Mobile terminal millimeter wave phased array magnetic dipole antenna and mobile terminal millimeter wave phased array magnetic dipole antenna array

A technology for magnetic dipole antennas and mobile terminals, applied to antenna arrays, antennas, and resonant antennas that are powered separately, can solve problems such as the inability to meet the needs of all-round signal coverage of handheld terminal equipment, and achieve mass production and ease of use. The effect of large angle coverage and wide beamwidth

Pending Publication Date: 2019-05-10
SOUTHEAST UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the use of a single antenna or a single antenna array cannot meet the requirements of omni-directional hemispherical coverage of the signal of the handheld terminal device in the entire three-dimensional space.
For this practical problem, the industry has not had a clear solution so far, but with the rapid development of millimeter wave communication systems, the necessity and practical significance of proposing a solution for all-round coverage of terminal equipment signal radiation is self-evident Metaphor

Method used

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  • Mobile terminal millimeter wave phased array magnetic dipole antenna and mobile terminal millimeter wave phased array magnetic dipole antenna array
  • Mobile terminal millimeter wave phased array magnetic dipole antenna and mobile terminal millimeter wave phased array magnetic dipole antenna array
  • Mobile terminal millimeter wave phased array magnetic dipole antenna and mobile terminal millimeter wave phased array magnetic dipole antenna array

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Embodiment 1

[0037] Such as figure 1 A magnetic dipole antenna based on a semi-open substrate integrated waveguide resonator in this embodiment, Figure 4 It is an antenna array composed of magnetic dipole antennas based on semi-open substrate integrated waveguide resonators.

[0038] figure 1 A magnetic dipole antenna based on a semi-open substrate integrated waveguide resonator, including an upper dielectric plate and a lower dielectric plate, wherein the material of the upper dielectric plate is Taconic TLY-5, the thickness is 1.52mm, and the upper dielectric plate is The upper surface and the lower surface are respectively provided with a first metal floor 3 and a second metal floor 4, and the metallized via hole group 1 contained in the upper dielectric plate constitutes a semi-open substrate integrated waveguide resonator cavity, and the metallized via hole The hole period of group 1 is 0.75mm, the width of the formed semi-open substrate integrated waveguide resonator is 6.4mm, the...

Embodiment 2

[0045] Such as Figure 7 with Figure 8 As shown, in order to make the antenna beam scan, on the basis of Embodiment 1, another phase-shifting feed network 7 realized by a microstrip power divider with equal amplitude and different phases is adopted, and each array unit will obtain equal-amplitude and different-phase motivating signal. Figure 7 is the metallized via hole position diagram corresponding to the antenna array, using the metallized via hole group consistent with embodiment 1, the feeding probe 2 of each antenna unit in this embodiment is located in the metallized via hole group 1 to form a half The central axis of the open substrate integrated waveguide resonant cavity is located on the upper side to achieve good impedance matching performance. Figure 8 The phase-shifted feed network 7 showing microstrip lines with equal amplitude and different phases is composed of three one-to-two microstrip equal-power dividers to realize the function of one-to-four equal-po...

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Abstract

The invention discloses a mobile terminal millimeter wave phased array magnetic dipole antenna and a mobile terminal millimeter wave phased array magnetic dipole antenna array. The mobile terminal millimeter wave phased array magnetic dipole antenna comprises a phase-shift feed network for realizing the feed phase difference between different units and a semi-open substrate integrated waveguide resonant cavity used for realizing magnetic dipole radiation; and the semi-open substrate integrated waveguide resonant cavity adopts feed probes, and the tail end of a probe-type feed structure is connected to the phase-shift feed network. The phase-shift feed network and the semi-open substrate integrated waveguide resonant cavity are integrated onto two layers of laminated dielectric plate correspondingly, the final antenna structure is formed by the two layers of dielectric plate in a laminated mode, the lower layer is a phase-shift network layer, and the upper layer is a radiation structurelayer. The antenna array is applied to terminal millimeter wave communication so that a compact solution for solving the problem of signal coverage on the upper hemisphere surface of terminal equipment can be realized.

Description

technical field [0001] The invention relates to a mobile terminal millimeter wave phased array magnetic dipole antenna and an antenna array thereof, belonging to the technical field of wireless communication. Background technique [0002] As one of the important components of the wireless communication system, the performance of the millimeter-wave antenna or antenna array directly determines the performance level that the system can achieve. For terminal equipment, it is even more required that the antenna used not only meet the traditional bandwidth and gain indicators, but also have the characteristics of miniaturization and wide beam coverage; in particular, if the antenna can also have end-fire radiation characteristics, then It can bring more additional benefits such as improving energy utilization and reducing interference between the antenna and the internal circuit of the device. [0003] Since the attenuation effect of the atmosphere on electromagnetic waves is re...

Claims

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Application Information

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IPC IPC(8): H01Q1/50H01Q1/36H01Q1/38H01Q3/00H01Q21/29H01Q21/08H01Q9/16
Inventor 洪伟吴凡余超蒋之浩
Owner SOUTHEAST UNIV
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