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Energy Measurement ICs Market

研究執行與發布:TechSci Research · 發布日期 2026-05-01 · 182 頁
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出版商 TechSci Research產業別 ICT出版日期 2026-05-01頁數 182報告編號 TSR-20527

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Energy Measurement ICs Market – Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Function (Active Energy, Apparent Energy, Reactive Energy), By Type (Single-Channel, Multi-Channel), By Application (Smart-Plugs, Industrial, Smart Appliances, Smart-Homes), By Region & Competition, 2021-2031F

報告摘要

Market Overview The Global Energy Measurement ICs Market is projected to expand from USD 7.46 Billion in 2025 to USD 12.80 Billion by 2031, reflecting a CAGR of 9.42%. These integrated circuits are distinct semiconductor devices engineered to capture and process electrical signals, enabling the accurate calculation of power consumption across residential, commercial, and industrial environments. This market growth is primarily anchored by the global necessity for grid modernization and the implementation of strict government regulations mandating precise energy auditing and billing. These factors signify a structural transition toward digitized infrastructure, rather than temporary technological fads, requiring the extensive deployment of smart metering hardware. However, the sector encounters notable obstacles arising from supply chain volatility and inconsistent raw material availability, which threaten to disrupt production timelines. According to the International Energy Agency, global investment in electricity grids was expected to reach USD 400 billion in 2024. While this significant capital influx underscores the immense scale of infrastructure demanding these measurement components, it concurrently emphasizes the strain placed on manufacturers to deliver adequate volumes in the face of logistical limitations. Market Driver The widespread rollout of smart grids and Advanced Metering Infrastructure (AMI) acts as the central catalyst for the energy measurement IC market. As utility companies replace mechanical meters with digital alternatives, there is a critical need for high-precision metrology chips that support bidirectional communication and dynamic load management. This transition is essential for incorporating distributed energy resources and guaranteeing billing precision within modernized electrical networks. For instance, National Grid reported in its 'Half Year Results 2024/25' in November 2024 a record capital investment of GBP 4.6 billion in the UK and US, specifically aimed at network modernization and smart meter deployment, underscoring the need for a steady supply of ICs for granular voltage and current measurement. Concurrently, the rapid growth of electric vehicle charging infrastructure provides another significant avenue for measurement technology expansion. Electric Vehicle Supply Equipment (EVSE), especially fast-charging stations, requires durable metering ICs to facilitate accurate billing and safety monitoring in high-voltage environments. This necessitates components that maintain precision and linearity despite temperature and power extremes. According to the European Automobile Manufacturers’ Association's 'Automotive Insights' from April 2024, EU public charging points reached 632,423, demonstrating the vast need for embedded metrology. Furthermore, the Semiconductor Industry Association noted in December 2024 that global semiconductor sales hit USD 56.9 billion in October 2024, propelled by industrial and automotive demand for these essential measurement technologies. Market Challenge Supply chain volatility and the unpredictability of raw material access act as major barriers to the progress of the Energy Measurement ICs market. These logistical interruptions generate substantial uncertainty in production planning, hampering