Claims
- 1. A temperature controlled attenuator for stabilizing a temperature-dependent voltage of a circuit and for generating as output a substantially stable voltage, the temperature controlled attenuator comprising:
- an input coupled to a point of the circuit carrying the temperature-dependent voltage;
- an output at which a substantially stable voltage as compared to temperature is supplied;
- at least one thermistor coupled between the input and the output; and
- a resistor network comprising at least three resistors, the resistor network connecting the thermistor between the input and the output;
- wherein the values of the resistors in the resistor network are selected based upon at least three selected points on the temperature-voltage curve for the circuit and a desired substantially stable voltage.
- 2. The attenuator of claim 1 wherein the values of the resistors in the resistor network are determined based upon voltage divider solutions for the attenuator at selected points on the temperature-voltage curve for the circuit corresponding to the lowest temperature, highest temperature, and room temperature.
- 3. The attenuator of claim 2 wherein the values of the resistors in the resistor network are selected such that the compensated voltage is substantially equal to a minimum of the voltages on the temperature-voltage curve of the circuit at the lowest temperature, highest temperature, and room temperature points.
- 4. The attenuator of claim 1 wherein the temperature-voltage curve for the circuit has a positive slope, and wherein the resistor network comprises a first resistor, a second resistor, and a third resistor, the first resistor being coupled between the input and the output, the second resistor connected at one end to a node between the first resistor and the output and at the other end in series with the thermistor, and the third resistor being connected in parallel with the thermistor.
- 5. The attenuator of claim 1 wherein the temperature-voltage curve for the circuit has a negative slope, and wherein the resistor network comprises a first resistor, a second resistor, and a third resistor, the first resistor being connected in series with the input and the thermistor, the second resistor being connected in parallel with the thermistor, the thermistor being connected between the output and the first resistor, and the third resistor being connected between a node between the thermistor and the output, and ground.
- 6. The attenuator of claim 1 wherein the temperature-voltage curve for the circuit is substantially "C" shaped, and comprising first and second thermistors, wherein the resistor network comprises first, second, third, and fourth resistors, the first resistor being connected in series between the input and the first thermistor, the first thermistor being connected between the first resistor and the output, the second resistor being connected in parallel with the first thermistor, the third resistor being connected to a node between the first thermistor and the output, the second thermistor being connected in series between the third resistor and ground, and the fourth resistor being connected in parallel with the second thermistor.
- 7. A method for stabilizing a temperature-dependent voltage in a circuit, comprising steps of:
- coupling at least one thermistor to a point of the circuit carrying the temperature-dependent voltage;
- coupling a resistor network comprising at least three resistors between the at least one thermistor and an output; and
- selecting values for the resistors in the resistor network based upon at least three selected points of a temperature-voltage curve for the circuit and a desired substantially stable voltage, so as to deliver a substantially stable voltage as compared to temperature at the output.
- 8. The method of claim 7 wherein the step of selecting comprises the step of determining values for the resistors in the resistor network based upon voltage divider solutions at the output at points on the temperature-voltage curve for the circuit corresponding to the lowest temperature, highest temperature, and room temperature.
- 9. The method of claim 8 wherein the step of selecting further comprises the step of setting a desired compensated voltage at the output substantially equal to a minimum of the voltages on the temperature-voltage curve for the circuit at the lowest temperature, highest temperature, and room temperature points.
CROSS-REFERENCE TO RELATED APPLICATION
This application claims priority based on U.S. Provisional application Ser. No. 60/072,048 filed Jan. 21, 1998, entitled "Temperature Controlled Attenuator."
US Referenced Citations (6)