1. Field of the Invention
The present invention relates to a television tuner, and more particularly to an integrated television tuner with a filter device to filter or attenuate a mirror image signal, so as to improve selectivity of the desired signal.
2. Description of the Related Art
It is common to use a tuner to convert a radio frequency (RF) signal (50˜860 MHz) to a lower frequency signal, and to select a channel that occupies a certain frequency span (channel bandwidth) around a specific frequency, from the entire spectrum. The frequency conversion is performed by a mixing technique. In this mixing technique, an input signal (herein called the ‘RF’ signal) is mixed with a local (‘LO’) signal to produce a signal (the ‘F’ signal) whose frequency is the difference of the RF and LO signal frequencies. That is,
fIF=|fRF−fLO|
where fIF, fRF and fLO are IF, RF and LO signal frequencies, respectively. The mixing also produces higher frequency by-products that are routinely filtered out using low-pass filters. Therefore, these higher frequency by-products are not considered unless the situation demands otherwise. In conventional mixing, an image signal problem occurs. Without loss of generality, assume fRF>fLO>fIF=fRF−fLO. If another signal at frequency fLO−fIF (=fRF−2fIF) is present at the input of the mixer, it will also produce an output signal at frequency fIF. Since this output signal is at the same frequency as the desired IF signal, conventional filtering by frequency differentiation can not separate them from each other. If circuit elements following the mixer cannot separate the desired IF signal from the undesired IF signal, the received signal is contaminated and its quality is degraded. The RF signal at frequency fLO−fIF is called the RF image. The IF signal produced by the RF image is called the IF image. Sometimes the RF image and the IF image are both referred to as the ‘image’ without distinction. The RF image frequency is separated from the desired signal RF frequency by 2fIF.
A conventional method uses a quadrature mixer to facilitate the circuit elements following the mixer to separate the desired IF signal from the IF image. Refer to
In addition, the approved ROC Patent No. 1249348 disclosed a television tuner structure using a dual-conversion architecture. Refer to
Refer to
Therefore, it is a primary objective of the present invention to provide an integrated television tuner, which provides enhanced suppression of image signals.
Another objective of the present invention is to provide an integrated television tuner with reduced linearity requirements of the second mixer and subsequent circuit elements, so as to reduce the manufacturing cost.
To achieve the foregoing objectives, the integrated television tuner of the present invention comprises: a low noise amplifier (LNA) with an input terminal coupled to a radio frequency (RF) signal; a first local signal generation unit for generating a first local signal and a first quadrature local signal; a first mixer device with a mixer and a quadrature mixer, wherein the first input terminals of the mixer and the quadrature mixer are coupled to the output of the LNA, and the second input terminals are coupled to the first local signal generation unit for generating a first intermediate frequency (IF) signal and a first IF quadrature signal by mixing the RF signal from the LNA with the first local signal and the first quadrature local signal; a filter device with an input terminal coupled to an output of the first mixer device for respectively filtering or attenuating the first IF signal and the first IF quadrature signal; a second local signal generation unit for generating a second local signal and a second quadrature local signal; a second mixer device with the first input terminals coupled to the filter device and the second input terminals coupled to the second local signal generation unit for generating a second IF signal and a second IF quadrature signal by mixing the first IF signal and the first IF quadrature signal with the second local signal and the second quadrature local signal; a polyphase filter with an input terminal coupled to the second mixer device for combining the second IF signal and the second IF quadrature signal, so as to filter out the image signal and produce a single output signal; and a first variable gain amplifier (VGA) coupled to the complex channel select filter to amplify the selected channel signal.
