H01Q1/3283

Vehicle body part comprising at least one directional antenna

A body part for a motorized land vehicle is provided. The body part includes at least one wall made of a plastic material and including at least one housing forming a cavity for electromagnetic waves, said housing includes: at least one transceiver for transmitting and/or receiving an electromagnetic wave in said housing; at least one adaptable surface capable of reflecting the electromagnetic wave transmitted by the transceiver in a given direction (in a controlled manner) and, conversely, capable of reflecting the electromagnetic wave coming from the exterior of the housing toward the transceiver.

Radome for a radar sensor of a motor vehicle and motor vehicle
11592551 · 2023-02-28 · ·

A radome for a radar sensor of a motor vehicle, having at least one main body facing the radar sensor, through which main body radar beams are intended to pass and which is made of at least one optically non-transparent material, which radome has a first dielectric constant at least on a side facing away from the radar sensor, wherein the radome also has an optically transparent foil with a second dielectric constant which lies between the first dielectric constant and the dielectric constant of air, said foil being applied on the side facing away from the radar sensor and at least in the region of the main body through which the radar beams are intended to pass.

MIMO antenna array with wide field of view

An antenna array apparatus includes: first antenna elements arranged to form a first radiation pattern with a recessed portion at the center of the first radiation pattern; and second antenna elements arranged to form a second radiation pattern with a convex portion at the center of the second radiation pattern.

Road Identification System Using Enhanced Cross-Section Targets
20230058690 · 2023-02-23 · ·

An aspect of the present disclosure is directed to and provides radar-reflecting systems and apparatus that employ metasurfaces to produce enhanced radar cross sections that are greater than those produced by the geometry of the surfaces alone. Another aspect of the present disclosure is directed to and provides heat-ducting systems and apparatus that include metasurfaces. A further aspect of the present disclosure is directed to and provides cards with metasurfaces. Exemplary embodiments utilize fractal plasmonic surfaces for a metasurface.

MIMO ANTENNA ARRAY WITH WIDE FIELD OF VIEW

An antenna array apparatus includes: first antenna elements arranged to form a first radiation pattern with a recessed portion at the center of the first radiation pattern; and second antenna elements arranged to form a second radiation pattern with a convex portion at the center of the second radiation pattern.

Antenna device

An antenna device includes a dielectric substrate, a ground plate arranged on a first surface of the dielectric substrate, an antenna part arranged on a second surface of the dielectric substrate, and a reflecting part. The reflecting part is arranged around the antenna part and has a plurality of conductor patches each functioning as a reflecting plate. The plurality of conductor patches form a plurality of blocks aligned along a predetermined block arrangement direction. The plurality of blocks are configured such that phases of reflected waves at an operating frequency are different for each of the blocks and phase differences of reflected waves between adjacent blocks are non-uniformly different for each of the adjacent blocks.

VEHICLE-MOUNTED COMPONENT ATTACHMENT STRUCTURE AND VEHICLE-MOUNTED COMPONENT ATTACHMENT METHOD
20230094731 · 2023-03-30 ·

A vehicle-mounted component attachment structure including a configuration member of a vehicle, a vehicle-mounted component, and a fixing member. The configuration member has plural recesses spaced apart from one another in a predetermined direction and formed in a fixing face that configures a part of a surface of the configuration member. The vehicle-mounted component includes plural protrusions corresponding to the plural recesses. The fixing member is configured such that one face of the fixing member is fixed to a location of the vehicle-mounted component positioned between the plural protrusions. Another face of the fixing member is spaced apart from the fixing face when the plural protrusions are contacting the fixing face, and the other face of the fixing member is fixed in a contact state to the fixing face when the plural protrusions have been positioned in the corresponding plural recesses.

AN ANTENNA ARRANGEMENT WITH A LOW-RIPPLE RADIATION PATTERN
20230036066 · 2023-02-02 · ·

An antenna arrangement suitable for a vehicle radar transceiver. The antenna arrangement includes a radiating layer having a surface, the surface delimited by a surface boundary. One or more apertures are arranged on the surface. The antenna arrangement further includes one or more surface current suppressing members arranged on the surface. The one or more surface current suppressing members are arranged to suppress a surface current from an aperture to the surface boundary. The one or more surface current suppressing members include one or more grooves.

Radome for vehicles and method for manufacturing said radome

The radome (1) for vehicles comprises a frontal transparent layer (5); a metal-looking decoration layer (7); a rear layer (10); an adhesion promoter layer (8) placed between the metal-looking decoration layer (7) and the rear layer (10); and a colored decoration layer (6) placed between the frontal transparent layer (5) and the metal-looking decoration layer (7).

The method for manufacturing said radome comprises the steps of forming said layers, so that the adhesion promoter layer (8) is placed between the metal-looking decoration layer (7) and the rear layer (10), and the colored decoration layer (6) is placed between the frontal transparent layer (5) and the metal-looking decoration layer (7).

It permits to provide a radome in which there is no air gap between its plastic molded parts, enhancing its performance to transmit the radar emitted and received waves.

ANTENNA DEVICE FOR EMITTING AND RECEIVING ELECTROMAGNETIC WAVES
20220344812 · 2022-10-27 ·

An antenna device (100) includes an antenna element (102) for emitting and receiving electromagnetic waves, a reflector (104) for reflecting the electromagnetic waves emitted from the antenna element (102), and a substrate (106) on which the antenna element (102) and the reflector (104) are positioned. The substrate (106) defines a main extension plane (108) extending along a horizontal direction (Y) and a lateral direction (X), wherein a vertical direction (Z) extends perpendicular to the horizontal direction (Y) and the lateral direction (X), and thus perpendicular to the main extension plane (108). The reflector (104) has a concave shape (112) in the vertical direction (Z) thereby spatially narrowing in the vertical direction (Z) the electromagnetic waves emitted by the antenna element (102), and has a convex shape (110) in the horizontal direction (Y) thereby spatially widening in the horizontal direction (Y) the electromagnetic waves emitted by the antenna element (102).