
Water cooled DC Sources: 5kW – 15kW
GX – Type: 5kW – 15kW
GX-Sputtering Power Supplies are able to eliminate up to 80.000 arcs per second automatically. This extreme capability combined with the small size of the power supply is outstanding and significant for the series GX. The power supplies can be operated with full nominal power without limitation of the operation time and they can also be switched in parallel.
- Output power 5 -15 KW
- water cooled
- ½ 19″–case, 3 HU
- floating output
- Interchangeable Interfaces
- Display for voltage, current and power
- Automatic Arc Handling
- Parallel Operation
Water Cooled & Space efficient:
the water-cooled design allows for the highest power density possible—easily integrates into existing setups. Compact design fits up to two DC power supplies in a 3HU space.
Cost-Effective:
DC Magnetron Sputtering delivers high-quality, high-yield coatings at a fraction of the cost of Pulsed Magnetron Sputtering.
Simplicity:
The operation and equipment setup for DC sputtering are straightforward, making it accessible for various applications.
Flexible Control & Automation:
Interchangeable interface cards ensure compatibility with various control schemes. Automatic arc handling adjusts to process parameters—no programming needed.
German Engineering Excellence:
Developed and manufactured in Germany to the highest standards by ADL GmbH—precision, reliability, and quality you can trust.
Hard Coatings:
Extend the service life of tools and mechanical components with high-performance wear-resistant coatings. Optimized friction properties reduce tool wear, enhancing efficiency and longevity. High-temperature-resistant sputtered coatings provide superior protection against oxidation and thermal degradation—ensuring reliability in the most demanding environments.
Glas Coatings:
Improves optical properties and functionality for architectural glass, displays, and specialized applications.
Solar Cells:
DC magnetron sputtering is widely used for depositing transparent conducting oxide (TCO) layers on solar cells, enhancing their efficiency and electrical conductivity
- Magnetron Sputtering
- Plasma Enhanced Chemical Vapor Deposition (PECVD)
- Plasma Etching

