The present application claims foreign priority of Chinese Patent Application No. 201711499643.5, filed on Dec. 29, 2017 and Chinese Patent Application No. 201721927245.4 filed on Dec. 29, 2017 in the State Intellectual Property Office of China, the entire contents of which are hereby incorporated by reference.
The described embodiments relate to electronic devices, and in particular to an electronic device with advanced antenna.
The screen-to-body ratio of electronic devices such as mobile phone and laptop has become higher and higher such that space for the clearance area of antenna has become more and more limited. In a bezel-less electronic device, the clearance area of antenna is very limited. As known, the display screen may influence the performance of the antenna. Thus, how to reduce the influence of the display screen to the antenna is an important factor during the design of electronic devices, especially for those having bezel-less screen.
According to a first aspect of the present disclosure, an electronic device with advanced antenna is provided and includes a display screen, a metal frame, and a connecting component. The metal frame is configured to surround a side edge of the display screen, and at least a part of the metal frame is configured as antenna radiator. The connecting component is disposed between the side edge of the display screen and a top end of the metal frame, and the connecting component includes insulating material. An overlapped height is existed between the side edge of the display screen and the metal frame.
According to a second aspect of the present disclosure, an electronic device is provided and includes a display screen, a metal frame, and a connecting component. The metal frame is configured to surround a first portion of a side edge of the display screen and spaced apart from the side edge of the display screen. At least a portion of the metal frame is configured as antenna radiator. An overlapped height is existed between the side edge of the display screen and the metal frame. The connecting component is configured to surround and clung to the side edge of the display screen, and the connecting component includes insulating material, The connecting component abuts a top end of the metal frame such that a second portion of the side edge of the display screen clung to the connecting component does not face the metal frame.
In order to clearly explain the technical solutions in the embodiments of the present disclosure, the drawings used in the description of the embodiments will be briefly described below. Obviously, the drawings in the following description are merely some embodiments of the present disclosure. For those of ordinary skill in the art, other drawings may also be obtained based on these drawings without any creative work.
The disclosure will now be described in detail with reference to the accompanying drawings and examples. Apparently, the described embodiments are only a part of the embodiments of the present disclosure, not all of the embodiments. All other embodiments obtained by a person of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
In the specification, it is to be understood that terms such as “thickness” should be construed to refer to the orientation as then described or as shown in the drawings under discussion. These relative terms are for convenience of description and do not require that the present disclosure be constructed or operated in a particular orientation. In addition, terms such as “first” and “second” are used herein for purposes of description and are not intended to indicate or imply relative importance or significance or to imply the number of indicated technical features.
Referring to
As shown in
In some embodiments, the top portion 131 of the connecting component 13 may be substantially flush with the upper surface 111 of the display screen 11. The bottom portion 132 of the connecting component 13 may abut the top end of the metal frame 12. In this circumstance, the thicker the connecting component 13 is, the farther the top end of the metal frame 12 is away from the upper surface 111 of the display screen 11. In other words, the overlapped height H1 between the side edge S1 of the display screen 11 and the metal frame 12 may be smaller. Accordingly, the area of the portion 115 of the side edge S1 of the display screen 11 which faces directly the metal frame 12 may be smaller.
The upper surface 111 may refer to the surface of the display screen 11 close to the front-side of the electronic device 100. The top end of the metal frame 12 may refer to the end of the metal frame 12 close to the front-side of the electronic device 100.
In some embodiments, at least a portion of the metal frame 12 may be configured as antenna radiator for transmitting and receiving signals. The preset height may be determined based on actual requirement. Specifically, the value of the preset height may satisfy that the influence of the display screen 11 to the metal frame 12 configured as the antenna radiator is less than a predetermined value. That is, when the height of the connecting component 13 is larger than the preset height, the portion 115 of the display screen 11 which faces directly the metal frame 12 may be small enough to make the influence of the display screen 11 to the metal frame 12 configured as antenna radiator to be less than the predetermined value.
In some embodiments, the predetermined value of the influence may be, for example but not limited to, 1/10 or ⅛ of the maximal radiation power of the antenna.
As shown in
As shown in
In some embodiments, the connecting component 13 may be made of insulating material such as plastic and ceramic.
