Power over Ethernet Market Growth in Smart Buildings and IoT

The Power over Ethernet (PoE) market growth is rapidly evolving as a key enabler of smart, efficient, and low-maintenance power and data transmission across various connected devices. PoE technology delivers electrical power and data through a single Ethernet cable, significantly simplifying installations and reducing operational costs across sectors such as IT, industrial automation, smart buildings, and surveillance.


As IoT adoption, smart city initiatives, and demand for energy-efficient systems increase globally, the PoE market growth is becoming a critical backbone for digital infrastructure.



market growth Size and Growth


In 2025, the global Power over Ethernet (PoE) market growth is valued at approximately USD 1.4 billion, and is expected to reach USD 3.5 billion by 2030, growing at a CAGR of 20.1% during the forecast period.


The growth is driven by rising deployment of IP cameras, VoIP phones, wireless access points, and industrial Ethernet, along with increasing adoption in smart buildings and enterprise networks.



Key market growth Drivers


1. Simplified Infrastructure and Cost Savings


PoE eliminates the need for separate electrical wiring, reducing costs, installation time, and maintenance complexity in commercial and industrial settings.



2. Rise of Smart Building Solutions


IoT-enabled smart lighting, HVAC, access control, and environmental sensors are being powered via PoE, streamlining energy-efficient building management systems.



3. Expanding Demand for Surveillance and Security


Widespread use of PoE-powered IP cameras in public safety, retail, and industrial facilities is propelling market growth expansion.



4. Proliferation of IoT Devices


PoE supports scalable and flexible deployments of IoT devices, which require constant connectivity and reliable power in sectors such as logistics, manufacturing, and healthcare.



market growth Segmentation


By Type:




  • PoE Switch




  • PoE Injector




  • PoE Splitter




  • PoE Extender




By Application:




  • IP Cameras




  • Wireless Access Points




  • VoIP Phones




  • LED Lighting




  • IoT Devices




By End-Use Industry:




  • Commercial (Offices, Malls, Hotels)




  • Industrial (Factories, Warehouses)




  • Residential




  • Government




  • Healthcare




  • Education




Regional Insights


North America


Dominates the market growth with large-scale adoption in enterprise networks, surveillance, and smart office solutions.



Asia-Pacific


Fastest-growing region due to increasing infrastructure development, smart city rollouts, and manufacturing automation in China, India, Japan, and Southeast Asia.



Europe


PoE adoption is being driven by stringent energy efficiency regulations and growing use in smart building retrofits.



Competitive Landscape


Leading players in the Power over Ethernet market growth include:





  • Cisco Systems




  • Broadcom Inc.




  • Analog Devices




  • Texas Instruments




  • Microchip Technology




  • Belden Inc.




  • TRENDnet




  • TP-Link Technologies




  • Netgear




These companies are actively investing in R&D for high-power PoE (PoE++), intelligent power management, and rugged industrial-grade solutions.



Future Trends




  • High-Power PoE (IEEE 802.3bt): Supporting up to 90W for power-hungry devices like PTZ cameras, LED displays, and thin clients.




  • Smart PoE Switches: Enabling remote power monitoring, scheduling, and diagnostics.




  • PoE in 5G Infrastructure: Supporting edge computing and small cell deployments.




  • Green Networking: Focus on energy-efficient PoE devices to meet ESG and regulatory goals.




Conclusion


The Power over Ethernet market growth is set to be a cornerstone of next-generation networking and smart infrastructure development. As businesses and governments prioritize simplicity, scalability, and sustainability, PoE’s unique capability to deliver both power and data over a unified infrastructure positions it as an essential technology for future-ready networks.


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