Used CYMER ELS 5400 #9183254 for sale

Manufacturer
CYMER
Model
ELS 5400
ID: 9183254
Vintage: 2000
Laser 2000 vintage.
CYMER ELS 5400 is an excimer laser equipment designed for a wide range of applications. It is built utilizing the latest solid-state laser technology, providing an unprecedented level of accuracy and reliability. CYMER ELS-5400 is manufactured with a patented, closed-tunnel design to ensure a safe, reproducible, and repeatable laser system with yields that are unbeatable. It's equipped with the latest features such as advanced controls, multiple target configurations, and sophisticated process algorithms to ensure high throughput and accuracy. ELS 5400 operates at a wavelength of 248 nm, allowing for ultra-high resolution imaging and microstructures in the order of several 100 nanometers. Furthermore, its peak power exceed 5 kW and repetition rate of up to 20 kHz, allowing for even faster speeds. This makes it ideal for many industrial applications such as semiconductor photolithography and device manufacturing. ELS-5400 also features a host of safety features, such as a beam stop to protect people, materials, and other equipment, as well as static shielding to protect against potentially damaging static electricity. CYMER ELS 5400 is an economical and reliable package with a simple installation and operation process. It comes with an intuitive software interface, enabling users to configure the laser quickly and efficiently. Additionally, the cost is kept low with the integration of common consumables and components, such as gas and power supply, instead of using separate, costly components. This robust and reliable laser unit is able to process a variety of material - from glass and quartz to sapphire and even synthetic diamond. Furthermore, its high accuracy and flexibility makes it well suited for a variety of industrial applications, from medical and biomedical to electronics and chemical production. In short, CYMER ELS-5400 is an unrivaled laser machine for precision processing of materials at the micro scale.
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