
Industrial Power Over Ethernet Market Report and Forecast 2025-2034
Description
The global industrial power over ethernet market is expected to grow at a CAGR of approximately 6.20% in the forecast period of 2025-2034. The market is majorly being driven by the rising emergence of smart factories across all the major regions.
Market Segmentation
Power over ethernet or PoE-capable devices can be power supply systems (PSE), power delivery systems (PDs), or both. The power transmitting device is a PSE, whereas the power transmitting device is a PD. The majority of PSEs are network switches or PoE injectors for use with non-PoE switches. Power over ethernet (PoE) enables remote or external equipment to be installed without having to connect to AC power. This allows power to be supplied in more areas without additional electrical infrastructure installed or power supply at all ends. Without the need of an electrician and because ethernet cables are less expensive and frequently already installed in buildings, PoE-based systems are much more cost-effective and efficient.
Based on the technology, the market can be divided into:
The advent of intelligent factories is among the main factors driving the industry growth. Industries have moved from traditional automation to fully integrated and flexible infrastructures in order to achieve process self-optimisation. The market is fuelled by the need for seamless network and cloud communication and data flow and storage. The implementation of industrial ethernet protocols is vital if machine-to-machine and machine-to-cloud connectivity are to be achieved. The rising competitive pressure encourages companies to optimize their production processes. As a result, they are steadily moving to smart factories, which creates huge opportunities for power over the ethernet suppliers.
The growing number of smart grid projects is also a major driver for the market growth. Many governments have taken initiatives to convert traditional grids into smart grids to provide reliable as well as uninterrupted electricity supplies. Smart grid operators need a system to detect and respond to local power consumption changes. Ethernet power can easily meet these requirements. Power over ethernet is often used in intelligent grids to transfer power as well as data to field devices via a single wire. During the forecasted period, the critical application of industrial power over ethernet in smart grids, which are being increasingly implemented globally, would help to increase global industrial power over the ethernet market.
Competitive Landscape
The report presents a detailed analysis of the following key players in the global industrial power over ethernet market, looking into their capacity, market shares, and latest developments like capacity expansions, plant turnarounds, and mergers and acquisitions:
Market Segmentation
Power over ethernet or PoE-capable devices can be power supply systems (PSE), power delivery systems (PDs), or both. The power transmitting device is a PSE, whereas the power transmitting device is a PD. The majority of PSEs are network switches or PoE injectors for use with non-PoE switches. Power over ethernet (PoE) enables remote or external equipment to be installed without having to connect to AC power. This allows power to be supplied in more areas without additional electrical infrastructure installed or power supply at all ends. Without the need of an electrician and because ethernet cables are less expensive and frequently already installed in buildings, PoE-based systems are much more cost-effective and efficient.
Based on the technology, the market can be divided into:
- Powered Device
- Power Sourcing Equipment
- Power Industry
- Oil and Gas Industry
- Telecommunication Industry
- Others
- North America
- Europe
- Asia Pacific
- Latin America
- Middle East and Africa
The advent of intelligent factories is among the main factors driving the industry growth. Industries have moved from traditional automation to fully integrated and flexible infrastructures in order to achieve process self-optimisation. The market is fuelled by the need for seamless network and cloud communication and data flow and storage. The implementation of industrial ethernet protocols is vital if machine-to-machine and machine-to-cloud connectivity are to be achieved. The rising competitive pressure encourages companies to optimize their production processes. As a result, they are steadily moving to smart factories, which creates huge opportunities for power over the ethernet suppliers.
The growing number of smart grid projects is also a major driver for the market growth. Many governments have taken initiatives to convert traditional grids into smart grids to provide reliable as well as uninterrupted electricity supplies. Smart grid operators need a system to detect and respond to local power consumption changes. Ethernet power can easily meet these requirements. Power over ethernet is often used in intelligent grids to transfer power as well as data to field devices via a single wire. During the forecasted period, the critical application of industrial power over ethernet in smart grids, which are being increasingly implemented globally, would help to increase global industrial power over the ethernet market.
Competitive Landscape
The report presents a detailed analysis of the following key players in the global industrial power over ethernet market, looking into their capacity, market shares, and latest developments like capacity expansions, plant turnarounds, and mergers and acquisitions:
- Belden Inc.
