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Part of: Computational Storage Market (Global)

The South Korea Computational Storage Market was valued at $32.3 Million in 2026 and projected to reach to $166.2 Million by 2031, representing a compound annual growth rate of 31.4%. South Korea's computational storage market is positioned for exceptional growth through 2031, driven by the country's advanced semiconductor capabilities and robust electronics manufacturing base.

South Korea Computational Storage Market (2026-2031) : Size and Share
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Market Size in USD 26.32 MN
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South Korea Computational Storage Market Trends and Insights

  • This exceptional growth trajectory reflects South Korea's position as a global semiconductor and electronics hub, where advanced storage technologies are increasingly integrated into data center infrastructure and enterprise solutions.
  • South Korea's strong manufacturing base and technology leadership drive adoption of computational storage architectures that combine processing and storage capabilities. The 31.4% compound annual growth rate underscores South Korea's commitment to next-generation computing infrastructure.
  • By 2031, South Korea is expected to capture significant market share as enterprises and cloud providers invest in computational storage to enhance data processing efficiency and reduce latency.
  • South Korea's competitive advantage in semiconductor design and production positions the country as a critical market for computational storage innovation and deployment across Asia Pacific..

Key Market Statistics

  • CAGR (2026-2031) 31.4% CAGR
  • Market Size, 2026 ~USD 32.3 Million
  • Forecast, 2031 ~USD 166.2 Million
  • Country South Korea

South Korea Computational Storage Market Overview

Rapid Market Expansion :

South Korea's computational storage market is projected to grow from $32.3 million in 2026 to $166.2 million by 2031, representing a robust 31.4% CAGR, outpacing the global average of 29%.

Semiconductor Hub Advantage :

As a global leader in semiconductor manufacturing and electronics, South Korea leverages its technological infrastructure and expertise to drive adoption of advanced computational storage solutions across data centers and enterprise environments.

Data Center Infrastructure Growth :

South Korea's expanding data center ecosystem, driven by cloud computing demand and AI workloads, is creating significant opportunities for computational storage integration and deployment across the region.

Enterprise Digital Transformation :

South Korean enterprises are increasingly adopting computational storage technologies to enhance data processing efficiency, reduce latency, and optimize performance in their digital transformation initiatives.

South Korea Computational Storage Market Dynamics

  • The region's strategic focus on data center modernization and cloud infrastructure expansion creates a fertile environment for computational storage adoption.
  • South Korean technology companies and enterprises are increasingly recognizing the value of integrated storage-compute solutions for handling complex AI and big data workloads.
  • Government initiatives supporting digital infrastructure and semiconductor innovation further accelerate market penetration, positioning South Korea as a key growth driver in the Asia-Pacific computational storage landscape..

Related Ecosystem

Electronics System And Components

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    Key Takeaways

    • South Korea's computational storage market will grow from $32.3M (2026) to $166.2M (2031) at a 31.4% CAGR.
    • South Korea's semiconductor manufacturing expertise positions it as a leader in computational storage technology development.
    • Enterprise data center modernization in South Korea is driving rapid adoption of integrated storage-compute solutions.
    • South Korea's tech-forward ecosystem supports accelerated deployment of next-generation computational storage architectures.

    Computational Storage Market Report Scope

    Report Metric Details
    Base Year 2026
    Fastest Growing Segment SOFTWARE (Offering)
    Forecast Period 2026–2031
    Growth Rate CAGR of 29% from 2026 to 2031
    Largest Segment HARDWARE (Offering)
    Market Size Base Year (Billions) ~USD 0.93 (2026)
    Revenue Forecast (Billions) ~USD 3.33 (2031)
    Segments Covered Offering, Hardware, Device Type, End User

    South Korea Computational Storage Market Report Segmentation

    4 segment dimensions are covered across the global market.

