As enterprises spread workloads across private infrastructure and public cloud environments, static hardware allocation becomes harder to justify because capacity, performance, and governance requirements shift continuously between locations. This is increasing demand for the composable infrastructure market by increasing reliance on software-defined orchestration that can pool compute, storage, and networking resources and assign them dynamically to changing application needs. In practice, hybrid cloud operating models push IT teams toward infrastructure that behaves more like cloud services inside the data center, making composable platforms attractive for reducing provisioning delays, improving workload portability, and aligning on-premise resources with cloud-native operating expectations.
Expanding AI and big data workloads increasing need for scalable composable computing environments
AI training, inference, and large-scale data processing place uneven and frequently changing demands on compute, memory, storage bandwidth, and accelerator availability, which makes fixed infrastructure architectures inefficient for many enterprise deployments. This is supporting market expansion for the composable infrastructure market because organizations need environments where resources can be assembled and reassembled around workload profiles without overbuilding dedicated systems for every use case. The practical effect is stronger adoption of composable platforms in data-intensive settings where teams must allocate high-performance infrastructure quickly, improve utilization of expensive resources, and support experimentation cycles that depend on rapid scaling and reconfiguration.
Growing enterprise automation initiatives strengthening deployment of DevOps-aligned infrastructure platforms
As enterprises standardize automation across application delivery and IT operations, infrastructure is increasingly expected to integrate with programmable workflows rather than rely on manual configuration and ticket-based provisioning. This is influencing market adoption in the composable infrastructure market by favoring platforms that expose infrastructure through APIs, policy-based controls, and template-driven deployment models that fit DevOps practices. In practical terms, organizations pursuing faster release cycles and more consistent environments are turning to composable systems to connect infrastructure management with CI/CD pipelines, reduce operational friction between development and operations teams, and make underlying hardware responsive to software-led automation strategies.
| Growth Driver Assessment Framework | |||||
| Growth Driver | Impact On CAGR | Regulatory Influence | Geographic Relevance | Adoption Rate | Impact Timeline |
|---|---|---|---|---|---|
| Rising hybrid cloud adoption accelerating demand for software-defined resource orchestration | 2.00% | Moderate | North America, Europe, Asia Pacific | High | Near Term |
| Expanding AI and big data workloads increasing need for scalable composable computing environments | 1.80% | Moderate | North America, Asia Pacific | High | Mid Term |
| Growing enterprise automation initiatives strengthening deployment of DevOps-aligned infrastructure platforms | 1.40% | Low | North America, Europe | Medium | Near Term |
North America held the largest regional market share in 2025 for the composable infrastructure market, bolstered by the region’s mature enterprise IT environment and early adoption of software-defined and disaggregated infrastructure models. Large organizations in the region are more actively modernizing data centers to improve resource utilization, automate provisioning, and support hybrid cloud operations, which keeps demand concentrated in established enterprise and hyperscale environments. The presence of major technology vendors and solution integrators also reinforces deployment activity by making advanced infrastructure architectures easier to implement within existing IT estates.
Asia Pacific is projected to expand at a 53.19% CAGR over the forecast period in the composable infrastructure market, driven by rapid digital infrastructure buildout and rising enterprise investment in scalable computing environments. Growth is accelerating as organizations across the region move from conventional hardware setups toward more flexible architectures that can allocate compute, storage, and networking resources dynamically as workloads change. This shift is gaining traction in practice as businesses scale cloud-enabled applications, expand data-intensive operations, and seek more efficient ways to manage capacity without overprovisioning physical infrastructure.