the ability of component suppliers to meet rigorous delivery commitments. When raw material availability fluctuates, production lines suffer downtime, compelling manufacturers to lengthen lead times. Consequently, the inability to assure product availability deters potential bulk orders from utility companies that rely on strict adherence to deployment schedules for infrastructure updates. The pressure on the supply chain is further illustrated by the immense volume of semiconductor demand vying for these limited resources. As per the Semiconductor Industry Association, global semiconductor industry sales amounted to USD 53.1 billion in August 2024. Such elevated demand exerts tremendous strain on raw material inventories and logistical frameworks. For the energy measurement industry, this fierce competition for essential materials leads to heightened input volatility and manufacturing bottlenecks, effectively restricting the overall speed of market expansion. Market Trends The integration of embedded energy measurement within consumer IoT and smart appliances is significantly transforming the market, with manufacturers embedding granular monitoring features directly into household devices. This development is propelled by growing consumer desire for real-time energy insights and the automation of high-power systems, such as HVAC units and water heaters, to maximize efficiency. Modern appliances are evolving from basic binary operations to advanced power management systems requiring precise metrology ICs to monitor usage and interface with home energy management ecosystems. Highlighting this trend, Haier Smart Home's '2024 Annual Report' in March 2025 noted a 70% revenue surge in GE Appliances' HVAC segment, attributing this success to the growing appetite for advanced, energy-efficient residential products utilizing these embedded technologies. In parallel, the rise of multi-channel monitoring for high-density data centers is generating a critical need for specialized metering chips equipped to manage the intense power variations of AI workloads. With server racks increasing in power density to accommodate artificial intelligence processing, operators are implementing extensive monitoring systems that trace voltage and current at the individual rail level to avert thermal runaway and guarantee load balancing. This transition compels semiconductor suppliers to create multi-channel ICs capable of isolating and measuring multiple high-current inputs within a small form factor. As evidence, Schneider Electric’s 'Third Quarter 2025 Revenues' report in October 2025 revealed a 10% organic growth rate in its Energy Management division, a result the CEO explicitly connected to the persistent and rapid global growth of data center infrastructure. Key Market Players * Texas Instruments Incorporated * Analog Devices, Inc. * STMicroelectronics N.V. * Microchip Technology Inc. * Renesas Electronics Corporation * Silicon Laboratories Inc. * Cirrus Logic, Inc. * NXP Semiconductors N.V. * Semiconductor Components Industries, LLC. * Arch Meter Corporation Report Scope In this report, the Global Energy Measurement ICs Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below: # Energy Measurement ICs Market, By Function * Active Energy * Apparent Energy * Reactive Energy # Energy Measurement ICs Market, By Type * Single-Channel * Multi-Channel # Energy Measurement ICs Market, By Application * Smart-Plugs * Industrial * Smart Appliances * Smart-Homes # Energy Measurement ICs Market, By Region * North America United States Canada Mexico * Europe France United Kingdom Italy Germany Spain * Asia Pacific China India Japan Australia South Korea * South America Brazil Argentina Colombia * Middle East & Africa South Africa Saudi Arabia UAE Competitive Landscape Company Profiles: Detailed analysis of the major companies present in the Global Energy Measurement ICs Market. Available Customizations: Global Energy Measurement ICs Market report with the given market data, TechSci Research offers customizations according to a company's specific needs. The following customization options are available for the report: Company Information * Detailed analysis and profiling of additional market players (up to five).
