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晶圓處理機器人的全球市場規模:按產品、按應用、按地區、範圍和預測Global Wafer Handling Robots Market Size By Product(Vacuum Wafer Handling Robots, Atmospheric Wafer Handling Robots), By Application(200mm Wafer Size, 300mm Wafer Size, Others), By Geographic Scope And Forecast |
2021年晶圓搬運機器人市場規模為8.4854億美元,預計2022年至2030年複合年增長率為7.7%,2030年達到16.7264億美元。混合動力汽車製造商對晶圓處理機器人的需求不斷增加,半導體產業蓬勃發展,以及工廠自動化支出的增加可能會在預測幾年內推動市場發展。全球晶圓處理機器人市場報告提供了對市場的整體評估。它對關鍵細分市場、趨勢、市場推動因素、競爭格局以及在市場中發揮關鍵作用的因素進行了全面分析。
晶圓處理機器人的全球市場定義
晶圓搬運機器人是積體電路製造中必不可少的設備,用於在各種製造過程中對齊和運輸晶圓。晶圓搬運機器人用於多種用途,例如晶圓清潔、晶圓包裝和晶圓切割。具有超精密、高速、高可靠性等特性。實現自動化並最大限度地減少晶圓加工過程中的污染。晶圓處理機器人有多種模式,製造商在晶圓處理過程中的使用也不同。這些類型包括 SCARA 機器人、蛙腿機器人和四連桿機器人。晶圓搬運機器人有兩種:在大氣壓力下運作的常壓晶圓搬運機器人,以及在真空或某些氣體環境下運作的真空晶圓搬運機器人。大氣機器人採用可減少接觸、摩擦和排氣造成的顆粒污染的材料製成。合適的材料包括不銹鋼、鋁、一些塑膠、複合材料和陶瓷。不銹鋼通常用於關鍵運動部件(軸承、絲槓等)和小部件(螺絲、墊圈等)以及暴露在破壞性條件下的部件。半導體加工中的真空機器人僅部分在真空中運作:機器手臂處於真空中,機器人底座位於大氣中。真空機器人經過專門設計,可在整個製造過程中提供指定的清潔度和真空完整性。
晶圓處理機器人的世界市場概況
由於全球消費性電子產品需求不斷增長,全球半導體產業正在快速成長。根據半導體產業協會(SIA)的報告,2020年10月全球半導體銷售額達390億美元,較2019年10月的368億美元總額成長6.0%,2020年9月成長3.1%相比之下,總額為379 億美元。此外,根據世界半導體貿易統計WSTS的產業預測,2021年全球半導體銷售額將成長8.4%。微機電系統 (MEMS) 是採用微加工技術製造的微型機械和機電組件(IE 設備和結構)。
矽晶圓廣泛用作微電子和MEMS的製造平台。MEMS 應用於廣泛的領域,包括 MEMS 加速度計等感測器、MEMS 開關等執行器、發電機、能源、數位羅盤、生化和生物醫學系統以及振盪器。
目前,半導體公司在採用晶圓搬運機器人時面臨的主要問題是安裝成本和維護成本。儘管晶圓搬運機器人具有良好的投資回報率,但初始安裝成本和維護成本相當高。實施機器人的成本可能遠遠超過機器人的價格。此外,機器人維修或更換可能會導致整個生產線癱瘓並導致利潤損失。這些因素限制了製造公司對晶圓處理機器人的採用,進而阻礙了整體市場的成長。自動化是指透過使用機器人、控制系統和其他機械,自動生產或加工商品的過程,同時限制直接的人機互動。自動化透過改進生產方法、縮短生產時間和降低製造成本改變了製造領域。
Wafer Handling Robots Market size was valued at USD 848.54 Million in 2021 and is projected to reach USD 1672.64 Million by 2030 , growing at a CAGR of 7.7% from 2022 to 2030. The growing demand for wafer handling robots from hybrid vehicle manufacturers, the flourishing semiconductor industry, and rising expenditure on factory automation are likely to drive the market over the predicted years. The Global Wafer Handling Robots Market report provides a holistic evaluation of the market. The report offers a comprehensive analysis of key segments, trends, drivers, restraints, competitive landscape, and factors that are playing a substantial role in the market.
