Zugriffsnummer 29472
Dokumenttyp Zeitschriftenartikel
Peer Review unbekannt
Sprache Englisch
Titel A high performance one-dimensional homodyne encoder and the proof of a novel two-dimensional homodyne encoder
Autor(in); Institution
Guan, Jun; 5.2, Dimensionelle Nanometrologie, PTB-Braunschweig
Köchert, Paul; 5.2, Dimensionelle Nanometrologie, PTB-Braunschweig
Weichert, Christoph; 5.2, Dimensionelle Nanometrologie, PTB-Braunschweig
Tutsch, Rainer; TU Braunschweig, Braunschweig International Graduate School of Metrology (IGSM), Braunschweig, GERMANY
Quelle/Jahr Precision Engineering: 37 (2013), 4, 865 - 870
ISSN 0141-6359
DOI
URL
Verlag Amsterdam: Elsevier
Freie Schlagworte Displacement measurement ; Interferometric encoder ; Homodyne encoder ; Two-dimensional encoder ; Periodic nonlinearity
Zusammenfassung Displacement laser interferometers and interferometric encoders currently are the dominating solutions to the displacement measurement applications which require measurement uncertainties in the order of a few nanometers over hundreds of millimeters of measurement range. But, in comparison with interferometric encoders, to achieve nanometer order or even lower measurement uncertainties, displacement laser interferometers require much stricter environmental control if not vacuum, which will increase their Total Cost of Ownership (TCO). Therefore interferometric encoders are getting more and more preferable. Furthermore, for some applications, the measurement of the out-of-plane displacement is required as well. Therefore, in this work, a one-dimensional interferometric encoder was built and investigated, a novel two-dimensional (one is in-plane, the other one is out-of-plane) interferometric encoder was devised and its principle was proven experimentally. For the one-dimensional encoder, a periodic nonlinearity of ±50 pm with HEIDENHAIN EIB 741 and a periodic nonlinearity of less than ±10 pm with a home built phase meter and off-line Heydemann correction were identified through a comparison measurement with a differential heterodyne interferometer. In addition, this one-dimensional encoder was identified to have a better measurement stability compared to the differential heterodyne interferometer.

Zitierung

Guan, J., Köchert, P., Weichert, C., & Tutsch, R. (2013). A high performance one-dimensional homodyne encoder and the proof of a novel two-dimensional homodyne encoder. Precision Engineering, 37(4), 865–870. https://doi.org/10.1016/j.precisioneng.2013.05.003

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