Used AMAT / APPLIED MATERIALS Centura Enabler E5 #293614949 for sale

AMAT / APPLIED MATERIALS Centura Enabler E5
ID: 293614949
Vintage: 2008
Etcher 2008 vintage.
AMAT / APPLIED MATERIALS Centura Enabler E5 is an etcher and asher, designed to provide a reliable and high-performance etching and ashing process. It combines precision etching and ashing with a cost-effective, scalable platform, allowing manufacturers to fine-tune their etching and ashing processes. AMAT Centura Enabler E5 uses an advanced etching and ashing process that combines dry and wet etching technologies. The dry etching process is performed using an ion beam source, whilst the wet etching process uses a mini-jet process, featuring advanced focus geometry and a sophisticated liquid delivery system. This combined process provides high etch rates, precise depth control and uniformity on a wide range of substrates, including silicon, oxides, metals, nitrides, and other materials. APPLIED MATERIALS Centura Enabler E5 is equipped with a powerful vacuum system, helical scan monitoring capability and an intuitive user interface. This allows users to quickly and easily set up and monitor etching and ashing processes with minimal confusion. The helical scan monitoring system provides feedback on the etch or ashing process and allows users to fine tune the etch parameters for improved results. Centura Enabler E5 also features advanced cooling systems, allowing for improved thermal management, low process temperatures and increased chamber lifetime. Additionally, AMAT / APPLIED MATERIALS Centura Enabler E5 is compatible with existing AMAT process tools, giving users the ability to integrate etching and ashing processes into their existing production process. AMAT Centura Enabler E5 is a powerful and versatile etcher and asher, providing users with an efficient and cost-effective etching and ashing solution. Its advanced process capabilities, coupled with its intuitive user interface, make it an ideal choice for manufacturers looking to improve their etching and ashing processes.
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