Norman M. Wereley - Potomac MD, US Wei Hu - Rockville MD, US Eugene Cook - Boston MA, US Alan L. Browne - Grosse Pointe MI, US
Assignee:
University of Maryland - College Park MD GM Research & Development - Warren MI
International Classification:
F16F 9/53 F16F 15/03
US Classification:
1882672, 188267
Abstract:
A magnetorheological fluid damping system includes a hydraulic cylinder, a piston head, a piston rod, and a porous valve. The hydraulic cylinder is configured for disposing magnetorheological fluid therein. The piston head is disposed within the hydraulic cylinder and has first and second sides defining first and second chambers within the hydraulic cylinder. The piston head is configured to be in sliding engagement with the hydraulic cylinder. The piston rod is connected to the piston head. The porous valve includes a magnetorheological fluid pathway, has first and second fluid connections, and is configured to dampen the flow of the magnetorheological fluid between the first and second fluid connections in accordance with a magnetic field. The first fluid connection is fluidly connected to the first chamber and the second fluid connection is fluidly connected to the second chamber. The magnetorheological fluid pathway at least partially directs magnetorheological fluid flow through a porous media.
Silicon Carbide Microelectromechanical Structure, Device, And Method
- Arlington VA, US - Cambridge MA, US Eugene A. Imhoff - Washington DC, US Eugene Cook - Acton MA, US Jonathan Bernstein - Medfield MA, US Marc Weinberg - Needham MA, US
Assignee:
The Government of the United States of America, as represented by the Secretary of the Navy - Arlington VA The Charles Stark Draper Company - Cambridge MA
Electromechanical device structures are provided, as well as methods for forming them. The device structures incorporate at least a first and second substrate separated by an interface material layer, where the first substrate comprises an anchor material structure and at least one suspended material structure, optionally a spring material structure, and optionally an electrostatic sense electrode. The device structures may be formed by methods that include providing an interface material layer on one or both of the first and second substrates, bonding the interface materials to the opposing first or second substrate or to the other interface material layer, followed by forming the suspended material structure by etching.
Silicon Carbide Microelectromechanical Structure, Device, And Method
- Arlington VA, US - Cambridge MA, US Eugene A. IMHOFF - Washington DC, US Eugene COOK - Melrose MA, US Jonathan BERNSTEIN - Medfield MA, US Marc WEINBERG - Needham MA, US
Assignee:
The Government of the United States of America, as Represented by the Secretary of the Navy - Arlington VA The Charles Stark Draper Laboratory, Inc. - Cambridge MA
Electromechanical device structures are provided, as well as methods for forming them. The device structures incorporate at least a first and second substrate separated by an interface material layer, where the first substrate comprises an anchor material structure and at least one suspended material structure, optionally a spring material structure, and optionally an electrostatic sense electrode. The device structures may be formed by methods that include providing an interface material layer on one or both of the first and second substrates, bonding the interface materials to the opposing first or second substrate or to the other interface material layer, followed by forming the suspended material structure by etching.
Whole Angle Mems Gyroscope On Hexagonal Crystal Substrate
- Cambridge MA, US - Arlington VA, US Eugene Imhoff - Washington DC, US Eugene H. Cook - Acton MA, US Marc S. Weinberg - Needham MA, US Jonathan J. Bernstein - Medfield MA, US
International Classification:
G01C 19/5726 G01C 19/5733
Abstract:
According to one aspect, embodiments herein provide a gyroscope comprising an axially symmetric structure, and a plurality of transducers, each configured to perform at least one of driving and sensing motion of the axially symmetric structure, wherein the plurality of transducers is configured to drive the axially symmetric structure in at least a first vibratory mode and a second vibratory mode, and wherein the gyroscope is implemented on a hexagonal crystal-based substrate.
University of Virginia School of Law Degree - Master of Laws Graduated - 1992 University of Houston Law Center Degree - Doctor of Jurisprudence/Juris Doctor (J.D.) Graduated - 1966
Addison, TXManaging Director at E.T.Cook Past: Director of Strategic Development at ASAP, Director of Online Business Development at PLS
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Eugene Cook
Education:
Southern Methodist University - JD - International and Comparative Law, Southern Methodist University - MBA - IT / Operations Management, University of Texas at Dallas - Business Administration
Eugene Cook
Eugene Cook
Eugene Cook
Eugene Cook
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Self employed semi-retired
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Eugene Cook
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