Ceramic Materials

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GPT is a company that supplies eco-friendly core components of advanced industrial technology and next-generation industrial technology as innovative solutions.
Ceramics are emerging as a core material in all industrial fields due to excellent characteristics such as wear resistance, corrosion resistance, heat resistance, and high strength.
GPT produces eco-friendly precision components that meet customer needs, such as electronic and semiconductor components using ceramic, nano-dispersed grinding components for secondary batteries, energy (nuclear power, solar energy), aviation and space – and manufactures pharmaceutical quantitative dispensing pumps, plus quantitative discharge valves for food and beverages.

Anti-static ceramics
Through the development of a composite with aluminum oxide (Al2O3) and electrical properties, it has proven its excellent performance in process yield with special characteristics solving the problem of static electricity generation in electronic devices and semiconductor processes as a high-strength, high-durability, and anti-static material.

Anti-static porous ceramics
Porous ceramics with pore sizes of 2µm~20µm and a porosity of 25%~35% are used for fixed adsorption and high-precision levitation using air. In particular, they perform processes that do not have physical effects on the target object due to the uniform distribution of pores.
It includes anti-static function, and is manufactured as a fixed table for thin wafer, PCB Cu base, film, etc., thus realizing excellent performance in various processes.
The company’s CEO explained, “We develop products aimed at maintaining and improving the high yield of each process of industrial technology by securing the reliability of ceramic parts through implementation and verification of materials suitable for extreme environments and dimensions below µm, according to the overall requirements of advanced industrial technology. In particular, we will become a supportive partner with each customer through taking the lead in developing materials according to the environment of semiconductor processes.”

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