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Micro-mobility Charging Infrastructure - Global Strategic Business Report

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    Report

  • 333 Pages
  • April 2025
  • Region: Global
  • Global Industry Analysts, Inc
  • ID: 6071011
The global market for Micro-mobility Charging Infrastructure was estimated at US$7.0 Billion in 2024 and is projected to reach US$24.5 Billion by 2030, growing at a CAGR of 23.1% from 2024 to 2030. This comprehensive report provides an in-depth analysis of market trends, drivers, and forecasts, helping you make informed business decisions. The report includes the most recent global tariff developments and how they impact the Micro-mobility Charging Infrastructure market.

Global Micro-Mobility Charging Infrastructure Market - Key Trends & Drivers Summarized

What Is Micro-Mobility Charging Infrastructure and Why Is It Essential?

Micro-mobility charging infrastructure refers to the network of charging stations and systems specifically designed to recharge electric-powered micro-mobility vehicles, such as e-scooters, e-bikes, and other small electric vehicles (EVs). With the rapid growth of shared micro-mobility services in urban areas, including scooter-sharing and bike-sharing programs, the need for efficient and accessible charging infrastructure has become critical. This infrastructure includes charging stations, battery swapping stations, and sometimes, even charging hubs integrated into public spaces like parks, parking lots, and commercial centers. These solutions enable quick, convenient charging to ensure that micro-mobility fleets remain operational and meet the increasing demand for eco-friendly transportation options.

The need for micro-mobility charging infrastructure is increasingly evident in cities worldwide as they seek to reduce congestion, pollution, and their carbon footprints. With urban mobility trends shifting toward sustainable and electric-powered vehicles, micro-mobility has emerged as a popular mode of transportation, especially for short trips. The reliability of charging infrastructure directly affects the performance and sustainability of these services. If users cannot easily access charging stations or swap out batteries, services face operational disruptions that impact rider experience and service continuity. Therefore, establishing a well-maintained, widespread charging infrastructure is key to the long-term success of micro-mobility systems in urban areas.

As governments push for cleaner transport options and cities become more congested, micro-mobility vehicles powered by clean energy are gaining popularity. This surge in demand is fueling investment in robust charging networks that can keep vehicles powered and functional. Additionally, as micro-mobility services evolve and expand into more metropolitan areas, optimizing the charging infrastructure is critical for scaling these services efficiently. This includes not only increasing the number of charging stations but also enhancing their technology for faster, more efficient charging.

What Are the Emerging Trends Shaping the Micro-Mobility Charging Infrastructure Market?

The micro-mobility charging infrastructure market is undergoing a transformation driven by several emerging trends. One of the most significant developments is the shift toward faster, more efficient charging technologies. As electric micro-mobility vehicles become more prevalent, the demand for faster charging solutions is growing. Traditional charging times can be inconvenient for users, especially in shared micro-mobility services where turnaround times need to be minimized. Therefore, technologies like high-speed chargers, ultra-fast charging stations, and quick battery swap stations are being adopted more widely to ensure that micro-mobility services remain operational with minimal downtime.

Another key trend is the integration of renewable energy sources into the charging infrastructure. As cities aim to reduce their carbon footprints, there is a growing push for the integration of solar power, wind energy, and other renewable sources into charging stations. Charging stations that use renewable energy sources not only promote cleaner transportation but also contribute to sustainable urban development. These green charging stations are often seen as part of a broader push toward creating eco-friendly cities. For example, solar-powered e-scooter charging stations are becoming more common in urban spaces, allowing for a more sustainable way to power micro-mobility vehicles.

The development of smart charging infrastructure is also gaining traction. Smart charging systems enable better management of the power grid, monitoring of charging patterns, and data collection for improved operational efficiency. These systems can optimize energy usage, reduce peak demand charges, and even provide real-time information to users about available charging stations. As micro-mobility fleets increase in number, the ability to track usage patterns and automate charging schedules will help reduce energy costs and enhance the efficiency of micro-mobility services. The integration of data analytics into these charging networks is also facilitating better fleet management and route optimization for operators, leading to greater overall system efficiency.

