This application claims the priority benefit of Taiwan application serial no. 111124879, filed on Jul. 4, 2022. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
The invention relates to an electronic device, and particularly relates to an electronic device with one or more antennas.
Most electronic devices with metal casings adopt a design of an exposed antenna. However, the design of the exposed antenna is difficult to meet aesthetic demand for a metal texture. Therefore, how to configure an antenna on an electronic device with a metal casing to meet the aesthetic demand for the metal texture and have good antenna radiation performance will be a research goal in this field.
The invention is related to an electronic device, which has an aesthetic appearance with metal texture and good antenna radiation performance.
The invention provides an electronic device including a metal bottom plate, a metal frame and at least one radiator. The metal bottom plate includes at least one ground terminal. The metal frame includes at least one slot, at least one disconnecting part, at least one first connecting part and at least one second connecting part. Each slot is close to the metal bottom plate and separates the metal bottom plate from the corresponding disconnecting part. Each disconnecting part is located between the corresponding first connecting part and the corresponding second connecting part, and each disconnecting part includes a first part and a second part. The first part is close to the corresponding first connecting part, the second part is close to the corresponding second connecting part, and each first connecting part and each second connecting part are connected to the metal bottom plate. Each radiator has a plurality of turnings and includes a first terminal and a second terminal. The first terminal is a feeding terminal, and the second terminal intersects with the corresponding disconnecting part at a junction, and the junction is away from the corresponding slot. The first terminal and the second terminal of each radiator, the first part of the corresponding disconnecting part, the corresponding first connecting part and the ground terminal of the metal bottom plate form a first antenna path, and the first antenna path radiates at a first frequency band. The first terminal and the second terminal of each radiator, the second part of the corresponding disconnecting part, the corresponding second connecting part and the ground terminal of the metal bottom plate form a second antenna path, and the second antenna path radiates at a second frequency band.
In an embodiment of the invention, each radiator extends in a normal direction of the metal frame and reaches the junction at the second terminal.
In an embodiment of the invention, a length of the first antenna path is between and 0.75 times of a wavelength of the first frequency band.
In an embodiment of the invention, a length of the second antenna path is between 0.5 and 0.75 times of a wavelength of the second frequency band.
In an embodiment of the invention, a width of each slot is between 1 mm and 1.5 mm.
In an embodiment of the invention, the electronic device further includes at least one insulation bracket arranged adjacent to the at least one slot, the metal frame and the metal bottom plate, each insulation bracket includes a first surface and a second surface adjacent to each other, and each radiator includes a first section located on the first surface, and a second section, a third section and a fourth section located on the second surface, the feeding terminal is located at the first section, and the turnings are among the first section, the second section, the third section and the fourth section.
In an embodiment of the invention, the radiator further includes a first U-shaped section and a second U-shaped section, the first U-shaped section is located between the second section and the third section, and the second U-shaped section is located between the third section and the fourth section.
In an embodiment of the invention, each ground terminal is close to the corresponding feeding terminal and separated from the feeding terminal.
In an embodiment of the invention, the at least one slot includes a plurality of slots, the at least one radiator includes a plurality of radiators, positions of the radiators correspond to positions of the slots, the slots and the radiators are arranged at equal intervals on the metal frame, and the slots are located on a same plane.
In an embodiment of the invention, the at least one slot includes a plurality of slots, the at least one radiator includes a plurality of radiators, the radiators correspond to the slots, some of the slots are symmetrically located on a first plane, and some of the slots are symmetrically located on a second plane.
Based on the above description, in the electronic device of the invention, the slot separates the metal bottom plate from the corresponding disconnecting part, and the second terminal of each radiator is connected to the junction that is away from the slot and the second terminal is located between the first part and the second part of the disconnecting part. The first terminal and the second terminal of each radiator, the first part of the corresponding disconnecting part, the corresponding first connecting part and the ground terminal of the metal bottom plate form the first antenna path. The first terminal and the second terminal of each radiator, the second part of the corresponding disconnecting part, the corresponding second connecting part and the ground terminal of the metal bottom plate form the second antenna path. In this way, by using the metal frame as a part of the antenna radiator, the electronic device further defines the first antenna path that radiates at the first frequency band and the second antenna path that radiates at the second frequency band, so that the electronic device has a good performance. In addition, since the metal frame of the electronic device is used as a part of the antenna radiator, a casing of the electronic device may be designed to adopt a metal material to achieve a better looking appearance.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
It should be noted that some components in
Referring to
It should be noted that, in the embodiment, the numbers of the slots 121 and the numbers of the radiators 130 are, for example, both four, and positions and the number of the radiators 130 correspond to positions and the number of the slots 121. The four slots 121 and the four radiators 130 are arranged at equal intervals at four corners of the metal frame, and the four slots 121 are all located on a same plane of the metal frame 120.
