IP Library Granted Patent US 8,872,530
Granted Patent B2
US 8,872,530 · App. 14/110,028 · Granted Oct 28, 2014

Method for correcting the voltage measured across the terminals of a sensor

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Quick Facts
Patent No.
US 8,872,530
App. No.
14/110,028
Granted
Oct 28, 2014
Kind
B2
Abstract

A method for correcting measurement of a voltage across output terminals of a sensor, the sensor configured to be assimilated with an assembly including a generator and a series resistance, each of the output terminals being respectively connected to a pull up/down resistor. The method includes: evaluating the series resistance of the sensor, including measuring first and second voltages across the output terminals when first and second bias voltages are applied on each pull up/down resistor; evaluating the series resistance from the first and second voltages; and correcting, from the series resistance, a voltage measured across the output terminals of the sensor to infer therefrom a corresponding voltage generated by the generator.

Claims (31)

1. A method for correcting measurement of a voltage across a first output terminal and a second output terminal of a sensor, the sensor including a generator and a series resistance, and the first output terminal and the second output terminal being connected to a pull-up resistor and a pull-down resistor, respectively, the method comprising:

when the generator generates a predetermined voltage, performing a preliminary operation to evaluate the series resistance of the sensor, the preliminary operation including:

measuring a first voltage across the first output terminal and the second output terminal when a first bias voltage is applied to the pull-up resistor and to the pull-down resistor;

measuring a second voltage across the first output terminal and the second output terminal when a second bias voltage different from the first bias voltage is applied to the pull-up resistor and to the pull-down resistor; and

evaluating the series resistance based on the first voltage and the second voltage; and

correcting, based on the evaluated series resistance, a third voltage measured across the first output terminal and the second output terminal of the sensor to correspond to the predetermined voltage generated by the generator.

2. The correction method according to claim 1 , wherein the third voltage corresponds to the first voltage.

3. The correction method according to claim 1 , wherein the third voltage is measured subsequent to the first voltage and the second voltage.

4. The correction method according to claim 3 , wherein the first bias voltage is applied to the pull-up resistor and to the pull-down resistor when the third voltage is measured.

5. The correction method according to claim 1 , wherein said correcting includes:

determining a compensation value based on the evaluated series resistance and the third voltage; and

applying the compensation value to the third voltage.

6. The correction method according to claim 1 , wherein said evaluating is based on calculating a difference between the first voltage and the second voltage.

7. The correction method according to claim 1 , wherein the second bias voltage is selected to be applied such that the second voltage is within an acquisition range of the sensor during a normal operation.

8. The correction method according to claim 7 , wherein an absolute value of a difference between the first bias voltage and the second bias voltage is substantially equal to a maximum voltage generated by the generator during the normal operation.

9. The correction method according to claim 1 , wherein the first bias voltage and the second bias voltage are applied by a first digital/analog converter and a second digital/analog converter, respectively.

10. The correction method according to claim 9 , wherein the first digital/analog converter and the second digital/analog converter are connected to the pull-up resistor and the pull-down resistor, respectively.

11. The correction method according to claim 1 , wherein a second absolute value of the second bias voltage is greater than a first absolute value of the first bias voltage.

12. The correction method according to claim 1 , wherein an absolute value of a difference between the first bias voltage and the second bias voltage is substantially equal to a maximum voltage measured across the first output terminal and the second output terminal.

13. A measurement equipment comprising:

a pull-up resistor and a pull-down resistor, the measurement equipment being configured to measure a voltage generated across a first output terminal and a second output terminal of a sensor when the first output terminal and the second output terminal are connected to the pull-up resistor and the pull-down resistor, respectively, the sensor including a generator and a series resistance; and

circuitry configured to:

successively apply a first bias voltage and a second bias voltage to the pull-up resistor and to the pull-down resistor, the second bias voltage being different from the first bias voltage;

measure, when the generator generates a predetermined voltage and when the first bias voltage is applied to the pull-up resistor and to the pull-down resistor, a first voltage across the first output terminal and the second output terminal;

measure, when the generator generates the predetermined voltage and when the second bias voltage is applied to the pull-up resistor and to the pull-down resistor, a second voltage across the first output terminal and the second output terminal;

evaluate the series resistance based on the first voltage and the second voltage; and

correct, based on the evaluated series resistance, a third voltage measured across the first output terminal and the second output terminal of the sensor to correspond to the predetermined voltage generated by the generator.

14. The measurement equipment according to claim 13 , wherein the first bias voltage is a rated voltage for powering the pull-up resistor and the pull-down resistor during a normal operation.

15. The measurement equipment according to claim 13 , wherein the third voltage corresponds to the first voltage.

16. The measurement equipment according to claim 13 , wherein the third voltage is measured subsequent to the first voltage and the second voltage.

17. The measurement equipment according to claim 13 , wherein the circuitry is configured to determine a compensation value based on the evaluated series resistance and the third voltage and to apply the compensation value to the third voltage.

Assignments (2)
CHANGE OF NAME Recorded May 6, 2018
From: SAGEM DÉFENSE SÉCURITÉ
To: SAFRAN ELECTRONICS & DEFENSE
Reel/Frame 046082/0606 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2014
From: LACOMBE, BERTRAND; GENESTE, NICOLAS; RAES, MARC
To: SAGEM DEFENSE SECURITE
Reel/Frame 032154/0035 →