IP Library Granted Patent US 11,533,034
Granted Patent B2
US 11,533,034 · App. 17/028,101 · Granted Dec 20, 2022

Current monitoring and amplifier gain control

Inventors: Tao Zhao (Redondo Beach, CA); Pablo Yelamos Ruiz (Hermosa Beach, CA)
Assignee: Infineon Technologies Austria AG
H03G3/3042H03G3/004H03G3/3026
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Quick Facts
Patent No.
US 11,533,034
App. No.
17/028,101
Granted
Dec 20, 2022
Kind
B2
Abstract

An apparatus includes a controller that controls operation of an amplifier. The amplifier receives a sample voltage produced by a resistive path; the sample voltage from the resistive path is indicative of a magnitude of current through a motor winding. The controller selects a gain setting to apply to the amplifier based on one or more conditions. The selected gain setting is selected amongst multiple possible gain settings. Subsequent to selection, via application of the selected gain setting to the amplifier, and based on an output of the amplifier, the controller monitors a magnitude of the current through the motor winding. According to one configuration, the amplifier adjusts the magnitude of the selected gain setting depending on one or more parameters such as the magnitude of the current through the motor winding, a selected operational range of controlling current through the motor winding, etc.

Claims (97)

1. An apparatus comprising:

a controller operative to:

i) select a gain setting amongst multiple gain settings;

ii) apply the selected gain setting to an amplifier, the amplifier operative to receive a sample voltage produced by a resistive path, the sample voltage indicative of a magnitude of current through a motor winding;

iii) monitor the magnitude of the current through the motor winding based on an output of the amplifier; and

iv) decrease a magnitude of the selected gain of the amplifier in response to detecting an increase in the magnitude of the current through the motor winding.

2. The apparatus as in claim 1 , wherein the controller is further operative to vary the selected gain of the amplifier depending on the magnitude of the current being supplied by the motor winding through the resistive path.

3. The apparatus as in claim 1 , wherein the resistive path is a resistor disposed in series with the motor winding.

4. The apparatus as in claim 1 , wherein the controller is further operative to control operation of a switch disposed in series with the motor winding, the resistive path being an ON resistance between nodes of the switch through which the current passes.

5. The apparatus as in claim 1 ,

wherein the controller is further operative to increase the magnitude of the selected gain of the amplifier in response to detecting a decrease in the magnitude of the current through the motor winding.

6. The apparatus as in claim 1 , wherein the motor winding is a first motor winding of multiple motor windings of a motor;

wherein the controller is further operative to:

i) control current through each of the multiple motor windings,

ii) apply a respective selected gain setting to each of multiple amplifiers, the respective selected gain setting being chosen from the multiple gain settings; and

iii) via amplification of a respective sample voltage via the selected gain setting, monitor a magnitude of respective current through each of the motor windings.

7. The apparatus as in claim 1 , wherein the controller is further operable to: select the gain setting amongst multiple gain settings based on a first range in which the magnitude of the current falls.

8. The apparatus as in claim 7 , wherein the selected gain setting is decreased in response to the controller detecting that the magnitude of the current changes to falling in a second range of the multiple ranges.

9. The apparatus as in claim 1 , wherein the controller is further operable to control operation of a switch to control the magnitude of the current through the motor winding, the switch disposed in series with the motor winding.

10. The apparatus as in claim 1 , wherein the motor winding is a first motor winding of a motor; and

wherein at least a portion of the current through the first motor winding flows through a second motor winding of the motor.

11. An apparatus comprising:

a controller operative to:

i) select a gain setting amongst multiple gain settings;

ii) apply the selected gain setting to an amplifier, the amplifier operative to receive a sample voltage produced by a resistive path, the sample voltage indicative of the magnitude of current through a motor winding;

iii) monitor the magnitude of the current through the motor winding based on an output of the amplifier; and

wherein the controller is further operative to control the magnitude of the current through the motor winding via control input received from a user operating a tool including the motor winding.

12. An apparatus comprising:

a controller operative to:

i) select a gain setting amongst multiple gain settings;

ii) apply the selected gain setting to an amplifier, the amplifier operative to receive a sample voltage produced by a resistive path, the sample voltage indicative of a magnitude of current through a motor winding;

iii) monitor the magnitude of the current through the motor winding based on an output of the amplifier; and

wherein the controller is further operative to: i) receive a current limit value indicating a maximum amount of current in which to drive the motor winding, and ii) select the gain setting of the amplifier depending on the current limit value.

13. An apparatus comprising:

a controller operative to:

i) select a gain setting amongst multiple gain settings;

ii) apply the selected gain setting to an amplifier, the amplifier operative to receive a sample voltage produced by a resistive path, the sample voltage indicative of a magnitude of current through a motor winding;

iii) monitor the magnitude of the current through the motor winding based on an output of the amplifier; and

wherein the controller is further operative to: adjust the gain of the amplifier depending on an operational range in which the current through the motor winding is selectable via a respective user.