How Does Micro-Mobility Charging Infrastructure Contribute to Urban Mobility Solutions?

Micro-mobility charging infrastructure plays a crucial role in the broader urban mobility landscape by ensuring the sustainability and scalability of shared electric transportation systems. As cities around the world continue to face traffic congestion, high pollution levels, and strained public transportation systems, micro-mobility solutions offer a promising alternative. However, without the appropriate charging infrastructure in place, these services would struggle to maintain consistent availability, especially in high-demand areas.

Charging infrastructure directly supports the operations of shared e-scooters, e-bikes, and other micro-mobility vehicles by ensuring that they are constantly ready for use. With the increased reliance on micro-mobility for first- and last-mile connectivity, particularly in urban environments, users require convenient access to vehicles at all times. Charging stations must, therefore, be strategically placed throughout urban areas, particularly in high-density zones like commercial centers, transport hubs, and residential neighborhoods. This ensures users can easily locate charging stations and reduces the risk of running out of power during use.

In addition to improving the user experience, well-established charging infrastructure also supports the efficiency of fleet management. Micro-mobility fleet operators can use charging station data to optimize vehicle availability, reduce operational costs, and increase the lifetime of their vehicles. For example, operators can monitor battery levels and charging times to predict when vehicles will be available for redeployment in high-demand locations. As a result, the system becomes more efficient, reducing downtime and ensuring that users can access transportation options when needed.

What Are the Main Drivers of Growth in the Micro-Mobility Charging Infrastructure Market?

The growth in the micro-mobility charging infrastructure market is driven by several factors, including the rapid adoption of electric micro-mobility solutions, government policies promoting clean transportation, and technological advancements in charging solutions. One of the primary drivers is the increasing use of electric micro-mobility vehicles in urban transportation. Cities are increasingly turning to electric scooters, e-bikes, and other small electric vehicles to provide sustainable, cost-effective solutions to urban transportation challenges. As these micro-mobility services expand, the demand for efficient charging infrastructure rises, ensuring that vehicles are continuously operational and can meet the needs of riders.

Government support and regulatory policies are also playing a significant role in the growth of micro-mobility charging infrastructure. Many governments are offering incentives and subsidies to promote the adoption of electric vehicles, including micro-mobility options. In some cities, local governments are implementing regulations that require the installation of charging stations for micro-mobility vehicles in public spaces, ensuring that infrastructure keeps pace with the growing demand for electric transportation. These policies not only promote sustainability but also support the development of the necessary charging networks to facilitate widespread adoption.

Technological innovations, particularly in the areas of fast-charging technology, smart charging, and integration with renewable energy sources, are further driving the market. As consumers and businesses alike demand faster and more reliable charging solutions, companies are investing in the development of high-speed chargers, modular systems, and infrastructure that can accommodate increasing numbers of vehicles. Additionally, the integration of renewable energy into charging stations aligns with the growing trend toward sustainability in urban planning, further accelerating demand for these advanced charging solutions.

Finally, the rapid expansion of shared micro-mobility services is a key driver for the market`s growth. Companies that operate shared fleets of e-scooters and e-bikes are expanding rapidly to meet demand in more cities around the world. For these services to scale successfully, an extensive and reliable charging network is required. As the number of micro-mobility vehicles continues to increase, the infrastructure needed to support them must grow as well, making micro-mobility charging solutions a critical component of the transportation ecosystem in urban areas.

In conclusion, the micro-mobility charging infrastructure market is growing at a rapid pace due to increased adoption of electric micro-mobility vehicles, supportive government policies, and advancements in technology. As cities and businesses continue to embrace sustainable transportation solutions, the demand for efficient, fast, and widespread charging infrastructure will be crucial to ensure the success and scalability of micro-mobility services. The integration of renewable energy sources and smart technology will further enhance the growth prospects of the market in the coming years.

