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Electric Vehicle Charging Infrastructure Market Size, Share & Trends Analysis Report By Charger Type, By Charging Type, By Connector, By Installation, By Connectivity, By Operation, By Application, By Region, And Segment Forecasts, 2025 - 2030
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Electric Vehicle Charging Infrastructure Market Growth & Trends:

The global electric vehicle charging infrastructure market size is estimated to reach USD 125.39 billion by 2030, expanding at a CAGR of 25.5% from 2025 to 2030, according to a new report by Grand View Research, Inc. The growth of the electric vehicle charging infrastructure (EVCI) market is attributed to a growing consumer base adopting electric vehicles. This shift is fueled by eco-friendly choices, rising fuel expenses, government incentives, and reduced ownership costs throughout the vehicle's lifespan.

An increasing interest in electric vehicles is amplifying the need for sufficient charging infrastructure, driving market growth. Several electric vehicle manufacturers, including Kia Motors, Volvo, Ford, and Mercedes-Benz, are partnering with charging infrastructure providers to ensure convenient access to charging stations. As an example, in November 2020, ChargePoint, Inc. announced its collaboration with Volvo Car USA LLC to deliver a smooth charging experience for Volvo drivers. ChargePoint, Inc. supports Volvo owners with Home Flex home chargers, allowing them to conveniently charge their cars at home.

Moreover, Ecotap BV, Delta Electronics, and Enel X, among others, are focusing on the development of solar-powered electric vehicle charging stations. For instance, within the Honda SmartCharge program, Enel X is engaged in developing a charging station powered by solar energy in Hawaii, the U.S., through collaboration with the Hawaiian Electric Company, Inc.

Several companies are working to enhance electric vehicle supply equipment (EVSE) to improve convenience for long-distance travel. Manufacturers such as Tesla, Inc. and Nissan are focusing on ensuring compatibility of their electric vehicles with public charging networks. For instance, in February 2023, in a move to bolster EV adoption in the U.S., the White House collaborated with Tesla Inc. to increase the availability of EV charging infrastructure across the U.S. As part of the collaboration, Tesla Inc. has pledged to make at least 7,500 of its chargers available to all types of EVs by the end of 2024.

The significant growth is majorly owing to the rising initiatives undertaken by both private as well as public sectors to encourage the population to switch to electric vehicles. These initiatives have stimulated the purchase of EVs and have concurrently raised consumer awareness about the advantages of such vehicles. Therefore, the demand for EV charging infrastructure is anticipated to grow significantly.

For instance, in the U.S., the Washington State Department of Transportation has collaborated with the Oregon Department of Transportation to construct the West Coast Electric Highway (WCEH), which includes 57 EV charging stations across Washington and Oregon. Moreover, multiple governments are collaboratively developing intercontinental networks of highway charging stations.

The rising demand for EVs is owing to the increasing awareness of environmental sustainability and the strict emissions regulations enforced by governments. As private companies are focusing on innovating electric vehicle chargers and charging stations, governments are partnering with these firms to deploy EV charging infrastructure. In addition, technologies, such as near-field communication (NFC) and Radio Frequency Identification (RFID), have enabled the installation of interactive, self-operated, and kiosk-based charging stations within highway charging stations. Numerous private organizations are investing in the development of electric vehicle charging stations along highways. All these factors are propelling the demand for highway EV charging stations.

Electric Vehicle Charging Infrastructure Market Report Highlights:

Table of Contents

Chapter 1. Methodology and Scope

Chapter 2. Executive Summary

Chapter 3. Market Variables, Trends, and Scope

Chapter 4. Electric Vehicle Charging Infrastructure Market: Charger Type Estimates & Trend Analysis

Chapter 5. Electric Vehicle Charging Infrastructure Market: Charging Type Estimates & Trend Analysis

Chapter 6. Electric Vehicle Charging Infrastructure Market: Connector Estimates & Trend Analysis

Chapter 7. Electric Vehicle Charging Infrastructure Market: Level of Charging Estimates & Trend Analysis

Chapter 8. Electric Vehicle Charging Infrastructure Market: Connectivity Estimates & Trend Analysis

Chapter 9. Electric Vehicle Charging Infrastructure Market: Operation Estimates & Trend Analysis

Chapter 10. Electric Vehicle Charging Infrastructure Market: Application Estimates & Trend Analysis

Chapter 11. Electric Vehicle Charging Infrastructure Market: Regional Estimates & Trend Analysis

Chapter 12. Competitive Landscape

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