14. An apparatus comprising:

a controller operative to:

i) select a gain setting amongst multiple gain settings;

ii) apply the selected gain setting to an amplifier, the amplifier operative to receive a sample voltage produced by a resistive path, the sample voltage indicative of a magnitude of current through a motor winding;

iii) monitor the magnitude of the current through the motor winding based on an output of the amplifier;

wherein the controller is operable to increase a gain of the amplifier in response to detecting a decreased operational range of selectively controlling the current through the motor winding; and

wherein the controller is operable to decrease a gain of the amplifier in response to detecting an increased operational range of selectively controlling the current through the motor winding.

15. An apparatus comprising:

a controller operative to:

i) select a gain setting amongst multiple gain settings;

ii) apply the selected gain setting to an amplifier, the amplifier operative to receive a sample voltage produced by a resistive path, the sample voltage indicative of a magnitude of current through a motor winding;

iii) monitor the magnitude of the current through the motor winding based on an output of the amplifier;

wherein the amplifier is a first amplifier coupled to receive the sample voltage from the first resistive path; and

wherein the controller is further operative to: i) apply a first gain to the first amplifier and a second gain to a second amplifier coupled to receive the sample voltage from the resistive path, and ii) select between an output of the first amplifier and an output of the second amplifier to determine the magnitude of the current.

16. An apparatus comprising:

a controller operative to:

i) select a gain setting amongst multiple gain settings;

ii) apply the selected gain setting to an amplifier, the amplifier operative to receive a sample voltage produced by a resistive path, the sample voltage indicative of a magnitude of current through a motor winding;

iii) monitor the magnitude of the current through the motor winding based on an output of the amplifier; and

wherein the controller is further operative to apply hysteresis between a first gain applied to the amplifier and a second gain applied to the amplifier during operations of measuring different magnitudes of the current.

17. A method comprising:

selecting a gain setting amongst multiple gain settings;

applying the selected gain setting to an amplifier, the amplifier operative to receive a sample voltage produced by a resistive path, the sample voltage indicative of a magnitude of current through a motor winding;

monitoring the magnitude of the current through the motor winding based on an output of the amplifier; and

the method further comprising: decreasing a magnitude of the selected gain of the amplifier in response to detecting an increase in the magnitude of the current through the motor winding.

18. The method as in claim 17 further comprising:

varying the selected gain of the amplifier depending on the magnitude of the current being supplied by the motor winding through the resistive path.

19. The method as in claim 17 further comprising:

controlling the magnitude of the current through the motor winding via control input received from a user operating a tool including the motor winding.

20. The method as in claim 17 further comprising:

receiving a current limit value indicating a maximum amount of current in which to drive the motor winding; and

selecting the gain setting of the amplifier depending on the current limit value.

21. The method as in claim 17 , wherein the resistive path is a resistor disposed in series with the motor winding.

22. The method as in claim 17 further comprising:

controlling operation of a switch disposed in series with the motor winding, the resistive path being an ON resistance between nodes of the switch through which the current passes.

23. The method as in claim 17 further comprising:

adjusting the gain of the amplifier depending on a range in which the current through the motor winding is selectable via a respective user.

24. The method as in claim 17 further comprising:

increasing a gain of the amplifier in response to detecting a decreased operational range of selectively controlling the current through the motor winding; and

decreasing a gain of the amplifier in response to detecting an increased operational range of selectively controlling the current through the motor winding.

25. The method as in claim 17 further comprising:

increasing the magnitude of the selected gain of the amplifier in response to detecting a decrease in the magnitude of the current through the motor winding.

26. The method as in claim 17 , wherein the motor winding is a first motor winding of multiple motor windings of a motor, the method further comprising:

controlling current through each of the multiple motor windings,

applying a respective selected gain setting to each of multiple amplifiers, the respective selected gain setting being chosen from the multiple gain settings; and

via amplification of a respective sample voltage via the selected gain setting, monitoring a magnitude of respective current through each of the motor windings.

27. The method as in claim 17 , wherein the amplifier is a first amplifier coupled to receive the sample voltage from the first resistive path, the method further comprising:

applying a first gain to the first amplifier and a second gain to a second amplifier coupled to receive the sample voltage from the resistive path; and

selecting between an output of the first amplifier and an output of the second amplifier to determine the magnitude of the current.

28. The method as in claim 17 further comprising:

implementing hysteresis between a first gain applied to the amplifier and a second gain applied to the amplifier during operations of measuring different magnitudes of the current.

29. A system comprising:

a circuit substrate;

the apparatus of claim 1 coupled to the circuit substrate; and

wherein the controller controls current supplied to the motor winding.

30. A method comprising:

receiving a circuit substrate; and

coupling the apparatus of claim 1 to the circuit substrate.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 8, 2021
From: IINFINEON TECHNOLOGIES AMERICAS CORP
To: INFINEON TECHNOLOGIES AUSTRIA AG; INFINEON TECHNOLOGIES AUSTRIA AG
Reel/Frame 056466/0352 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2020
From: ZHAO, TAO; YELAMOS RUIZ, PABLO
To: INFINEON TECHNOLOGIES AMERICAS CORP.
Reel/Frame 053856/0495 →
Continuity (1)
Related Publication 20220094321A1 · Mar 24, 2022