Moreover, in the embodiment, the number of the ground terminals 111, the number of the disconnecting parts 122, the number of the first connecting parts 123 and the number of the second connecting parts 124 are also four. However, in other embodiments of the invention, the number of the slots 121, the number of the radiators 130, the number of the ground terminals 111, the number of the disconnecting parts 122, the number of the first connecting parts 123, and the number of the second connecting parts 124 of the electronic device 100 may not be four, which is not limited by the invention.
It should be noted that the slot 121 of the embodiment may be filled with light-transmitting plastic where the metal bottom plate 110 is separated from the disconnecting part 122, and components such as LED notification lights, etc., may be disposed in the electronic device in correspondence with the positions of the light-transmitting plastic to provide another visual effect on the appearance of the electronic device 100. In other embodiments of the invention, the material filled in the slot 121 is not limited thereto.
In the embodiment, as shown in
In the embodiment, a coaxial cable utilized as a transmission line (not shown) is connected between the ground terminal 111 and the feeding terminal 131A, and an inner conductor of the coaxial transmission line as positive terminal is connected to the feeding terminal 131A, and a metallic shield as negative terminal thereof is connected to the ground terminal 111. The radiator 130 may be connected to an antenna circuit board (not shown) through the coaxial cable. However, in other embodiments of the invention, the component connecting the radiator 130 and the antenna circuit board may not be the coaxial cable, which is not limited to the present invention.
In the embodiment, the electronic device 100 further includes an insulation bracket 140. The insulation bracket 140 is disposed adjacent to the slot 121, the metal frame 120 and the metal bottom plate 110 as shown in
In addition, the turnings of the radiator 130 in the embodiment are among the first section 133, the second section 134, the third section 135 and the fourth section 136. It should be noted that by adjusting the turning and a width between the second segment 134 and the third segment 135, and the turning and a width between the third segment 135 and the fourth segment 136 of the radiator 130 as shown in
Referring to
In the embodiment, the first terminal 131 and the second terminal 132 of the radiator 130, the first part 122A of the corresponding disconnecting part 122, the corresponding first connecting part 123 and the ground terminal 111 of the metal bottom plate 110 form a first antenna path R1 as shown in
In detail, a frequency range corresponding to the first frequency band in the embodiment is 2400-2484 MHz, and a frequency range corresponding to the second frequency band is 5150-7125 MHz. A length of the first antenna path R1 is between 0.5 and 0.75 times of a wavelength of the first frequency band, and a length of the second antenna path R2 is between 0.5 and 0.75 times of a wavelength of the second frequency band. However, in other embodiments of the invention, the frequency ranges corresponding to the first frequency band and the second frequency band are not limited thereto.
Under the above configuration of the electronic device 100 of the embodiment, by using the metal frame 120 as a part of the antenna radiator, the first antenna path R1 radiating at the first frequency band and the second antenna path R2 radiating at the second frequency band are further defined, such that the electronic device 100 may have good and/or omnidirectional radiation coverage. As the metal frame 120 of the electronic device 100 is used as a part of the antenna radiator, the casing of the electronic device 100 may be designed to adopt a metal material for better looking appearance. In addition, the second terminal 132 of the radiator 130 is connected to the junction A1 in a direction perpendicular to the metal frame 120. Compared with the antenna module designed in the manner of slot coupling in the prior art, the antenna characteristics of the electronic device 100 are less affected by issues of coupling spacing and overcome difficulty of assembly alignment tolerance. In addition, by adjusting the turnings and a line width of the radiator 130, an impedance matching bandwidth of the electronic device 100 may be changed for customizations.
Referring to
Referring to
Referring to
In summary, in the electronic device of the invention, by using the metal frame as a part of the antenna radiator, the electronic device further defines the first antenna path radiating at the first frequency band and the second antenna path radiating at the second frequency band, so that the electronic device may have good and/or omnidirectional radiation coverage. As the metal frame of the electronic device is used as a part of the antenna radiator, the casing of the electronic device may be designed to adopt a metal material for better looking appearance. In addition, the second terminal of the radiator of an embodiment is connected to the junction in a direction perpendicular to the metal frame. Compared with the antenna module designed in the manner of slot coupling in the prior art, the antenna characteristics of the electronic device are less affected by issues of coupling spacing and overcome difficulty of assembly alignment tolerance. In addition, by adjusting the turnings and a line width of the radiator of an embodiment, an impedance matching bandwidth of the electronic device may be changed for customizations.
Number | Date | Country | Kind |
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111124879 | Jul 2022 | TW | national |