optoelectronic Components Market by Material
8.4.5.3.2 UAE Optoelectronic Components Market by Application
8.4.5.3.3 UAE Optoelectronic Components Market by Component
8.4.5.3.4 UAE Optoelectronic Components Market by Vertical
8.4.5.4 Saudi Arabia Optoelectronic Components Market
8.4.5.4.1 Saudi Arabia Optoelectronic Components Market by Material
8.4.5.4.2 Saudi Arabia Optoelectronic Components Market by Application
8.4.5.4.3 Saudi Arabia Optoelectronic Components Market by Component
8.4.5.4.4 Saudi Arabia Optoelectronic Components Market by Vertical
8.4.5.5 South Africa Optoelectronic Components Market
8.4.5.5.1 South Africa Optoelectronic Components Market by Material
8.4.5.5.2 South Africa Optoelectronic Components Market by Application
8.4.5.5.3 South Africa Optoelectronic Components Market by Component
8.4.5.5.4 South Africa Optoelectronic Components Market by Vertical
8.4.5.6 Nigeria Optoelectronic Components Market
8.4.5.6.1 Nigeria Optoelectronic Components Market by Material
8.4.5.6.2 Nigeria Optoelectronic Components Market by Application
8.4.5.6.3 Nigeria Optoelectronic Components Market by Component
8.4.5.6.4 Nigeria Optoelectronic Components Market by Vertical
8.4.5.7 Rest of LAMEA Optoelectronic Components Market
8.4.5.7.1 Rest of LAMEA Optoelectronic Components Market by Material
8.4.5.7.2 Rest of LAMEA Optoelectronic Components Market by Application
8.4.5.7.3 Rest of LAMEA Optoelectronic Components Market by Component
8.4.5.7.4 Rest of LAMEA Optoelectronic Components Market by Vertical
Chapter 9. Company Profiles
9.1 Sick AG
9.1.1 Company Overview
9.1.2 Financial Analysis
9.1.3 Segmental and Regional Analysis
9.1.4 Research & Development Expense
9.1.5 SWOT Analysis
9.2 Broadcom, Inc.
9.2.1 Company Overview
9.2.2 Financial Analysis
9.2.3 Segmental and Regional Analysis
9.2.4 Research & Development Expense
9.2.5 SWOT Analysis
9.3 ON Semiconductor Corporation
9.3.1 Company Overview
9.3.2 Financial Analysis
9.3.3 Segmental and Regional Analysis
9.3.4 Research & Development Expense
9.3.5 SWOT Analysis
9.4 Samsung Electronics Co., Ltd. (Samsung Group)
9.4.1 Company Overview
9.4.2 Financial Analysis
9.4.3 Segmental and Regional Analysis
9.4.4 Research & Development Expense
9.4.5 SWOT Analysis
9.5 Hamamatsu Photonics K.K.
9.5.1 Company Overview
9.5.2 Financial Analysis
9.5.3 Segmental Analysis
9.5.4 Research & Development Expense
9.5.5 Recent strategies and developments:
9.5.5.1 Partnerships, Collaborations, and Agreements:
9.5.5.2 Acquisition and Mergers:
9.6 OSRAM GmbH (AMS AG)
9.6.1 Company Overview
9.6.2 Financial Analysis
9.6.3 Segmental and Regional Analysis
9.6.4 Research & Development Expense
9.6.5 Recent strategies and developments:
9.6.5.1 Partnerships, Collaborations, and Agreements:
9.7 TT Electronics PLC
9.7.1 Company Overview
9.7.2 Financial Analysis
9.7.3 Regional & Segmental Analysis
9.7.4 Research & Development Expenses
9.7.5 Recent strategies and developments:
9.7.5.1 Geographical Expansions:
9.8 Vishay Intertechnology, Inc.
9.8.1 Company Overview
9.8.2 Financial Analysis
9.8.3 Segmental and Regional Analysis
9.8.4 Research and Development Expense
9.8.5 Recent strategies and developments:
9.8.5.1 Product Launches and Product Expansions:
9.9 TRUMPF SE + Co. KG
9.9.1 Company Overview
9.9.2 Financial Analysis
9.9.3 Segmental and Regional Analysis
9.9.4 Research & Development Expenses
9.9.5 Recent strategies and developments:
9.9.5.1 Partnerships, Collaborations, and Agreements:
9.9.5.2 Acquisition and Mergers:
9.10. Cree, Inc. (SMART Global Holdings, Inc.)
9.10.1 Company Overview
9.10.2 Financial Analysis
9.10.3 Segmental and Regional Analysis
9.10.4 Research & Development Expense

Companies Mentioned

  • Hamamatsu Photonics K.K.
  • OSRAM GmbH (AMS AG)
  • TT electronics PLC
  • Vishay Intertechnology, Inc.
  • ON Semiconductor Corporation
  • Cree, Inc. (SMART Global Holdings, Inc.)
  • TRUMPF GmbH + Co. KG
  • Sick AG
  • Broadcom, Inc.
  • Samsung Electronics Co., Ltd. (Samsung Group)

Methodology

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