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Solid State Battery Assembly System Market to Reach 30.8% CAGR by 2031 Top 10 Company Globally

07-31-2025 12:47 AM CET | Business, Economy, Finances, Banking & Insurance

Press release from: QY Research

Solid State Battery Assembly System Market to Reach 30.8% CAGR

Solidstate battery assembly systems are specialized manufacturing platforms designed to precisely fabricate solidstate batteries. These systems assemble solid electrolytes, electrodes, and separators under controlled, often dryroom environments to ensure high reliability, safety, and energy density. As global demand for electric vehicles (EVs), consumer electronics, and renewable energy storage accelerates, SSB assembly infrastructure becomes a strategic bottleneck and opportunity for highprecision industrial automatitaion.

The global market for solidstate battery assembly systems reached approximately USD 285 million in 2024, with the market projected to surge to USD 2,325 million by 2031, reflecting a CAGR of 30.8%. This strong growth trajectory is propelled by expanding solidstate battery pilot lines, industrial scaleup, and EV industry investments.
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Latest Trends and Technological Developments
The May 2025 Valuates report reaffirmed the projected growth of SSB assembly systems to USD 1.87 billion by 2031, driven by rising automation and demand for precision dryroom manufacturing systems. Complementing this, data from mid2025 indicates AsiaPacific dominance in production and adoption of cellassembly equipment, owing to major battery firms like CATL, Samsung SDI, LG, and Panasonic scaling pilot and early production lines. In November 2024, China's CATL announced breakthroughs in solid electrolytes reaching energy densities of 500 Wh/kg, creating urgency to expand assembly infrastructure.
AsiaPacific was the dominant region in 2024, capturing over 50% of global SSB assembly system revenue. A wealth of battery cell production capability in China, South Korea, Japan, and Taiwan drives regional adoption of assembly systems. Many EV startups and established automakers in China and Japan are investing in pilot facilities, making AsiaPacific the central hub for early mass deployment and R&D. Taiwan-based ProLogium continues expansion with subsidiaries in Singapore and manufacturing scale-ups that leverage regional assembly system suppliers.

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Solid State Battery Assembly System by Type:
Thin Film Asssembly Systems

Bulk Type Assembly Systems

Hybrid Assembly Systems

Roll to Roll Assembly Systems

Others

Solid State Battery Assembly System by Application:
Electronic Vehicles

Consumer Electronic

Medical Devices

Aerospace

Others

Global Top 10 Key Companies in the Solid State Battery Assembly System Market
Cymbet Corporation

Solid Power Inc.

Quantum Space

LG Chem

Panasonic Corporation

Samsung SDI Co.,Ltd

Wuxi Lead Intelligent Equipment Co., Ltd.(无锡先导智能装备股份有限公司)

Kanadevia Corporation

SK Innovation

Contemporary Amp Technology Co. Limited

Regional Insights
In Southeast Asia (Thailand, Malaysia, Indonesia, Vietnam, Philippines), adoption remains nascent in 2024 but is accelerating. Countries like Malaysia and Vietnam are investing in EV and battery ecosystems, with firms like EVE Energy building cell plants in Malaysia and signaling local demand for assembly systems. Southeast Asia is projected to grow at a slightly faster CAGR (~32%) than the global average, driven by new manufacturing entrants, regional policy support, and partnerships with Chinese and Taiwanese SSB integrators.
Solid State Battery Assembly System by Region:
North America
Europe
China
Japan
India
South East Asia

Significant challenges include technology complexity and high capital cost for dryroom assembly lines, along with supply chain constraints for specialty materials and robotics. Manufacturers face integration hurdles requiring precise alignment, particulate control, and safety certifications. Supply chain geopolitics and risk of tariff and export controls add layers of unpredictability. In Southeast Asia, limited technical readiness and scarcity of installed pilot facilities may slow initial adoption and require local training investments.
Suppliers should offer scalable, modular assembly systems capable of being deployed from pilot lines to early-stage mass production. Partnerships or JV models in Southeast Asia can enable local assembly system presence aligned with cell producers like ProLogium, Panasonic, and CATL. Emphasis on digital automation, cleanroom robotics, and AI-based quality inspection helps differentiate equipment. Leasing or equipmentasaservice offerings may reduce entry barriers and support SME adopters. Building local installation, service, and training centers strengthens regional deployment and customer trust.

