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A lightweight, high strength dexterous manipulator for commercial applicationsThe concept, design, and features are described of a lightweight, high strength, modular robot manipulator being developed for space and commercial applications. The manipulator has seven fully active degrees of freedom and is fully operational in 1 G. Each of the seven joints incorporates a unique drivetrain design which provides zero backlash operation, is insensitive to wear, and is single fault tolerant to motor or servo amplifier failure. Feedback sensors provide position, velocity, torque, and motor winding temperature information at each joint. This sensing system is also designed to be single fault tolerant. The manipulator consists of five modules (not including gripper). These modules join via simple quick-disconnect couplings and self-mating connectors which allow rapid assembly and/or disassembly for reconfiguration, transport, or servicing. The manipulator is a completely enclosed assembly, with no exposed components or wires. Although the initial prototype will not be space qualified, the design is well suited to meeting space requirements. The control system provides dexterous motion by controlling the endpoint location and arm pose simultaneously. Potential applications are discussed.
Document ID
19920013439
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Marzwell, Neville I.
(Jet Propulsion Lab. California Inst. of Tech., Pasadena., United States)
Schena, Bruce M.
(Odetics, Inc., Anaheim CA., United States)
Cohan, Steve M.
(Odetics, Inc., Anaheim CA., United States)
Date Acquired
September 6, 2013
Publication Date
December 1, 1991
Publication Information
Publication: NASA, Washington, Technology 2001: The Second National Technology Transfer Conference and Exposition, Volume 2
Subject Category
Mechanical Engineering
Accession Number
92N22682
Funding Number(s)
CONTRACT_GRANT: NAS7-1062
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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