The adoption of technologies like AI and IoT in fabrication will significantly impact the semiconductor manufacturing equipment market forecast. Software companies are keen on implementing advanced solutions to cater to the rising demands of compact chipsets and growing production. For instance, TCS in May 2020, developed an AI and cloud-based solution to detect errors in wafers besides improving the production and quality of semiconductors.
Constant use of advanced chipsets in automotive and consumer electronics to offer advanced infrastructure and technical expertise have bolstered growth opportunities in OSAT companies. Reportedly, global semiconductor manufacturing equipment market could reach an annual valuation of over USD 80 billion by 2026.
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The wafer manufacturing equipment segment recorded over 15% of the global market in 2019. It is likely to garner a CAGR of 5% in the next few years due to the growing consumption of silicon wafers. There is a higher requirement for wafer manufacturing equipment in fab facilities. As per the Semiconductor Equipment and Materials International (SEMI), global shipments for silicon wafers incremented by nearly 2.7% in terms of square inches in the first quarter of 2020 compared to the last quarter.
Various business strategies are being developed by major brands to enhance silicon wafer production. STMicroelectronics acquired Norstel AB, a Sweden based Silicon Carbide wafer manufacturer, to boost the supply of wafers for diode and MOSFET used in industrial and automotive sectors.
In the lithography process in the front-end segment, various technical advancements will increase the need of the semiconductor manufacturing devices in the next few years. For instance, EV Group launched the next generation lithography process “MLE” (Maskless Exposure) equipment for high-density PCB, MEMS, and biomedical applications.
Based on dimensions, semiconductor manufacturing equipment market, from the 2D segment, is believed to register a CAGR of 6% up to 2026 owing to its lower initial cost of architecture. The 2.5D technological framework is mainly deployed across high-performance computing devices as it offers high chip functionality. It is additionally used in front-end equipment and graphene electronics to attain cost efficiency in production.
Foundries brought in more than 25% of the annual revenues in 2019, pegged to rise at a CAGR of 4% over the coming years. A surge in the demand for power electronics, and cryptocurrency have urged foundry suppliers to upgrade their IC production with newer nodes. For instance, Apple received a 5nm chipset from TSMC to integrate the A14 SoC into iPhone12, in April 2020. The continuous decline in the node size has elevated the requirements for new semiconductor manufacturing equipment in foundries.
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North America market, as such, will grow steadily and expand at a growth rate of around 6% during through 2026. Relentless technological development, along with expanding penetration of smart products is expected to spur semiconductor manufacturing equipment market share.
Major Key Points from Table of Content:
Chapter 6. Semiconductor Manufacturing Equipment Market, By Dimension
6.1. Key trends, by dimension
6.2.1. Market estimates and forecast, 2015 - 2026
6.3.1. Market estimates and forecast, 2015 - 2026
6.4.1. Market estimates and forecast, 2015 – 2026
Chapter 7. Semiconductor Manufacturing Equipment Market, By Supply Chain Process
7.1. Key trends, by supply chain process
7.2.1. Market estimates and forecast, 2015 - 2026
7.3.1. Market estimates and forecast, 2015 - 2026
7.4.1. Market estimates and forecast, 2015 – 2026
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