Report Scope

The report analyzes the Micro-mobility Charging Infrastructure market, presented in terms of market value (US$ Thousand). The analysis covers the key segments and geographic regions outlined below.

Segments: Vehicle Type (E Scooters, E Bikes, E Skateboards, E Unicycles); Charger Type (Wired Charger, Wireless Charger); Power Source (Battery Powered Charging Infrastructure, Solar Powered Charging Infrastructure); End-Use (Residential End-Use, Commercial End-Use)

Geographic Regions/Countries: World; United States; Canada; Japan; China; Europe (France; Germany; Italy; United Kingdom; Spain; Russia; and Rest of Europe); Asia-Pacific (Australia; India; South Korea; and Rest of Asia-Pacific); Latin America (Argentina; Brazil; Mexico; and Rest of Latin America); Middle East (Iran; Israel; Saudi Arabia; United Arab Emirates; and Rest of Middle East); and Africa.

Key Insights:

  • Market Growth: Understand the significant growth trajectory of the E Scooters segment, which is expected to reach US$11.4 Billion by 2030 with a CAGR of a 26.6%. The E Bikes segment is also set to grow at 19.7% CAGR over the analysis period.
  • Regional Analysis: Gain insights into the U.S. market, estimated at $1.9 Billion in 2024, and China, forecasted to grow at an impressive 31.2% CAGR to reach $6.0 Billion by 2030. Discover growth trends in other key regions, including Japan, Canada, Germany, and the Asia-Pacific.

Why You Should Buy This Report:

  • Detailed Market Analysis: Access a thorough analysis of the Global Micro-mobility Charging Infrastructure Market, covering all major geographic regions and market segments.
  • Competitive Insights: Get an overview of the competitive landscape, including the market presence of major players across different geographies.
  • Future Trends and Drivers: Understand the key trends and drivers shaping the future of the Global Micro-mobility Charging Infrastructure Market.
  • Actionable Insights: Benefit from actionable insights that can help you identify new revenue opportunities and make strategic business decisions.

Key Questions Answered:

  • How is the Global Micro-mobility Charging Infrastructure Market expected to evolve by 2030?
  • What are the main drivers and restraints affecting the market?
  • Which market segments will grow the most over the forecast period?
  • How will market shares for different regions and segments change by 2030?
  • Who are the leading players in the market, and what are their prospects?

Report Features:

  • Comprehensive Market Data: Independent analysis of annual sales and market forecasts in US$ Million from 2024 to 2030.
  • In-Depth Regional Analysis: Detailed insights into key markets, including the U.S., China, Japan, Canada, Europe, Asia-Pacific, Latin America, Middle East, and Africa.
  • Company Profiles: Coverage of players such as Ather Energy, Beam Global, Bird Global, CATL, Charge Enterprises and more.
  • Complimentary Updates: Receive free report updates for one year to keep you informed of the latest market developments.

Select Competitors (Total 41 Featured):

  • Ather Energy
  • Beam Global
  • Bird Global
  • CATL
  • Charge Enterprises
  • Electrify America
  • Flower Turbines
  • Giulio Barbieri SRL
  • Gogoro
  • Gravity
  • It`s Electric
  • Lime
  • Micro-Mobility Services
  • Perch Mobility
  • Revel
  • Selex Motors
  • SUN Mobility
  • Swiftmile
  • Voltpost
  • Yulu

Tariff Impact Analysis: Key Insights for 2025

Global tariff negotiations across 180+ countries are reshaping supply chains, costs, and competitiveness. This report reflects the latest developments as of April 2025 and incorporates forward-looking insights into the market outlook.

The analysts continuously track trade developments worldwide, drawing insights from leading global economists and over 200 industry and policy institutions, including think tanks, trade organizations, and national economic advisory bodies. This intelligence is integrated into forecasting models to provide timely, data-driven analysis of emerging risks and opportunities.

