Astronomy projekt • NASA Mission
SOFIA, the Stratospheric Observatory for Infrared Astronomy, was a Boeing 747SP aircraft modified to carry a 2.7-meter reflecting telescope (with an effective diameter of 2.5 meters). Flying into the stratosphere at 38,000-45,000 feet put SOFIA above 99 percent of Earth’s infrared-blocking atmosphere, allowing astronomers to study the solar system and beyond in ways that are not possible with ground-based telescopes.
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Mission Übersicht
SOFIA, the Stratospheric Observatory for Infrared Astronomy, was a Boeing 747SP aircraft modified to carry a 2.7-meter (106-inch) reflecting telescope (with an effective diameter of 2.5 meters or 100 inches). Flying into the stratosphere at 38,000-45,000 feet put SOFIA above 99 percent of Earth’s infrared-blocking atmosphere, allowing astronomers to study the solar system and beyond in ways that are not possible with ground-based telescopes. SOFIA was made possible through a partnership between NASA and the German Space Agency at DLR.ter erfasst der Satellit präzise Messdaten zur atmosphärischen Feuchtigkeit und Temperatur. The observatory’s mobility allowed researchers to observe from almost anywhere in the world, and enabled studies of transient events that often take place over oceans, where there are no telescopes.
Airborne Science
Solar System, Universe
Study the solar system and beyond in ways impossible for ground-based telescopes
Abgeschlossen
Unser Beitrag

High-Torque 3D Torquer
MACCON supplied a 3D torque motor rated at 1,000 Nm, enabling precise and powerful motion control for the SOFIA flying telescope.
Auxiliary Drive Systems
In addition to the main torquer, MACCON delivered auxiliary drive systems including coarse drives and balancing drives for controlled telescope movement.
Control and Sensor Subsystems
The scope of supply also included key subsystems such as a spherical sensor and the TASCU control unit, supporting accurate positioning and reliable operation.
Key Facts
An overview of the SOFIA telescope’s key specifications and the drive technologies supplied by MACCON.
3D Torque Motor
Powerful drive for precise telescope motion.
Diameter
Primary Mirror
Telescope Assembly
Approx weight of the telescope assembly.
Hydrostatic Bearing
Rotation isolation via hydrostatic oil bearing segments.
Spectral Range
Observation range from near-infrared to far-infrared wavelengths.
Motion Range
Coarse elevation range with fine motion in all directions.
Projekt-Steckbrief

AAC Omnisys
NASA / DLR
Airborne Observatory
3D-Torquer & Auxiliary Drive Systems
Abgeschlossen
Luft- & Raumfahrt / Astronomie
MACCON
Kontakt
Sie haben eine konkrete Anwendung oder technische Herausforderung? Unser Engineering-Team unterstützt Sie von der technischen Beratung und Auslegung bis zur Lieferung passender Antriebskomponenten und kompletter Motion-Control-Lösungen für anspruchsvolle Projekte.
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