As shown in
In some embodiments, the protrusion portion B2 may extend to be substantially flush with the upper surface of the cover plate 14. The outer surface W1 of the protrusion portion B2 may be smoothly connected to the outer surface W2 of the metal frame 12 and the upper surface 141 of the cover plate 14. That is, the cover plate 14 and the metal frame 12 of the electronic device 100 may be smoothly connected to present an integral structure. There is no gap between the metal frame 12 and the cover plate 14.
It should be understood that, not all the components of the electronic devices 100 are shown in
Referring to
The display panel 11 may be utilized to display images while the touch-control panel 112 may be utilized for user input and human-machine interaction.
Referring also to
As shown in
In some embodiments, the connecting component 13 used as the touch panel frame may only cover the side edge of the touch-control panel 112. In this situation, the whole side edge of the display panel 114 may directly face the metal frame 12. In other embodiments of the present disclosure, the connecting component 13 may cover at least part of the side edge of the display panel 114 such that the location of the metal frame 12 may be lower, i.e., the area of the portion 115 of the side edge S1 of the display screen 11 (including the display panel 114 and the touch-control panel 112) which faces directly the metal frame 12 may be smaller. Thus, the influence of the display screen 11 to the performance of the metal frame 12 used as antenna radiator may he reduced.
In some embodiments, the connecting component 13 may cover ⅓ of the thickness of the side edge of the display panel 114. It should be understood that, in other embodiments, this ratio may be determined properly based on actual requirement. For example, the connecting component 13 may alternatively cover ⅖ of the thickness of the side edge of the display panel 114.
Referring to
There may exist a gap between the metal frame 12 and the side edge S1 of the display screen 11. The distance between the support frame 15 and the metal frame 12 may be less than the distance between the metal frame 12 and the side edge S1 of the display screen 11.
Specifically, as shown in
The support frame 15 may be made of insulating material such as plastic.
Referring also to
The metal frame 12 may define at least one spacing portion 121. The spacing portion 121 may divide the metal frame 12 into at least one independent frame-body 122.
As shown in
As shown in
In some embodiments, the spacing portion 121 may be a micro-seam band. As shown in
The width of the spacing portion 121 may be 1.5 mm, 5.0 mm or range from 1.5 mm to 5.0 mm. The width of the micro-seam F1 may be 0.05 mm, 0.3 mm or range from 0.05 mm to 0.3 mm. The micro-seam F1 may be filled with signal shielding material, such as insulating material (e.g., plastic). The width of the metal strip J1 may be 0.1 mm, 0.5 mm or range from 0.1 mm to 0.5 mm.
The two RF circuits 20 may be any two of GSM (global system for mobile communication) RF circuit, CDMA (code division multiple access) RF circuit, Bluetooth RF circuit, WIFI RF circuit or NFC RF circuit.
In some embodiments, all the frame-bodies 122 of the metal frame 12 may be utilized as antenna radiators and may be connected with the corresponding RF circuits 20. In this circumstance, the four side edges S1 of the display screen 11 may be spaced apart from the metal frame 12 by a preset distance.
Referring to
In this embodiment, the frame-bodies 122a and 122c located respectively at the two opposite first side edges are utilized as antenna radiators. The number of the RF circuits 20 may be two. The two RF circuits 20 may be configured to generate signals in different frequency ranges. The two RF circuits 20 may electrically connect to the two frame-bodies 122a and 122c located at the two opposite first side edges respectively. Thus, the frame-bodies 122a and 122c located at the two opposite first side edges may be used as antenna radiators for different RF circuits 20, and to transmit and receive signals in different frequency ranges.
Referring to
In some embodiments, the two frame-bodies 122 located at the two opposite first side edges of the metal frame 12 are utilized as antenna radiators of RF circuits 20. The side edges S1 of the display screen 11 facing the two frame-bodies 122 configured as antenna radiator may be spaced apart from the frame-bodies 122 by a first preset distance. The other side edges S1 of the display screen 11 which does not face the frame-bodies 122 configured as antenna radiators may be spaced apart from the from the frame-bodies 122 by a second preset distance. The second preset distance may be smaller than the first preset distance. For example, the first preset distance may be 5 mm, and the second preset distance may be 2 mm. Thus, the bezel-less effect may be achieved in the premise that the performance of the frame-bodies of the metal frame 12 configured as antenna radiators is not influenced by the display screen 11. In some embodiments, the side edges S1 of the display screen 11 which face the frame-bodies 122 not utilized as antenna radiators may be clung to the frame-bodies 122 not utilized as antenna radiators. Therefore, bezel-less effect may be achieved.
