Articles | Volume 8, issue 1
https://doi.org/10.5194/jsss-8-111-2019
https://doi.org/10.5194/jsss-8-111-2019
Regular research article
 | 
28 Feb 2019
Regular research article |  | 28 Feb 2019

Sensor characterization by comparative measurements using a multi-sensor measuring system

Sebastian Hagemeier, Markus Schake, and Peter Lehmann

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Cited articles

Blu-ray Disc Association: White Paper Blu-ray Disc format: General, 5th Edition, available at: http://www.blu-raydisc.com, last access: 10 August 2018. a
Brand, U., Doering, L., Gao, S., Ahbe, T., Buetefisch, S., Li, Z., Felgner, A., Meess, R., Hiller, K., Peiner, E., Frank, T., and Halle, A.: Sensors and calibration standards for precise hardness and topography measurements in micro-and nanotechnology, in: Micro-Nano-Integration; 6. GMM-Workshop; Proceedings of, 1–5 pp., VDE, 2016. a
Corle, T. R. and Kino, G. S.: Confocal scanning optical microscopy and related imaging systems, Academic Press, 1996. a, b
Dabbs, T. and Glass, M.: Fiber-optic confocal microscope: FOCON, Appl. Optics, 31, 3030–3035, 1992. a
de Groot, P.: Principles of interference microscopy for the measurement of surface topography, Adv. Opt. Photonics, 7, 1–65, 2015. a
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Short summary
In this contribution a multi-sensor measuring system is presented. With this measurement system comparative measurements using five different surface measurement sensors are performed under identical conditions in a single set-up. The presented measurement results show different transfer behaviour of each sensor and indicate unique advantages for tactile and optical sensors. Comparative measuring enables the investigation of measurement deviations and helps to improve appropriate techniques.