Middle East and Africa Ssd Caching Market - Growth, Trends, Covid-19 Impact, and Forecasts (2023 - 2028)

Middle East and Africa Ssd Caching Market - Growth, Trends, Covid-19 Impact, and Forecasts (2023 - 2028)

The Middle East and Africa SSD Caching Market is expected to grow at a CAGR of 7.89% over the forecast period 2021-2026.

Key Highlights
  • SSD caching, first introduced by Intel as a smart response technology, provides improved performance for computers that use traditional hard drives. The technology reduces the cost and time to run an application as SSDs are faster. These benefits are now being realized by IT professionals, and they are looking for various ways to take advantage of SSD caching techniques. SSD caching requires a combination of SSD drive and supporting software to perform the required functioning.
  • SSD Caching requires a combination of SSD drive and supporting software to perform the required functioning. SSD drives are costly; hence a combination of them is used with traditional hard drives to enhance performance efficiency. The market is still growing, with enterprises deploying these solutions to cut down costs and improve efficiency. These enterprises are required to analyze huge data sets coming through various data sources. Using SSD solutions makes the task easier without investing too much in high-powered drives and solutions.
  • According to OECD, the external financial flows to African economies are increasing, and so is its population. In terms of employment, the growth has been good, but the rate of job creation remains a bit slow. According to the Internet World Stats, the internet penetration in the Middle East was 75.12% in 2020. The number of users in the Middle East during this time was 164 million and 121 million in North Africa.
  • SSD drives are costly; hence a combination of them needs to be used with traditional hard drives to enhance performance efficiency. The market is still growing, and many enterprises are deploying these solutions to cut down costs and improve efficiency. These enterprises are required to analyze huge data sets coming from various data sources. Using SSD solutions makes the task easier without investing too much in high-powered drives and solutions.
  • The outbreak of COVID-19 has a significant effect on the market. The raw materials supply is affected, hence the value chain is disrupted, causing an inflationary risk on products. The supply chain gap is projected to narrow as the electronics supply chains in China and South Korea begin to recover, notwithstanding a drop in COVID-19 cases. The coronavirus outbreak had an impact on SSD suppliers with factories, third-party assemblers, or source materials in Wuhan. Due to the tardy return of laborers amidst the virus-based limitations, the industries were running at low utilization.
MEA SSD Caching Market TrendsEnterprise Storage Expected to Hold Major Share
  • Servers are typically configured with banks of hard disc drives (HDD) or connected to storage area networks (SANs), which are large banks of hard drives themselves. In the business storage network, improvements in server technology caused an I/O performance gap. SSD-based caching is used to close the I/O performance gap by lowering I/O latency and enhancing IOPS performance. Server-based caching does not necessitate storage array upgrades or the installation of any other appliances in the data path of important networks. SSD caching in servers effectively reduces the requirement for storage networks and arrays by servicing large percentages of the I/O demand of important servers at the network edge. This decrease in demand improves storage performance for other associated servers, potentially extending the storage infrastructure's useful life.
  • In a corporate environment, SSD caching is used to store previously requested data as it passes through the network, allowing it to be retrieved fast when needed. Placing previously requested material in temporary storage lessens the demand on an enterprise's bandwidth and speeds up access to the most up-to-date information. Enterprise SSDs either store data permanently or momentarily cache data in nonvolatile semiconductor memory. NAND flash memory is used in these SSDs, which provide better performance and use less power than spinning HDDs. SSD caching is becoming more important as the demand for computing speed rises across a variety of industries. As a result, a number of companies have entered the SSD cache market. This resulted in a decrease in the cost of SSD caches.
  • Currently, data-center applications in a variety of businesses are processing an expanding volume of data sets. The page cache's caching impact is hampered by its low capacity. In comparison to hard discs and DRAM, emerging flash-based SSDs provide lower latency and lower costs. As a result, SSD-based caching is commonly used in data centers. According to the worldwide cloud index, data center traffic has seen an increase in data storage requirements. Because of its high-performance features, the high-traffic data center will increase demand for SSD caching. SSD caching allows data centers and cloud computing environments to host more users and complete more transactions per second by accelerating input/output operations per second (IOPs) and reducing latency.
  • The enterprise storage industry in the Middle East and Africa (MEA) has seen and is expected to see tremendous growth in the next years, with the COVID-19 epidemic playing a key role. However, where applications and policy-driven decisions are deployed, the market still demands infrastructure-led innovation.
  • Maintaining investments, on the other hand, is the most difficult task. Due to the pandemic, both company and customer workloads have increased dramatically, necessitating a careful balance between protecting existing investments and buying the appropriate cloud storage to meet the increasing demand. Furthermore, organizations have faced additional problems in upskilling their current workforces, as cloud adoption necessitates certain skills and knowledge to ensure effective migrations to new platforms.
Cloud Storage to Drive the market
  • Hybrid cloud technologies have reached a high level of maturity in the industry, allowing clients to operate workloads in a hybrid environment while guaranteeing that they are exploiting the cloud without disrupting business operations (e.g., AWS Outpost, Azure Stack & Google Anthos).
  • Cloud platforms enabled new, complex business models and have been orchestrating more global-based integration networks in recent years. The deployment of storage solutions over the cloud offers greater convenience, as the service vendor is solely responsible for providing maximum uptime, data security, and periodic updates, thus, decreasing the total cost of ownership.
  • The need to reduce latency by moving data closer to the customer, as well as governmental and business regulations for data to be kept locally within different areas, are projected to drive growth in cloud storage in United States. Enterprises in the region that are installing complex cloud infrastructures want systems that can store, retrieve, process, and analyze large amounts of business-critical data fast. As a result of this demand, many firms in United States are switching from SATA-based SSDs to NVMe-based SSDs for primary storage. The latest NVMe SSDs include caching capabilities. The data center sector is rapidly expanding, with a greater emphasis on efficiency and maximum uptime. For example, IBM Corporation built four new cloud data centers in the country in response to increased demand for cognitive capabilities in the country.
  • In addition, the cloud acts as a catalyst for IT transformation, providing the flexibility to combine the preferred clouds and existing on-premises infrastructure in the ratio best suited for the workload.
  • Furthermore, the rising focus on cost optimization and business agility has led to the expansion of cloud data centers. Also, cloud services adapt easily to the changing landscape to meet new requirements. This allows the client organization to focus on their core competency, which, in turn, results in their overall growth.
  • With the unstructured data expanding by more than 50% annually, managed service providers are looking at cloud storage as an upfront revenue opportunity. This was further augmented by the greater need for storage control. The foray of advanced technologies prompts companies to emphasize updating their storage system to match with the competition. Hybrid cloud is one such trend that provides a significant boost to market growth. However, security and the lack of network bandwidth for data transfer can challenge the growth of the market.
MEA SSD Caching Market Competitive Analysis