In some embodiments, the two opposite first side edges may be the two short edges, and the two opposite second edges may be the two long edges.
The two RF circuits 20 may be any two of GSM (global system for mobile communication) RF circuit, CDMA (code division multiple access) RF circuit, Bluetooth RF circuit, WIFI RF circuit or NFC RF circuit.
It should be understood that, the RF circuits 20 may include a RF transmitting and receiving circuit and corresponding auxiliary circuits.
The spacing portion 121 may be a micro-seam band. The spacing portion 121 may include at least two micro-seams F1 spaced apart. A metal strip J1 may be disposed between the two micro-seams F1. The length direction of the metal strip J1 (i.e., the extending direction of the metal strip J1) and the width direction of the metal frame 12 (i.e., the direction from the top end to the bottom end) may be parallel.
The width of the spacing portion 121 may be 1.5 mm, 5.0 mm or range from 1.5 mm to 5.0 mm. The width of the micro-seam F1 may be 0.05 mm, 0.300 or range from 0.05 mm to 0.3 mm. The micro-seam F1 may be filled with signal shielding material, such as insulating material (e.g., plastic). The width of the metal strip J1 may be 0.1 mm, 0.5 mm or range from 0.1 mm to 0.5 mm.
The electronic device 100 may be a cell phone, a laptop and the like.
In the electronic device 100 of the present disclosure, the metal frame 12 may be utilized as antenna radiator. The performance of antenna may be improved. Since the area of the display screen 11 facing directly the metal frame 12 is reduced, the influence of the display screen 11 to the performance of the metal frame 12. Thus, the performance of the metal frame 12 as antenna radiator may be improved.
The foregoing is merely embodiments of the present disclosure, and is not intended to limit the scope of the disclosure. Any transformation of equivalent structure or equivalent process which uses the specification and the accompanying drawings of the present disclosure, or directly or indirectly application in other related technical fields, are likewise included within the scope of the protection of the present disclosure.
Number | Date | Country | Kind |
---|---|---|---|
201711499643.5 | Dec 2017 | CN | national |
201721927245.4 | Dec 2017 | CN | national |
Number | Name | Date | Kind |
---|---|---|---|
8712233 | Gibbs | Apr 2014 | B2 |
9137891 | Gibbs | Sep 2015 | B2 |
20130016486 | Allore | Jan 2013 | A1 |
20160233581 | Kim | Aug 2016 | A1 |
20170142241 | Kim | May 2017 | A1 |
20170302771 | Kim et al. | Oct 2017 | A1 |
20190081394 | Edwards | Mar 2019 | A1 |
Number | Date | Country |
---|---|---|
203521588 | Apr 2014 | CN |
203521617 | Apr 2014 | CN |
104638361 | May 2015 | CN |
104638361 | May 2015 | CN |
104935695 | Sep 2015 | CN |
104935695 | Sep 2015 | CN |
204697050 | Oct 2015 | CN |
108023181 | May 2018 | CN |
208045691 | Nov 2018 | CN |
WO2017156900 | Sep 2017 | WO |
Entry |
---|
International search report,PCT/CN2018/113016,dated Jan. 30, 2019(9 pages). |
European search report, EP18201528, dated Apr. 26, 2019 (9 pages). |
First Office Action from China patent office in a counterpart Chinese patent Application 201711499643.5, dated Jul. 29, 2019 (7 pages). |
Indian First Examination Report, Indian Application No. 201814040483, dated Jul. 19, 2020 (5 pages). |
European examination report , European Application No. 18201528.9, dated Sep. 4, 2020 (9 pages). |
European examination report, European Application No. 18201528.9, dated Dec. 9, 2020 (6 pages). |
Number | Date | Country | |
---|---|---|---|
20190207298 A1 | Jul 2019 | US |