1. Field of the Invention
The present invention relates to a chip and transmitter for a wireless communication system, and more particularly, to a chip and transmitter for reducing layout area and enhancing filtering effect by utilizing conductive wires to replace inductors.
2. Description of the Prior Art
With advancements in semiconductor and communication technologies, a communication system can be realized by a single chip for reducing a volume of a communication device. However, there are various factors should be considered when designing a single-chip communication system; for example, how to integrate the whole function in a chip with a reasonable volume. Besides, a wireless communication system involves operations of wireless transmission and reception. Hence, related administrations and standards have made proper restrictions (e.g. maximum transmission power, bandwidth, etc.) on different wireless communication systems, to avoid mutual interference or affect human body.
For example, in a wireless local area network (WLAN), a super heterodyne structure is widely used as a wireless transceiver system, which can simply execute carrier frequency adjustment, filtering, and amplifying. However, in a super heterodyne transmitter, an output signal comprises a local oscillator signal and an imaging signal thereof due to operations of a mixer. Under such circumstances, in order to avoid interfering other transceivers, related standards have been made to filter out the local oscillator signal and the imaging signal, and a well-known method is performed by a notch filter.
Please refer to
Via the notch filter 102, the super heterodyne transmitter 10 can ensure that the output radio-frequency signal V_RF does not affect operations of other transmitters. However, as shown in
It is therefore a primary objective of the present invention to provide a chip for a wireless communication system.
The present invention discloses a chip for a wireless communication system to realize a transmitter. The chip comprises a package, a die area formed inside the package for arranging an operating circuit, a pad formed in the die area for outputting a signal, a first pin formed on the package for outputting the signal, a first conductive wire electrically connected between the pad and the first pin, a second pin formed on the package, a capacitor electrically connected between the second pin and a ground end, and a second conductive wire electrically connected between the pad and the second pin.
The present invention further discloses transmitter for a wireless communication system, which comprises an antenna and a radio-frequency chip. The radio-frequency chip electrically connected to the antenna, which comprises a package, a die area formed inside the package for arranging an operating circuit of the transmitter, a pad formed in the die area for outputting a radio-frequency signal generated by the transmitter, a first pin formed on the package for outputting the radio-frequency signal, a first conductive wire electrically connected between the pad and the first pin, a second pin formed on the package, a second pin formed on the package, a capacitor electrically connected between the second pin and a ground end, and a second conductive wire electrically connected between the pad and the second pin.
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 the chip 30, the pad PI_1 and the pin PO_1 are utilized for outputting a radio-frequency signal V_RF. After the die area 300 generates the radio-frequency signal V_RF, the radio-frequency signal V_RF is transmitted to the pin PO_1 via a conductive wire GW1, to output the radio-frequency signal V_RF to an antenna (not shown in
Simply speaking, the present invention realizes the inductor of the notch filter by the conductive wire GW2, to reduce a capacitor in the chip 30 and reach a goal of saving the layout area and production cost. Note that, the chip 30 shown in
In addition, a material of the conductive wire GW2 is usually a metal with high conductivity, e.g. gold, and with better Q value. In other words, when the conductive wire GW2 is combined with the capacitor Cx, a more ideal frequency response can be generated as shown in
In
In the prior art, to avoid interfering other transceivers, the notch filter is required to filter out the local oscillator signal from the radio-frequency signal outputted from the transmitter. Under such circumstances, the capacitor and the inductor of the notch filter inevitably occupy an area, which does not benefit single chip design. In comparison, the present invention replaces the inductor with the conductive wire, to reduce the required area. Meanwhile, since the Q value of the conductive wire is higher than the inductor, the present invention can further increase the effect of stop band, to enhance the operation of filtering.
To sum up, for the transmitter of the single chip, the present invention replaces the inductor with the conductive wire, to reduce the required area and enhance the effect of filtering.
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.
Number | Date | Country | Kind |
---|---|---|---|
098105619 | Feb 2009 | TW | national |