目錄 Table of Contents
1. Product Overview 1.1. Market Definition 1.2. Scope of the Market 1.2.1. Markets Covered 1.2.2. Years Considered for Study 1.2.3. Key Market Segmentations 2. Research Methodology 2.1. Objective of the Study 2.2. Baseline Methodology 2.3. Key Industry Partners 2.4. Major Association and Secondary Sources 2.5. Forecasting Methodology 2.6. Data Triangulation & Validation 2.7. Assumptions and Limitations 3. Executive Summary 3.1. Overview of the Market 3.2. Overview of Key Market Segmentations 3.3. Overview of Key Market Players 3.4. Overview of Key Regions/Countries 3.5. Overview of Market Drivers, Challenges, Trends 4. Voice of Customer 5. Global Energy Measurement ICs Market Outlook 5.1. Market Size & Forecast 5.1.1. By Value 5.2. Market Share & Forecast 5.2.1. By Function (Active Energy, Apparent Energy, Reactive Energy) 5.2.2. By Type (Single-Channel, Multi-Channel) 5.2.3. By Application (Smart-Plugs, Industrial, Smart Appliances, Smart-Homes) 5.2.4. By Region 5.2.5. By Company (2025) 5.3. Market Map 6. North America Energy Measurement ICs Market Outlook 6.1. Market Size & Forecast 6.1.1. By Value 6.2. Market Share & Forecast 6.2.1. By Function 6.2.2. By Type 6.2.3. By Application 6.2.4. By Country 6.3. North America: Country Analysis 6.3.1. United States Energy Measurement ICs Market Outlook 6.3.1.1. Market Size & Forecast 6.3.1.1.1. By Value 6.3.1.2. Market Share & Forecast 6.3.1.2.1. By Function 6.3.1.2.2. By Type 6.3.1.2.3. By Application 6.3.2. Canada Energy Measurement ICs Market Outlook 6.3.2.1. Market Size & Forecast 6.3.2.1.1. By Value 6.3.2.2. Market Share & Forecast 6.3.2.2.1. By Function 6.3.2.2.2. By Type 6.3.2.2.3. By Application 6.3.3. Mexico Energy Measurement ICs Market Outlook 6.3.3.1. Market Size & Forecast 6.3.3.1.1. By Value 6.3.3.2. Market Share & Forecast 6.3.3.2.1. By Function 6.3.3.2.2. By Type 6.3.3.2.3. By Application 7. Europe Energy Measurement ICs Market Outlook 7.1. Market Size & Forecast 7.1.1. By Value 7.2. Market Share & Forecast 7.2.1. By Function 7.2.2. By Type 7.2.3. By Application 7.2.4. By Country 7.3. Europe: Country Analysis 7.3.1. Germany Energy Measurement ICs Market Outlook 7.3.1.1. Market Size & Forecast 7.3.1.1.1. By Value 7.3.1.2. Market Share & Forecast 7.3.1.2.1. By Function 7.3.1.2.2. By Type 7.3.1.2.3. By Application 7.3.2. France Energy Measurement ICs Market Outlook 7.3.2.1. Market Size & Forecast 7.3.2.1.1. By Value 7.3.2.2. Market Share & Forecast 7.3.2.2.1. By Function 7.3.2.2.2. By Type 7.3.2.2.3. By Application 7.3.3. United Kingdom Energy Measurement ICs Market Outlook 7.3.3.1. Market Size & Forecast 7.3.3.1.1. By Value 7.3.3.2. Market Share & Forecast 7.3.3.2.1. By Function 7.3.3.2.2. By Type 7.3.3.2.3. By Application 7.3.4. Italy Energy Measurement ICs Market Outlook 7.3.4.1. Market Size & Forecast 7.3.4.1.1. By Value 7.3.4.2. Market Share & Forecast 7.3.4.2.1. By Function 7.3.4.2.2. By Type 7.3.4.2.3. By Application 7.3.5. Spain Energy Measurement ICs Market Outlook 7.3.5.1. Market Size & Forecast 7.3.5.1.1. By Value 7.3.5.2. Market Share & Forecast 7.3.5.2.1. By Function 7.3.5.2.2. By Type 7.3.5.2.3. By Application 8. Asia Pacific Energy Measurement ICs Market Outlook 8.1. Market Size & Forecast 8.1.1. By Value 8.2. Market Share & Forecast 8.2.1. By Function 8.2.2. By Type 8.2.3. By Application 8.2.4. By Country 8.3. Asia Pacific: Country Analysis 8.3.1. China Energy Measurement ICs Market Outlook 8.3.1.1. Market Size & Forecast 8.3.1.1.1. By Value 8.3.1.2. Market Share & Forecast 8.3.1.2.1. By Function 8.3.1.2.2. By