Product Models
Solid-state battery assembly systems are critical to the fabrication of next-generation batteries that use solid electrolytes instead of liquid or gel ones. These systems offer improved safety, energy density, and lifecycle.
Thin Film Assembly Systems are used to fabricate ultra-compact solid-state batteries with film thicknesses typically in the micrometer or nanometer range. These systems utilize deposition techniques like sputtering, atomic layer deposition (ALD), or evaporation to build up ultra-thin layers of electrodes and solid electrolytes. Notable products include:
ULVAC SME-200: Compact sputtering system designed for precise cathode and solid electrolyte deposition in micro thin-film batteries.
Sputtered Films Inc. S-Gun TF Coater: Designed for depositing ultra-thin films on silicon wafers for medical and IoT battery integration.
Kurt J. Lesker PVD 75: Versatile lab-scale thin film deposition unit for cathode/anode layering in solid-state microbatteries.
Veeco CNT-FAB: Thin film deposition system for high-density, solid-state battery research at nano-scale levels.
AMAT Endura ALD Chamber: Found in leading battery labs; offers atomic-level control for thin-film electrolyte and interface development.
Bulk Type Assembly Systems are used to assemble solid-state batteries made from compressed powders or sintered ceramics. These systems handle solid electrolyte materials such as sulfides or oxides in thick layers, aiming for high energy density and stability. Examples include:
TOB New Energy Pressing Line: Designed for large-pouch solid electrolyte compaction with high uniformity.

FREY 5T Compacting System for Oxide Electrolytes: Provides constant pressure control and low tolerance variance ideal for sintered oxide or phosphate-based bulk electrolyte layers.
MSE Supplies Sintering Furnace + Hydraulic Press Combo: A complete workstation for preparing and densifying bulk electrolyte tablets, often used in production pilot lines.
Wuxi Lead Intelligent Dry Room Pouch Cell Stacker: Tailored for moisture-sensitive SSBs; assembles pouch cell formats using bulk-type solid-state materials and dry lamination techniques.
Hybrid Assembly Systems combine elements of both thin film and bulk processing techniques. These systems are designed to exploit the flexibility of thin films for interfaces and the robustness of bulk materials for energy storage. Hybrid systems allow for layered architectures that improve energy density, cycle life, and manufacturability. Products examples include:
Toyota Central R&D Hybrid Layer Stacker: Developed for research into scalable solid-state automotive batteries.

Solid Power Semi-Automated Pilot Assembly Line: Integrates tape casting, lamination, and electrolyte infusion for hybrid-type solid-state cells.
ProLogium Solid-State Stacking Platform: A proprietary hybrid cell assembly system combining ceramic electrolyte sheets and flexible electrodes into multi-layered pouch cells with solid-state safety.
Ilika Goliath Stack Assembly Bench: A semi-automated hybrid assembly system tailored for stacking large-format solid-state batteries using a blend of tape casting and thin film processe
Solid Power Semi-Solid Electrolyte Cell Assembly Line: Utilizes hybrid techniques to handle slurry-coated cathodes and dry, lithium-rich anodes in a solid-state configuration for vehicle battery packs.

Roll-to-Roll Assembly Systems are high-throughput continuous manufacturing systems that produce solid-state battery components on flexible substrates, such as metal foils or polymer sheets. Products examples include:
Hitachi R2R Continuous Printing System: Used for cathode and electrolyte patterning in solid-state battery sheet processing.
Manz AG R2R Pouch Cell Lamination System: High-throughput solution for stacking flexible solid-state cell components via lamination.
TMAX R2R Coating and Drying Line: Chinese-made modular R2R system for research and pilot-level SSB production using film technology.
Coatema SmartCoater R2R System: A lab-to-pilot scale roll-to-roll coater enabling slot-die coating, gravure, and flexographic techniques often used for printing solid-state electrolytes and electrodes onto thin foils.
Fraunhofer FFB R2R Pilot Line: A modular, research-grade R2R line developed for flexible solid-state battery and printed energy storage development. Supports integration of ceramic and polymer electrolyte layers.

