IP Library Granted Patent US 12665310
Granted Patent B2
US 12665310 · App. 18/817,647 · Granted Jun 23, 2026

Antenna, wireless communication device, and antenna forming method

Inventor: Jun Uchida (Kanagawa, JP)
Assignee: NEC Platforms, Ltd.
H01Q9/26
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Quick Facts
Patent No.
US 12665310
App. No.
18/817,647
Granted
Jun 23, 2026
Kind
B2
Abstract

Three elements of a first (¼) wavelength element and a second (¼) wavelength element which have a length of (¼) wavelength at an arbitrary frequency designated in advance and a half-wavelength element which has a length of a half-wavelength at the arbitrary frequency are arranged in a three-orthogonal state where those are orthogonal to each other, one end portion of the first (¼) wavelength element is joined to one end portion of the second (¼) wavelength element, another end portion of the second (¼) wavelength element is joined to one end portion of the half-wavelength element, a feeding point for antenna power feeding is arranged in a position in which the one end portion of the first (¼) wavelength element is joined to the one end portion of the second (¼) wavelength element, and an antenna is formed as a one-wavelength twisted Z-shaped three-orthogonal dipole antenna.

Claims (6)

1 . An antenna comprising

a first half-wavelength element, a second half-wavelength element, and a third half-wavelength element that each have a length of a half-wavelength at an arbitrary frequency designated in advance, wherein

the first half-wavelength element, the second half-wavelength element, and the third half-wavelength element are arranged in a three-orthogonal state in which the first half-wavelength element, the second half-wavelength element, and the third half-wavelength element are orthogonal to each other,

a second end portion of the second half-wavelength element and an end portion of the third half-wavelength element are arranged in a non-contact state in mutually adjacent positions, further, an end portion of the first half-wavelength element is not joined to a first end portion of the second half-wavelength element but the end portion of the first half-wavelength element and the first end portion of the second half-wavelength element are arranged in a non-contact state in mutually adjacent positions,

a feeding point for antenna power feeding is arranged in a central position of the second half-wavelength element, and

the antenna is formed as a 1.5-wavelength twisted Z-shaped three-orthogonal dipole antenna.