AMHS for Semiconductor Market Focuses on Market Share, Size and Projected Forecast Till 2030

Eloisadavis
4 min readDec 20, 2023

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AMHS for Semiconductor Market Size

AMHS for Semiconductor Market Trends, Growth Opportunities, and Forecast Scenarios

AMHS, or Automated Material Handling Systems, play a crucial role in the semiconductor industry by automating the movement of materials, such as silicon wafers and other components, within manufacturing facilities. The AMHS market for the semiconductor industry is expected to witness significant growth in the coming years due to the increasing demand for semiconductor chips in various applications, including consumer electronics, automotive, and healthcare.

One of the key market trends driving the growth of the AMHS for the semiconductor market is the rising adoption of advanced manufacturing technologies, such as Industry and Internet of Things (IoT). These technologies enable the integration and automation of a wide range of manufacturing processes, including material handling, to improve efficiency and productivity. As a result, semiconductor manufacturers are increasingly investing in AMHS to enhance their manufacturing capabilities and meet the growing demand for semiconductors.

Moreover, the growing complexity of semiconductor manufacturing processes, along with the need for high precision and accuracy, is also driving the demand for AMHS. The automation provided by AMHS eliminates the risks associated with manual handling of sensitive semiconductor components, reducing the risk of errors and contamination. Additionally, AMHS enables faster and more efficient material flow, enabling manufacturers to accelerate their production processes and reduce time-to-market.

Furthermore, the increasing focus on sustainability and energy efficiency in the semiconductor industry is creating opportunities for the growth of AMHS. Automated systems can optimize material flow and minimize energy consumption, thereby reducing the carbon footprint of semiconductor manufacturing facilities. This aligns with the industry’s efforts to transition towards more sustainable manufacturing practices.

In conclusion, the AMHS market for the semiconductor industry is poised for growth due to the increasing adoption of advanced manufacturing technologies, the need for high precision and accuracy in semiconductor manufacturing, and the industry’s focus on sustainability. As the demand for semiconductors continues to rise, semiconductor manufacturers will continue to invest in AMHS to improve efficiency, productivity, and sustainability in their manufacturing processes.

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AMHS for Semiconductor Market Competitive Analysis

The AMHS for Semiconductor market is highly competitive, with several key players operating in the industry. Murata Machinery, Daifuku, Avaco, Mirle Automation, SFA Engineering Corporation, Shinsung E&G, Applied Materials, SMCore, ZENIX, SYNUS Tech, Aquest Systems, Siasun Robotics, and Stratus Automation are among the companies involved in this market. These companies offer advanced material handling systems and solutions that play a crucial role in the semiconductor manufacturing process. Their products and services help improve operational efficiency, increase productivity, and reduce manufacturing costs. Although specific sales revenue figures are not provided, these companies have achieved significant success in the market.

In terms of Product Type, the AMHS for Semiconductor market is segmented into:

The types of Automated Material Handling Systems (AMHS) for the Semiconductor industry are as follows: Stocker (STK), Overhead Hoist Transport (OHT), Overhead Shuttle (OHS), Rail Guided Vehicle (RGV), and Automated Guided Vehicle (AGV). STK systems are used for storing and retrieving wafers, ensuring safe and efficient material handling. OHT systems are designed to transport wafers between tools, enabling seamless inter-tool movement. OHS systems provide high-speed transportation of wafers, eliminating the need for manual handling. RGV systems operate on fixed rails, facilitating the movement of materials in a factory. AGV systems are autonomous vehicles used for transporting wafers, ensuring efficient and precise material delivery. These AMHS types enhance productivity, reduce human errors, minimize wafer damage, and optimize processes, thereby boosting the demand for AMHS in the Semiconductor market.

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In terms of Product Application, the AMHS for Semiconductor market is segmented into:

AMHS (Automated Material Handling System) is extensively used in semiconductor factories to enhance productivity and efficiency. In a 200mm wafer factory, AMHS facilitates the transportation of wafers between equipment, reducing human intervention. In a 300mm wafer factory, AMHS enables efficient movement of wafers across various processing tools, contributing to faster production. Likewise, in a 450mm wafer factory, AMHS ensures seamless transportation of larger-sized wafers, optimizing manufacturing operations. The fastest growing application segment in terms of revenue is expected to be the 450mm wafer factory, as the industry transitions towards larger wafer sizes for higher chip production.

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AMHS for Semiconductor Industry Growth Analysis, by Geography

The Automated Material Handling Systems (AMHS) market for semiconductors has been continuously growing in regions such as North America (NA), Asia-Pacific (APAC), Europe, the United States (USA), and China. In North America, the market has experienced significant growth due to the presence of major semiconductor manufacturers and the increasing adoption of advanced technologies. APAC, particularly China, has also witnessed substantial growth in the AMHS market due to the booming manufacturing sector and the rising demand for semiconductors. Europe and the USA are expected to dominate the market as well, driven by the increasing focus on automation in the semiconductor industry. However, China is anticipated to have the largest market share, accounting for a significant percentage of the global market valuation due to its robust semiconductor manufacturing capabilities and extensive investments in automation technologies.

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