Claims
- 1. A charge sense amplifier, including:
- an input node;
- an output node;
- an inverting amplifying element including an input connected to said input node, and an output connected to said output node;
- an MOS transistor having its gate connected to said input of said amplifying element and its source and drain connected to said output of said amplifying element.
- 2. The charge sense amplifier of claim 1, further including means for selectively connecting said output node to said input node.
- 3. The charge sense amplifier of claim 1 wherein said means for selectively connecting comprises an MOS connecting transistor connected between said input node and said output node, said MOS connecting transistor having its gate connected to a balance input node.
- 4. The charge sense amplifier of claim 1, wherein said amplifying element further includes a non-inverting input connected to a source of reference voltage.
- 5. The charge sense amplifier of claim 1, further including means for providing a feedback current to the input of said inverting amplifying element which is an exponential function of the output voltage of said inverting amplifying element.
- 6. The charge sense amplifier of claim 1, further including an MOS feedback transistor connected as an exponential feedback element between said input and said output of said inverting amplifying element, the gate of said MOS feedback transistor connected to a fixed voltage source having a magnitude selected to set a desired feedback characteristic for said sense amplifier.
- 7. A charge sense amplifier, including:
- an input node;
- an output node;
- an inverting amplifying element including an input connected to said input node, and an output connected to said output node;
- a MOS transistor having its gate connected to said output of said amplifying element and its source and drain connected to said input of said amplifying element.
- 8. The charge sense amplifier of claim 7, further including means for selectively connecting said output node to said input node.
- 9. The charge sense amplifier of claim 8 wherein said means for selectively connecting comprises an MOS connecting transistor connected between said input node and said output node, said MOS connecting transistor having its gate connected to a balance input node.
- 10. The charge sense amplifier of claim 7, wherein said amplifying element further includes a non-inverting input connected to a reference voltage.
- 11. The charge sense amplifier of claim 7, further including means for providing a feedback current to the input of said inverting amplifying element which is an exponential function of the output voltage of said inverting amplifying element.
- 12. The charge sense amplifier of claim 7, further including an MOS feedback transistor connected as an exponential feedback element between said input and said output of said inverting amplifying element, the gate of said MOS feedback transistor connected to a fixed voltage source having a magnitude selected to set a desired feedback characteristic for said sense amplifier.
- 13. The charge sense amplifier of claim 1 further including:
- a first P-Channel MOS feedback transistor having a source connected to said input node, and a drain and a gate connected together;
- a second P-Channel MOS feedback transistor having a gate connected to said output node, a source connected to said drain of said first feedback transistor, and a drain connected to a fixed voltage source.
RELATED APPLICATIONS
This application is a division of co-pending application Ser. No. 07/755,306, filed Sep. 5, 1991, which is a continuation-in-part of application Ser. No. 07/657,128, filed Feb. 19, 1991 now U.S. Pat. No. 5,097,305.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4876534 |
Mead et al. |
Oct 1989 |
|
4935702 |
Mead et al. |
Jun 1990 |
|
Foreign Referenced Citations (1)
Number |
Date |
Country |
0041213 |
Feb 1986 |
JPX |
Divisions (1)
|
Number |
Date |
Country |
Parent |
755306 |
Sep 1991 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
657128 |
Feb 1991 |
|