Claims
- 1. A phase interpolation system, comprising:
a stage controller adapted to produce a plurality of stage control signals in response to a phase control input; a plurality of reference stages, each adapted to convert one of a plurality of reference signals into a corresponding component signal in response to a respective one of the stage control signals, wherein each of the reference signals has a distinct phase; and a combining node adapted to combine the component signals into an output signal having an interpolated phase.
- 2. The phase interpolation system of claim 1, wherein each of the plurality of reference stages comprises:
a conversion module adapted to convert the corresponding reference signal into the corresponding component signal according to a scaling factor; and a plurality of scaling modules coupled to the conversion module.
- 3. The phase interpolation system of claim 2, wherein the plurality of scaling modules are adapted to adjust the scaling factor in response to a value of the corresponding stage control signal.
- 4. The phase interpolation system of claim 3, wherein the corresponding stage control signal includes a plurality of binary control subsignals; and
wherein each of the plurality of scaling modules is adapted to receive one of the plurality of binary control subsignals.
- 5. The phase interpolation system of claim 4, wherein the value of the corresponding stage control signal is the sum of the corresponding binary control signals.
- 6. The phase interpolation system of claim 5, wherein the scaling factor increases with the value of the corresponding stage control signal.
- 7. The phase interpolation system of claim 2, wherein the conversion module includes a transconductance device.
- 8. The phase interpolation system of claim 7, wherein the transconductance device is a field effect transistor (FET).
- 9. The phase interpolation system of claim 1, wherein each of the component signals has a distinct phase determined by the corresponding reference signal phase.
- 10. The phase interpolation system of claim 1, wherein each of the plurality of reference stages comprises:
a conversion module adapted to convert the corresponding reference signal into the corresponding component signal according to a scaling factor; and a scaling module coupled to the conversion module, wherein the scaling module is adapted to adjust the scaling factor in response to a value of the corresponding stage control signal.
- 11. The phase interpolation system of claim 1, wherein the combining node is adapted to sum the component signals into an output signal having an interpolated phase.
- 12. The phase interpolation system of claim 1, wherein each of the reference stages is adapted to convert a differential reference signal into a corresponding differential component signal; and
wherein the combining node is adapted to combine the differential component signals into a differential output signal having an interpolated phase.
- 13. The phase interpolation system of claim 1, wherein the plurality of reference stages includes four reference stages each adapted to convert one of four reference signals into a corresponding component signal in response to a respective one of the stage control signals, wherein the four reference signals each has one of four phases that are separated at substantially 90 degrees intervals.
- 14. The phase interpolation system of claim 1, wherein the stage controller is a phase control signal rotator adapted to adjust the plurality stage control signals such that the output signal is phase aligned with a serial data signal.
- 15. A phase interpolation system, comprising:
a plurality of reference stages, each adapted to convert one of a plurality of reference signals into a corresponding component signal in response to a respective one of a plurality of stage control signals, wherein each of the reference signals has a distinct phase; and a combining node adapted to combine the component signals into an output signal having an interpolated phase.
- 16. The phase interpolation system of claim 15, wherein each of the plurality of reference stages comprises:
a conversion module adapted to convert the corresponding reference signal into the corresponding component signal according to a scaling factor; and a plurality of scaling modules coupled to the conversion module.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application claims priority to U.S. Provisional Application No. 60/200,813, filed Apr. 28, 2000, entitled “High-Speed Serial Transceiver,” incorporated herein by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60200813 |
Apr 2000 |
US |