This application claims the priority benefit of Taiwan application serial No. 108124163, filed on Jul. 9, 2019. The entirety of the above-mentioned patent applications are hereby incorporated by references herein and made a part of specification.
The invention relates to a communication device and, more particularly, to a communication device with an antenna.
Conventionally, if an antenna of an electronic device is affected by metal (such as a back cover, a frame or a casing), the radiation efficiency is low, and the radiation pattern is poor. Antenna signals may be disconnected. As a result, a clear zone needs to be configured for the radiating of the antenna. For example, a slot of a certain size, length, and location needs to be configured at a metal casing. However, it affects the appearance of the whole electronic device.
A communication device includes a metal back cover, a first radiator, and a second radiator. The metal back cover includes a slot. The first radiator and a slot overlap at a first direction. A portion of the second radiator and a portion of the second radiator overlap at the first direction.
These and other features, aspects and advantages of the present invention will become better understood with regard to the following description, appended claims, and accompanying drawings. In figures, the same number denotes the same or similar components or steps.
As shown in
The second radiator 150B partly overlaps the first radiator 150A at the Direction Z. A portion of the second radiator 150B overlaps the slot 130 at the Direction Z. The other portion of the second radiator 150B overlaps the metal back cover 110A at the Direction Z.
As shown in
The first radiator 150A includes a first sub-section 152 and a second sub-section 154. The second sub-section 154 does not overlap the metal back cover 110A at the Direction Z. The second sub-section 154 overlaps the slot 130 at the Direction Z. The first sub-section 152 overlaps the metal back cover 110A at the Direction Z. The metal member 112B overlaps a portion of the second radiator 150A at the Direction Z. In an embodiment, the first sub-section 152 and the second sub-section 154 of the first radiator 150A overlaps the metal member 112B at the Direction Z.
The second radiator 150B includes a first sub-portion 157, a second sub-portion 158, and a third sub-portion 159. The second sub-portion 158 is between the first sub-portion 157 and the third sub-portion 15. In an embodiment, the first sub-portion 157 overlaps the slot 130 at the Direction Z. The second sub-portion 158 and the third sub-portion 159 overlaps the metal back cover 110A at the Direction Z. In an embodiment, the first sub-portion 157 and the second sub-portion 158 overlaps the display 110B at the Direction Z. The third sub-portion 159 does not overlap the display 110B at the Direction Z.
In an embodiment, the first sub-portion 157 and the second sub-portion 158 overlaps the metal member 112B at the Direction Z. The third sub-portion 159 does not overlap the metal member 112B at the Direction Z. In addition, a portion of the first sub-portion 157 overlaps a portion of the second radiator 150A at the Direction Z. In an embodiment, a portion of the second sub-section 154 overlaps a portion of the first sub-portion 157 at the Direction Z.
In an embodiment, the metal back cover 110A with the slot 130, the first radiator 150A, the second radiator 150B, and the display 110B are stacked in sequence at the Direction Z.
In an embodiment, as shown in
The second sub-section 154 is connected with the first sub-section 152. The second sub-section 154 and the first sub-section 152 extend along the direction Y. An end of the second sub-section 154 of the first radiator 150A far away from the first sub-section 152 includes a feeding end 192. The first sub-portion 157 of the second radiator 150B is connected with the second sub-section 154. The second sub-portion 158 is connected with the first sub-portion 157. The third sub-portion 159 and the second sub-portion 158 are connected and extend along the direction X.
As shown in
In the embodiment, the second radiator 150B is a coupling strip and does not directly connected with the metal back cover 110A. In an embodiment, the amount of coupling is adjusted by adjusting the overlapping area, the overlapping length, and the overlapping width between the first radiator 150A and the second radiator 150B at the Direction Z. Then, the antenna impedance matching and the frequency of the second radiator 150B is adjusted. In an embodiment, the amount of coupling between the first radiator 150A and the second radiator 150B is determined by the overlapping area between the first radiator 150A and the first sub-portion 157 of the second radiator 150B. The operation frequency is adjusted by adjusting the amount of coupling. By adjusting the position of the first sub-portion 157 relating to the slot 130 and the first radiator 150A at the direction Y, good resonance modes (impedance matching) can be effectively excited.
In an embodiment, the distance between the metal back cover 110A and the display 110B at the direction Y is the distance S2.The efficiency of the first radiator 150A and the second radiator 150B is adjusted by adjusting the distance S2. Conventionally, the efficiency of an antenna is affected when the first radiator 150A and the second radiator 150B are shielded by the display 110B. However, in the embodiment, even if the first radiator 150A is fully shielded by the display 110B, the efficiency of an antenna is not affected.
In the embodiment, as shown in
Different from conventional antennas, according to communication devices in embodiments, even if the size and the shape of the slot is various, the antenna radiation efficiency is high. In embodiments, the main extending branch of the radiator of the antenna and the metal casing are connected (that is, the antenna is connected with the metal casing) to reduce the influence of the metal cover. The antenna frequency and the impedance matching can be adjusted via the branch of the double path (such as the second sub-portion 158 of the second radiator 150B in an embodiment). Then, even the length and the space of the main path of the antenna are limited, the required frequency band can be adjusted. Furthermore, the shape and the position of the slot can be various, and thus the slot can be adapted to kinds of electronic devices, and the efficiency of the radiator would not be affected.
Terms in specification and claim denote some specific components. However, people skilled in the art also know that the same components also may be named via different terms. As a result, the components should not be differentiated according to the terms, but according to the function. The terms “include”, “have” are open-ended. The term “couple” includes direct and indirect connections. For example, if a first component is couple with a second component, that means, the first component is directly and indirectly connected with the second component via electronic connection, wireless transmission, optical transmission, some other components and so on.
The shape, the size, and the relative positions of components in the figures are not used to limit the invention.
Although the present invention has been described in considerable detail with reference to certain preferred embodiments thereof, the disclosure is not for limiting the scope. Persons having ordinary skill in the art may make various modifications and changes without departing from the scope. Therefore, the scope of the appended claims should not be limited to the description of the preferred embodiments described above.
Number | Date | Country | Kind |
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108124163 | Jul 2019 | TW | national |