Micro-Mobility Charging Infrastructure Market to Grow with a CAGR of 20.5% through 2030
Rising adoption of electric two-wheelers, increasing
focus on urban sustainability, and technological advancements in charging
infrastructure are the factors driving the market in the forecast period
2026–2030.
According to TechSci Research report, “Micro-Mobility
Charging Infrastructure Market – Global Industry Size, Share, Trends,
Opportunity, and Forecast, 2020-2030F”, The Global
Micro-Mobility Charging Infrastructure Market was valued at USD 6.2 billion in
2024 and is expected to reach USD 18.9 billion by 2030 with a CAGR of 20.5%
during the forecast period.
Urban reliance on electric micro-mobility vehicles is
accelerating the development of dedicated charging systems. The increased
presence of e-bikes and e-scooters on city streets is creating the need for
more accessible and dependable power stations. Local authorities and private
operators are scaling infrastructure to align with the growing preference for
low-emission travel modes in urban environments.
The market is witnessing innovation through developments
like fast-charging and contactless power transfer, allowing users to top up
batteries with minimal downtime. Software integration with vehicle fleets
enabling real-time data exchange, improving the management and maintenance of
charging units. Wireless modules and battery exchange hubs are emerging as
user-friendly solutions for time-sensitive riders.
There are still barriers that inhibit widespread growth,
including high installation costs, diverse charging standards, and the
durability of infrastructure exposed to outdoor environments. Differences in
regulatory frameworks across countries also slow down cross-border scalability.
However, support from policymakers and sustained consumer interest in green
mobility are motivating broader infrastructure deployment and investment.
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Micro-Mobility Charging Infrastructure Market Is
Segmented by Vehicle, Charging, Infrastructure, End User, and Region.
In 2024, battery swapping emerged as the fastest-growing
segment in the global micro-mobility charging infrastructure market. This
technology is gaining traction due to its ability to provide a quick and
efficient alternative to traditional charging methods. Battery swapping allows
users to exchange depleted batteries for fully charged ones at dedicated
stations, significantly reducing the downtime associated with recharging. This
feature is especially valuable for shared fleets, where minimizing vehicle downtime
is critical to maintaining operational efficiency and ensuring a high turnover
rate for vehicles.
The rise of battery swapping is driven by the increasing
need for faster charging solutions, particularly in urban environments where
micro-mobility vehicles, such as e-scooters and e-bikes, are used in
high-demand, quick-turnaround scenarios. Battery swapping eliminates the wait
time required for plug-in charging, which can often take several hours.
Instead, users can quickly swap out their batteries in a matter of minutes,
allowing the vehicles to continue operating without disruption. This is a crucial
advantage for service providers managing fleets of micro-mobility vehicles,
where downtime directly impacts fleet utilization and revenue.
Another factor contributing to the growth of battery
swapping is its alignment with the needs of shared mobility operators. As these
operators seek to optimize fleet management, battery swapping offers an
efficient method for always keeping vehicles ready for use. With the rapid
adoption of e-scooter and e-bike sharing platforms, having a scalable,
fast-charging solution that ensures continuous vehicle availability becomes
even more important. Battery swapping stations can be deployed in strategic
locations, allowing for better distribution and management of vehicles.
Asia-Pacific emerged as the fastest growing region in the
Global Micro-Mobility Charging Infrastructure Market in 2024. Rapid expansion
of regional airlines, increased investment in airport infrastructure, and
higher demand for aircraft maintenance services contributed to the growth.
Countries in the region have intensified defense modernization programs, which
also fueled the need for reliable ground support equipment. With rising
domestic air travel and growing focus on safety compliance, maintenance facilities
are equipping themselves with advanced tripod jacks to support diverse aircraft
types. The demand from both commercial aviation and military airbases continues
to drive new procurement and modernization of lifting systems. As a result,
manufacturers are responding with region-specific designs and training programs
tailored for evolving fleet maintenance needs.
Major Market Players Operating in Global Micro-Mobility
Charging Infrastructure Market Are:
- Acton
Inc.
- Bikeep
- Charge
Enterprises
- DUCKT
- Electric
Avenue
- GetCharged
Inc. (Charge)
- Helbiz
- Loop
Mobility
- Perch
Mobility
- Swiftmile
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The Global Micro-Mobility Charging Infrastructure Market is
witnessing significant growth as cities increasingly adopt electric
micro-mobility solutions such as e-scooters, e-bikes, and electric skateboards.
This shift is driven by rising environmental concerns, the need to reduce urban
traffic congestion, and the growing popularity of sustainable transportation.
To support this transition, the demand for accessible, reliable, and scalable
charging infrastructure is expanding rapidly across public and private spaces.
Technological advancements are shaping the market, with developments in
fast-charging systems, wireless charging, and battery swapping solutions. These
technologies address user concerns around convenience, safety, and charging
time. Integration of smart technologies such as IoT and cloud-based monitoring
also enhances the efficiency and management of charging systems. These
innovations allow for real-time tracking, predictive maintenance, and better
asset utilization, supporting large-scale deployments in urban areas",
According to Mr. Karan Chechi, Research Director of TechSci Research, a global
research-based management consulting firm, these trends are expected to
contribute significantly to the market's expansion.
"Micro-Mobility Charging Infrastructure Market – Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Vehicle (E-scooters, E-bikes, Electric skateboards, Others), By Charging (Plug-in Charging, Wireless Charging, Battery Swapping), By Infrastructure (Docking Stations, Charging Kiosks, Smart Lockers), By End User (Commercial, Residential, Government), By Region & Competition, 2020-2030F”, assesses the market's future growth
potential and provides data on market size, trends, and forecasts. It aims to offer
comprehensive market insights, helping decision-makers make informed investment
choices. The report also highlights emerging trends, key drivers, challenges,
and opportunities in the Global Micro-Mobility Charging Infrastructure Market.
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