To achieve the foregoing objectives, the integrated television tuner of the present invention comprises: a low noise amplifier (LNA) with an input terminal coupled to a radio frequency (RF) signal; a first local signal generation unit for generating a first local signal and a first quadrature local signal; a first mixer device with a mixer and a quadrature mixer, wherein the first input terminals of the mixer and the quadrature mixer are coupled to the output of the LNA, and the second input terminals are coupled to the first local signal generation unit for generating a first intermediate frequency (IF) signal and a first IF quadrature signal by mixing the RF signal with the first local signal and the first quadrature local signal; a filter device with an input terminal coupled to the output of the first mixer device for respectively filtering or attenuating the first IF signal and the first IF quadrature signal; a second local signal generation unit for generating a second local signal and a second quadrature local signal; a second mixer device with the first input terminals coupled to the filter device and the second input terminals coupled to the second local signal generation unit for generating a second IF signal and a second IF quadrature signal by mixing the first IF signal and the first IF quadrature signal with the second local signal and the second quadrature local signal; a complex channel select filter with an input terminal coupled to the second mixer device for respectively filtering the second IF signal and the second IF quadrature signal to select a predetermined channel signal and to filter other channel signals and the image signal, so as to produce a single output signal; and a first variable gain amplifier (VGA) coupled to the complex channel select filter to amplify the selected channel signal.
To achieve the foregoing objectives, the integrated television tuner of the present invention comprises: a first local signal generation unit for generating a first local signal and a first quadrature local signal; a first mixer device with a mixer and a quadrature mixer, wherein the first input terminals of the mixer and the quadrature mixer are coupled to the output of the LNA, and the second input terminals are coupled to the first local signal generation unit for generating a first intermediate frequency (IF) signal and a first IF quadrature signal by mixing the RF signal with the first local signal and the first quadrature local signal; a filter device with an input terminal coupled to the output of the first mixer device for respectively filtering or attenuating the first IF signal and the first IF quadrature signal; a second local signal generation unit for generating a second local signal and a second quadrature local signal; a second mixer device with the first input terminals coupled to the filter device and the second input terminals coupled to the second local signal generation unit for generating a second IF signal and a second IF quadrature signal by mixing the first IF signal and the first IF quadrature signal with the second local signal and the second quadrature local signal; and a polyphase filter with an input terminal coupled to the second mixer device for combining the second IF signal and the second IF quadrature signal, so as to filter out the image signal and produce a single output signal; and a first variable gain amplifier (VGA) coupled to the complex channel select filter to amplify the selected channel signal.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a portion of this specification. The drawings illustrate embodiments of the invention, and together with the description, serve to explain the principles of the invention.
Refer to
Wherein, an input terminal of the low noise amplifier 10 is coupled to a RF signal to perform the low noise amplification on the RF signal.
The first local signal generation unit 20 generates a first local signal (LO1) and a first quadrature local signal (LO1′), wherein the first local signal (LO1) and the first quadrature local signal (LO1′) have the same amplitude and 90° phase difference.
The first mixer device 30 comprises a first mixer 31 and a first quadrature mixer 32, wherein an input terminal of the first mixer 31 is coupled to the LNA, and another terminal is coupled to the first local signal of the first local signal generation unit 20; an input terminal of the first quadrature mixer 32 is coupled to the LNA, and another terminal is coupled to the first quadrature local signal of the first signal generation unit 20. The first mixer 31 mixes the LNA output signal with the first local signal to generate a first IF signal; and the first quadrature mixer 32 mixes the LNA output signal with the first quadrature local signal to generate a first IF quadrature signal. (Please refer to B of
The present invention is mainly characterized in the filter device 40. An input terminal of the filter unit 40 is coupled to the output of the first mixer device 30 for respectively filtering or attenuating the first IF signal and the first IF quadrature signal. The filter device may be, but is not limited to, a polyphase filter and/or a combination of two independent real filters 41 and 42. For the purpose of illustration, the filter device 40 in the present embodiment is shown to be composed of two real filters 41 and 42. These two real filters 41 and 42 are respectively coupled to the output terminals of the first mixer 31 and the first quadrature mixer 32, such that it selectively passes a desired signal or selectively rejects an undesired signal. As such, the real filters 41 and 42 may be band-pass filters or band-reject filters.
The second local signal generation unit 50 generates a second local signal (LO2) and a second quadrature local signal (LO2′), wherein the second local signal (LO2) and the second quadrature local signal (LO2′) have the same amplitude and 90° phase difference.
