(1) Field of the Invention
The invention relates to an antenna device, and more particularly to an antenna device used for a mobile unit.
(2) Description of the Prior Art
With current developments in communication technology, many electronic devices need antennas which can receive and transmit signals in two frequency ranges (dual mode), three frequency ranges (triple mode), or more. Commercially, some of major concerns upon those multi-band products are their efficiency, appearance, size, etc. Actually in most communication devices, the efficiency of signal transmission is the most important of all. In particular, the performance of the antenna in the communication device takes a major share to the efficiency of signal transmission. Generally, to achieve a modern appearance design of the communication device without sacrificing the efficiency of antenna has become the major goal to most designers in this industry.
However, there have various types of cell phone in the market. To take the shell phone for example, the spiral antenna is the most adopted antenna type for shell phones. When the spiral antenna is used for shell phones, there occurred some problems in high frequency operation. Referring to
Especially, when operating at DCS frequency band (range from 1710 MHz to 1880 MHz), the shell phone who use this kind of antenna may cause an un-omnidirectional antenna radiation pattern because of uneven surface current distribution on the grounding plane 22. As shown in
Therefore, in order to improve the foregoing disadvantages, the present invention provides an antenna device which has an omnidirectional antenna radiation pattern and to upgrade the transmission efficiency of the antenna device.
Accordingly, it is an object of the present invention to provide an antenna device which has a metal feeding line feeding from the center part of the printed circuit board of the mobile unit so as to have a better radiation character as transmission at high frequency for the antenna device.
The present invention provides an antenna device which is for a mobile unit (e.g. mobile phone) to transmit/receive signals. The mobile unit comprises a printed circuit board (PCB) which is mounted with a signal processing circuit for processing the signals. The antenna device comprises a spiral body, a metal feeding line, and a ground metal layer. The spiral body mounted on one side of the mobile phone for transmitting/receiving signals. Besides, the spiral body can further include an antenna connector. The metal feeding line made on the upper surface of the PCB where one end of the metal feeding line can be connected to the spiral body and the other end of the metal feeding line can be in connection with the signal processing circuit from the center part of an edge of the PCB.
The ground metal layer can be formed on the lower surface of the PCB. When the mobile phone is in transmission, as a result of the metal feeding line is fed from the center part of the edge of the PCB to the signal processing circuit that the well-spread currents can be generated upon the surface of the ground metal layer and the antenna device has omnidirectional antenna radiation pattern.
The present invention will now be specified with reference to its preferred embodiment illustrated in the drawings, in which
a˜6d are schematic views of other embodiments in accordance with the present invention.
The invention disclosed herein is to provide an antenna device, and more particularly to provide an antenna device used in mobile unit. In the present invention, it is provided an antenna device which has a metal feeding line feeding from the center part of the printed circuit board (PCB) of the mobile unit so as to have a better radiation character as transmission at high frequency for the antenna device. In the following description, numerous details are set forth in order to provide a thorough understanding of the present invention. It will be appreciated by one skilled in the art that variations of these specific details are possible while still achieving the results of the present invention. In other instance, well-known components are not described in detail in order not to unnecessarily obscure the present invention.
Referring to
The metal feeding line 38 can be made with the other circuitry on the upper surface of the PCB 44. It should be noted that one end of the metal feeding line 38 can connect to the antenna body 32 through the antenna connector 34 by connecting an antenna connection point 40. The other end of the metal feeding line 38 can be in connection with the signal processing circuit (not shown in the drawing) via a feed point 36 from the center part of upper side of the PCB 44. It is to be noted that to adjust the feeding position of the metal feeding line 38 may influence the resonance frequency for the antenna device 30. This is because the equivalent length of the antenna is restricted by its operating frequency. Typically, the equivalent length of the entire antenna (including the antenna body 32, the antenna connector 34 and the metal feeding line 38) should be one quarter of the wavelength for the operating frequency of the antenna. Additionally, as shown in the drawing, spiral antenna is used for the antenna body 32 in this embodiment, other types of antenna are well known to the skilled person in the art and definitely any intent to include such a modification shall be within the scope of this invention.
Moreover, the ground metal layer 42 can be formed on the lower surface of the PCB 44. Therefore, when the cell phone is in transmission, as a result of the metal feeding line 38 is fed from the center part of the upper side of the PCB 44 to the signal processing circuit that the well-spread currents are generated upon the surface of the ground metal layer 42 and the antenna device 30 can induce omnidirectional antenna radiation. Referring to
Referring to
In summary, the present invention provides at least the following advantages over the conventional techniques:
(1) There is no other additional elements to add in the original antenna device including the changeless outline of the mobile unit that can improve the defect of radiation pattern occurred prior to the original antenna design.
(2) By means of changing the feeding position of the metal feeding line connecting between the antenna body and the signal processing circuit, the antenna can induce approximately omnidirectional radiation pattern at high frequency operation and upgrade the signal transmission efficiency of the antenna.
While the preferred embodiments of the present invention have been set forth for the purpose of disclosure, modifications of the disclosed embodiments of the present invention as well as other embodiments thereof may occur to those skilled in the art. Accordingly, the appended claims are intended to cover all embodiments which do not depart from the spirit and scope of the present invention.
Number | Date | Country | Kind |
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93113144 | May 2004 | TW | national |