Claims
- 1. A quality factor enhancing structure for a capacitive circuit exhibiting a first internal resistance, an internal capacitance, and a second internal resistance in series between a first connection node and a second connection node, the structure comprising:
a first terminal node and a second terminal node; a first capacitor having a first pole and a second pole; said first pole of said first capacitor being connected to said first terminal node; said second pole of said first capacitor being connected to the first connection node of the capacitive circuit; a second capacitor having a first pole and a second pole; said first pole of said second capacitor being connected to the first connection node of the capacitive circuit; said second pole of said second capacitor being connected to said second terminal node; and said second terminal node being connected to the second connection node of the capacitive circuit.
- 2. The structure of claim 1, further comprising an inductor, said inductor being connected between the first connection node of the capacitive circuit and both of said second pole of said first capacitor and said first pole of said second capacitor.
- 3. The structure of claim 1, further comprising an inductor, said inductor being connected between the second connection node of the capacitive circuit and both of said second pole of said second capacitor and said second terminal node.
- 4. The structure of claim 1, further comprising:
a first inductor; said first inductor being connected between the first connection node of the capacitive circuit and both of said second pole of said first capacitor and said first pole of said second capacitor; a second conductor; and said second inductor being connected between the second connection node of the capacitive circuit and both of said second pole of said second capacitor and said second terminal node.
- 5. The structure of claim 1, wherein the capacitive circuit has intrinsic resistance consisting of the first internal resistance and the second internal resistance together.
- 6. The structure of claim 5, wherein at least one of the first internal resistance or the second internal resistance is contributed to by resistance through at least one switch connecting the internal capacitance to the first connection node.
- 7. The structure of claim 6, wherein the capacitive circuit includes a first set of at least one of the switches and the first set connects the internal capacitance to the first connection node in a manner contributing resistance to the first internal resistance.
- 8. The structure of claim 7, wherein the capacitive circuit further includes a second set of at least one of the switches and the second set connects the internal capacitance to the second connection node in a manner contributing resistance to the second internal resistance.
- 9. The structure of claim 1, wherein:
the capacitive circuit includes an electronically trimable capacitor exhibiting a unit capacitance; and the electronically trimable capacitor includes a plurality of branches each including an increment capacitor connected in series with a switch, wherein the respective switches permit electrically connecting the respective branches so that the respective increment capacitors contribute to the unit capacitance selectively.
- 10. The structure of claim 1, wherein the capacitive circuit includes a trim capacitor and the structure connects into a tuning circuit at said first terminal node and said second terminal node.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation-in-part of Application No. 09/490,599, filed Jan. 25, 2000.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09490599 |
Jan 2000 |
US |
Child |
09542183 |
Apr 2000 |
US |