IP Library › Granted Patent US 11,662,756
Granted Patent B2
US 11,662,756 · App. 17/246,817 · Granted May 30, 2023

Electric devices, integrated circuits, and methods for monitoring voltages

Inventors: Mario Motz (Wernberg, AT); Umberto Aracri (Villach, AT); Alessandro Michelutti (Villach, AT)
Assignee: Infineon Technologies AG
G05F1/571G01K7/01G01R19/1659G01R19/16538G05F3/30
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,662,756
App. No.
17/246,817
Granted
May 30, 2023
Kind
B2
Abstract

An integrated circuit includes a first bandgap voltage reference sub-circuit configured to provide a first bandgap reference voltage; a second bandgap voltage reference sub-circuit configured to provide a second bandgap reference voltage; a voltage regulator sub-circuit configured to derive a first supply voltage using the first bandgap reference voltage and a second supply voltage using the second bandgap reference voltage; a bandgap comparator sub-circuit configured to derive a first internal voltage and a second internal voltage from the first supply voltage, wherein the first internal voltage decreases at a higher rate than the second internal voltage with respect to a decreasing first supply voltage, wherein the bandgap comparator sub-circuit is configured indicate which of the first and the second internal voltages is larger; and a comparator sub-circuit configured to indicate whether a difference between the first supply voltage and the second supply voltage is larger than a predefined threshold.

Claims (51)

1. An integrated circuit, comprising:

a first bandgap voltage reference sub-circuit configured to provide a first bandgap reference voltage;

a second bandgap voltage reference sub-circuit configured to provide a second bandgap reference voltage;

a voltage regulator sub-circuit configured to derive a first supply voltage using the first bandgap reference voltage and a second supply voltage using the second bandgap reference voltage;

a bandgap comparator sub-circuit configured to derive a first internal voltage and a second internal voltage from the first supply voltage, wherein the first internal voltage decreases at a higher rate than the second internal voltage with respect to a decreasing first supply voltage, wherein the bandgap comparator sub-circuit is configured to compare the first internal voltage with the second internal voltage and to indicate which of the first internal voltage and the second internal voltage is larger by a first output signal; and

a comparator sub-circuit configured to compare the first supply voltage with the second supply voltage and to indicate by a second output signal whether a difference between the first supply voltage and the second supply voltage is larger than a predefined threshold.

2. The integrated circuit of claim 1 , wherein the first output signal has a first value, indicating that the first supply voltage is within a first predefined tolerance range, when the first internal voltage is greater than the second internal voltage, and the first output signal has a second value, indicating that the first supply voltage is outside the first predefined tolerance range, when the first internal voltage is less than the second internal voltage.

3. The integrated circuit of claim 1 , wherein the first internal voltage is substantially linearly dependent on the first supply voltage and the second internal voltage is substantially logarithmically dependent on the first supply voltage.

4. The integrated circuit of claim 1 , wherein:

the second output signal has a first value when a difference between the first supply voltage and the second supply voltage is less than the predefined threshold, and

the second output signal has a second value when the difference between the first supply voltage and the second supply voltage is greater than the predefined threshold, indicating that at least one of the first supply voltage or the second supply voltage deviates too far from its respective target value.

5. The integrated circuit of claim 1 , wherein:

the first output signal has a first value, indicating that the first supply voltage is within a first predefined tolerance range, when the first internal voltage is greater than the second internal voltage,

the first output signal has a second value, indicating that the first supply voltage is outside the first predefined tolerance range, when the first internal voltage is less than the second internal voltage,

the second output signal has a third value when a difference between the first supply voltage and the second supply voltage is less than the predefined threshold, and

the second output signal has a fourth value when the difference between the first supply voltage and the second supply voltage is greater than the predefined threshold, indicating that at least one of the first supply voltage or the second supply voltage deviates too far from its respective target value.

6. The integrated circuit of claim 1 , wherein the bandgap comparator sub-circuit comprises a bandgap comparator configured to derive the first internal voltage and the second internal voltage from the first supply voltage and to compare the first internal voltage with the second internal voltage, wherein both a sensing terminal and a power supply terminal of the bandgap comparator are connected to the first supply voltage.

7. The integrated circuit of claim 1 , wherein the comparator sub-circuit comprises a first comparator, wherein a first sensing terminal of the first comparator is connected to a first input terminal of the comparator sub-circuit and a second sensing terminal of the first comparator is connected to a second input terminal of the comparator sub-circuit, wherein an input offset voltage of the first comparator corresponds to the predefined threshold for comparing the first supply voltage with the second supply voltage.