What’s Included in This Edition:

  • Tariff-adjusted market forecasts by region and segment
  • Analysis of cost and supply chain implications by sourcing and trade exposure
  • Strategic insights into geographic shifts

Buyers receive a free July 2025 update with:

  • Finalized tariff impacts and new trade agreement effects
  • Updated projections reflecting global sourcing and cost shifts
  • Expanded country-specific coverage across the industry

Table of Contents

I. METHODOLOGYII. EXECUTIVE SUMMARY
1. MARKET OVERVIEW
  • Influencer Market Insights
  • Tariff Impact on Global Supply Chain Patterns
  • Micro-mobility Charging Infrastructure - Global Key Competitors Percentage Market Share in 2024 (E)
  • Competitive Market Presence - Strong/Active/Niche/Trivial for Players Worldwide in 2024 (E)
2. FOCUS ON SELECT PLAYERS
3. MARKET TRENDS & DRIVERS
  • Proliferation of E-Scooters and E-Bikes in Urban Mobility Ecosystems Propels Demand for Scalable Charging Infrastructure
  • Integration of Smart Grid Technology Strengthens the Business Case for Energy-Efficient Charging Solutions
  • Government Incentives and Urban Sustainability Policies Spur Growth of Micro-Mobility Charging Networks
  • Surging Adoption of Subscription and Sharing-Based Mobility Models Expands Addressable Market Opportunity for Charging Infrastructure
  • Rapid Urbanization and Congestion Mitigation Efforts Drive Adoption of Compact Charging Stations in Densely Populated Areas
  • Deployment of Renewable Energy-Based Charging Solutions Throws the Spotlight on Sustainable Infrastructure Development
  • 5G and IoT Integration in Charging Infrastructure Accelerates Demand for Connected and Intelligent Charging Systems
  • Growing Consumer Preference for On-Demand, Last-Mile Transport Services Generates Opportunities for Distributed Charging Hubs
  • Battery Swapping Technology Innovations Create New Avenues for Fast-Charging Infrastructure Development
  • Real-Time Data Analytics and Predictive Maintenance Capabilities Drive Operational Efficiency and Service Uptime
  • Surging EV Ecosystem Investments by Tech Giants and Startups Catalyze Infrastructure Expansion Efforts
4. GLOBAL MARKET PERSPECTIVE
  • TABLE 1: World Micro-mobility Charging Infrastructure Market Analysis of Annual Sales in US$ Million for Years 2015 through 2030
  • TABLE 2: World Recent Past, Current & Future Analysis for Micro-mobility Charging Infrastructure by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Million for Years 2024 through 2030 and % CAGR
  • TABLE 3: World 6-Year Perspective for Micro-mobility Charging Infrastructure by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets for Years 2025 & 2030
  • TABLE 4: World Recent Past, Current & Future Analysis for E Scooters by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Million for Years 2024 through 2030 and % CAGR
  • TABLE 5: World 6-Year Perspective for E Scooters by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2025 & 2030
  • TABLE 6: World Recent Past, Current & Future Analysis for E Bikes by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Million for Years 2024 through 2030 and % CAGR
  • TABLE 7: World 6-Year Perspective for E Bikes by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2025 & 2030
  • TABLE 8: World Recent Past, Current & Future Analysis for E Skateboards by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Million for Years 2024 through 2030 and % CAGR
  • TABLE 9: World 6-Year Perspective for E Skateboards by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2025 & 2030
  • TABLE 10: World Recent Past, Current & Future Analysis for E Unicycles by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Million for Years 2024 through 2030 and % CAGR
  • TABLE 11: World 6-Year Perspective for E Unicycles by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2025 & 2030
  • TABLE 12: World Recent Past, Current & Future Analysis for Commercial End-Use by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Million for Years 2024 through 2030 and % CAGR
  • TABLE 13: World 6-Year Perspective for Commercial End-Use by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2025 & 2030
