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High Angular Sensitivity, Absolute Rotary Encoding Device with Polygonal Mirror and Stand-Alone Diffraction Gratings A device for position encoding of a rotating shaft in which a polygonal mirror having a number of facets is mounted to the shaft and a monochromatic light beam is directed towards the facets. The facets of the polygonal mirror direct the light beam to a stand-alone low line density diffraction grating to diffract the monochromatic light beam into a number of diffracted light beams such that a number of light spots are created on a linear array detector. An analog-to-digital converter is connected to the linear array detector for reading the position of the spots on the linear array detector means. A microprocessor with memory is connected to the analog-to-digital converter to hold and manipulate the data provided by the analog-to-digital converter on the position of the spots and to compute the position of the shaft based upon the data from the analog-lo-digital converter.
Document ID
20160001131
Acquisition Source
Goddard Space Flight Center
Document Type
Other - Patent
Authors
Leviton, Douglas B.
(Genesis Engineering Solutions, Inc. Lanham, MD, United States)
Date Acquired
January 25, 2016
Publication Date
January 9, 1996
Subject Category
Optics
Report/Patent Number
Patent Application Number: US-Patent-Appl-SN-137,706
Patent Number: US-Patent-5,483,058
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Patent
US-Patent-5,483,058
Patent Application
US-Patent-Appl-SN-137,706
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