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Conductive coating for electrical contact
An electrode is an electrical conductor used to make contact with a nonmetallic part of a circuit.

By use of precisely laser cut masks designed for each individual product electrodes for electrical connections or post soldering can be deposited on three dimensional substrates in production scale.

Thin film coating of electrodes can either be transparent or non-transparent.

We use electrically conductive coating materials as cupper, silver, gold, aluminium, ITO etc.

Electrically conductive thin film PVD coatings can be applied to everything from polymers and composites to ceramics.

Biopotential electrodes
In order to measure and record potentials and, hence, currents in the body, it is necessary to provide some interface between the body and the Electronic measuring apparatus. Biopotential electrodes carry out this interface function. 
Biopotential electrodes must therefore have the capability of conducting a current across the interface between the body and the electronic measuring circuit. 
A silver/silver chloride (Ag/AgCl) electrode is a practical electrode that approaches the characteristics of a perfectly nonpolarizable electrode. An AgCl surface is grown on an Ag electrode by a electrolytic process 

Quartz Crystal sensor electrodes
The Quartz Crystal Microbalance (QCM) is an extremely sensitive mass sensor, capable of measuring mass changes in the nanogram range. QCMs are piezoelectric devices fabricated of a thin plate of quartz with electrodes affixed to each side of the plate.

QCM crystals are used as sensors to determine mass changes as a result of frequency changes. In research environments, the most common QCM crystal applications include metal deposition monitors, chemical reaction monitors, biomedical sensors, and environmental monitoring applications, etc. Other applications include detection of mass, density, viscosity, adsorption, desorption, and corrosion.

The front and back electrodes of QCM's are typically metallised with gold by vapor deposition.

By use of laser cut masks designed for each individual product, electrodes can be deposited very precisely.