India Micro Mobility Charging Infrastructure Market Outlook to 2028

India Micro Mobility Charging Infrastructure Market Overview

The India micro mobility charging infrastructure market is valued at USD 199 million. This growth has been driven primarily by the rapid adoption of electric two-wheelers and micro-mobility solutions like e-scooters and e-bikes in densely populated urban areas. Government initiatives such as the Faster Adoption and Manufacturing of Electric Vehicles (FAME) scheme and various state-level subsidies have propelled this market. Moreover, the increasing cost of fossil fuels has incentivized commuters to shift towards electric micro-mobility solutions, which in turn drives the demand for charging infrastructure.

Cities like Bengaluru, Delhi, and Pune are dominant players in the micro-mobility market due to their large urban populations and congested traffic conditions, making micro-mobility a practical solution for short commutes. These cities have also been at the forefront of electric vehicle adoption, supported by municipal policies aimed at reducing air pollution. Additionally, these regions have a higher concentration of tech-savvy consumers who are early adopters of green technologies like electric vehicles.

Public-private partnerships (PPPs) are playing a vital role in developing Indias EV charging infrastructure. In 2023, the Government of India partnered with several private entities, including Tata Power and NTPC, to establish 100,000 charging stations across the country. These collaborations are essential in scaling infrastructure to meet the growing demand for electric micro-mobility charging.

India Micro Mobility Charging Infrastructure Market Segmentation

India's micro mobility charging infrastructure market is segmented by charging type and by vehicle type.

By Charging Type: The market is segmented by charging type into slow charging, fast charging, and battery swapping. Fast charging currently holds the dominant market share due to its growing demand from fleet operators and consumers who prefer reduced downtime when charging their electric two-wheelers. Major players such as Tata Power and Ather Grid are focusing on expanding fast-charging networks in urban areas, catering to the increasing demand from micro-mobility users.

By Vehicle Type: The micro mobility charging infrastructure market is also segmented by vehicle type into e-scooters, e-bikes, e-mopeds, and e-rickshaws. E-scooters have the largest market share because they are more versatile for urban commutes and have a higher adoption rate due to their affordability and low maintenance. E-scooters are also supported by the availability of compact and easy-to-install charging stations in densely populated cities.

India Micro Mobility Charging Infrastructure Market Competitive Landscape

The India micro mobility charging infrastructure market is highly competitive, with major players such as Tata Power, Ather Grid, and Ola Electric leading the charge. The market is characterized by a mix of established players and new entrants, all vying for market share by expanding their charging networks and collaborating with municipalities and real estate developers for infrastructure deployment. The competitive landscape is driven by the expansion of charging networks, strategic collaborations with municipal authorities, and increasing investments in technology such as fast-charging solutions and battery-swapping technology.

Company Name

Established Year

Headquarters

Charging Stations Installed

Revenue (USD Mn)

Technology Patents

Strategic Partnerships

Regions Covered

Cap Ex

Tata Power

1919

Mumbai

Ather Grid

2013

Bengaluru

Ola Electric

2017

Bengaluru

Magenta Power

2017

Navi Mumbai

Sun Mobility

2017

Bengaluru

India Micro Mobility Charging Infrastructure Industry Analysis

Growth Drivers

Increasing Urbanization: India's urban population is expected to reach over 500 million by 2025, as per World Bank estimates, driving the demand for efficient transportation solutions, including electric micro-mobility options. The growing congestion in cities like Mumbai and Delhi has made micro-mobility solutions more attractive due to their ease of maneuverability. Additionally, the Indian government has invested in urban infrastructure, such as smart cities and electric vehicle (EV) infrastructure, enhancing the ecosystem for micro-mobility services. This growing urban density fuels the need for robust charging infrastructure to support micro-mobility solutions.

Rise in Electric Micro-Mobility Adoption: India is witnessing a surge in the adoption of electric micro-mobility vehicles such as electric scooters, e-bikes, and e-rickshaws. According to the Ministry of Heavy Industries, over 600,000 electric two-wheelers were sold in 2023, significantly driving the need for enhanced charging infrastructure. As cities move towards greener transport options, this adoption rate is expected to fuel the growth of charging stations in urban and semi-urban areas.

Government Policies Promoting Electric Vehicles: The Government of India has been proactive in supporting electric vehicle adoption through the Faster Adoption and Manufacturing of Electric Vehicles (FAME) scheme. In 2024, the FAME II scheme had a budget outlay of INR 10,000 crore, focusing on establishing a nationwide charging infrastructure. Furthermore, state-level policies are promoting private sector participation in charging infrastructure, reducing the financial burden on the government. This policy-driven approach is expected to significantly impact the micro-mobility charging infrastructure market.

Market Challenges

High Capital Investment Requirements: Setting up charging infrastructure for micro-mobility requires substantial capital investment, with each station costing between INR 10 lakh to INR 20 lakh. This high cost, which includes land acquisition, installation, and ongoing maintenance, presents a significant challenge for both public and private entities. Despite government incentives, the initial capital outlay remains a significant barrier, particularly for smaller cities and less economically vibrant regions in India.

Limited Battery Capacity of Micro-Mobility Devices: Most electric micro-mobility vehicles, such as e-scooters and e-bikes, have a limited battery range of around 50-70 kilometers per charge. This limitation creates frequent demand for charging, which increases pressure on the existing infrastructure. Until there is a breakthrough in battery technology, this will remain a challenge for the effective operation of a widespread micro-mobility charging network.

