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US Patent 10023312 Helicopter hoist systems, devices, and methodologies

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Is a
Patent
Patent
0

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
100233120
Patent Inventor Names
Brad Repp0
Brad Pedersen0
Chad Cariano0
Chad Dize0
Ezra Johnson0
Date of Patent
July 17, 2018
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Patent Application Number
147958430
Date Filed
July 9, 2015
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Patent Citations Received
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US Patent 11981251 Autonomous search light system, winch system comprising an autonomous search light system, and aircraft comprising an autonomous search light system
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US Patent 12012188 Rapid aerial extraction systems
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US Patent 10252894 Self-homing hoist
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US Patent 10723602 Cable offset detection with contact
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US Patent 11008198 Hoist and deployable equipment apparatus, system, and method
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US Patent 11620597 Machine learning real property object detection and analysis apparatus, system, and method
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US Patent 11746951 Cable deployment apparatus, system, and methods for suspended load control equipment
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US Patent 11992444 Apparatus, system, and method to control torque or lateral thrust applied to a load suspended on a suspension cable
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...
Patent Primary Examiner
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John Olszewski
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Patent abstract

A helicopter-hoist system is described. The system may include: hoist equipment, illumination systems, range-measuring equipment, camera(s), communication systems, display devices, processing/control systems including image-processing systems, and power-management systems. The system may also include a smart-hook for measuring a load on the hook. Based on the measured load on the cable, the lighting may be illuminated in different manners. In another aspect, the system may communicate with display devices, which render images of a mission to helicopter crew members or other observers. Measured parameters appurtenant to the mission—such as the weight of the load, height of the smart-hook above a surface, altitude of the aircraft, distance between the aircraft and end of the hook, location of the hook in three-dimensional space, forces on the hook and cable, and other mission-critical information—may be overlaid, or rendered proximate to the real images to provide crew members with a full understanding of a mission.

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