Source follower circuit
The present application discloses a source follower circuit, arranged for generating output signal according to input signal. The circuit includes: a first transistor having a drain coupled to a first reference voltage; a second transistor having a drain coupled to a source of the first transistor, and the first transistor and the second transistor both have polarization of a first type; a first capacitor, wherein a terminal of the first capacitor selectively coupled to the input signal or a gate of the first transistor, another terminal of the first capacitor selectively coupled to a second reference voltage or a first bias; a second capacitor, wherein a terminal of the second capacitor selectively coupled to the input signal or a gate of the second transistor, another terminal of the second capacitor selectively coupled to a third reference voltage or a second bias.
1 . A source follower circuit, configured to generate an output signal according to an input signal, the source follower circuit comprising:
a first transistor, having a drain coupled to a first reference voltage;
a second transistor, having a drain coupled to a source of the first transistor, and the first transistor and the second transistor both have polarization of a first type;
a first capacitor, comprising:
a first terminal, configured to receive the input signal and being disconnected from a gate of the first transistor in a sampling phase, and configured to stop receiving the input signal and being coupled to the gate of the first transistor in a holding phase; and
a second terminal, configured to receive one of a second reference voltage or a first bias voltage in the sampling phase, and configured to receive another of the second reference voltage or the first bias voltage in the holding phase; and
a second capacitor, comprising:
a first terminal, configured to receive the input signal and being disconnected from a gate of the second transistor in the sampling phase, and configured to stop receiving the input signal and being coupled to the gate of the second transistor in the holding phase; and
a second terminal, configured to receive one of a third reference voltage or a second bias voltage in the sampling phase, and configured to receive another of the third reference voltage or the second bias voltage in the holding phase.
2 . The source follower circuit of claim 1 , wherein a capacitance of the second capacitor is greater than a capacitance of the first capacitor.
3 . The source follower circuit of claim 1 , further comprising:
a third transistor, having a drain coupled to a fourth reference voltage;
a fourth transistor, having a drain coupled to a source of the third transistor, and the third transistor and the fourth transistor both have polarization of a second type different from the first type;
a third capacitor, comprising:
a first terminal, configured to receive the input signal and being disconnected from a gate of the third transistor in the sampling phase, and configured to stop receiving the input signal and being coupled to the gate of the third transistor in the holding phase; and
a second terminal, configured to receive one of a fifth reference voltage or a third bias voltage in the sampling phase, and configured to receive another of the fifth reference voltage or the third bias voltage in the holding phase; and
a fourth capacitor, comprising:
a first terminal, configured to receive the input signal and being disconnected from a gate of the fourth transistor in the sampling phase, and configured to stop receiving the input signal and being coupled to the gate of the fourth transistor in the holding phase; and
a second terminal, configured to receive one of a sixth reference voltage or a fourth bias voltage in the sampling phase, and configured to receive another of the sixth reference voltage or the fourth bias voltage in the holding phase.
4 . The source follower circuit of claim 3 , wherein:
the first terminal of the third capacitor is coupled to the gate of the third transistor via a ninth switch and coupled to the input signal via a tenth switch, and the second terminal of the third capacitor is coupled to the fifth reference voltage via an eleventh switch and coupled to the third bias voltage via a twelfth switch; and
a first terminal of the fourth capacitor is coupled to the gate of the fourth transistor via a thirteenth switch and coupled to the input signal via a fourteenth switch, and the second terminal of the fourth capacitor is coupled to the sixth reference voltage via a fifteenth switch and coupled to the fourth bias voltage via a sixteenth switch.
5 . The source follower circuit of claim 4 , wherein when the ninth switch, the twelfth switch, the thirteenth switch and the sixteenth switch are conducted, the tenth switch, the eleventh switch, the fourteenth switch and the fifteenth switch are not conducted; and when the tenth switch, the eleventh switch, the fourteenth switch and the fifteenth switch are conducted, the ninth switch, the twelfth switch, the thirteenth switch and the sixteenth switch are not conducted.
6 . The source follower circuit of claim 4 , wherein when the ninth switch, the eleventh switch, the thirteenth switch and the fifteenth switch are conducted, the tenth switch, the twelfth switch, the fourteenth switch and the sixteenth switch are not conducted; and when the tenth switch, the twelfth switch, the fourteenth switch and the sixteenth switch are conducted, the ninth switch, the eleventh switch, the thirteenth switch and the fifteenth switch are not conducted.
7 . The source follower circuit of claim 3 , wherein a capacitance of the fourth capacitor is greater than a capacitance of the third capacitor.