The second mixer device 60 comprises a second mixer 61, a second quadrature mixer 62, a third mixer 63 and a third quadrature mixer 64. The first input terminals of the second mixer 61 and the second quadrature mixer 62 are coupled to one output terminal of the filter device 40, and the first input terminals of the third mixer 63 and the third quadrature mixer 64 are coupled to another output terminal of the filter device 40. The second input terminals of the second mixer 61 and the third mixer 63 are coupled to the second local signal LO2 of the second local signal generation unit 50. The second input terminal of the second quadrature mixer 62 and the third quadrature mixer 64 are coupled to the second quadrature local signal LO2′ of the second signal generation unit 50. The mixers 61, 62, 63 and 64 respectively mix the first IF signal and the first IF quadrature signal with the second local signal and the second quadrature local signal to produce a second IF signal and a second IF quadrature signal. (Please refer to B′ of
An input terminal of the polyphase filter 70 is coupled to the second mixer device 60 for combining the second IF signal and the second IF quadrature signal, so as to combine them to produce a single output signal, while in this process filtering out the image signal.
In addition, the integrated television tuner of the present invention further comprises a first variable gain amplifier (VGA) 71, a channel select filter (CSF) 72, and a second variable gain amplifier (VGA) 73.
Wherein, the first variable gain amplifier 71 is coupled to the polyphase filter 70 to amplify the combined second IF signal.
The channel select filter 72 is coupled to the first variable gain amplifier 71 to select a predetermined channel signal from the amplified second IF signal.
The second variable gain amplifier 73 is coupled to the channel select filter 72 to further amplify the selected channel signal.
Alternatively, in the integrated television tuner of the present invention, the same result may be achieved by using the channel select filter 72 and the second variable gain amplifier 73 alone, without the first variable gain amplifier 71.
Alternatively, in the integrated television tuner of the present invention, the same result may be achieved by using the first variable gain amplifier 71 and the channel select filter 72 alone, without the second variable gain amplifier 73.
The integrated television tuner with this structure is able to achieve the objectives of enhanced filtering of the image signal. An additional advantage of the integrated television tuner with this structure, is that it reduces the signal strength of unwanted signals, thus lowering the linearity requirements of the second mixer device and the subsequent circuit elements.
Refer to
The low noise amplifier (LNA) 10, the first local signal generation unit 20, the first mixer device 30, the filter device 40, the second local signal generation unit 50, the second mixer device 60 and the first variable gain amplifier 71 are the same as the counterparts in
An input terminal of the complex channel select filter 80 is coupled to the second mixer device 60 for combining the second IF signal and the second IF quadrature signal, in order to produce a single output signal, while in this process selecting a predetermined channel signal and filtering other undesired channel signals and the image signal.
The integrated television tuner with this structure is able to achieve the objectives of enhanced filtering of the image signal. An additional advantage of the integrated television tuner with this structure, is that it reduces the signal strength of unwanted signals, thus lowering the linearity requirements of the second mixer device and the subsequent circuit elements.
Refer to
In addition, the integrated television tuner of the present invention further comprises a first variable gain amplifier 71, a channel select filter 72, and a second variable gain amplifier 73.
Alternatively, in the integrated television tuner of the present invention, the same result may be achieved by using the channel select filter 72 and the second variable gain amplifier 73 alone, without the first variable gain amplifier 71.
Alternatively, in the integrated television tuner of the present invention, the same result may be achieved by using the first variable gain amplifier 71 and the channel select filter 72 alone, without the second variable gain amplifier 73.
The first local signal generation unit 20, the first mixer device 30, the filter device 40, the second local signal generation unit 50, the second mixer device 60 and the first variable gain amplifier 71 are the same as the counterparts in
The integrated television tuner with this structure is able to achieve the objectives of enhanced filtering of the image signal. An additional advantage of the integrated television tuner with this structure, is that it reduces the signal strength of unwanted signals, thus lowering the linearity requirements of the second mixer device and the subsequent circuit elements.
Although the invention has been described with reference to a particular embodiment thereof, it will be apparent to those skilled in the art that modifications to the described embodiment may be made without departing from the spirit of the invention. The scope of the invention will be defined by the claims:
Number | Date | Country | Kind |
---|---|---|---|
095130356 | Aug 2006 | TW | national |