Type 8.3.1.2.3. By Application 8.3.2. India Energy Measurement ICs Market Outlook 8.3.2.1. Market Size & Forecast 8.3.2.1.1. By Value 8.3.2.2. Market Share & Forecast 8.3.2.2.1. By Function 8.3.2.2.2. By Type 8.3.2.2.3. By Application 8.3.3. Japan Energy Measurement ICs Market Outlook 8.3.3.1. Market Size & Forecast 8.3.3.1.1. By Value 8.3.3.2. Market Share & Forecast 8.3.3.2.1. By Function 8.3.3.2.2. By Type 8.3.3.2.3. By Application 8.3.4. South Korea Energy Measurement ICs Market Outlook 8.3.4.1. Market Size & Forecast 8.3.4.1.1. By Value 8.3.4.2. Market Share & Forecast 8.3.4.2.1. By Function 8.3.4.2.2. By Type 8.3.4.2.3. By Application 8.3.5. Australia Energy Measurement ICs Market Outlook 8.3.5.1. Market Size & Forecast 8.3.5.1.1. By Value 8.3.5.2. Market Share & Forecast 8.3.5.2.1. By Function 8.3.5.2.2. By Type 8.3.5.2.3. By Application 9. Middle East & Africa Energy Measurement ICs Market Outlook 9.1. Market Size & Forecast 9.1.1. By Value 9.2. Market Share & Forecast 9.2.1. By Function 9.2.2. By Type 9.2.3. By Application 9.2.4. By Country 9.3. Middle East & Africa: Country Analysis 9.3.1. Saudi Arabia Energy Measurement ICs Market Outlook 9.3.1.1. Market Size & Forecast 9.3.1.1.1. By Value 9.3.1.2. Market Share & Forecast 9.3.1.2.1. By Function 9.3.1.2.2. By Type 9.3.1.2.3. By Application 9.3.2. UAE Energy Measurement ICs Market Outlook 9.3.2.1. Market Size & Forecast 9.3.2.1.1. By Value 9.3.2.2. Market Share & Forecast 9.3.2.2.1. By Function 9.3.2.2.2. By Type 9.3.2.2.3. By Application 9.3.3. South Africa Energy Measurement ICs Market Outlook 9.3.3.1. Market Size & Forecast 9.3.3.1.1. By Value 9.3.3.2. Market Share & Forecast 9.3.3.2.1. By Function 9.3.3.2.2. By Type 9.3.3.2.3. By Application 10. South America Energy Measurement ICs Market Outlook 10.1. Market Size & Forecast 10.1.1. By Value 10.2. Market Share & Forecast 10.2.1. By Function 10.2.2. By Type 10.2.3. By Application 10.2.4. By Country 10.3. South America: Country Analysis 10.3.1. Brazil Energy Measurement ICs Market Outlook 10.3.1.1. Market Size & Forecast 10.3.1.1.1. By Value 10.3.1.2. Market Share & Forecast 10.3.1.2.1. By Function 10.3.1.2.2. By Type 10.3.1.2.3. By Application 10.3.2. Colombia Energy Measurement ICs Market Outlook 10.3.2.1. Market Size & Forecast 10.3.2.1.1. By Value 10.3.2.2. Market Share & Forecast 10.3.2.2.1. By Function 10.3.2.2.2. By Type 10.3.2.2.3. By Application 10.3.3. Argentina Energy Measurement ICs Market Outlook 10.3.3.1. Market Size & Forecast 10.3.3.1.1. By Value 10.3.3.2. Market Share & Forecast 10.3.3.2.1. By Function 10.3.3.2.2. By Type 10.3.3.2.3. By Application 11. Market Dynamics 11.1. Drivers 11.2. Challenges 12. Market Trends & Developments 12.1. Merger & Acquisition (If Any) 12.2. Product Launches (If Any) 12.3. Recent Developments 13. Global Energy Measurement ICs Market: SWOT Analysis 14. Porter's Five Forces Analysis 14.1. Competition in the Industry 14.2. Potential of New Entrants 14.3. Power of Suppliers 14.4. Power of Customers 14.5. Threat of Substitute Products 15. Competitive Landscape 15.1. Texas Instruments Incorporated 15.1.1. Business Overview 15.1.2. Products & Services 15.1.3. Recent Developments 15.1.4. Key Personnel 15.1.5. SWOT Analysis 15.2. Analog Devices, Inc. 15.3. STMicroelectronics N.V. 15.4. Microchip Technology Inc. 15.5. Renesas Electronics Corporation 15.6. Silicon Laboratories Inc. 15.7. Cirrus Logic, Inc. 15.8. NXP Semiconductors N.V. 15.9. Semiconductor Components Industries, LLC. 15.10. Arch Meter Corporation 16. Strategic Recommendations 17. About Us & Disclaimer

提及公司

1 Texas Instruments Incorporated2 Analog Devices, Inc.3 STMicroelectronics N.V.4 Microchip Technology Inc.5 Renesas Electronics Corporation6 Silicon Laboratories Inc.7 Cirrus Logic, Inc.8 NXP Semiconductors N.V.9 Semiconductor Components Industries, LLC.10 Arch Meter Corporation

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