07.05.2013

ScanXY 40 – the new 2D piezo scan and positioning stage

The Scan XY40 piezoelectric actuating stage offers a travel range of 40 microns per axis.

The nanopositioning piezo stage is mainly designed to fulfill requirements for 2D scanning applications. The superiorly performing scanning stage can offer a resonant frequency of more than 800 Hz per axis. The Scan XY40 is ideally suited for nm-precise positioning of light weight optic components such as mirror prisms or laser diodes. The Scan XY40 can offer significant advantages when used in a variety of applications where speed and a low settling time play an important role. These applications include semiconductor technologies and electronics, and applications in measurement technologies and quality assurance as well as microbiology.

The X- and Y-axis of the 2D piezo scanner can be controlled separately. The axes are positioned orthogonally to each other and the direction of motion is show by small markings on the stage. The FEM optimized flexure hinge design provides the lowest settling time and superior trajectory accuracy. piezosystem jena piezo stage designs offer motion without mechanical play or mechanical wear.

The Scan XY40 is also available in a vacuum configuration.

The Scan XY40 can be easily mounted by using the four mounting hole set up. For component assembling, the moving part offers 4 pieces and M2 threading holes with a 13x13 mm pattern in the center of the piezoelectric positioning stage.

info@piezojena.com
www.piezosystem.com

Sonderhefte

Physics' Best und Best of
Sonderausgaben

Physics' Best und Best of

Die Sonder­ausgaben präsentieren kompakt und übersichtlich neue Produkt­informationen und ihre Anwendungen und bieten für Nutzer wie Unternehmen ein zusätzliches Forum.

Anbieter des Monats

Quantum Design GmbH

Quantum Design GmbH

Forschung lebt von Präzision. Seit über 40 Jahren steht Quantum Design für innovative Messtechnik auf höchstem Niveau – entwickelt in Kalifornien, betreut weltweit. Unsere Systeme sind der Goldstandard in der Materialcharakterisierung und ermöglichen tiefe Einblicke in die magnetischen, thermischen und optischen Eigenschaften von neuen Materialien.

Meist gelesen

Themen