1. Field of the Invention
The present invention relates to an active antenna and electronic device, and more particularly, to an active antenna and electronic device having a wide range of operation bandwidth and a compact size.
2. Description of the Prior Art
With the advancement of recent wireless communication technologies, demand for wireless communication has surged, and an increasing amount of information is now transmitted wirelessly, resulting in higher bandwidth requirements. Light-weight, small form factor, and compactness have also become design criteria for communication devices.
Generally, a conventional mobile electronic device utilizes a passive antenna. More recent designs have also resorted to utilizing an active switch circuit with an antenna due to shortage of space, so as to improve utilization of space and communication quality. For example, a conventional mobile phone maybe equipped with an antenna switch circuit with multiple antennas for wireless reception/transmission (i.e. multiple radiators), and automatically select between an antenna with a wider receiving bandwidth coverage during stand-by, and another antenna with higher radiation efficiency during calls.
However, such conventional method of switching between multiple antennas for transmission and reception incurs higher costs and larger dimensions, and often employs a single-plane architecture, which leads to limited utilizable space and reduces design flexibility. Hence, it is necessary to improve over the prior art.
Therefore, a primary objective of the invention is to provide an active antenna and electronic device with wide bandwidth coverage and small dimensions.
The invention discloses an active antenna with a wide bandwidth coverage. The active antenna comprises a radiator, comprising at least two feeding points, corresponding to at least two modes, respectively; a switch control circuit, for generating a switch control signal; and an active switch circuit, for switching to be coupled to one of the at least two feeding points according to the switch control signal .
The invention further discloses an electronic device. The electronic device comprises a radio-frequency processing unit, for processing a radio-frequency signal; and an active antenna with a wide bandwidth coverage, comprising a radiator, comprising at least two feeding points corresponding to at least two modes, respectively; a switch control circuit, for generating a switch control signal; and an active switch circuit, for switching to be coupled to the one of the at least two feeding points according to the switch control signal.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
Please refer to
In more detail, when transmitting a signal, the switch control circuit 104 controls the active switch circuit 106 to be coupled to one of the feeding points FP1, FP2 according to a communication status, such that the signal feeding terminal 108 can feed a radio-frequency signal RFin into one of the feeding points FP1, FP2 via the active switch circuit 106, and then transmit the radio-frequency signal RFin via different antenna paths of the radiator 102. In other words, since when the radio-frequency signal RFin is fed at different feeding points, antenna paths of the radio-frequency signal RFin in the radiator 102 are also different, the radiator 102 can operate in different modes. Therefore, resonance frequency of the radiator 102 changes or shifts accordingly. Similarly, when receiving the signal, the switch control circuit 104 can also control the active switch circuit 106 to be coupled to one of the feeding points FP1, FP2 according to the communication status, to operate in a suitable mode. As such, the switch control circuit 104 controls the active switch circuit 106 to be coupled to a suitable feeding point in the radiator 102 according to the communication status, to increase the operation bandwidth of the antenna and enhance communication quality.
Specifically, please refer to
On the other hand, please continue to refer to
Note that, the spirit of the present invention is that the active antenna 10 may operate in different modes via switching to be coupled to different feeding points of the radiator 102, to obtain a wider operation bandwidth. Also, the three-dimensional structure of the radiator 102 allows effective space utilization, and thus smaller dimensions. Additionally, modifications or variations may be made accordingly by those skilled in the art, and are not limited thereto. For example, the embodiment in
On the other hand, signal feeding terminal 108 is preferably a coaxial cable signal feeding terminal, i.e. the active antenna 10 is applied to mobile electronic devices such as notebook computers, tablet computers, mobile phones or electronic books, but can also be applied to other electronic devices, providing that the electronic devices include a radio-frequency processing unit for transmitting or receiving radio-frequency signals. Moreover, the switch control circuit 104 can be a voltage control circuit, utilizing the switch control signal Con with different control voltages, to switch the active switch circuit 106 to be coupled to different feeding points, but not limited thereto. Furthermore, dimensions and materials of the active antenna 10 are not limited; those skilled in the art may make suitable adjustments according to system requirements to accommodate operation frequency demands.
In the prior art, performing transmission/reception via switching between multiple antennas is costly and requires more space. Also, conventional designs utilize single plane structures, which limit utilizable space, and reduce design flexibility. Comparatively, the active antenna 10 of the invention controls the active switch circuit 106 to be coupled to suitable feeding points in the radiator 102 according to the communication status, thus increasing antenna operation bandwidth and enhancing communication quality. Moreover, the three-dimensional structure helps improve space utilization, and thus allows for smaller dimensions.
In summary, the active antenna of the present invention has a wider range of operation bandwidth and smaller dimensions.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims. cm What is claimed is:
Number | Date | Country | Kind |
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100120543 | Jun 2011 | TW | national |