Claims
- 1. A temperature-compensated, precision frequency-to-voltage converter circuit that, for each cycle of an input signal to the converter circuit, provides a voltage output pulse of constant duration at an output, the circuit comprising:
- a first current source that provides a first output current;
- a timing capacitor having a first plate connected to receive the first output current and a second plate connected to a negative power supply;
- a voltage source that provides a reference voltage;
- a first pnp transistor having its emitter couple to receive the first output current and its base coupled to receive the reference voltage;
- a second current source that provides a second output current;
- a second pnp transistor having its emitter coupled to an output control circuitry, its collector connected to the negative power supply and its base coupled to the collector of the first pnp transistor;
- a first npn transistor having its collector connected to a positive power supply and its emitter connected between the collector of the first pnp transistor and the base of the second pnp transistor;
- a second npn transistor having its collector coupled to receive the reference voltage and its emitter connected to the negative power supply;
- base drive circuitry that responds to a pulsed, current mode input signal by providing a first temperature-compensated base drive signal to the base of the first npn transistor and a second temperature-compensated base drive signal to the base of the second npn transistor; and
- wherein the output control circuitry that responds to a control voltage signal provided at the emitter of the second pnp transistor by providing a temperature-controlled voltage output pulse having a controlled pulse height at said output.
- 2. A temperature-compensated, precision frequency-to-voltage converter circuit as in claim 1 and further comprising a diode connected between the collector of the first pnp transistor and the base of the second pnp transistor.
- 3. A temperature-compensated, precision frequency-to-voltage converter circuit as in claim 2 and further comprising a third current source connected between the emitter of the first npn transistor and the negative power supply.
- 4. A temperature-compensated, precision frequency-to-voltage converter circuit as in claim 3 and further comprising a resistor connected between the reference voltage and the base of the first pnp transistor.
- 5. A temperature-compensated, precision frequency-to-voltage converter circuit as in claim 2 and wherein said diode is a transistor-connected diode.
Parent Case Info
This is a request for filing a continuation application under 37 CFR 1.60, of prior application Ser. No. 08/526,463 filed on Sep. 11, 1995 now U.S. Pat. No. 5,514,988 of VICTOR P. SCHRADER ET AL. for TEMPERATURE-COMPENSATED, PRECISION FREQUENCY-TO-VOLTAGE CONVERTER, which is a continuation of application Ser. No. 08/306,657, filed Sep. 15, 1994 now abandoned.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
3614634 |
Plano et al. |
Oct 1971 |
|
4225796 |
Makino et al. |
Sep 1980 |
|
4547902 |
Kovitz |
Oct 1985 |
|
Continuations (2)
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Number |
Date |
Country |
Parent |
526463 |
Sep 1995 |
|
Parent |
306657 |
Sep 1994 |
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