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Active Optical Cable Market Review, Research and Global Industry Analysis By 2030

Active Optical Cable Market Overview

The global active optical cable market is expected to grow at a CAGR of 25.1% during the forecast period from 2022 to 2030. Active optical cables (AOCs) are a type of fiber optic cable that uses optical transceivers to transmit data over a single fiber. AOCs are used in a variety of applications, including data centers, enterprise networks, and consumer electronics. The increasing demand for high-speed data transmission and the growing need for bandwidth are the major factors driving the growth of the active optical cable market.

The increasing demand for high-speed data transmission and the growing need for bandwidth are the major factors driving the growth of the active optical cable market. The increasing adoption of cloud computing and the growing demand for data centers are also driving the growth of the active optical cable market. Furthermore, the increasing demand for high-speed data transmission in consumer electronics is also driving the growth of the active optical cable market

The global active optical cable market is expected to grow at a CAGR of 25.1%

from 2022 to 2030. This growth is attributed to the increasing demand for high-speed data transmission, the growing demand for data centers, and the increasing adoption of cloud computing.

Active optical cable (AOC) is a type of cable that uses optical fiber to transmit data. It is a combination of optical fiber and electrical components that are used to transmit data over long distances. AOCs are used in a variety of applications, including data centers, telecommunications, and consumer electronics.

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Key Players

  • Finisar Corporation (II-VI Incorporated) (US)
  • Avago Technologies Ltd (Broadcom Inc.) (US)
  • Molex Corporation (US)
  • Amphenol Communications Solutions (US)
  • Siemon (US)

These players focus on expanding and enhancing their resolution portfolio and services to remain competitive and increase their customer base. Additionally, these players are focusing on partnerships & collaborations to expand their business and customer base to enhance their market position.

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Active Optical Cable Market Segmentation

The active optical cable market is segmented based on type, application, and region.

By type, the market is divided into single-mode and multi-mode.

By application, the market is divided into data centers,

Active Optical Cable Market Regional Analysis

The regional analysis of the active optical cable market is segmented into North America, Europe, Asia Pacific, Latin America, and the Middle East & Africa.

North America is expected to dominate the active optical cable market during the forecast period. This is due to the presence of major players in the region, such as Corning Incorporated, Finisar Corporation, and Mole

TABLE OF CONTENTS

1 EXECUTIVE SUMMARY 23

2 MARKET INTRODUCTION 25

2.1 DEFINITION 25

2.2 SCOPE OF THE STUDY 25

2.3 RESEARCH OBJECTIVE 25

2.4 MARKET STRUCTURE 26

3 RESEARCH METHODOLOGY 27

4 MARKET DYNAMICS 34

4.1 INTRODUCTION 34

4.2 DRIVERS 35

4.2.1 INCREASING DEMAND FROM DATA CENTER INDUSTRY 35

4.2.2 INCREASING ADOPTION OF ACTIVE OPTICAL CABLES (AOC) BY VARIOUS END USERS DUE TO INCREASING FEATURES 35

4.2.3 INCREASING DEMAND FOR HIGH BANDWIDTH AND STABLE NETWORK CONNECTIONS 35

4.2.4 DRIVERS: IMPACT ANALYSIS 36

4.3 RESTRAINT 36

4.3.1 HIGH MANUFACTURING AND IMPLEMENTATION COSTS 36

4.3.2 PRONE TO PHYSICAL DAMAGES AND TRANSMISSION LOSSES 36

4.3.3 RESTRAINT IMPACT ANALYSIS 37

4.4 OPPORTUNITY 37

4.4.1 GROWING POPULARITY OF 40G QSFP+ AOC IN DATA CENTERS 37

4.4.2 RUGGED ACTIVE OPTICAL CABLES AS AN ALTERNATIVE TO COPPER AND FIBER OPTIC CABLE ASSEMBLIES 37

4.4.3 GROWING ADOPTION IN DIGITAL SIGNAGE MARKET 38

4.5 IMPACT OF COVID ON THE MARKET 38

4.5.1 COVID-19 IMPACT ON THE AOC MANUFACTURING OPERATIONS 38

4.5.2 IMPACT ON OVERALL FIBER OPTIC INDUSTRY 38

4.5.3 IMPACT ON SUPPLY CHAIN AMIDST THE PANDEMIC 38

4.6 TECHNOLOGY ANALYSIS 39

4.6.1 GROWTH OF POWER DELIVERY IN TERMS OF AMPERAGE 39

4.6.2 EDGE COMPUTING APPLICATIONS REACH FROM PROCESSORS TO SENSOR DEVICES 39