1. Field of the Invention
The present invention relates to a multifunctional antenna chip, and especially to an antenna chip which can be mated with many kinds of matched circuits and is able to adjust the character of an antenna structure of the multifunctional antenna chip, in order that the antenna structure has one or multiple standard working frequencies.
2. Description of the Prior Art
By fast development of the wireless communication technique, the kinds of standard specifications of present world communication are numerous, for instance, they include the standards of PCS, GSM, WCDMA, WLAN, Bluetooth, EDGE, DCS, CDMA, HSPA, UMTS, GPS, GPRS, WiMAX, HSPA, WiFi etc.
As to the operational frequency bands, they include several standard specifications such as the European specification, American specification etc. It is often that in selling a kind of mobile phone to all around the world, an antenna is designed to include all frequency bands. And it is often that such antennas need longer developing time and larger costs, or need to be designed in pursuance of respective local standards of frequency band; however, a situation is there that many antennas are supposed to be studied and developed, this not only increases costs and developing time, but also creates pressure of inventory.
The present invention provides a brand new idea of design and application of antennas, one multifunctional antenna chip can be used to mate with many kinds of matched circuits according to a desired communication standard to meet the requirement of multiple functions.
The present invention provides a multifunctional antenna chip which can be mated with many kinds of matched circuits, and is able to adjust the character of an antenna structure of the multifunctional antenna chip, in order that the antenna structure has one or multiple standard working frequencies. The antenna structure is a folded antenna structure basically; this can save its volume occupied. And the multifunctional antenna chip has a non-signal inputting pin for connection to thereby give the antenna an increased shape for adjusting the style of the antenna structure designed.
The multifunctional antenna chip provided in the present invention makes an antenna a standard antenna which can be applied to various communication standards, and can be mass produced very fast to lower the cost for the portion of designing antenna, and also can reduce pressure of inventory. The present invention is characterized at least in:
The present invention will be apparent in its structure and various applications after reading the detailed description of the preferred embodiment thereof in reference to the accompanying drawings.
Referring to
Referring together to
The dielectric layer base board 12 is provided in the packing housing 11 and has a plurality of via holes 121. The an antenna structure 13 includes an upper metallic layer 131 and a lower metallic layer 132 respectively allocated on the upper surface and the bottom surface of the dielectric layer base board 12; the upper metallic layer 131 and the lower metallic layer 132 are connected with each other by the via holes 121 to form a folded antenna structure. The four connecting pins 14 are connecting pins for a surface mounting equipment (SMD), they are extended in the dielectric layer base board 12 from the four corners of the packing housing 11 to connect the lower metallic layer 132, but not to connect the upper metallic layer 131.
The multifunctional antenna chip 1 of the present invention has a reduced size, for instance 22.2×7.2×2.55 mm3, it can be mounted on the electric circuit board 2, wherein one of the connecting pins 14 is connected with the matched circuit 21 of the electric circuit board 2 to function as a signal transmitting pin (referring to
Radio frequency signals are put in from the feed-in point 22, after they pass the matched circuit 21, they enter the antenna structure 13 via the signal input connecting pins 14 to form a mono-pole antenna. The present invention can have the character of the antenna structure 13 adjusted by the matched circuit 21, in order that the antenna structure 13 has a working frequency meeting the standard of communication, for instance: PCS, GSM, WCDMA, WLAN, Bluetooth, EDGE, DCS, CDMA, HSPA, UMTS, GPS, GPRS, WiMAX, HSPA, WiFi etc.
The electronic elements used in the matched circuit which is mated with the multifunctional antenna chip 1 of the present invention can be capacitors, inductances, adjustable capacitors, adjustable inductances or switches etc.
Referring to
As shown in
Referring to
Referring to
Referring together to
Referring to
In the above two examples, the values of capacitance and inductance in the matched circuit will change following change of the environment in the communication product, they are not limited to the above list. Designing of the matched circuit also follows the change of the environment in the communication product, the electronic elements used can be chosen from the group including capacitors, inductors, adjustable capacitors, inductors and switches etc.
Accordingly, the present invention can use a multifunctional antenna chip to mate with many kinds of matched circuits in accordance with the communication standards required; thereby the multifunctional antenna chip of the present invention can be used for many kinds of communication products such as mobile phones, notebooks, net cards, GPSs etc. The multifunctional antenna chip of the present invention at least has the following advantages:
The preferred embodiments disclosed above are only for illustrating the present invention, and not for giving any limitation to the scope of the present invention. It will be apparent to those skilled in this art that various equivalent modifications or changes made to the elements of the present invention without departing from the spirit of this invention shall fall within the scope of the appended claims and are intended to form part of this invention.
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5912647 | Tsuru et al. | Jun 1999 | A |
6166705 | Mast et al. | Dec 2000 | A |
6462716 | Kushihi | Oct 2002 | B1 |
7102587 | Benton et al. | Sep 2006 | B2 |
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Number | Date | Country | |
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20110037678 A1 | Feb 2011 | US |