Claims
- 1. An adjuster for tuning a frequency response of a circuit, comprising:
a time constant sensor, wherein a charging state of the circuit may be measured by, and output from, said time constant sensor as a first voltage; a converter that samples the first voltage and outputs a second voltage resultant from a conversion of the first voltage by said converter; an array of trimming components; and a selector that utilizes the second voltage to select at least one trimming component from said array of trimming components; wherein the charging state of the circuit may be trimmed by the at least one trimming component selected.
- 2. The adjuster of claim 1, wherein said charging state may be responsive to a band gap voltage reference.
- 3. The adjuster of claim 1, wherein said time constant sensor further comprises a switch controller that controls at least one charging switch, and upon activation of the charging switch, the circuit enters the charging state.
- 4. The adjuster of claim 3, wherein said time constant sensor further comprises a sampling switch controlled by said switch controller, wherein, upon deactivation of the charging switch and activation of the sampling switch, the charging state may be measured.
- 5. The adjuster of claim 1, wherein said converter may be an analog to digital converter, and wherein said second voltage comprises a digital voltage.
- 6. The adjuster of claim 1, wherein said selector comprises at least one switch selectively actuated by said second voltage.
- 7. The adjuster of claim 1, wherein the at least one trimming component comprises at least two resistors.
- 8. The adjuster of claim 1, wherein the at least one trimming component comprises at least two capacitors.
- 9. An adjuster for trimming frequency responses of a plurality of components, comprising:
means for providing a charged state for the plurality of components; means for switching between the charged state of the plurality of components, and a sampling state of the plurality of components, over a fixed interval; means for sampling the charged state of the plurality of components during the sampling state, and converting the sampled state into a digital control value indicative of the sampled state; and means for selecting at least one trimming component, in response to the digital control value, for switched placement into the plurality of components to adjust the charged state.
- 10. The adjuster of claim 9, wherein said means for providing a charged state comprises a silicon band gap voltage.
- 11. The adjuster of claim 9, wherein the fixed interval may be established by a crystal oscillator.
- 12. The adjuster of claim 9, wherein said means for sampling and converting comprises an analog to digital converter.
- 13. The adjuster of claim 9, wherein said means for selecting comprises a plurality of solid state switches, wherein said switches apply the at least one trimming component.
- 14. The adjuster of claim 9, wherein the at least one trimming component comprises at least one selected from the group consisting of resistors and capacitors.
- 15. A communication device, comprising:
a plurality of primary switches; at least one active communication device circuit; a frequency response adjuster for a frequency responsive circuit, including: a time constant sensor, wherein a charging state of the frequency responsive circuit may be measured by, and output from, said time constant sensor as a first voltage; a converter that samples the first voltage and outputs a second voltage resultant from a conversion of the first voltage by said converter; an array of trimming components; and a selector that utilizes the second voltage to select at least one trimming component from said array of trimming components; wherein the charging state of the frequency responsive circuit may be trimmed by the at least one trimming component selected; wherein said plurality of primary switches switches at least one selected from the group consisting of said time constant sensor, said converter, said array of trimming components, and said selector, between said active communication device circuit and said frequency response adjuster.
- 16. A method for tuning a frequency response of a circuit, comprising:
sensing a time constant of the circuit; outputting said sensing as a first voltage; sampling the first voltage over a fixed interval; converting the sampled first voltage to a second voltage; selecting, utilizing the second voltage, at least one trimming component from an array of trimming components; wherein the time constant of the circuit may be trimmed by the at least one trimming component selected.
- 17. The method of claim 16, wherein the fixed interval may be approximately one RC time constant.
- 18. The method of claim 16, wherein said selecting comprises actuating a plurality of switches each communicatively connected to a resistance.
- 19. The method of claim 16, wherein said selecting comprises actuating a plurality of switches each communicatively connected to a capacitance.
- 20. The method of claim 16, wherein the first voltage may be an analog voltage, and wherein the second voltage may be a digital signal, and wherein said converting comprises an analog-to-digital converting.
RELATED APPLICATIONS
[0001] This application claims priority from U.S. Provisional Application No. 60/371,664, filed on Apr. 10, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60371664 |
Apr 2002 |
US |