Automotive Battery Market Report (Europe)

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Our newest report on the European Automotive Battery Market (May 2026)

The European Battery Market Report provides a comprehensive analysis of the European market for EVs and EV batteries. It examines market size, cell and pack architectures, energy density trends, cell chemistries, and technological developments. This is supplemented by analyses of weight and capacity distributions, as well as the supplier landscape and the origin of raw materials. The data is based on the period 2015–2025.

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Methodology

Key Questions

How will the European battery market develop by 2030?
– What volumes can be expected by application, e.g. EV and stationary storage?

Which cell chemistries and cell formats will dominate the market?
– How will LFP, NMC, solid-state technologies and other trends develop?

Which OEMs and platforms use which battery types?
– And how do their architectures, capacities and charging capabilities differ?

How are energy density and weight ratios changing across battery generations?
– At cell level and pack level, both gravimetric and volumetric.

How many different battery cells and battery systems are currently in use?
– And how large is the technological diversity in the market?

What market shares do prismatic, pouch and cylindrical cells have in Europe?
– And how does this influence design decisions and integration strategies?

What does the geographic and technological distribution of cell suppliers look like?
– Who supplies whom, and which dependencies exist?

How are pack architectures changing, e.g. cell-to-pack and cell-to-chassis?
– What role does modularity play for efficiency and repairability?

Which battery types enable the shortest charging times?
– And what is the relationship between cell chemistry, charging power and capacity?

How well positioned is Europe in low-CO₂ cell production?
– Which plants use green energy, and where are the remaining gaps?

Insights into the Report

What’s inside?

The PEM Motion EU Battery Report provides critical intelligence into the European EV sector, recognizing macrotrends to provide a thorough assessment of technology updates across EV models of top market players.

Table of content

Overview of Content

1             Executive Summary

2             Methodology & Database

2.1          Methodology

2.2          Definition of the Database

2.3          Facts about the Development Process of this Document

3             Development of the European EV & Battery Market

3.1          Development of the European E-Mobility market

3.1.1     Statistical Analysis

3.1.2     Market and Technology Diversity

3.1.3     TOP Models and Manufacturers

3.2        Development of automotive batteries in Europe 

3.2.1     Statistical Analysis

3.2.2     Market and Technology Diversity

3.2.3     The best-selling Battery Technology

3.3        Development of battery cells in Europe

3.3.1     Statistical analysis

3.3.2     Market and technology diversity

3.3.3     TOP Models/Cells & volume per best OEM Panasonic? BYD?)

4           Outlook: What is next to come?

Table of figures

Overview of figures

Figure 1: Methodology for data collection and analysis

Figure 2: New Car Registrations of BEVs and PHEVs in Europe between 2015 and 2025

Figure 3: Number of EV Models, TOP Models and Representative Market Share of TOP
Models in Europe per Year between 2016 and 2025

Figure 4: Market Share of TOP 10 EV Models in Europe per year between 2016 and 2020

Figure 5: Market Share of TOP 10 EV Models in Europe per year between 2021 and 2024.

Figure 8: Total New Car Registrations in units in Europe between 2015 and 2025.

Figure 9: Share of Total New Car Registrations in Europe between 2015 and 2025.

Figure 10: Market Share of TOP OEMs in Europe between 2016 and 2025

Figure 11: TOP OEMs ranked by the Total Number of New EV Registrations between 2016
and 2025.

Figure 12: Market Share of TOP Groups in Europe between 2016 and 2025.

Figure 13: TOP Groups ranked by the Share of New EV Registrations between 2016 and 2025.

Figure 14: Development of Battery Capacity in Europe between 2015 and 2025.

Figure 15: Development of Battery Weight in Europe between 2015 and 2025.

Figure 16: Number of different Battery Systems placed on the European Market between 2015 and 2025 (diversified by Cell Chemistry, Cell Format, System Architecture,
Voltage Level and Energy Density).

Figure 17: Classification of Generations of HV-Traction Battery System Architectures

Figure 18: Number of different Battery Systems placed on the European Market between
2015 and 2025 (diversified by Generation of System Architecture).

Figure 19: Development of Gravimetric Energy Density on Pack Level in Europe between 2011 and 2024.

Figure 20: Categorization of TOP Battery Models by Gravimetric Energy Density [Wh/kg],
Market Capacity [MWh] and Cell Chemistry in Europe in 2024.

Figure 21: Number of Battery Cell Integrations in Automotive Battery Packs in Europe
between 2015 and 2025.

Figure 22: Market Share of TOP Battey Cell Manufacturers in Europe between 2015 and 2025.

For whom?

Automotive OEMs and TIER suppliers, battery cell manufacturers, lithium ion battery experts, consultants, and
investors navigating 2026’s volatile registration shifts

Where is the information coming from?

To ensure maximum data integrity, we systematically consolidated and quality-checked BEV and PHEV registration figures from every EU market. This robust statistical foundation is further reinforced by a synthesis of findings from 40+ specialized research projects, grounding our market insights in proven empirical evidence and multi-sector expertise.

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Battery Circular Economy Report (Europe)
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