    By Offering

    • Hardware
    • Software

    By Hardware

    • Processors
    • Solid-State Drives

    By Device Type

    • Fixed Computational Storage Devices
    • Programmable Computational Storage Devices

    By End User

    • Cloud Service Providers
    • Enterprise Storage
    • Government Bodies

    Target Audience

    • Technology Vendors & Solution Providers : Computational storage vendors need South Korea market data to develop localized strategies, identify partnership opportunities with Korean tech companies, and capture share in this high-growth market.
    • Data Center Operators & Cloud Providers : South Korean and regional data center operators require market intelligence to plan infrastructure investments, evaluate computational storage integration, and optimize competitive positioning.
    • Enterprise IT Decision Makers : CIOs and IT leaders at South Korean enterprises need market insights to assess computational storage solutions, benchmark against peers, and justify technology investments for digital transformation.
    • Investment & Private Equity Firms : Investors targeting South Korea's semiconductor and electronics sectors need detailed market forecasts and growth drivers to identify promising computational storage companies and investment opportunities.
    • Government & Policy Organizations : South Korean government agencies and industry bodies require market data to inform technology policy, support semiconductor initiatives, and guide digital infrastructure development strategies.

    Key Companies in the South Korea Computational Storage Market

    CompanyHQOwnershipStrongest segments
    ADVANCED MICRO DEVICES, INC.United StatesPublic CompanyData Center (EPYC, Instinct, Pensando, Alveo),Client (Ryzen, Ryzen AI, Athlon),Gaming (Radeon, semi-custom SoCs for consoles),
    SAMSUNG ELECTRONICS CO., LTD.South KoreaPublic CompanySmartphones, tablets, wearables, and accessories,Memory, storage, and system LSI,TVs, monitors, and display panels,
    INTEL CORPORATIONUnited StatesPublic CompanyClient Computing Group (client and commercial CPUs, discrete client GPUs, edge and connectivity),Data Center and AI (server CPUs, discrete GPUs, networking),Intel Foundry (wafer fabrication, substrates, related services),
    MARVELLUnited StatesPublic CompanyEthernet controllers, switches, and PHYs,Storage controllers and host interfaces,Optical and electrical interconnect DSPs,
    ARM LIMITEDUnited KingdomPublic CompanyCPU IP,GPU and NPU accelerators,System IP and interconnects,
    NVIDIA CORPORATIONUnited StatesPublic CompanyData Center AI & Accelerated Compute Platforms,Networking (High-speed Interconnects & DPUs),Gaming GPUs (GeForce),
    KALRAY SAFrancePublic CompanyStorage acceleration cards,AI and compute acceleration cards,Embedded/automotive and edge MPPA solutions,
    PHISON ELECTRONICS CORP.TaiwanPublic CompanyClient and external SSD solutions,Flash controllers (SSD, USB, card),Embedded eMMC/UFS and industrial/automotive storage,

    ADVANCED MICRO DEVICES, INC.

    Advanced Micro Devices, Inc. is a United States-based semiconductor company founded in 1969 that designs and manufactures processors and graphics processing units. With 31,000 employees, AMD operates as a publicly traded company serving the computing, gaming, and data center markets.

    SAMSUNG ELECTRONICS CO., LTD.

    Samsung Electronics Co., Ltd. is a South Korean multinational conglomerate founded in 1969 with 128,735 employees. The company is a leading manufacturer of semiconductors, consumer electronics, displays, and home appliances, operating as a public company with global market presence.

    INTEL CORPORATION

    Intel Corporation is a United States semiconductor company founded in 1968 with 85,100 employees. As a publicly traded company, Intel designs and manufactures microprocessors and computing technologies for personal computers, data centers, and enterprise markets.

    MARVELL

    Marvell is a United States semiconductor company founded in 1995 with 7,480 employees. Operating as a public company, Marvell designs and manufactures integrated circuits for storage, networking, and mobile applications.

    ARM LIMITED

    ARM Limited is a United Kingdom-based semiconductor design company founded in 1990 with 9,584 employees. Operating as a public company, ARM designs processor architectures and intellectual property licensed to manufacturers worldwide.

    NVIDIA CORPORATION

    NVIDIA Corporation is a United States technology company founded in 1993 with 42,000 employees. As a publicly traded company, NVIDIA designs and manufactures graphics processing units and system-on-chip units for gaming, professional visualization, and artificial intelligence applications.