Global Wafer Handling Robots Market Definition
Wafer handling robot is an indispensable device employed in an integrated circuit manufacturing that used to align and transfer wafers during various manufacturing processes. Wafer handling robots are used for a range of applications including wafer cleaning, wafer packaging, and wafer cutting among many others. They possess a range of capabilities such as super precision, high speed, and good reliability. It enables automation and leads to the least contamination during wafer processing. There are various patterns of wafer handling robotics that are used by the manufacturers for the wafer handling process in a different manner. These types comprise SCARA robots, frog leg robots, and four-bar linkage robots. There are two types of wafer handling robots that include atmospheric wafer handling robots, which operate at the ambient atmospheric pressure; and vacuum wafer handling robots, which operate in extremely clean enclosures, either in vacuum or some gas environments. Atmospheric robots are made up of materials that will reduce particle contamination from contact, friction, and out-gassing. Suitable materials include stainless steel, aluminium, some plastics, composites, and ceramics. Stainless steel is commonly utilized for important moving parts (bearings, lead screws, etc.) and tiny parts (screws, washers, etc.), as well as parts that are exposed to destructive situations. Vacuum robots in semiconductor processing operate only partially in a vacuum: the robot arm is in a vacuum, whereas the robot base resides in the atmospheric atmosphere. Vacuum robots are specifically designed to provide the specified cleanliness and vacuum integrity throughout the manufacturing process.
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Global Wafer Handling Robots Market Overview
The global semiconductor industry is growing rapidly owing to the rising demand for consumer electronics across the globe. According to Semiconductor Industry Association (SIA) report, worldwide sales revenue of semiconductors reached $39.0 billion for the month of October 2020, a rise of 6.0% compared to the October 2019 total of $36.8 billion and 3.1% higher than the September 2020 total of $37.9 billion. Furthermore, as per the World Semiconductor Trade Statistics WSTS industry forecast, the global annual sales of semiconductors will increase by 8.4% in 2021. Micro-Electro-Mechanical Systems (MEMS) are the miniaturized mechanical and electro-mechanical components (i.e., devices and structures) that are made using the techniques of micro fabrication.
Silicon wafers have been extensively used in microelectronics and MEMS as a platform for fabrication. MEMS are utilized in a wide variety of sensors such as MEMS accelerometers, actuators such as MEMS switches, generators, energy sources, digital compasses, biochemical & biomedical systems and oscillators.
Currently, the primary issue encountered by semiconductor companies in adopting wafer handling robots is installation and maintenance cost. Although wafer handling robots provide a high return on investment, the initial installation and maintenance cost is quite high. The cost of robot deployment can go far beyond the robot's price tag. Additionally, repairing and replacing a robot can shut down the entire manufacturing line, resulting in a loss of profit. These factors are discouraging manufacturing companies from adopting wafer handling robots, which in turn is hindering the overall growth of the market. Automation refers to the process of automatically producing or handling goods through the use of robotics, control systems, and other machines with a limited direct human operation. Automation has changed the manufacturing sector by improving the way of production, lowering the production time, and the manufacturing cost.
The Global Wafer Handling Robots Market is segmented based on Product, Application, and Geography.
Wafer Handling Robots Market by Product
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Based on Product, the market is bifurcated into Vacuum Wafer Handling Robots, Atmospheric Wafer Handling Robots. Atmospheric Wafer Handling Robots accounted for the largest market share and is projected to grow at a CAGR of 11.79% during the forecast period. The atmospheric wafer handling robots have been utilized in the semiconductor manufacturing environment since a long time and hence due to higher level of penetration, they have a comparatively higher market share. Also, the low cost, as compared to the expensive vacuum wafer handling robots, added to the benefits.
Wafer Handling Robots Market by Application
On the basis of Application, the Global Wafer Handling Robots Market has been segmented into 200mm Wafer Size, 300mm Wafer Size, Others. 300mm Wafer Size accounted for the largest market share and is projected to grow at the highest CAGR of 14.21% during the forecast period. Due to the greater yield provided by these wafers, the exponential use of 300 mm wafers in LED applications is fuelling the growth of the thin wafer market worldwide. Achieving economies of scale and improving the profitability provided by these wafers has become very critical for LED manufacturers. The growing number of operational 300 mm wafer fabrication facilities is also expected to generate a substantial increase in demand over the forecast period for 300 mm wafers and, hence, the market for wafer handling robots.
Wafer Handling Robots Market by Geography
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On the basis of Geography, the Global Handling Robots Market is classified into North America, Europe, Asia Pacific, and the Rest of the world. Asia Pacific accounted for the largest market share and is projected to grow at the highest CAGR of 14.07% during the forecast period. The Asia Pacific held the highest share in terms of value in 2019, accounting for 56% that year, and the demand is mainly driven by the semiconductor industry. The Asian market is primarily driven by emerging economies such as China, India, Japan, South Korea, and Taiwan where the demand for wafer handling robots from the semiconductor industry is increasing rapidly. APAC is the hub for the consumer electronics industry that is served by the number of manufacturing plants present in the APAC region.
The "Global Wafer Handling Robots Market" study report will provide valuable insight with an emphasis on the global market. The major players in the market are
Kawasaki Robotics (Kawasaki Heavy Industries Ltd.), Kensington Laboratories, Nidec Sankyo Corporation, DAIHEN Corporation, RORZE Corporation, Brooks Automation, Ludl Electronic Products, JEL Corporation, and ISEL Germany.
The competitive landscape section also includes key development strategies, market share, and market ranking analysis of the above-mentioned players globally.