| Regional Market Attractiveness & Strategic Fit Matrix | |||||
| Parameter | North America | Asia Pacific | Europe | Latin America | MEA |
|---|---|---|---|---|---|
| Innovation Hub | Advanced | Developing | Advanced | Emerging | Emerging |
| Cost-Sensitive Region | Medium | High | Medium | High | High |
| Regulatory Environment | Supportive | Neutral | Neutral | Neutral | Neutral |
| Demand Drivers | Strong | Moderate | Strong | Weak | Weak |
| Development Stage | Developed | Developing | Developed | Emerging | Emerging |
| Adoption Rate | High | Medium | High | Low | Low |
| New Entrants / Startups | Moderate | Moderate | Moderate | Sparse | Sparse |
| Macro Indicators | Strong | Stable | Stable | Weak | Weak |
The U.S. emphasizes composable infrastructure to dynamically allocate compute, storage, and networking resources for changing enterprise workloads. Organizations increasingly adopt software-defined architectures that improve infrastructure utilization while accelerating application deployment and modernization initiatives.
Japan adopts composable infrastructure to modernize enterprise data centers while improving workload flexibility and resource efficiency. Japanese organizations increasingly integrate programmable infrastructure to simplify IT management and support evolving digital business requirements.
South Korea expands composable infrastructure adoption to support cloud-native applications and high-performance enterprise computing. Organizations increasingly favor programmable resource management that improves scalability while reducing operational complexity across modern IT environments.
Germany applies composable infrastructure to support flexible data center operations aligned with advanced industrial digitalization. Enterprises prioritize modular infrastructure that enables efficient resource orchestration while supporting demanding manufacturing and engineering workloads.
France focuses on composable infrastructure to increase agility across enterprise data centers supporting diverse digital workloads. French organizations prioritize flexible infrastructure architectures that streamline resource allocation while enhancing operational efficiency and application responsiveness.
Italy advances composable infrastructure as organizations seek scalable IT environments without extensive hardware overprovisioning. Italian enterprises increasingly invest in modular resource management approaches that improve infrastructure flexibility and simplify ongoing technology upgrades.
Hardware accounted for a 75.84% share of the composable infrastructure market in 2025, making it the leading component segment. This leadership is anchored in the physical foundation required to deploy composable environments, where compute, storage, and networking resources must be available as disaggregated yet orchestrated infrastructure. Enterprises adopting composable infrastructure continue to prioritize hardware investment because performance, scalability, and resource pooling depend first on the underlying equipment base, which sustains hardware’s dominant position across deployments.
Software is emerging as the fastest-growing component in the composable infrastructure market as organizations move beyond initial infrastructure buildouts and focus on dynamic resource orchestration. Growth is being influenced by the practical need to discover, allocate, and manage hardware resources through unified control layers that improve utilization and operational flexibility. Compared with hardware, software is gaining momentum faster because it enables the automation and policy-based management that make composable infrastructure operationally effective in day-to-day enterprise environments.
Organization Size Segment Analysis: Large Enterprises (Largest Segment) vs Small and Medium-sized Enterprises (SMEs) (Fastest-Growing Segment)
Large Enterprises held a 63% share of the composable infrastructure market in 2025, reflecting their position as the dominant organization size segment. Their leadership is underpinned by larger data center estates, greater capital capacity, and more complex IT environments that benefit directly from pooled and reconfigurable infrastructure. In the composable infrastructure market, these organizations are better placed to absorb deployment complexity and align composable models with broader modernization programs, which helps preserve their leading share.
Small and Medium-sized Enterprises (SMEs) represent the fastest-growing segment in the composable infrastructure market as more of these organizations seek flexible IT architectures without committing to rigid, overprovisioned systems. Their momentum comes from the growing need to use infrastructure resources more efficiently while maintaining adaptability for changing workloads and business requirements. Relative to large enterprises, SMEs are seeing faster growth because composable infrastructure offers a more practical path to scalable resource use and operational agility as their digital environments expand.
