This application claims the priority benefit of Taiwan application serial no. 111131820 filed on Aug. 24, 2022. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
The disclosure relates to an electronic device, and in particular relates to an electronic device having an antenna.
Currently, how to configure an antenna in an electronic device with a metal casing is a research goal in this field.
An electronic device, which has a metal casing and an antenna, is provided.
An electronic device of the disclosure includes a metal back cover, a metal frame, a first antenna module, and a second antenna module. The metal frame includes a first disconnection portion, a second disconnection portion, a first connection portion, and a second connection portion. The first connection portion connected to the metal back cover is located on one side of the first disconnection portion, the second connection portion connected to the metal back cover is located on one side of the second disconnection portion. The first disconnection portion is located between the first connection portion and the second disconnection portion. The first disconnection portion is separated from the first connection portion, the metal back cover, and the second disconnection portion, and a first slot is formed by the first connection portion, the first disconnection portion and the metal back cover. The second disconnection portion is connected to the second connection portion and is separated from the metal back cover, and a second slot is formed by the second disconnection portion, the second connection portion and the metal back cover. The first slot communicates with the second slot. The first antenna module is disposed adjacent to the first disconnection portion and connected to the first disconnection portion, and a first antenna path is formed by the first antenna module and the first disconnection portion. The second antenna module is disposed adjacent to the second disconnection portion and connected to the second disconnection portion, and a second antenna path is formed by the second antenna module, the second disconnection portion, the second connection portion and the metal back cover, and a third antenna path is formed by the second antenna module, the second disconnection portion and the metal back cover.
Based on the above, the first disconnection portion of the metal frame of the electronic device of the disclosure is separated from the first connection portion, the metal back cover, and the second disconnection portion to form a first slot. The second disconnection portion of the metal frame is connected to the second connection portion and separated from the metal back cover to form a second slot. The first slot communicates with the second slot. The first antenna module is disposed adjacent to the first disconnection portion and connected to the first disconnection portion, and collectively forms a first antenna path with the first disconnection portion. The second antenna module is disposed adjacent to the second disconnection portion and connected to the second disconnection portion, and collectively forms a second antenna path and a third antenna path with the second disconnection portion and a part of the metal back cover. Therefore, the electronic device of the disclosure not only has a metal casing and has a good appearance, but also may be provided with two antenna modules to achieve the effect of a broadband antenna.
The metal frame 120 includes a first disconnection portion 122, a second disconnection portion 124, a first connection portion 126, and a second connection portion 128. The first connection portion 126 connected to the metal back cover 110 is located on one side of the first disconnection portion 122, the second connection portion 128 connected to the metal back cover 110 is located on one side of the second disconnection portion 124. Exactly, the first connection portion 126 and the second connection portion 128 are located on two sides of the first disconnection portion 122 and the second disconnection portion 124, and are connected to the metal back cover 110.
The first disconnection portion 122 is located between the first connection portion 126 and the second disconnection portion 124, the first disconnection portion 122 is separated from the first connection portion 126, the metal back cover 110 and the second disconnection portion 124, so as to form a first slot S1. Namely, the first slot S1 is at least formed by the first connection portion 126, the first disconnection portion 122 and the metal back cover 110. That is to say, the first slot S1 defines the range of the first disconnection portion 122. In this embodiment, the first slot S1 is, for example, U-shaped, but not limited thereto. The width of the first slot S1 is, for example, 2 mm, but not limited thereto.
The second disconnection portion 124 is connected to the second connection portion 128 and separated from the metal back cover 110 to form a second slot S2, and the first slot S1 communicates with the second slot S2. In other words, the second slot S2 is formed by the second disconnection portion 124, the second connection portion 128 and the metal back cover 110. In this embodiment, the width of the second slot S2 is, for example, 2 mm, but not limited thereto.
The first antenna module 130 may be disposed in a small space (about 78 mm in length, about 13 mm in width, and about 7 mm in height). The first antenna path is formed by the first antenna module 130 and the first disconnection portion 122. Namely, the first antenna module 130 is disposed adjacent to the first disconnection portion 122 and connected to the first disconnection portion 122, and collectively forms a first antenna path with the first disconnection portion 122. Specifically, the first antenna module 130 includes a first radiator 131 (path area from position X1 to position X8) and a second radiator 138 (path area from position X9 to position X10). The first radiator 131 is located between the second radiator 138 and the second antenna module 140.
The first radiator 131 is disposed adjacent to the first disconnection portion 122 and connected to the first disconnection portion 122. Specifically, the first radiator 131 includes a first segment 132 (path area from position X1 to position X2), a second segment 133 (path area from position X2 to position X4, path area from position X4 to position X6, and area of position X5), a third segment 134 (path area from position X6 to position X7), and a fourth segment 135 (path area from position X7 to position X8) that are sequentially connected.
The first segment 132 includes a first feeding end (position X1). The first feeding end is close to the second radiator 138. The first segment 132 may be disposed on the XZ plane and extend along the Z axis at position X1.
The second segment 133 in the path area from position X2 to position X4 and in the path area from position X4 to position X6 may be disposed on the XY plane and extends along the X axis, while the second segment 133 in the area of position X5 may be disposed in the XZ plane and extends along the Z axis.
The third segment 134 and the fourth segment 135 may be disposed on the XY plane and extend in the direction towards the second antenna module 140 along the X axis, and are parallel to the extension direction of the first disconnection portion 122 (the X axis of
The second segment 133 and the fourth segment 135 are separated from the first disconnection portion 122, while the third segment 134 is connected to the first disconnection portion 122.
