Industry: ICT & Media | Publish Date: 22-May-2024 | No of Pages: 169 | No. of Tables: 132 | No. of Figures: 97 | Format: PDF | Report Code : N/A
The U.S. Wafer Handling Robots Market size was valued at USD 348.1 million in 2023, and is predicted to reach USD 867.0 million by 2030, at a CAGR of 13.2% from 2024 to 2030. Also, the market size was 8677.0 units in 2023, and is predicted to reach 30305.0 units by 2030, with a CAGR of 18.6% from 2024 to 2030.
A wafer handling robot represents a specialized robotic solution designed to streamline the complex procedures inherent in semiconductor manufacturing. These robots demonstrate exceptional proficiency in executing precise movements and positioning tasks with fragile semiconductor wafers. Their significance lies in their pivotal role in the creation of top-tier integrated circuits and microelectronic devices.
Operating within pristine cleanroom environments, they incorporate a diverse range of end effectors, sensors, and vision systems to securely grasp, inspect, and manipulate wafers, all while mitigating the risks of damage or contamination. By seamlessly integrating with other fabrication equipment, these robots not only boost operational efficiency and minimize errors but also foster the consistent production of cutting-edge semiconductor technologies that power an extensive array of contemporary devices.
The rising government investment in semiconductor research, development, and manufacturing initiatives plays a crucial role in shaping various aspects of the technology industry, including advancements in semiconductor manufacturing processes such as wafer handling robotics. For instance, in July 2022, Congress passed the CHIPS and Science Act of 2022, a landmark legislation aimed at bolstering the domestic manufacturing of semiconductor chips in the US.
While the primary focus of the Act is on semiconductor chip production, it indirectly influences the broader ecosystem, including the technologies that support chip manufacturing. The government's commitment to enhancing semiconductor manufacturing capabilities stimulates innovation and drives the adoption of automation solutions like wafer handling robots, contributing to the overall growth of the semiconductor industry.
The rising collaboration between governments of different countries to expand the semiconductor industry is propelling the market's growth. For instance, in March 2023, India and the United States entered into a Memorandum of Understanding (MoU) that set the stage for the establishment of a Semiconductor Sub-Committee as part of the Commercial Dialogue between the US Department of Commerce and India's Ministry of Electronics and Information Technology (MeitY) and Ministry of Commerce.
This development opens avenues for mutual growth, particularly in the semiconductor industry, consequently driving the demand for wafer handling robots. As countries collaborate to strengthen their semiconductor ecosystems, there is an increased focus on enhancing manufacturing processes, including the adoption of advanced automation solutions like wafer handling robots, to meet the growing demand for semiconductor chips globally.
The high cost of wafer handling robots market significantly constrains the growth. The initial investment required to acquire, integrate, and maintain these sophisticated automation systems can be a substantial financial burden for companies, especially those operating within budget limitations. This financial constraint can discourage potential adopters from entering the market or expanding their automation capabilities.
Incorporating cutting-edge technologies such as Artificial Intelligence (AI), computer vision, and the Internet of Things (IoT) into robots presents extensive opportunities for the U.S wafer handling robots market expansion.
These integrations empower wafer handling robots to streamline processes, increase operational efficiency, and enable predictive maintenance. AI algorithms play a vital role in refining robot movements, improving quality control by identifying defects in real-time, and predicting maintenance needs.
Computer vision ensures accurate handling of wafers and precise object recognition, even in complex operational settings, while IoT connectivity enables real-time monitoring, data exchange, and predictive maintenance, thereby reducing downtime.
Additionally, advanced safety features, data analytics capabilities, and enhancements in energy efficiency further underscore the importance of wafer handling robots as indispensable assets within the dynamic semiconductor manufacturing landscape.
The U.S. wafer handling robots industry comprises various market players, such as include Kawasaki Heavy Industries, Ltd., Nidec Instruments Corporation, Yaskawa Electric Corp., RORZE Corporation, DAIHEN Corporation, Hirata Corporation, Rexxam Co., Ltd., KUKA AG, ULVAC, Inc., and Stäubli International AG.
Vacuum Wafer Handling Robots
Atmospheric Wafer Handling Robots
Single Arm
Dual Arm
Linear Robots
SCARA Robots
Articulated Robots
Cylindrical Robot
Others
Motor Driven
Belt Driven
Stainless Steel Belts
Rubber Belts
Polymer Belts
Free Standing
Integrated
Up to 100 mm
150 mm
200 mm
300 mm
Above 300 mm
Oxidation (Deposition)
Lithography
Etching, Cleaning, Polishing
Inspection & Testing
Assembly & Packaging
Integrated Device Manufacturer (IDM)
Foundries
REPORT SCOPE AND SEGMENTATION:
Parameters |
Details |
Market Size in 2023 |
USD 348.1 Million |
Revenue Forecast in 2030 |
USD 867.0 Million |
Growth Rate |
CAGR of 13.2% from 2024 to 2030 |
Market Volumes in 2023 (units) |
8677.0 |
Volumes Forecast in 2030 (units) |
30305.0 |
Growth Rate |
18.6% |
Analysis Period |
2023–2030 |
Base Year Considered |
2023 |
Forecast Period |
2024–2030 |
Market Size Estimation |
Million (USD) |
Growth Factors |
|
Companies Profiled |
10 |
Market Share |
Available for 10 companies |
Customization Scope |
Free customization (equivalent up to 80 working hours of analysts) after purchase. Addition or alteration to country, regional, and segment scope. |
Pricing and Purchase Options |
Avail customized purchase options to meet your exact research needs. |
Kawasaki Heavy Industries, Ltd.
Nidec Instruments Corporation
Yaskawa Electric Corp.
RORZE Corporation
DAIHEN Corporation
Hirata Corporation
Rexxam Co., Ltd.
KUKA AG
ULVAC, Inc.
Stäubli International AG