As per the report published by Fior Markets, the global electrostatic chucks market is expected to grow from USD 298.53 Million in 2018 to USD 454.72 Million by 2026, at a CAGR of 5.40% during the forecast period 2019-2026. The Asia Pacific region dominated the global electrostatic chucks market with a 39.93% share of market revenue in 2018. On the other hand,the North America region also held a robust share in the global electrostatic chucks market.
“Electrostatic Chucks Market by Type (Coulomb-Fore Electrostatic Chuck,Johnsen-Rahbek Electrostatic Chuck), Application, Regions”,and Global Forecast 2019-2026.
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Major players in the global electrostatic chucksmarket are Shinko, NGK Insulators Ltd (FM Industries Inc.), NTK Ceratec Co. Ltd, II-VI M Cubed, Tsukubaseiko Co. Ltd, Kyocera Corporation, Protec, Toto Ltd., Semco Technology (Semco Group TM), CoorstekInc, Fraunhofer-Gesellschaft, Welch Ally, American Diagnostic Corporation, Orlvision GMBH, Heine USA LTD, Rudolf Riester GMBH (subsidary of halmaplc), Luxamed, Sync Vision, Kirchner & Wilhelm GMBH +CO. KG, Cupris Health Ltd., and among others. In order to effectively compete in the market and increase their market footprint, major players are focusing on expansion of their production capacities. For instance in 2018, the GK Insulators Ltd announced its decision to establish a new production site for ceramics for semiconductor manufacturing equipment in Tajimi City, Japan. NGK plans to invest approximately USD 3.18 Billion in the new plant and intends to start with a mass production from April 2020.
The global electrostatic chucks market has been segmented on the basis of type and application.The type segment is divided into Coulomb-Fore electrostatic chuck, Johnsen-Rahbekforce electrostatic chuck. The Coulomb force type utilizes an insulator as a dielectric material, on the others hand the Johnson-Rahbek force type utilizes an attractive force induced by dielectric polarization caused by minute electric current flow across the boundary between an object and a dielectric material. The Coulomb force type electrostatic chucks exhibit the ability to support thin thickness of the wafer and re-bending wafers. As a result, the Coulomb-Fore electrostatic chuck segment emerged as the leader in the global electrostatic chucks market with a 68.92% share of market revenue in 2018. In Coulomb-Fore electrostatic chuck the clamping pressure exists everywhere between reticle and chuck whereas inJohnsen-Rahbekforce electrostatic chuck the force depends on contact between substrate and dielectric. The application segment is divided into semiconductor (LCD/CVD), wireless communications, electronics, medical devices, and others. Factors such as global rise in the per capita health expenditure and rapid improvement in the standards of healthcare facilities in the Asia Pacific are leading to an increased demand for the medical devices. Consequently, the medical devices segment is projected to grow at the fastest CAGR of 7.53% over the forecast period. The use of the radio frequency (RF) communications for tracking patient medical health and increasing use of RF tags to monitor patient’s health status has further increased the segment growth.
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Electrostatic chucks provides exceptional low out gas characteristics and can be used in high vacuum atmosphere. These chucks are extensively used in semiconductor devices due to their durability and low backside particle contamination features. Furthermore, these electrostatic chucks help in the elimination of moving part and hence decreases the wafer edge exclusion. The major drivers that stimulates the market demand includes the rapid pace of digitization in the developing economies, huge demand for the smartphones, LED lamps, TVs, computers etc. as well as advantages of electrostatic chucking over the mechanical chucking. However, the volatility in the raw material prices and high cost associated with the electrostatic chucks are anticipated to limit the market growth over the forecast period. Nevertheless, emerging technologies revolutionizing semiconductors industry as well as the increasing demand for compound semiconductors in military, defense, and aerospace applications is expected to create new opportunities for the market growth in upcoming years.
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