- Broadcom Inc.
- Cisco Systems, Inc.
- Texas Instruments Inc.
- STMicroelectronics International NV
- Others
Table of Contents
151 Pages
- 1 Executive Summary
- 1.1 Market Size 2024-2025
- 1.2 Market Growth 2025(F)-2034(F)
- 1.3 Key Demand Drivers
- 1.4 Key Players and Competitive Structure
- 1.5 Industry Best Practices
- 1.6 Recent Trends and Developments
- 1.7 Industry Outlook
- 2 Market Overview and Stakeholder Insights
- 2.1 Market Trends
- 2.2 Key Verticals
- 2.3 Key Regions
- 2.4 Supplier Power
- 2.5 Buyer Power
- 2.6 Key Market Opportunities and Risks
- 2.7 Key Initiatives by Stakeholders
- 3 Economic Summary
- 3.1 GDP Outlook
- 3.2 GDP Per Capita Growth
- 3.3 Inflation Trends
- 3.4 Democracy Index
- 3.5 Gross Public Debt Ratios
- 3.6 Balance of Payment (BoP) Position
- 3.7 Population Outlook
- 3.8 Urbanisation Trends
- 4 Country Risk Profiles
- 4.1 Country Risk
- 4.2 Business Climate
- 5 Global Industrial Power Over Ethernet Market Analysis
- 5.1 Key Industry Highlights
- 5.2 Global Industrial Power Over Ethernet Historical Market (2018-2024)
- 5.3 Global Industrial Power Over Ethernet Market Forecast (2025-2034)
- 5.4 Global Industrial Power Over Ethernet Market by Technology
- 5.4.1 Powered Device
- 5.4.1.1 Historical Trend (2018-2024)
- 5.4.1.2 Forecast Trend (2025-2034)
- 5.4.2 Power Sourcing Equipment
- 5.4.2.1 Historical Trend (2018-2024)
- 5.4.2.2 Forecast Trend (2025-2034)
- 5.5 Global Industrial Power Over Ethernet Market by Application
- 5.5.1 Power Industry
- 5.5.1.1 Historical Trend (2018-2024)
- 5.5.1.2 Forecast Trend (2025-2034)
- 5.5.2 Oil and Gas Industry
- 5.5.2.1 Historical Trend (2018-2024)
- 5.5.2.2 Forecast Trend (2025-2034)
- 5.5.3 Telecommunication Industry
- 5.5.3.1 Historical Trend (2018-2024)
- 5.5.3.2 Forecast Trend (2025-2034)
- 5.5.4 Others
- 5.6 Global Industrial Power Over Ethernet Market by Region
- 5.6.1 North America
- 5.6.1.1 Historical Trend (2018-2024)
- 5.6.1.2 Forecast Trend (2025-2034)
- 5.6.2 Europe
- 5.6.2.1 Historical Trend (2018-2024)
- 5.6.2.2 Forecast Trend (2025-2034)
- 5.6.3 Asia Pacific
- 5.6.3.1 Historical Trend (2018-2024)
- 5.6.3.2 Forecast Trend (2025-2034)
- 5.6.4 Latin America
- 5.6.4.1 Historical Trend (2018-2024)
- 5.6.4.2 Forecast Trend (2025-2034)
- 5.6.5 Middle East and Africa
- 5.6.5.1 Historical Trend (2018-2024)
- 5.6.5.2 Forecast Trend (2025-2034)
- 6 North America Industrial Power Over Ethernet Market Analysis
- 6.1 United States of America
- 6.1.1 Historical Trend (2018-2024)
- 6.1.2 Forecast Trend (2025-2034)
- 6.2 Canada
- 6.2.1 Historical Trend (2018-2024)
- 6.2.2 Forecast Trend (2025-2034)
- 7 Europe Industrial Power Over Ethernet Market Analysis
- 7.1 United Kingdom
- 7.1.1 Historical Trend (2018-2024)
- 7.1.2 Forecast Trend (2025-2034)
- 7.2 Germany
- 7.2.1 Historical Trend (2018-2024)
- 7.2.2 Forecast Trend (2025-2034)
- 7.3 France