8 . A source follower circuit, configured to generate an output signal according to an input signal, the source follower circuit comprising:
a first transistor, having a drain coupled to a first reference voltage;
a second transistor, having a drain coupled to a source of the first transistor, and the first transistor and the second transistor both have polarization of a first type;
a first capacitor, wherein a first terminal of the first capacitor is coupled to a gate of the first transistor and receives the input signal in a sampling phase, and a second terminal of the first capacitor receives one of a second reference voltage or a first bias voltage in the sampling phase and receives another of the second reference voltage or the first bias voltage in a holding phase; and
a second capacitor, wherein a first terminal of the second capacitor is coupled to a gate of the second transistor and receives the input signal in the sampling phase, and a second terminal of the second capacitor receives one of a third reference voltage or a second bias voltage in the sampling phase and receives another of the third reference voltage or the second bias voltage in the holding phase,
wherein:
the first terminal of the first capacitor is coupled to the input signal via a second switch, and the second terminal of the first capacitor is coupled to the second reference voltage via a third switch and coupled to the first bias voltage via a fourth switch; and
the first terminal of the second capacitor is coupled to the input signal via a sixth switch, and the second terminal of the second capacitor is coupled to the third reference voltage via a seventh switch and coupled to the second bias voltage via an eighth switch,
wherein when the fourth switch and the eighth switch are conducted, the second switch, the third switch, the sixth switch and the seventh switch are not conducted; and when the second switch, the third switch, the sixth switch and the seventh switch are conducted, the fourth switch and the eighth switch are not conducted.
9 . The source follower circuit of claim 8 , wherein a capacitance of the second capacitor is greater than a capacitance of the first capacitor.
10 . The source follower circuit of claim 8 , further comprising:
a third transistor, having a drain coupled to a fourth reference voltage;
a fourth transistor, having a drain coupled to a source of the third transistor, and the third transistor and the fourth transistor both have polarization of a second type different from the first type;
a third capacitor, wherein a first terminal of the third capacitor is coupled to a gate of the third transistor and receives the input signal in the sampling phase, and the second terminal of the third capacitor receives one of a fifth reference voltage or a third bias voltage in the sampling phase and receives another of the fifth reference voltage or the third bias voltage in the holding phase; and
a fourth capacitor, wherein a first terminal of the fourth capacitor is coupled to a gate of the fourth transistor and receives the input signal in the sampling phase, and the second terminal of the fourth capacitor receives one of a sixth reference voltage or a fourth bias voltage in the sampling phase and receives another of the sixth reference voltage or the fourth bias voltage in the holding phase.
11 . The source follower circuit of claim 10 , wherein:
the first terminal of the third capacitor is coupled to the input signal via a tenth switch, and the second terminal of the third capacitor is coupled to the fifth reference voltage via an eleventh switch and coupled to the third bias voltage via a twelfth switch; and
the first terminal of the fourth capacitor is coupled to the input signal via a fourteenth switch, and the second terminal of the fourth capacitor is coupled to the sixth reference voltage via a fifteenth switch and coupled to the fourth bias voltage via a sixteenth switch.
12 . The source follower circuit of claim 11 , wherein when the twelfth switch and the sixteenth switch are conducted, the tenth switch, the eleventh switch, the fourteenth switch and the fifteenth switch are not conducted; and when the tenth switch, the eleventh switch, the fourteenth switch and the fifteenth switch are conducted, the twelfth switch and the sixteenth switch are not conducted.
13 . The source follower circuit of claim 11 , wherein when the eleventh switch and the fifteenth switch are conducted, the tenth switch, the twelfth switch, the fourteenth switch and the sixteenth switch are not conducted; and when the tenth switch, the twelfth switch, the fourteenth switch and the sixteenth switch are conducted, the eleventh switch and the fifteenth switch are not conducted.
14 . The source follower circuit of claim 10 , wherein a capacitance of the fourth capacitor is greater than a capacitance of the third capacitor.
15 . A source follower circuit, configured to generate an output signal according to an input signal, the source follower circuit comprising:
a first transistor, having a drain coupled to a first reference voltage;
a second transistor, having a drain coupled to a source of the first transistor, and the first transistor and the second transistor both have polarization of a first type;
a first capacitor, wherein one terminal of the first capacitor is selectively coupled to the input signal or a gate of the first transistor by being coupled to the gate of the first transistor via a first switch and coupled to the input signal via a second switch, and the other terminal of the first capacitor is selectively coupled to a second reference voltage or a first bias voltage by being coupled to the second reference voltage via a third switch and coupled to the first bias voltage via a fourth switch; and
a second capacitor, wherein one terminal of the second capacitor is selectively coupled to the input signal or a gate of the second transistor by being coupled to the gate of the second transistor via a fifth switch and coupled to the input signal via a sixth switch, the other terminal of the second capacitor is selectively coupled to a third reference voltage or a second bias voltage by being coupled to the third reference voltage via a seventh switch and coupled to the second bias voltage via an eighth switch.
16 . The source follower circuit of claim 15 , wherein when the first switch, the fourth switch, the fifth switch and the eighth switch are conducted, the second switch, the third switch, the sixth switch and the seventh switch are not conducted; and when the second switch, the third switch, the sixth switch and the seventh switch are conducted, the first switch, the fourth switch, the fifth switch and the eighth switch are not conducted.
17 . The source follower circuit of claim 15 , wherein when the first switch, the third switch, the fifth switch and the seventh switch are conducted, the second switch, the fourth switch, the sixth switch and the eighth switch are not conducted; and when the second switch, the fourth switch, the sixth switch and the eighth switch are conducted, the first switch, the third switch, the fifth switch and the seventh switch are not conducted.