Patent classifications
B64C1/36
ADAPTER FOR AIRCRAFT WIRELESS MODULE
A circuit card assembly is described. The circuit card assembly adapts a host circuit card assembly of a host device with an expansion card. By such adaption, the host device may communicate with an access point of an avionics network. The circuit card assembly includes an interface for receiving power from the host circuit card assembly. The circuit card assembly then continuously and selectively provides power to a second interface based on the availability of aircraft power. The second interface receives the expansion card. The circuit card assembly also includes one or more coaxial RF connectors for receiving modulated signals from the expansion card. The circuit card assembly also includes an antenna which transmits radio waves based on the modulated signals.
VHF FOLDED STRUCTURALLY INTEGRATED ANTENNA FOR VERTICAL LIFT AIRCRAFT
A folded slot structurally integrated antenna is defined within the structure of the vertical stabilizer. The folded slot structurally integrated antenna comprises a first terminal with a flared portion, a substantially constant slot width potion, and a second terminal with a flared portion. The substantially constant slot width potion may include one or more curvatures to extend the length of the folded slot structurally integrated antenna within the vertical stabilizer. The antenna system may utilize reactive loading or dynamic slot length switching. A platform may include folded slot structurally integrated antennas in both a vertical stabilizer and horizontal wings or winglets. Horizontal and vertical folded slot structurally integrated antennas may be utilized to produce various polarization profiles.
VHF FOLDED STRUCTURALLY INTEGRATED ANTENNA FOR VERTICAL LIFT AIRCRAFT
A folded slot structurally integrated antenna is defined within the structure of the vertical stabilizer. The folded slot structurally integrated antenna comprises a first terminal with a flared portion, a substantially constant slot width potion, and a second terminal with a flared portion. The substantially constant slot width potion may include one or more curvatures to extend the length of the folded slot structurally integrated antenna within the vertical stabilizer. The antenna system may utilize reactive loading or dynamic slot length switching. A platform may include folded slot structurally integrated antennas in both a vertical stabilizer and horizontal wings or winglets. Horizontal and vertical folded slot structurally integrated antennas may be utilized to produce various polarization profiles.
Methods and systems using networked phased-array antennae applications to detect and/or monitor moving objects
Disclosed is a networked array of radar enclosures that can be arranged to cover a desired geographical location. The array can detect moving objects in the coverage area. When warranted, elements of the array can also control the movement of associated objects, for example, friendly drones. The present invention also combines attributes that facilitate the less conspicuous detection and monitoring of moving objects, with the capability of distinguishing types of moving objects.
Methods and systems using networked phased-array antennae applications to detect and/or monitor moving objects
Disclosed is a networked array of radar enclosures that can be arranged to cover a desired geographical location. The array can detect moving objects in the coverage area. When warranted, elements of the array can also control the movement of associated objects, for example, friendly drones. The present invention also combines attributes that facilitate the less conspicuous detection and monitoring of moving objects, with the capability of distinguishing types of moving objects.
METHODS AND SYSTEMS USING NETWORKED PHASED-ARRAY ANTENNAE APPLICATIONS TO DETECT AND/OR MONITOR MOVING OBJECTS
Disclosed is a networked array of radar enclosures that can be arranged to cover a desired geographical location. The array can detect moving objects in the coverage area. When warranted, elements of the array can also control the movement of associated objects, for example, friendly drones. The present invention also combines attributes that facilitate the less conspicuous detection and monitoring of moving objects, with the capability of distinguishing types of moving objects.
METHODS AND SYSTEMS USING NETWORKED PHASED-ARRAY ANTENNAE APPLICATIONS TO DETECT AND/OR MONITOR MOVING OBJECTS
Disclosed is a networked array of radar enclosures that can be arranged to cover a desired geographical location. The array can detect moving objects in the coverage area. When warranted, elements of the array can also control the movement of associated objects, for example, friendly drones. The present invention also combines attributes that facilitate the less conspicuous detection and monitoring of moving objects, with the capability of distinguishing types of moving objects.
ELECTRONIC ARRANGEMENT FOR AN AIRCRAFT AND METHOD FOR PROVIDING SUCH AN ELECTRONIC ARRANGEMENT
An opening completely arranged in a skin panel of a structural portion of the aircraft is formed in the outer skin of the skin panel, and for each of the skin panels with one of the openings, an associated structural element of an electronic arrangement is separately provided. The structural element is designed and detachably fastened by a frame thereof to the outer skin in the corresponding skin panel on the side of the outer skin opposite the outer surface, such that it seals the corresponding opening such that the skin panel has at least the same pressure-tightness and at least the same strength relative to tension, pressure and shear forces which act in the skin panel in the extension direction of the outer skin as the same skin panel without the corresponding opening.
ELECTRONIC ARRANGEMENT FOR AN AIRCRAFT AND METHOD FOR PROVIDING SUCH AN ELECTRONIC ARRANGEMENT
An opening completely arranged in a skin panel of a structural portion of the aircraft is formed in the outer skin of the skin panel, and for each of the skin panels with one of the openings, an associated structural element of an electronic arrangement is separately provided. The structural element is designed and detachably fastened by a frame thereof to the outer skin in the corresponding skin panel on the side of the outer skin opposite the outer surface, such that it seals the corresponding opening such that the skin panel has at least the same pressure-tightness and at least the same strength relative to tension, pressure and shear forces which act in the skin panel in the extension direction of the outer skin as the same skin panel without the corresponding opening.
AERIAL DEVICE FOR A VEHICLE AND VEHICLE WITH AN AERIAL DEVICE
An aerial device for a vehicle, particularly an aircraft, includes an aerial arrangement and a lens, which includes a first lens area, made of a first material with a first dielectric constant, overlapping the aerial arrangement and a second lens area, made of a second material with a second dielectric constant, overlapping the first lens area, with the second dielectric constant being smaller than the first dielectric constant, and wherein the second lens area extends in a longitudinal direction and in a curve in respect of a vertical direction oriented transverse to the longitudinal direction.