India Micro Mobility Charging Infrastructure Market Future Outlook

Over the next five years, the India micro mobility charging infrastructure market is expected to experience significant growth, driven by continuous government support, the expansion of electric micro-mobility options, and investments in fast-changing technologies. Companies are increasingly focusing on integrating smart-grid solutions and establishing partnerships with real estate developers to install charging points in residential and commercial complexes. The market is also expected to witness the rise of battery-swapping networks, particularly in urban areas, as a quick and convenient alternative for micro-mobility users.

Future Market Opportunities

Development of Fast Charging Technologies: The demand for fast-charging technology is rising, especially as users seek convenience and quicker charging times. Several companies have developed charging solutions that can power a micro-mobility vehicle in under an hour. For instance, Ola Electric's hypercharger network is designed to charge their e-scooters in less than 30 minutes. The rollout of such technologies will enhance the appeal of electric micro-mobility vehicles, boosting infrastructure development.

Integration with Smart Grid Solutions: The integration of EV charging infrastructure with smart grid solutions presents a significant opportunity for optimizing energy use. By connecting charging stations to the national grid and allowing for real-time data exchange, utilities can manage load distribution more efficiently. This integration also opens opportunities for renewable energy usage in the charging process, reducing the environmental impact. Smart grid systems have already been piloted in cities like Delhi, where 300 smart meters were installed in 2023 to support EV charging stations.
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1. India Micro Mobility Charging Infrastructure Market Overview
1.1. Definition and Scope
1.2. Market Taxonomy
1.3. Market Growth Rate
1.4. Market Segmentation Overview
2. India Micro Mobility Charging Infrastructure Market Size (In USD Mn)
2.1. Historical Market Size
2.2. Year-On-Year Growth Analysis
2.3. Key Market Developments and Milestones
3. India Micro Mobility Charging Infrastructure Market Analysis
3.1. Growth Drivers
3.1.1. Increasing Urbanization
3.1.2. Rise in Electric Micro-Mobility Adoption
3.1.3. Government Policies Promoting Electric Vehicles
3.1.4. Expansion of Charging Infrastructure by Private Entities
3.2. Market Challenges
3.2.1. High Capital Investment Requirements
3.2.2. Limited Battery Capacity of Micro-Mobility Devices
3.2.3. Land Acquisition Issues for Charging Stations
3.3. Opportunities
3.3.1. Development of Fast Charging Technologies
3.3.2. Integration with Smart Grid Solutions
3.3.3. Increased Demand for Shared Mobility Solutions
3.4. Trends
3.4.1. Adoption of Battery Swapping Technology
3.4.2. Expansion of Charging Networks in Tier 2 and Tier 3 Cities
3.4.3. Collaborations Between OEMs and Charging Solution Providers
3.5. Government Regulation
3.5.1. Electric Vehicle Charging Guidelines
3.5.2. National Electric Mobility Mission Plan
3.5.3. Public-Private Partnerships for Charging Infrastructure
3.6. SWOT Analysis
3.7. Stakeholder Ecosystem
3.8. Porters Five Forces Analysis
3.9. Competitive Ecosystem
4. India Micro Mobility Charging Infrastructure Market Segmentation
4.1. By Charging Type (In Value %)
4.1.1. Slow Charging
4.1.2. Fast Charging
4.1.3. Battery Swapping
4.2. By Vehicle Type (In Value %)
4.2.1. E-Scooters
4.2.2. E-Bikes
4.2.3. E-Mopeds
4.2.4. E-Rickshaws
4.3. By End-User (In Value %)
4.3.1. Residential
4.3.2. Commercial Fleets
4.3.3. Government Initiatives
4.4. By Power Output (In Value %)
4.4.1. Less than 2kW
4.4.2. 2kW - 7kW
4.4.3. More than 7kW
4.5. By Region (In Value %)
4.5.1. Northern India
4.5.2. Southern India
4.5.3. Western India
4.5.4. Eastern India
5. India Micro Mobility Charging Infrastructure Market Competitive Analysis
5.1 Detailed Profiles of Major Companies
5.1.1. Tata Power
5.1.2. Fortum India
5.1.3. Ather Grid
5.1.4. Magenta Power
5.1.5. Reliance New Energy
5.1.6. Hero Electric
5.1.7. Ola Electric
5.1.8. EV Motors India
5.1.9. ChargeGrid (Exicom)
5.1.10. Sun Mobility
5.1.11. Volttic
5.1.12. Delta Electronics India
5.1.13. ABB India
5.1.14. Statiq
5.1.15. Bosch India
5.2 Cross Comparison Parameters (Market Share, Installed Charging Stations, Service Areas, Revenue, Strategic Partnerships, Technology Patents, CapEx, Power Output Capability)
5.3 Market Share Analysis
5.4 Strategic Initiatives
5.5 Mergers and Acquisitions
5.6 Investment Analysis
5.7 Venture Capital Funding
5.8 Government Grants
5.9 Private Equity Investments
6. India Micro Mobility Charging Infrastructure Market Regulatory Framework
6.1. EV Charging Guidelines
6.2. Government Incentives for Infrastructure Development
6.3. Charging Station Certification and Standards
7. India Micro Mobility Charging Infrastructure Future Market Size (In USD Mn)
7.1. Future Market Size Projections
7.2. Key Factors Driving Future Market Growth
8. India Micro Mobility Charging Infrastructure Future Market Segmentation
8.1. By Charging Type (In Value %)
8.2. By Vehicle Type (In Value %)
8.3. By End-User (In Value %)
8.4. By Power Output (In Value %)
8.5. By Region (In Value %)
9. India Micro Mobility Charging Infrastructure Market Analysts Recommendations
9.1. TAM/SAM/SOM Analysis
9.2. White Space Opportunity Analysis
9.3. Marketing Strategies for Market Penetration
9.4. Customer Segment Analysis
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