METASURFACE FOR SMARTPHONE ANTENNA, AND SMARTPHONE DEVICE COMPRISING SAME
20230318183 · 2023-10-05
Inventors
Cpc classification
H01Q9/0407
ELECTRICITY
International classification
Abstract
A metasurface for a smartphone antenna, according to one embodiment of the present invention, is located between a smartphone cover case and a patch type array antenna, and is characterized by having a two-dimensional grid structure in which a plurality of rectangular openings are formed. The introduction, to a smartphone device, of the metasurface according to the embodiment satisfies the bandwidth required for 5G technology and improves the performance of the antenna.
Claims
1. A metasurface for a smartphone antenna, wherein the metasurface is located between a smartphone cover case and a patch type array antenna, the metasurface configured to increase a gain of the patch type array antenna, and has a two-dimensional grid structure having a plurality of rectangular openings.
2. The metasurface for the smartphone antenna according to claim 1, wherein the plurality of rectangular openings has an asymmetrical structure having different horizontal and vertical lengths.
3. The metasurface for the smartphone antenna according to claim 2, wherein antenna devices of the patch type array antenna have different active reflection coefficients, and wherein the horizontal and vertical lengths of the plurality of rectangular openings are determined according to characteristics of the antenna devices located below each of the plurality of rectangular openings.
4. The metasurface for the smartphone antenna according to claim 1, wherein a thickness of the metasurface is 15 μm or less.
5. The metasurface for the smartphone antenna according to claim 1, wherein an operating bandwidth of the patch type array antenna is 26.1 GHz to 29.6 GHz.
6. The metasurface for the smartphone antenna according to claim 1, wherein a dielectric is located between the metasurface and the patch type array antenna, and wherein the smartphone cover case includes a tempered glass material.
7. The metasurface for the smartphone antenna according to claim 6, wherein the patch type array antenna is designed considering reflection and refraction paths of radio waves according to constituent materials and thicknesses of the dielectric and the smartphone cover case.
8. A smartphone device having a metasurface for an antenna, comprising: a smartphone body; a patch type array antenna embedded in one surface of the smartphone body; a dielectric located on the patch type array antenna; a metasurface for a smartphone antenna located on the dielectric; and a cover case secured to the smartphone body while covering the metasurface, wherein the metasurface has a two-dimensional grid structure having a plurality of rectangular openings, and the metasurface configured to increase a gain of the antenna.
Description
DESCRIPTION OF DRAWINGS
[0020] The following is a brief introduction to necessary drawings in the description of the embodiments to describe the technical solutions of the embodiments of the present disclosure or the prior art more clearly. It should be understood that the accompanying drawings are for the purpose of describing the embodiments of the present disclosure and are not intended to be limiting of the present disclosure. Additionally, for clarity of description, illustration of some elements in the accompanying drawings may be exaggerated and omitted.
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BEST MODE
[0029] The following detailed description of the present disclosure is made with reference to the accompanying drawings showing particular embodiments for practicing the present disclosure by way of illustration. These embodiments are described in sufficiently detail for those skilled in the art to practice the present disclosure. It should be understood that various embodiments of the present disclosure are different but do not need to be mutually exclusive. For example, particular shapes, structures and features described herein in connection with one embodiment may be embodied in other embodiment without departing from the spirit and scope of the present disclosure. It should be further understood that changes may be made to the positions or placement of individual elements in each disclosed embodiment without departing from the spirit and scope of the present disclosure. Accordingly, the following detailed description is not intended to be taken in limiting senses, and the scope of the present disclosure, if appropriately described, is only defined by the appended claims along with the full scope of equivalents to which such claims are entitled. In the drawings, similar reference signs indicate same or similar functions in many aspects.
[0030] The terms as used herein are general terms selected as those being now used as widely as possible in consideration of functions, but they may differ depending on the intention of those skilled in the art or the convention or the emergence of new technology. Additionally, in certain cases, there may be terms arbitrarily selected by the applicant, and in this case, the meaning will be described in the corresponding description part of the specification. Accordingly, it should be noted that the terms as used herein should be interpreted based on the practical meaning of the terms and the context throughout the specification, rather than simply the name of the terms.
[0031] Hereinafter, exemplary embodiments of a metasurface for a smartphone antenna and a smartphone device having the same will be described in detail with reference to the accompanying drawings.
[0032]
[0033]
[0034] The smartphone body 1 is a device capable of wireless communication, and may transmit and receive a signal and data via communication with an external device through the embedded antenna. The antenna and a communication module may be included to transmit and receive the signal, and the radio signal may be sent from the smartphone to the external device through the antenna or the signal may be received from the external device.
[0035] The term smartphone is used in the specification, but it does not refer to only a specific type of device or telephone, and includes any type of electronic device capable of wireless communication with the external device using the antenna and the communication module. For example, various types of communication terminals capable of 5th generation (5G) millimeter wave communication such as a tablet personal computer (PC), a laptop PC and a wearable device may be included in the concept of the smartphone.
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[0039] Additionally, each of the antenna devices 21, 22, 23, 24 may be designed considering the reflection and refraction paths of radio waves according to the constituent materials and thicknesses of the dielectric 3 and the smartphone cover case 5.
[0040] The dielectric 3 is a layer of dielectric material and is disposed on the patch antenna to protect the antenna. Considering that the smartphone body is typically about 7 mm in in thickness, the thickness of the dielectric 3 may be set to about 1 mm.
[0041] The metasurface 4 is the component for improving the gain of the antenna through interactions with the output radio waves from the antenna 2, and is located between the dielectric 3 and the cover case 5. As shown in
[0042]
[0043] Referring to
[0044] The metasurface is applied to single polarized patch antennas as well as circular patch antennas having circular polarization and dual polarized patch antennas, and thus has a wide range of applications. Accordingly, it is possible to improve the performance of various types of patch antennas by applying not only the metasurface of grid structure but also the metasurface having various patterns.
[0045] The cover case 5 covers the antenna 2 and the metasurface 4 inserted into the smartphone body 1 to protect them, and may be made of a material having permeability to radio waves and high strength such as tempered glass. The output signal from the smartphone antenna passes through not only the dielectric but also the tempered glass cover case, and this may have a great influence on the propagation of the high frequency signal such as 5G millimeter waves.
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[0048] From each simulation result, the maximum gain (Max Gain) values at 26.5 GHz, 28 GHz and 29.5 GHz frequencies in the operating band may be compared. When comparing
[0049] According to the above-described embodiment, there is provided the metasurface designed considering the dielectric and the tempered glass cover case of the smartphone to increase the gain of the 5G millimeter wave patch antenna embedded in the smartphone. Additionally, there is provided the smartphone device with the improved antenna performance while satisfying the bandwidth required for 5G technology through the antenna and the metasurface structure designed considering the dielectric and the tempered glass of the smartphone.
[0050] While the present disclosure has been hereinabove described with reference to the embodiments, those skilled in the art will understand that many modifications and changes may be made thereto without departing from the spirit and scope of the present disclosure set forth in the appended claims.