PUBLISHER: Orion Market Research | PRODUCT CODE: 1882947
PUBLISHER: Orion Market Research | PRODUCT CODE: 1882947
Micro Mobility Battery Pack Market Size, Share & Trends Analysis Report by Battery Type (Lithium-Ion, Lead Acid, Nickel Metal Hydride Sodium, and Others) by Battery Form Factor (Cylindrical Cells, Prismatic Cells, Pouch Cells, Swappable Battery Packs, Fixed Battery Packs, Others) by Vehicle Type (E-kick Scooters, E-Bike, E-Moped, E-Skateboards, Others), and by Sales Channel (Original Equipment Manufacturer (OEM), Aftermarket Channel), Forecast Period (2026-2035)
Industry Overview
Micro-mobility battery pack market was valued at approximately $13.9 billion in 2025 and is projected to reach $34.0 billion by 2035, expanding at a CAGR of 8.5% during the forecast period. Growth is supported by rising adoption of e-bikes, e-kick scooters, and e-mopeds, along with increasing penetration of lithium-ion battery technologies across low-power personal mobility vehicles.
The global micro mobility battery market is expanding at a fast pace owing to the rising adoption of micro mobility solutions, technological advancements in battery chemistry, urbanisation and traffic congestion, rising energy costs and oil price volatility, demand for light vehicles, and others. According to the UK Department for Transport and bike-sharing platforms, during the strike, the number of bicycle trips in London surged by 47% compared to usual, with the usage frequency of electric bicycles even soaring by over 62%. Data from major bike-sharing platforms is equally impressive, as the bike turnover rate in some areas tripled compared to that before the strike, and the single-day usage rate set a new record since the platforms began operations. This surge builds greater emphasis on the availability, durability, and efficiency of battery packs.
Market Dynamics
Rising Integration of E-Bikes in Last-Mile Delivery Fleets
The rising electrification of last-mile delivery operations is evolving as a major driver for the micro-mobility battery pack market. Companies are opting for e-bikes and other light electric vehicles to lower fuel costs, reduce emissions, and improve operational efficiency. For instance, in 2025, Zomato introduced 300 electric bikes for rent to delivery partners in Delhi-NCR, reinforcing its broader plan to achieve 100% EV-based deliveries by 2030. This initiative shows that fleet-based adoption of micro-mobility solutions is preferred across urban India. This growing shift directly boosts the demand for fast-charging battery packs. Commercial fleets require batteries that can resist frequent charge-discharge cycles, support swappable systems for minimal downtime, and ensure extended range for long delivery routes.
Challenge: Rising Fire Risk and Safety Compliance of Lithium-Ion Battery Packs
The increasing adoption of lithium-ion batteries in micro-mobility vehicles such as e-bikes and e-scooters brought safety concerns to the forefront of the market. Although lithium-ion batteries offer high energy density and efficiency, they are prone to thermal runaway incidents when exposed to high temperatures, overcharging, physical damage, or manufacturing defects. These failures can lead to extreme fires that can emit toxic gases, causing serious threats in urban environments, workplaces, and residential areas where these vehicles are charged or stored. In August 2023, a lithium battery from an e-bike charging in a Brooklyn apartment hallway underwent thermal runaway. Within 60 seconds, flames engulfed the ceiling, trapping residents in toxic smoke. The incident killed 4 and injured 7. Investigations revealed the battery was illegally modified, prioritising capacity over safety, with internal short-circuiting during charging triggering the event.
Regulatory gaps and a lack of standardised fire safety performance criteria for lithium-ion battery packs in micro-mobility vehicles create inconsistency in safety assurance. Although international standards such as IEC 62133, UL 1642, and UL 9540 address electrical and mechanical safety, specific guidelines for fire performance, storage, and disposal are still emerging. As a result, legislation such as the UK's Safety of Electric-Powered Micromobility Vehicles and Lithium Batteries Bill introduces stricter compliance for testing, responsible disposal, and fire safety measures.
Market Segmentation
Cylindrical Cells Battery Form Factor: A Key Segment in Market Growth
A cylindrical cell is a cell enclosed in a rigid cylinder. Cylindrical cells are small and round, making it possible to stack them in devices of all sizes. Unlike other battery formats, its shape prevents swelling, an undesired phenomenon in batteries where gases accumulate in the casing. Cylindrical cells are widely used in e-bikes. These advantages make cylindrical cells a preferred choice for micro mobility solutions, encouraging battery manufacturers to provide innovative products. For instance, in March 2025, Samsung SSI announced that the company had embarked on the production of 46-series cylindrical batteries with a diameter of 46 millimetres, known as the next generation of cylindrical batteries.
The global micro mobility battery pack market is further divided by region, including North America (the US and Canada), Europe (the UK, Germany, France, Italy, Spain, Russia, and the Rest of Europe), Asia-Pacific (India, China, Japan, South Korea, Australia and New Zealand, ASEAN Countries, and the Rest of Asia-Pacific), and the Rest of the World (the Middle East & Africa, and Latin America).
Asia-Asia-Pacific is Leading the Global Micro Mobility Battery Pack Market
Asia Pacific holds a significant share, owing to the market growth is primarily driven by the rising demand for electric bicycles in the region. Cost savings emerged as the primary motivator for e-bike use. The escalating emissions from China's public transportation sector have intensified environmental concerns, prompting the need for sustainable alternatives. Among these, electric bikes (e-bikes) have emerged as an effective solution, helping to alleviate traffic congestion, enhance environmental quality, and promote public health. When compared to motorcycles and automobiles, e-bikes generate substantially fewer pollutants per kilometre, with emissions reduced by several magnitudes. Moreover, e-bikes demonstrate superior energy efficiency compared to most other modes of transportation, with the exception of traditional bicycles.
Furthermore, as per the State Council of the People's Republic of China, China's electric bicycle trade-in program has driven a boom in both production and sales in 2025. In the first six months of 2025, on average, sales of electric bicycles through the trade-in program across the country increased by 113.5% month on month. By the end of June, a total of about 8.47 million new electric bicycles had been sold to replace old ones across the country, which is 6.1 times that of 2024. Sales in Jiangsu, Hebei and Zhejiang provinces all exceeded 1 million units, while in each of 16 other provincial-level regions, including Anhui and Shandong, sales exceeded 100,000 units. This growth in electric bicycle adoption, supported by government initiatives and strong consumer demand, is boosting the need for efficient and high-performance battery packs.
The major companies operating in the global micro mobility battery pack market include BYD Europe B.V., LG Energy Solution, Samsung SDI Co., Ltd., Panasonic Industry Europe GmbH, and others. Market players are leveraging partnerships, collaborations, mergers, and acquisition strategies for business expansion and innovative product development to maintain their market positioning.