The first radiator 131 includes a fifth segment 136 (path area from position X2 to position X3), which may be disposed on the XY plane and extends from the first segment 132 in the direction towards the second radiator 138 along the X axis, and extends along the Y axis at position X3. The fifth segment 136 is separated from the first disconnection portion 122, and the distance D2 between the fifth segment 136 and the first disconnection portion 122 is less than the distance D1 between the second segment 133 and the first disconnection portion 122.
The electronic device 100 further includes a first antenna circuit board 150, and the first radiator 131 includes a sixth segment 137, which extends from the first feeding end (position X1) and is disposed on the first antenna circuit board 150, and extends along the X axis. In one embodiment, the positive end of the coaxial transmission line (not shown) is connected to the first feeding end (position X1) and is electrically connected to the motherboard module card (not shown), and the negative end of the coaxial transmission line (not shown) is electrically connected to the ground plane (position G4) of the first antenna circuit board 150 and the metal back cover 110.
The second radiator 138 is disposed adjacent to the first disconnection portion 122, and the second radiator 138 is connected to the first disconnection portion 122 at position X9. The second radiator 138 is connected to the ground plane (position G5) of the first antenna circuit board 150 at position X10.
In this embodiment, the first antenna path is collectively formed from the first radiator 131, along a part of the first disconnection portion 122 (path area from position C3 to position C4), the second radiator 138 to position G5 of the first antenna circuit board 150.
The first antenna path at least excites a first frequency band, and the length of the first antenna path is 0.5 times the wavelength of the first frequency band. In this embodiment, the first frequency band is, for example, low frequency (617 MHz to 960 MHz). Of course, in addition to the first frequency band, the first antenna path may also excite the frequency bands of mid-high frequency (1710 MHz to 2690 MHz), ultra-high frequency (3300 MHz to 5000 MHz) and LAA B252 and B255 (5150 MHz to 5850 MHz). Therefore, the first antenna module 130 may support the frequency band of 5G NR Sub-6.
In addition, in this embodiment, the second segment 133 includes a third slot S3 located internally, and there is a fourth slot S4 between the fourth segment 135 and the first disconnection portion 122. The third slot S3 and the fourth slot S4 may be used to increase the impedance matching bandwidth of the LAA frequency band of 5150 MHz to 5850 MHz.
On the other hand, the second antenna module 140 (the path area from position A2 through position A1, position A0 and then to position A7, and the path area from position A3 to position A4) may be disposed in a small space (length about 38 mm, width about 6 mm, and height about 7 mm). In this embodiment, the second antenna module 140 is disposed adjacent to the second disconnection portion 124 and connected to the second disconnection portion 124 at positions A2 and A3.
In this embodiment, the second antenna module 140, the second disconnection portion 124, and a part of the metal back cover 110 collectively form a second antenna path and a third antenna path. Exactly, the second antenna path is formed by the second antenna module 140, the second disconnection portion 124, the second connection portion 128 and the metal back cover 110. The third antenna path is formed by the second antenna module 140, the second disconnection portion 124 and the metal back cover 110. Details are given below.
The seventh segment 141 at position A2 is disposed on the XY plane and extends along the Y axis (
As shown in
The third radiator 142, the second disconnection portion 124 (path area from position B1 to position B3), the second connection portion 128 (path area from position A5 to position A6), the portion of the metal back cover 110 between the third radiator 142 and the second connection portion 128 (position G2) and/or the second antenna circuit board 152 (position G3) collectively form the second antenna path.
The third radiator 142, a part of the second disconnection portion 124 (path area from position C1 through positions B1, B2 to position C2), the portion of the fourth radiator 144 and the metal back cover 110 between the third radiator 142 and the fourth radiator 144 (position G1) and/or the second antenna circuit board 152 (position G3) collectively form the third antenna path.
The second antenna module 140 may increase the impedance matching of the WiFi 6E band in the 5150 MHz to 7125 MHz range by adjusting the length of the eighth segment 143 and the position of the fourth radiator 144 relative to the second connection portion 128 (e.g., moving towards the second connection portion 128).
It may be seen from
Returning to
Moreover, the electronic device 100 also achieves good isolation by keeping the first feeding end (position X1) and the second feeding end (position A0) away from each other, so as to reduce the probability of mutual interference between the overlapping frequency bands of the first antenna module 130 and the second antenna module 140 (e.g., frequency bands of 2400 MHz to 2500 MHz and 5150 MHz to 5850 MHz).
It is worth mentioning that, in this embodiment, the first antenna module 130 and the second antenna module 140 may be disposed at four corners of the electronic device 100. That is, the electronic device 100 may be configured with four first antenna modules 130 (5G NR Sub-6 antennas) and four second antenna modules 140 (WiFi 6E antennas), and may support a 4×4 MIMO multiple antenna configuration.
To sum up, the first disconnection portion of the metal frame of the electronic device of the disclosure is separated from the first connection portion, the metal back cover, and the second disconnection portion to form a first slot. The second disconnection portion of the metal frame is connected to the second connection portion and separated from the metal back cover to form a second slot. The first slot communicates with the second slot. The first antenna module is disposed adjacent to the first disconnection portion and connected to the first disconnection portion, and collectively forms a first antenna path with the first disconnection portion. The second antenna module is disposed adjacent to the second disconnection portion and connected to the second disconnection portion, and collectively forms a second antenna path and a third antenna path with the second disconnection portion and a part of the metal back cover. Therefore, the electronic device of the disclosure not only has a metal casing and has a good appearance, but also may be provided with two antenna modules to achieve the effect of a broadband antenna.
Number | Date | Country | Kind |
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111131820 | Aug 2022 | TW | national |