    KALRAY SA

    Kalray SA is a French semiconductor company founded in 2008 with 92 employees. Operating as a public company, Kalray develops processors and computing solutions for data-intensive and edge computing applications.

    PHISON ELECTRONICS CORP.

    Phison Electronics Corp. is a Taiwan-based semiconductor company founded in 2000 with 2,052 employees. Operating as a public company, Phison designs and manufactures solid-state drive controllers and memory solutions.

    Reasons to Buy this Report

    • Market-Specific Growth Insights : Gain detailed understanding of South Korea's 31.4% CAGR trajectory and the unique factors driving computational storage adoption in this high-tech semiconductor hub.
    • Competitive Landscape Analysis : Identify key South Korean players, technology leaders, and emerging competitors in the computational storage space to inform strategic positioning and partnership decisions.
    • Investment Opportunity Assessment : Evaluate market size projections ($32.3M to $166.2M by 2031) and growth potential to support investment decisions, funding allocation, and market entry strategies in South Korea.
    • Enterprise Customer Insights : Understand South Korean enterprise requirements, adoption barriers, and use cases for computational storage to tailor solutions and go-to-market strategies effectively.
    • Regional Technology Trends : Access South Korea-specific insights on data center modernization, AI infrastructure development, and semiconductor integration trends shaping computational storage demand.

    Frequently asked questions

    What is the current size of South Korea's computational storage market?

    South Korea's computational storage market is valued at $32.3 million in 2026, with strong growth momentum driven by semiconductor innovation and enterprise infrastructure investments.

    What is the projected market size for South Korea by 2031?

    South Korea's computational storage market is forecast to reach $166.2 million by 2031, representing a 31.4% compound annual growth rate over the five-year period.

    Why is South Korea's computational storage market growing faster than global averages?

    South Korea's advanced semiconductor manufacturing capabilities, strong technology ecosystem, and rapid enterprise digital transformation drive above-average adoption of computational storage solutions.

    Which industries in South Korea are driving computational storage adoption?

    Data centers, cloud service providers, financial institutions, and large-scale manufacturing enterprises in South Korea are primary drivers of computational storage market growth.

    How does South Korea's market compare to other Asia Pacific countries?

    South Korea's 31.4% CAGR and strong semiconductor foundation position it as a leading computational storage market within Asia Pacific, supported by world-class technology infrastructure.

    RESEARCH METHODOLOGY

    The study involved four major activities in estimating the size of the computational storage market. Exhaustive secondary research was done to collect information on the market, peer market, and parent market. The next step was to validate these findings, assumptions, and sizing with industry experts across value chains through primary research. The bottom-up approach was employed to estimate the overall market size. After that, market breakdown and data triangulation were used to estimate segment and subsegment market sizes.

    Secondary Research

    In the secondary research process, sources such as annual reports, press releases, investor presentations of companies, white papers, and articles by recognized authors were referred to. Secondary research was done to obtain key information about the market’s supply chain, the market’s value chain, the pool of key market players, and market segmentation according to industry trends, region, and developments from both market and technology perspectives.

    Primary Research

    Extensive primary research has been conducted after understanding and analyzing the computational storage market scenario through secondary research. Several primary interviews have been conducted with key opinion leaders from both demand- and supply-side vendors across four major regions—North America, Europe, Asia Pacific, and the RoW. Approximately 25% of primary interviews have been conducted with the demand side and 75% with the supply side. This primary data has been collected through telephonic interviews, questionnaires, and emails.

    Computational Storage Market Size, and Share

    Note: “Others” include sales, marketing specialists, and product managers. The 3 tiers of the companies are defined based on their total revenue as of 2024; tier 1: revenue greater than USD 1 billion, tier 2: revenue between USD 500 million and USD 1 billion, and tier 3: revenue less than USD 500 million.