The SSD Caching Market in the Middle East and Africa is majorly concentrated, with technology behemoths exerting supremacy thanks to cutting-edge technology and experience. To be competitive, businesses introduce new items with innovations and advancements on a regular basis. Acquisitions, partnerships, investments, mergers, and technological advances, and introductions are all used by major industry actors to stay competitive.

  • May 2020 - Samsung developed a new SSD with support for the latest PCIe Gen. 4 standard and an E1.S form factor. The company's new PM9A3 SSD uses Samsung's sixth-generation 3-bit V-NAND technology and will be available in three form factors: E1.S, M.2, and U.2. The E1.S and U.2 versions of the SSD can reach peak sequential read and write speeds of up to 6,500 MB/s and 3,500 MB/s, respectively.
  • May 2020 - The Intel Corporation has revealed that a 144-layer 3D NAND QLC SSD will be available later this year. The Alder Stream Optane SSD will be available in a single port configuration this year and a dual-port configuration in 2021, according to Intel. Alder Stream employs second-generation 3D XPoint media, which has four layers as opposed to two in the first version. It features a new controller ASIC with the most up-to-date software and PCIe 4 link technology.
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1 INTRODUCTION
1.1 Study Assumptions and Market Definition
1.2 Scope of the Study
2 RESEARCH METHODOLOGY
3 EXECUTIVE SUMMARY
4 MARKET INSIGHTS
4.1 Market Overview
4.2 Industry Attractiveness - Porter's Five Forces Analysis
4.2.1 Threat of New Entrants
4.2.2 Bargaining Power of Buyers
4.2.3 Bargaining Power of Suppliers
4.2.4 Threat of Substitutes
4.2.5 Intensity of Competitive Rivalry
4.3 Industry Value Chain Analysis
5 MARKET DYNAMICS
5.1 Introduction to Market Dynamics
5.2 Market Drivers
5.2.1 Improvements Offered by SSDs Over Conventional HDDs
5.3 Market Challenges
5.3.1 High Cost of Products and Inconsistency regarding Low-rate Latency by SSDs
6 MARKET SEGMENTATION
6.1 Application
6.1.1 Enterprise Storage
6.1.2 Personal Storage
7 COMPETITIVE LANDSCAPE
7.1 Company Profiles
7.1.1 Intel Corporation
7.1.2 Samsung Electronics Co. Ltd
7.1.3 Micron Technology Inc.
7.1.4 Western Digital Corporation
7.1.5 QNAP Systems Inc.
7.1.6 NetApp Inc.
7.1.7 Kioxia (Toshiba Memory Corporation)
7.1.8 SK Hynix Inc.
7.1.9 ADATA Technology Co. Ltd
7.1.10 Seagate Technology LLC
7.1.11 Transcend Information Inc.
7.1.12 Inspur Group
7.1.13 Microsemi (Microchip Technology Inc.)
8 INVESTMENT ANALYSIS
9 FUTURE OF THE MARKET

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