Claims
- 1. A low-voltage switched-capacitor amplifier circuit comprising:
- a connection to a power supply, receiving a supply voltage;
- a first transistor configured in a switched-capacitor network, and having a gate, a source, and a drain terminal, such that said drain terminal is connected to said supply voltage through an active current load;
- a plurality of switches, said plurality of switches connected to a plurality of signal sources, such that each signal source drives a switch, wherein a first switch of said plurality of switches connects to said supply voltage and said gate of said first transistor; and
- a second transistor connected in series with a second switch of said plurality of switches, said second transistor and said second switch being coupled to said gate and said drain of said first transistor, such that said second transistor and said second switch are connected in parallel with said feedback capacitor, and gate and drain terminals of said second transistor connects to said gate terminal of said first transistor.
- 2. The low-voltage switched-capacitor amplifier circuit of claim 1, wherein said switched-capacitor network is formed by an input capacitor and a feedback capacitor.
- 3. The low-voltage switched-capacitor amplifier circuit of claim 1, wherein said switched-capacitor network is formed by a feedback capacitor, such that said first transistor is acting as a charge-sensitive amplifier.
- 4. The low-voltage switched-capacitor amplifier circuit of claim 1, wherein said switched-capacitor network is formed by said first transistor, such that a capacitance formed between said gate and said drain terminals of the first transistor serves as a feedback capacitance.
- 5. The low-voltage switched-capacitor amplifier circuit of claim 1, wherein said supply voltage is approximately 1 volt.
- 6. The low-voltage switched-capacitor amplifier circuit of claim 1, wherein said first transistor is an enhancement mode NMOS transistor.
- 7. The low-voltage switched-capacitor amplifier circuit of claim 1, wherein said second transistor is an enhancement mode NMOSFET transistor.
- 8. The low-voltage switched-capacitor amplifier circuit of claim 1, wherein said plurality of switches are formed with MOSFET transistors.
- 9. The low-voltage switched-capacitor amplifier circuit of claim 1, wherein said first switch of said plurality of switches is an enhancement mode PMOSFET transistor.
- 10. The low-voltage switched-capacitor amplifier circuit of claim 1, wherein said second switch of said plurality of switches is an enhancement mode NMOSFET transistor.
- 11. The low-voltage switched-capacitor amplifier circuit of claim 2, wherein said input capacitor is about 500 fF and said feedback capacitor is about 3.5 fF.
- 12. The low-voltage switched-capacitor amplifier circuit of claim 7, further comprising a protection circuit for said NMOSFET transistor from leakage current when said second switch of said plurality of switches is switched open.
- 13. The low-voltage switched-capacitor amplifier circuit of claim 12, wherein said protection circuit is provided by coupling of an inverter and a leakage stopper capacitor.
- 14. The low-voltage switched-capacitor amplifier circuit of claim 13, wherein said leakage stopper capacitor is about 1 fF.
- 15. The low-voltage switched-capacitor amplifier circuit of claim 1, further comprising a leakage current protection capacitor connected to a source terminal of said second transistor.
- 16. The low-voltage switched-capacitor amplifier circuit of claim 15, wherein said leakage current protection capacitor is about 2 fF.
- 17. The low-voltage switched-capacitor amplifier circuit of claim 1, further comprising a leakage current protection capacitor connected to said drain terminal of said first transistor.
- 18. The low-voltage switched-capacitor amplifier circuit of claim 17, wherein said leakage current protection capacitor is about 25 pF.
- 19. The low-voltage switched-capacitor amplifier circuit of claim 1, further comprising an active current load, said active current load including a current mirror diode-connected PMOSFET transistor and a PMOSFET transistor configured to supply current to said first transistor.
- 20. A low-voltage switched-capacitor amplifier circuit comprising:
- a connection to a power supply, receiving a supply voltage;
- a first transistor configured in a switched-capacitor network, and having a gate, a source, and a drain terminal, such that said drain terminal is connected to said supply voltage through an active current load;
- a plurality of switches, said plurality of switches connected to a plurality of signal sources, such that each signal source drives a switch of said plurality of switches, wherein a first switch of said plurality of switches connects to said supply voltage and said gate of said first transistor;
- a second transistor connected in series with a second switch of said plurality of switches, said second transistor and said second switch being coupled to said gate and said drain of said first transistor, such that said second transistor and said second switch are connected in parallel with said feedback capacitor, and gate and drain terminals of said second transistor connects to said gate terminal of said first transistor;
- a protection circuit for said second transistor from leakage current when said second switch is switched open;
- a leakage current protection capacitor connected to said drain terminal of said first transistor; and
- a leakage current protection capacitor connected to a source terminal of said second transistor.
- 21. The low-voltage switched-capacitor amplifier circuit of claim 20, wherein said switched-capacitor network is formed by an input capacitor and a feedback capacitor.
- 22. The low-voltage switched-capacitor amplifier circuit of claim 20, wherein said switched-capacitor network is formed by a feedback capacitor, such that said first transistor is acting as a charge-sensitive amplifier.
- 23. The low-voltage switched-capacitor amplifier circuit of claim 20, wherein said switched-capacitor network is formed by said first transistor, such that a capacitance formed between said gate and said drain terminals of the first transistor serves as a feedback capacitance.
- 24. The low-voltage switched-capacitor amplifier circuit of claim 20, wherein said protection circuit is provided by coupling of an inverter and a leakage stopper capacitor.
- 25. The low-voltage switched-capacitor amplifier circuit of claim 20, wherein said leakage stopper capacitor is about 1 fF.
- 26. The low-voltage switched-capacitor amplifier circuit of claim 20, further comprising an active current load, said active current load including a pair of diode-connected PMOSFET transistor configured to supply current to said first transistor.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application claims benefit of the priority of U.S. Provisional Application Serial No. 60/068,155, filed Dec. 16, 1997 and entitled "A 1 V Common Source Switched-Capacitor Amplifier."
US Referenced Citations (5)
Foreign Referenced Citations (1)
Number |
Date |
Country |
60-128702 |
Jul 1985 |
JPX |