    To know about the assumptions considered for the study, download the pdf brochure

    Market Size Estimation

    In the complete market engineering process, top-down and bottom-up approaches and several data triangulation methods have been used to estimate and forecast the market size for the overall market segments and subsegments listed in this report. Extensive qualitative and quantitative analyses have been conducted across the complete market engineering process to present key information/insights throughout the report.
    The key players in the market have been identified through secondary research, and their market shares in the respective regions have been determined through primary and secondary research. This entire procedure includes studying the annual and financial reports of the top players, as well as extensive interviews with industry experts (such as CEOs, VPs, directors, and marketing executives) to provide key insights (both quantitative and qualitative) on the computational storage market. All percentage shares, splits, and breakdowns have been determined using secondary sources and verified through primary sources. All the possible parameters that affect the markets covered in this research study have been accounted for, viewed in extensive detail, verified through primary research, and analyzed to get the final quantitative and qualitative data. This data has been consolidated and supplemented with detailed inputs and analysis from MarketsandMarkets and presented in this report.

    Computational Storage Market : Top-Down and Bottom-Up Approach

    Computational Storage Market Top Down and Bottom Up Approach

    In the top-down approach, the overall market size has been used to estimate the size of the individual markets (mentioned in the market segmentation) through percentage splits from secondary and primary research. For the calculation of specific market segments, the most appropriate immediate parent market size has been used to implement the top-down approach. The bottom-up approach has also been implemented for the data obtained from the secondary research to validate the market size of various segments. Each company’s market share has been estimated to verify the revenue shares used earlier in the bottom-up approach. With the data triangulation procedure and validation of the data through primaries, the overall parent market size and each individual market size have been determined and confirmed in this study.

    Data Triangulation

    After arriving at the overall market size through the above process, the overall market has been split into several segments. To complete the overall market engineering process and arrive at the exact statistics for all the segments, market breakdown, and data triangulation procedures have been employed, wherever applicable. The data has been triangulated by studying various factors and trends from both the demand and supply sides. The market has also been validated using both top-down and bottom-up approaches.

    Market Definition

    Computational storage refers to an advanced storage architecture that integrates processing capabilities directly within the storage device, allowing data to be processed where it is stored rather than being transferred to a separate CPU. This approach reduces latency, offloads workloads from the central processor, and improves overall system efficiency, especially in data-intensive applications such as AI, big data analytics, and high-performance computing. By combining storage and computation, computational storage enables faster data handling, real-time analytics, and optimized performance for enterprises and cloud data centers. It represents a shift from traditional storage solutions toward intelligent, workload-aware storage systems.

    Key Stakeholders

    • Raw material suppliers
    • Storage manufacturers
    • Semiconductor manufacturers
    • Research institutes and government organizations
    • Traders, distributors, and suppliers of electronic devices
    • Logic device manufacturers
    • Semiconductor industry players

    Report Objectives

    • To define, describe, and forecast the computational storage market based on offering, type, end-use industry, and region
    • To forecast the market size across four major regions, namely North America, Europe, Asia Pacific, and the Rest of the World (RoW), along with their respective countries, in terms of value
    • To describe and forecast the computational storage market size in terms of volume
    • To present detailed information regarding the major factors influencing the market (drivers, restraints, opportunities, and challenges)
    • To provide an analysis of the market ecosystem, case studies, patents, technologies, pricing analysis, Porter’s five forces, and regulations pertaining to the market
    • To offer a comprehensive overview of the value chain of the computational storage market ecosystem
    • To critically analyze micromarkets with respect to individual growth trends, prospects, and contributions to the total market
    • To strategically profile the key players and comprehensively analyze their market shares and core competencies
    • To assess the opportunities in the market for stakeholders and describe the competitive landscape of the market
    • To analyze competitive developments, such as collaborations, acquisitions, partnerships, and product developments, in the market
    • To analyze the impact of AI/GenAI, the 2025 US tariff, and the macroeconomic outlook for each region covered under the study

    Available customizations:

    Based on the given market data, MarketsandMarkets offers customizations tailored to the company’s specific needs. The following customization options are available for the report:

    Company Information

    • Detailed analysis and profiling of 25 market players

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