METHOD AND APPARATUS FOR GENERATING CLOCK SIGNALS FOR QUADRATURE SAMPLING
The present invention provides a quadrature-sampling clock signals generation method and apparatus for use in a receiver The apparatus firstly obtains an initial clock signal whose frequency is lower than twice of the carrier frequency of an input signal, then divides the frequency of the initial clock signal by two to obtain two quadrature intermediate clock signals, and finally divides the frequency of the two intermediate clock signals respectively to output two quadrature sampling clock signals. With the clock signal generation method and apparatus of the present invention, it is possible to operate a VCO at a relative low frequency, which will not only reduce the cost of the VCO, but also decrease the power consumption thereof.
1 . A quadrature sampling clock signal generation method for use in a receiver, comprising the steps of:
obtaining an initial clock signal whose frequency is lower than a predetermined multiple of carrier frequency of an input signal;
dividing the frequency of said initial clock signal by two, to obtain two quadrature intermediate clock signals; and
dividing the frequency of said two intermediate clock signals respectively, to output two quadrature sampling clock signals.
2 . The method according to claim 1 , wherein if a sampling factor of the receiver for the input signal is N, and the frequencies of said two intermediate clock signals are divided by α, the frequency of said initial clock signal is 1/p of the predetermined multiple of the carrier frequency of the input signal, where p is an odd number and pα=N.
3 . The method according to claim 1 , wherein said predetermined multiple is twice.
4 . The method according to claim 3 , wherein p is the largest odd number obtainable for a determined sampling factor N.
5 . A quadrature sampling clock signal generation apparatus for use in a receiver, comprising:
an initial clock signal generator for generating an initial clock signal whose frequency is lower than a predetermined multiple of carrier frequency of an input signal;
a first frequency divider for receiving said initial clock signal and dividing the frequency thereof by two, to obtain two quadrature intermediate clock signals; and
two second frequency divider for receiving said two intermediate clock signals respectively and dividing the frequency thereof, to output two quadrature sampling clock signals.
6 . The apparatus according to claim 5 , wherein if a sampling factor of the receiver for the input signal is N, and the frequencies of said two intermediate clock signals are divided by α by the first frequency divider, the frequency of the initial clock signal generated by the initial clock signal generator is 1/p of the predetermined multiple of the carrier frequency of the input signal, where p is an odd number and satisfies pα=N.
7 . The apparatus according to claim 5 , wherein said predetermined multiple is twice.
8 . The apparatus according to claim 7 , wherein p is the largest odd number obtainable for a determined sampling factor N.
9 . A receiver, comprising:
a sampling device for performing quadrature sampling on received signal; and
a clock signal generator for providing a sampling clock signal for the sampling device, comprising:
an initial clock signal generator for generating an initial clock signal whose frequency is lower than a predetermined multiple of carrier frequency of an input signal;
a first frequency divider, for receiving said initial clock signal and dividing the frequency thereof by two, to obtain two quadrature intermediate clock signals; and
two second frequency divider, for receiving said two intermediate clock signals respectively and dividing the frequency thereof, to output two quadrature sampling clock signals.
10 . The receiver according to claim 9 , wherein if a sampling factor of the sampling device is N, and the frequencies of said two intermediate clock signals are divided by α by the first frequency divider, the frequency of the initial clock signal generated by the initial clock signal generator is 1/p of the predetermined multiple of the carrier frequency of the input signal, where p is an odd number and pα=N.
11 . The receiver according to claim 9 , wherein said predetermined multiple is twice.
12 . The receiver according to claim 11 , wherein p is the largest odd number obtainable for a determined sampling factor N.