| Report Segmentation | |||
| Segment | Sub-Segment | Largest Segment | Fastest Growing Segment |
|---|---|---|---|
| Component | Software, Hardware | Hardware | Software |
| Organization Size | Large Enterprises, Small and Medium-sized Enterprises (SMEs) | Large Enterprises | Small and Medium-sized Enterprises (SMEs) |
| End Use | BFSI, IT & Telecommunication, Retail & Consumer Goods, Healthcare, Manufacturing, Others | IT & Telecommunication | Healthcare |
1. Hewlett Packard Enterprise Company (United States)
2. Dell Technologies Inc. (United States)
3. Cisco Systems Inc. (United States)
4. Lenovo Group Limited (China)
5. Huawei Technologies Co. Ltd. (China)
6. NEC Corporation (Japan)
7. Inspur Group Co. Ltd. (China)
8. NetApp Inc. (United States)
9. Pure Storage Inc. (United States)
10. TidalScale Inc. (United States)
The composable infrastructure market is gaining traction as enterprises seek highly flexible and software-defined data center environments. Technology providers are focusing on resource pooling, workload automation, and API-driven infrastructure management to improve scalability and operational efficiency. Growing demand for agile IT environments and dynamic workload allocation is accelerating innovation across the composable infrastructure market.
| Company Name | Date | Key Development |
|---|---|---|
| CIMware | Jul-25 | CIMware secured $2.3 million in Pre-Series A funding led by Transition VC to scale production and expand software development for its composable infrastructure modules. The investment directly targets upgrading energy efficiency, cooling configurations, and compute scalability within high-density AI data center environments. |
| Nutanix | Apr-26 | Nutanix established a strategic engineering partnership with NetApp to integrate NetApp's ONTAP storage architecture with the Nutanix Cloud Platform. This unified technical framework bridges hyperconverged systems and composable file services, substantially improving software-defined data management and infrastructure interoperability for enterprises. |
| Liqid | Jul-25 | Liqid launched its next-generation composable disaggregated infrastructure solutions optimized specifically to orchestrate enterprise AI workloads across hybrid data centers and edge environments. The software-defined architecture dynamically pools and allocates GPU, NVMe, and network resources to maximize infrastructure utilization and operational agility. |
| Liqid | May-26 | Liqid appointed enterprise infrastructure executive John Byrne to its board of directors to accelerate commercialization and scale deployment of its composable hardware-pooling solutions. The strategic appointment supports the company's enterprise market expansion as data centers increasingly transition toward flexible disaggregated infrastructures for artificial intelligence workloads. |
In 2026 the market for composable infrastructure is worth approximately USD 18.58 billion.
Composable Infrastructure Market size is projected to expand significantly moving from USD 12.82 billion in 2025 to USD 682.21 billion by 2035 with a CAGR of 48.8% during the 2026-2035 forecast period.
Hybrid cloud environments require flexible resource allocation, encouraging investment in software-defined orchestration that dynamically pools compute, storage, and networking resources while improving provisioning speed and workload portability.
AI and data-intensive applications require rapidly reconfigurable infrastructure, while automation initiatives favor API-driven, policy-based platforms that integrate with DevOps workflows to accelerate deployment and improve resource utilization.
Hardware captured 75.84% of the market in 2025 because composable environments depend on underlying compute, storage, and networking resources that enable performance, scalability, and resource pooling.
SMEs are adopting composable infrastructure rapidly because it enables more efficient resource utilization, operational agility, and scalable IT growth without relying on rigid, overprovisioned systems.
North America leads through mature enterprise IT environments, early software-defined infrastructure adoption, and strong demand for flexible hybrid cloud operations.
Asia Pacific is projected to grow at a 53.19% CAGR, supported by digital infrastructure expansion and investments in scalable, flexible computing environments.
Prominent players in the composable infrastructure market include Hewlett Packard Enterprise Company (United States), Dell Technologies Inc. (United States), Cisco Systems, Inc. (United States), Lenovo Group Limited (China), Huawei Technologies Co., Ltd. (China), NEC Corporation (Japan), Inspur Group Co., Ltd. (China), NetApp, Inc. (United States), Pure Storage, Inc. (United States), TidalScale, Inc. (United States).