  • TABLE 14: World Recent Past, Current & Future Analysis for Residential End-Use by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Million for Years 2024 through 2030 and % CAGR
  • TABLE 15: World 6-Year Perspective for Residential End-Use by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2025 & 2030
  • TABLE 16: World Recent Past, Current & Future Analysis for Wired Charger by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Million for Years 2024 through 2030 and % CAGR
  • TABLE 17: World 6-Year Perspective for Wired Charger by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2025 & 2030
  • TABLE 18: World Recent Past, Current & Future Analysis for Wireless Charger by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Million for Years 2024 through 2030 and % CAGR
  • TABLE 19: World 6-Year Perspective for Wireless Charger by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2025 & 2030
  • TABLE 20: World Recent Past, Current & Future Analysis for Battery Powered Charging Infrastructure by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Million for Years 2024 through 2030 and % CAGR
  • TABLE 21: World 6-Year Perspective for Battery Powered Charging Infrastructure by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2025 & 2030
  • TABLE 22: World Recent Past, Current & Future Analysis for Solar Powered Charging Infrastructure by Geographic Region - USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa Markets - Independent Analysis of Annual Sales in US$ Million for Years 2024 through 2030 and % CAGR
  • TABLE 23: World 6-Year Perspective for Solar Powered Charging Infrastructure by Geographic Region - Percentage Breakdown of Value Sales for USA, Canada, Japan, China, Europe, Asia-Pacific, Latin America, Middle East and Africa for Years 2025 & 2030
III. MARKET ANALYSIS
  • UNITED STATES
  • Micro-mobility Charging Infrastructure Market Presence - Strong/Active/Niche/Trivial - Key Competitors in the United States for 2025 (E)
  • CANADA
  • JAPAN
  • Micro-mobility Charging Infrastructure Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Japan for 2025 (E)
  • CHINA
  • Micro-mobility Charging Infrastructure Market Presence - Strong/Active/Niche/Trivial - Key Competitors in China for 2025 (E)
  • EUROPE
  • Micro-mobility Charging Infrastructure Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Europe for 2025 (E)
  • FRANCE
  • Micro-mobility Charging Infrastructure Market Presence - Strong/Active/Niche/Trivial - Key Competitors in France for 2025 (E)
  • GERMANY
  • Micro-mobility Charging Infrastructure Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Germany for 2025 (E)
  • ITALY
  • UNITED KINGDOM
  • Micro-mobility Charging Infrastructure Market Presence - Strong/Active/Niche/Trivial - Key Competitors in the United Kingdom for 2025 (E)
  • SPAIN
  • RUSSIA
  • REST OF EUROPE
  • ASIA-PACIFIC
  • Micro-mobility Charging Infrastructure Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Asia-Pacific for 2025 (E)
  • AUSTRALIA
  • Micro-mobility Charging Infrastructure Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Australia for 2025 (E)
  • INDIA
  • Micro-mobility Charging Infrastructure Market Presence - Strong/Active/Niche/Trivial - Key Competitors in India for 2025 (E)
  • SOUTH KOREA
  • REST OF ASIA-PACIFIC
  • LATIN AMERICA
  • Micro-mobility Charging Infrastructure Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Latin America for 2025 (E)
  • ARGENTINA
  • BRAZIL
  • MEXICO
  • REST OF LATIN AMERICA
  • MIDDLE EAST
  • Micro-mobility Charging Infrastructure Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Middle East for 2025 (E)
  • IRAN
  • ISRAEL
  • SAUDI ARABIA
  • UNITED ARAB EMIRATES
  • REST OF MIDDLE EAST
  • AFRICA
  • Micro-mobility Charging Infrastructure Market Presence - Strong/Active/Niche/Trivial - Key Competitors in Africa for 2025 (E)
IV. COMPETITION

Companies Mentioned (Partial List)

A selection of companies mentioned in this report includes, but is not limited to:

  • Ather Energy
  • Beam Global
  • Bird Global
  • CATL
  • Charge Enterprises
  • Electrify America
  • Flower Turbines
  • Giulio Barbieri SRL
  • Gogoro
  • Gravity
  • It`s Electric
  • Lime
  • Micro-Mobility Services
  • Perch Mobility
  • Revel
  • Selex Motors
  • SUN Mobility
  • Swiftmile
  • Voltpost
  • Yulu

Table Information