The Europe Serverless Computing Market was valued at $5915.5 Million in 2024 and projected to reach to $11183.9 Million by 2029, representing a compound annual growth rate of 13.6%. Europe's serverless computing market is poised for sustained expansion as enterprises prioritize digital transformation and cloud-native architectures.
| Market Size in | USD 26.32 MN |
| Market Forecast in | |
| CAGR | |
| Forecast Period | |
| Units Considered | Value (USD MN) |
Europe's serverless computing market is valued at $5,915.5 million in 2024, with a projected expansion to $11,183.9 million by 2029, representing a robust 13.6% CAGR over the forecast period.
European organizations are increasingly adopting serverless architectures to modernize their IT infrastructure, driven by the need for cost-efficient and scalable cloud solutions across diverse industry verticals.
The UK leads European adoption with $2,370.8 million in market size, followed by Germany at $2,124.9 million and France at $1,398.0 million, reflecting strong digital transformation initiatives across major economies.
Europe's 13.6% CAGR demonstrates strong regional momentum, positioning the continent as a key growth market for serverless solutions, though slightly below the global growth rate of 15.3%.
| Report Metric | Details |
|---|---|
| Base Year | 2024 |
| Fastest Growing Segment | APPLICATION INTEGRATION (Service Type) |
| Forecast Period | 2024-2029 |
| Growth Rate | CAGR of 15.3% from 2024 to 2029 |
| Largest Segment | PUBLIC CLOUD (Deployment Model) |
| Market Size Base Year (Billions) | ~USD 21.94 (2024) |
| Revenue Forecast (Billions) | ~USD 44.7 (2029) |
| Segments Covered | Service Type, Service Model, Deployment Model, Organization Size, Vertical |
5 segment dimensions are covered across the global market.
| Segment | 2024 | 2025 | 2026 | 2027 | 2028 | 2029 | CAGR (%) |
|---|---|---|---|---|---|---|---|
| BFSI | 1194.9 | 1368.9 | 1551 | 1740.2 | 1935.5 | 2136.1 | 12.3 |
| GOVERNMENT & DEFENSE | 538.3 | 619.5 | 705 | 794.6 | 887.8 | 984.2 | 12.8 |
| HEALTHCARE & LIFE SCIENCES | 733.5 | 888.6 | 1064.6 | 1263 | 1485.4 | 1733.5 | 18.8 |
| IT & TELECOM | 1579.4 | 1776.1 | 1970.6 | 2159.4 | 2338.8 | 2505.2 | 9.7 |
| MANUFACTURING | 331.3 | 387.8 | 449 | 514.8 | 585.1 | 659.8 | 14.8 |
| OTHER VERTICALS | 295.8 | 349.2 | 407.9 | 471.7 | 540.7 | 615.1 | 15.8 |
| RETAIL & CONSUMER GOODS | 822.3 | 971 | 1134.1 | 1311.8 | 1504 | 1711.1 | 15.8 |
| TRANSPORTATION & LOGISTICS | 420 | 491.9 | 569.9 | 653.7 | 743.4 | 838.8 | 14.8 |
| TOTAL | 5915.5 | 6853 | 7852 | 8909.1 | 10020.8 | 11183.9 | 13.6 |
| Country | 2025 size (native) |
|---|---|
| UK | USD 2370.8 Million |
| Germany | USD 2124.9 Million |
| France | USD 1398 Million |
| Italy | USD 898.1 Million |
| Rest Of Europe | USD 4392.1 Million |
Europe's serverless computing market was valued at $5,915.5 million in 2024 and is projected to reach $11,183.9 million by 2029.
Europe's serverless computing market is expected to grow at a compound annual growth rate (CAGR) of 13.6% from 2024 to 2029.
Financial services, healthcare, manufacturing, and retail sectors are leading serverless adoption in Europe, driven by the need for cost optimization and operational efficiency.
GDPR compliance requirements and data sovereignty concerns are accelerating European enterprises' adoption of serverless platforms that offer enhanced security, compliance capabilities, and data residency controls.
Key growth factors include digital transformation initiatives, cloud modernization efforts, cost optimization pressures, mature cloud infrastructure, and the need for scalable, secure solutions that meet regulatory requirements.
The study involved four major activities in estimating the serverless computing market. We conducted secondary research to gather information on the market, competitors, and parent market. The next stage was to validate these findings and assumptions and size them with industry professionals across the value chain using primary research. Top-down and bottom-up methodologies were used to determine the total market size. We used the market breakup and data triangulation techniques to estimate the market size of the different segments in the market.
Several sources were used to locate and collect information for this study during the secondary research process. Secondary sources included company annual reports, press announcements, investor presentations, white papers, journals, certified publications, and articles from well-known writers, directories, and databases. Data was also gathered from other secondary sources, such as journals, government websites, blogs, and vendor websites.
Primary sources included industry experts from the core and associated industries, preferred software suppliers, hardware manufacturers, distributors, service providers, technology developers, alliances, and organizations representing all parts of the industry's value chain. In-depth interviews were conducted with primary respondents, including major industry participants, subject-matter experts, C-level executives of important market companies, and industry consultants, to acquire and verify critical qualitative and quantitative data and analyze the market's potential.
We performed primary interviews to gain insights such as market statistics, the current trends disrupting the industry, new use cases applied, revenue data collected from products and services, market breakdowns, market size projections, market predictions, and data triangulation. Primary research also helped me grasp different technology trends, segmentation types, industry trends, and geographies. Demand-side stakeholders, such as Chief Information Officers (CIOs), Chief Technology Officers (CTOs), and Chief Security Officers (CSOs); installation teams of governments/end users using serverless computing solutions and services; and digital initiatives project teams, were interviewed to understand the buyer's perspective on suppliers, products, service providers, and their current use of services, which will affect the overall serverless computing market.

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We estimated and forecasted Serverless Computing and other related submarkets using top-down and bottom-up methodologies. We used a bottom-up approach to calculate the overall market size by analyzing the revenues and offerings of significant market players. This study used data triangulation methods and validation through primary interviews to determine and confirm the precise worth of the whole parent market. We used the overall market size in the top-down process to estimate the size of other particular markets using percentage splits of market segments.
We used top-down and bottom-up approaches to estimate and validate the Serverless Computing market and other dependent subsegments.
The research methodology used to estimate the market size included the following details:
We estimated and forecasted the Serverless Computing market and related submarkets using top-down and bottom-up methodologies. We used a bottom-up approach to calculate the overall market size by analyzing the revenues and offerings of significant market players. This study used data triangulation methods and validation through primary interviews to determine and confirm the precise worth of the whole parent market. We used the overall market size in the top-down process to estimate the size of other particular markets using percentage splits of market segments.

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After determining the overall market size, the market was divided into segments and subsegments using the previously described market size estimating techniques. Where applicable, data triangulation and market breakup methods were used to complete the whole market engineering process and ascertain the exact numbers for each market segment and subsegment. The data was triangulated by evaluating many elements and trends on the demand and supply sides of the Serverless Computing market.
MarketsandMarkets defines Serverless Computing as “a cloud computing model that allows developers to build and run applications without managing infrastructure. The cloud provider takes care of the provisioning, scaling, and management, and the developers only need to focus on writing code. The market primarily consists of Function as a Service (FaaS), which performs isolated functions in response to events, and Backend as a Service (BaaS), which provides backend services like databases and authentication.
Source: Secondary Research and MarketsandMarkets Analysis
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