The global SSB assembly system market, valued at USD 285 million in 2024, is set to expand to USD 2,325 million by 2031 at a robust 30.8% CAGR. AsiaPacific leads in consumption and adoption, while Southeast Asia is fast becoming a strategic extension point. Ongoing technological advances, pilot line scaleups, and EV value chain localization create a dynamic demand environment. Companies that can align modular automation with regional manufacturing growth, quality control, and service frameworks are best positioned for upside.

Investor Analysis
SSB assembly systems represent a high-growth industrial segment USD 285 million in 2024, rising to nearly USD 2,325 million by 2031 anchored in EV, portable electronics, and energy storage transitions. Asia-Pacific leads adoption.
Investors may back equipment vendors expanding modular dryroom automation, partner with cell manufacturers in ASEAN for local localization, or invest in system-as-a-service models to lower adoption barriers. Funding service infrastructure and training in Southeast Asia aligns equipment sales with capacity build-out.
High demand for safety, high energy density, and next-gen battery tech anchors a long-term growth theme. Equipment providers that serve cell producers early can gain durable share. Regional expansion into Southeast Asia offers first-mover advantages in emerging battery hubs, marrying returns with industrial transformation.
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5 Reasons to Buy This Report
Firm base and volume/ASP data for 2024, plus a clear CAGR projection to 2031, enable precise revenue modelling.
AsiaPacific and Southeast Asia breakdown provides regional deployment insights for strategic positioning.
Technology trend coverage shows equipment evolution and integration opportunities in high-growth segments.
Competitive mapping includes leading system and equipment suppliers shaping the industry.
Strategic guidance aligns equipment expansion with pilot production, digital service, and partnership models.
5 Key Questions Answered
What was the market size USD 285 million and what growth is expected to 2031?
How does AsiaPacific dominance compare with nascent growth in Southeast Asia for system deployment?
What are the latest assembly system technologies and integration requirements driven by EV/SSB innovation?
What challenges do equipment makers face in cost, certification, automation, and regional adoption?
Who are the leading suppliers, and how are they executing market strategies in Asia and Southeast Asia?
Chapter Outline
Chapter 1: Introduces the report scope of the report, executive summary of different market segments (by region, product type, application, etc), including the market size of each market segment, future development potential, and so on. It offers a high-level view of the current state of the market and its likely evolution in the short to mid-term, and long term.
Chapter 2: key insights, key emerging trends, etc.
Chapter 3: Manufacturers competitive analysis, detailed analysis of the product manufacturers competitive landscape, price, sales and revenue market share, latest development plan, merger, and acquisition information, etc.
Chapter 4: Provides profiles of key players, introducing the basic situation of the main companies in the market in detail, including product sales, revenue, price, gross margin, product introduction, recent development, etc.
Chapter 5 & 6: Sales, revenue of the product in regional level and country level. It provides a quantitative analysis of the market size and development potential of each region and its main countries and introduces the market development, future development prospects, market space, and market size of each country in the world.
Chapter 7: Provides the analysis of various market segments by Type, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different market segments.
Chapter 8: Provides the analysis of various market segments by Application, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different downstream markets.
Chapter 9: Analysis of industrial chain, including the upstream and downstream of the industry.
Chapter 10: The main points and conclusions of the report.

Contact Information:
Tel: +62 896-3769-3166(Whatsapp)
Email: willyanto@qyresearch.com; global@qyresearch.com
Website: www.qyresearch.com

QYResearch founded in California, USA in 2007. It is a leading global market research and consulting company. With over 18 years experience and professional research team in various cities over the world QY Research focuses on management consulting, database and seminar services, IPO consulting, industry chain research and customized research to help our clients in providing non-linear revenue model and make them successful. We are globally recognized for our expansive portfolio of services, good corporate citizenship, and our strong commitment to sustainability. Up to now, we have cooperated with more than 66,000 clients across five continents. Let's work closely with you and build a bold and better future.

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