- 7.3.1 Historical Trend (2018-2024)
- 7.3.2 Forecast Trend (2025-2034)
- 7.4 Italy
- 7.4.1 Historical Trend (2018-2024)
- 7.4.2 Forecast Trend (2025-2034)
- 7.5 Others
- 8 Asia Pacific Industrial Power Over Ethernet Market Analysis
- 8.1 China
- 8.1.1 Historical Trend (2018-2024)
- 8.1.2 Forecast Trend (2025-2034)
- 8.2 Japan
- 8.2.1 Historical Trend (2018-2024)
- 8.2.2 Forecast Trend (2025-2034)
- 8.3 India
- 8.3.1 Historical Trend (2018-2024)
- 8.3.2 Forecast Trend (2025-2034)
- 8.4 ASEAN
- 8.4.1 Historical Trend (2018-2024)
- 8.4.2 Forecast Trend (2025-2034)
- 8.5 Australia
- 8.5.1 Historical Trend (2018-2024)
- 8.5.2 Forecast Trend (2025-2034)
- 8.6 Others
- 9 Latin America Industrial Power Over Ethernet Market Analysis
- 9.1 Brazil
- 9.1.1 Historical Trend (2018-2024)
- 9.1.2 Forecast Trend (2025-2034)
- 9.2 Argentina
- 9.2.1 Historical Trend (2018-2024)
- 9.2.2 Forecast Trend (2025-2034)
- 9.3 Mexico
- 9.3.1 Historical Trend (2018-2024)
- 9.3.2 Forecast Trend (2025-2034)
- 9.4 Others
- 10 Middle East and Africa Industrial Power Over Ethernet Market Analysis
- 10.1 Saudi Arabia
- 10.1.1 Historical Trend (2018-2024)
- 10.1.2 Forecast Trend (2025-2034)
- 10.2 United Arab Emirates
- 10.2.1 Historical Trend (2018-2024)
- 10.2.2 Forecast Trend (2025-2034)
- 10.3 Nigeria
- 10.3.1 Historical Trend (2018-2024)
- 10.3.2 Forecast Trend (2025-2034)
- 10.4 South Africa
- 10.4.1 Historical Trend (2018-2024)
- 10.4.2 Forecast Trend (2025-2034)
- 10.5 Others
- 11 Market Dynamics
- 11.1 SWOT Analysis
- 11.1.1 Strengths
- 11.1.2 Weaknesses
- 11.1.3 Opportunities
- 11.1.4 Threats
- 11.2 Porter’s Five Forces Analysis
- 11.2.1 Supplier’s Power
- 11.2.2 Buyer’s Power
- 11.2.3 Threat of New Entrants
- 11.2.4 Degree of Rivalry
- 11.2.5 Threat of Substitutes
- 11.3 Key Indicators for Demand
- 11.4 Key Indicators for Price
- 12 Competitive Landscape
- 12.1 Supplier Selection
- 12.2 Key Global Players
- 12.3 Key Regional Players
- 12.4 Key Player Strategies
- 12.5 Company Profiles
- 12.5.1 Belden, Inc.
- 12.5.1.1 Company Overview
- 12.5.1.2 Product Portfolio
- 12.5.1.3 Demographic Reach and Achievements
- 12.5.1.4 Certifications
- 12.5.2 Broadcom Inc.
- 12.5.2.1 Company Overview
- 12.5.2.2 Product Portfolio
- 12.5.2.3 Demographic Reach and Achievements
- 12.5.2.4 Certifications
- 12.5.3 Cisco Systems, Inc.
- 12.5.3.1 Company Overview
- 12.5.3.2 Product Portfolio
- 12.5.3.3 Demographic Reach and Achievements
- 12.5.3.4 Certifications
- 12.5.4 Texas Instruments Inc.
- 12.5.4.1 Company Overview
- 12.5.4.2 Product Portfolio
- 12.5.4.3 Demographic Reach and Achievements
- 12.5.4.4 Certifications
- 12.5.5 STMicroelectronics International NV
- 12.5.5.1 Company Overview
- 12.5.5.2 Product Portfolio
- 12.5.5.3 Demographic Reach and Achievements
- 12.5.5.4 Certifications
- 12.5.6 Others
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