The disclosure relates to an antenna device.
With the development of communication technology, communication protocols of communication products also become more diverse. Accordingly, the frequency of signal transmission needed by the communication products has also increased gradually. For the convenience of adjusting the antenna layout, most of the antenna devices of the communication products are made of printed circuit boards (PCBs). However, once the PCB antenna device is manufactured, the layout of the antenna device cannot be modified. Therefore, when the manufacturers are to produce a variety of communication products, they often need to make PCB antenna devices for each communication product, as it is not possible to adapt the antenna device to different communication products without adjusting the PCB antenna layout.
The present disclosure provides an antenna device capable of adjusting only signal cables to adapt to different communication products.
The antenna device of the present disclosure includes a signal cable, a casing, a grounding component, and a metal member. The signal cable includes a signal portion and a grounding portion. The signal cable is fixed on the casing. The grounding portion is connected to the metal member through the grounding component.
In an embodiment of the present disclosure, the grounding component includes a first part connected to the metal member and a second part connected to the first part.
In an embodiment of the present disclosure, a first side of the first part is perpendicular to a second side of the second part.
In an embodiment of the present disclosure, the signal portion extends along a direction parallel to the second side.
In an embodiment of the present disclosure, the grounding component is disposed between the signal cable and the casing.
In an embodiment of the present disclosure, the signal cable is disposed between the grounding component and the casing.
In an embodiment of the present disclosure, the grounding component and the metal member are formed integrally.
In an embodiment of the present disclosure, the grounding component includes one of copper foil, aluminum foil, and conductive cloth.
In an embodiment of the present disclosure, the casing includes at least one fixing member, and the signal cable is fixed to the casing by the at least one fixing member.
In an embodiment of the present disclosure, the at least one fixing member includes a rib of the casing.
In an embodiment of the present disclosure, the metal member is a system grounding of the electronic device.
In an embodiment of the present disclosure, the casing is a chassis of an electronic device, and the signal cable is fixed on an inner face of the chassis.
In an embodiment of the present disclosure, the signal cable is a coaxial cable, where the grounding portion is a metal material, and the signal portion includes a core wire and an insulating layer.
In an embodiment of the present disclosure, the grounding portion is connected to the grounding component through one of solder and conductive glue.
In an embodiment of the present disclosure, the length of the signal portion is equal to a quarter wavelength of a first radio frequency signal.
In an embodiment of the present disclosure, the length of the signal portion is equal to a three-quarter wavelength of a second radio frequency signal.
In an embodiment of the present disclosure, the longest distance between the grounding portion and the second part is equal to a quarter wavelength of a third radio frequency signal.
In an embodiment of the present disclosure, the second part is a meandering structure.
In an embodiment of the present disclosure, the meandering structure extends along a direction perpendicular to the first side of the first part.
In an embodiment of the present disclosure, the grounding component further includes a third part connected to the first part, where a third side of the third part is perpendicular to the first side of the first part.
In an embodiment of the present disclosure, the grounding portion is connected electrically to at least one of the first part and the third part.
In an embodiment of the present disclosure, the grounding component further includes a third part extending along a first direction perpendicular to the second side, where the third part is connected to the second part.
In an embodiment of the present disclosure, the grounding component further includes a fourth part extending along a fourth direction parallel to the second side, wherein the fourth part is connected to the third part.
In an embodiment of the present disclosure, the grounding component further includes a third part extending along a third direction parallel to the first side, wherein the third part is connected to the first part.
Based on the above, the antenna device of the present disclosure may replace the conventional PCB antenna device. The hardware in the antenna device can be adjusted based on the needs of users to adapt to different frequency bands.
The signal cable 110 may include a grounding portion 111 and a signal portion 112. The signal cable 110 is, for example, a coaxial cable. Coaxial cables may include cores, insulating layers, shields, and insulating plastics from the inside out. In this embodiment, the signal portion 112 of the signal cable 110 may include a core wire and an insulating layer, and the grounding portion 111 of the signal cable 110 may include a core wire, an insulating layer, and a shielding layer covering the core wire and the insulating layer. The shielding layer is, for example, braided by metal wires or made of a metal material. The signal cable 110 transmits or receives wireless signals through the signal portion 112.
The grounding component 130 is, for example, copper foil, aluminum foil, or other types of metal sheets or conductive cloth. The grounding portion 111 may be connected electrically to the metal member 140 through the grounding component 130. The grounding portion 111 and the metal member 140 may be respectively overlapped with the grounding component 130, so that the grounding portion 111 and the metal member 140 are connected electrically. The metal member 140 is, for example, a system grounding of an electronic device installed with the antenna device 100. For example, if the antenna device 100 is installed in a notebook computer, the metal member 140 may be the system grounding of the notebook computer. In an embodiment, the grounding component 130 and the metal member 140 may be formed integrally.
The casing 140 may include one or more fixing members. The signal cable 110 may be fixed to the casing 140 by the fixing member. For example, the casing 140 may include one or more ribs 121. The signal cable 110 may be fixed to the casing 140 by the rib 121. The casing 140 is, for example, a chassis of an electronic device installed with the antenna device 100. For example, if the antenna device 100 is installed in a notebook computer, the casing 140 may be the chassis of the notebook computer. The signal cable 110 may be fixed on the inner face of the chassis.
In an embodiment, the grounding component 130 may be disposed between the signal cable 110 and the casing 140, as shown in
The shape and/or length of the grounding component 130 or the signal portion 112 of the signal cable 110 can be adjusted based on the needs of the user.
The grounding portion 111 of the signal cable 110 may be connected to the grounding component 130 by solder or conductive glue. In an embodiment, the grounding component 130 may cover the grounding portion 111.
Returning to
In one embodiment, the length of the signal portion 112 of the signal cable 110 may be configured for the antenna device 100 to support the first radio frequency signal. Taking
In one embodiment, the coupling amount between the signal portion 112 of the signal cable 110 and the second part 132 of the grounding component 130 can be adjusted for the antenna device 100 to support the second radio frequency signal. The frequency of the second radio frequency signal may be a multiple of the frequency of the first radio frequency signal. The length L1 of the signal portion 112 may be configured to be equal to a three-quarter wavelength of the second radio frequency signal.
In one embodiment, the grounding component 130 is adjusted so that the antenna device 100 supports the third radio frequency signal. Taking
The shape of the grounding component 130 may be configured for the antenna device 100 to support radio frequency signals having a specific frequency.
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In summary, the antenna device of the present disclosure is capable of using signal cables instead of printed circuits to transmit or receive wireless signals. The shape of the signal cable or the grounding component can be adjusted by the users for different frequency bands based on their needs. The fixing member of the casing is adapted to fix the signal cable to adjust the wiring of the signal cable. Accordingly, the antenna device of the present disclosure may replace the conventional PCB antenna device.
This application claims the priority benefits of US provisional application Ser. No. 63/001,558, filed on Mar. 30, 2020. The entirety of the patent application is hereby incorporated by reference herein and made a part of this specification.
Number | Date | Country | |
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63001558 | Mar 2020 | US |