8. An electrical device, comprising:

a first bandgap voltage reference sub-circuit configured to provide a first bandgap reference voltage;

a second bandgap voltage reference sub-circuit configured to provide a second bandgap reference voltage;

a voltage regulator sub-circuit configured to derive a first supply voltage using the first bandgap reference voltage and a second supply voltage using the second bandgap reference voltage;

a first verification circuit comprising a first input terminal for the first supply voltage and configured to derive a first internal voltage and a second internal voltage from the first supply voltage, to compare the first internal voltage with the second internal voltage, and to generate a first output signal based on a comparison of the first internal voltage with the second internal voltage,

wherein the first output signal has a first value, indicating that the first supply voltage is within a first predefined tolerance range, when the first internal voltage is greater than the second internal voltage, and

wherein the first output signal has a second value, indicating that the first supply voltage is outside the first predefined tolerance range, when the first internal voltage is less than the second internal voltage;

a second verification circuit comprising a second input terminal for the first supply voltage and a third input terminal for the second supply voltage and configured to compare the first supply voltage with the second supply voltage and to generate a second output signal based on a comparison of the first supply voltage with the second supply voltage; and

a combination circuit configured to generate a third output signal if at least one of the first output signal or the second output signal is indicative of at least one of the first supply voltage or the second supply voltage being outside a respective predefined tolerance range.

9. The electrical device of claim 8 , wherein the first internal voltage is substantially linearly dependent on the first supply voltage and the second internal voltage is substantially logarithmically dependent on the first supply voltage.

10. The electrical device of claim 9 , wherein:

the second output signal has a third value when a difference between the first supply voltage and the second supply voltage is less than a predefined threshold, and

the second output signal has a fourth value when the difference between the first supply voltage and the second supply voltage is greater than the predefined threshold, indicating that at least one of the first supply voltage or the second supply voltage deviates too far from its respective target value.

11. The electrical device of claim 8 , wherein:

the second output signal has a third value when a difference between the first supply voltage and the second supply voltage is less than a predefined threshold, and

the second output signal has a fourth value when the difference between the first supply voltage and the second supply voltage is greater than the predefined threshold, indicating that at least one of the first supply voltage or the second supply voltage deviates too far from its respective target value.

12. The electrical device of claim 8 , wherein the first verification circuit comprises a bandgap comparator configured to derive the first internal voltage and the second internal voltage from the first supply voltage and to compare the first internal voltage with the second internal voltage, wherein both a sensing terminal and a power supply terminal of the bandgap comparator are connected to the first supply voltage.

13. The electrical device of claim 8 , wherein the second verification circuit comprises a first comparator, wherein a first sensing terminal of the first comparator is connected to the second input terminal of the second verification circuit and a second sensing terminal of the first comparator is connected to the third input terminal of the second verification circuit, wherein an input offset voltage of the first comparator corresponds to a predefined threshold for comparing the first supply voltage with the second supply voltage.

14. An electrical device, comprising:

a first verification circuit comprising a first input terminal for a first supply voltage and configured to derive a first internal voltage and a second internal voltage from the first supply voltage, to compare the first internal voltage with the second internal voltage, and to generate a first output signal based on a comparison of the first internal voltage with the second internal voltage,

wherein the first output signal has a first value, indicating that the first supply voltage is within a first predefined tolerance range, when the first internal voltage is greater than the second internal voltage, and

wherein the first output signal has a second value, indicating that the first supply voltage is outside the first predefined tolerance range, when the first internal voltage is less than the second internal voltage;

a second verification circuit comprising a second input terminal for the first supply voltage and a third input terminal for a second supply voltage and configured to compare the first supply voltage with the second supply voltage and to generate a second output signal based on a comparison of the first supply voltage with the second supply voltage; and

a combination circuit configured to generate a third output signal if at least one of the first output signal or the second output signal is indicative of at least one of the first supply voltage or the second supply voltage being outside a respective predefined tolerance range.

15. The electrical device of claim 14 , wherein the first internal voltage is substantially linearly dependent on the first supply voltage and the second internal voltage is substantially logarithmically dependent on the first supply voltage.

16. The electrical device of claim 15 , wherein:

the second output signal has a third value when a difference between the first supply voltage and the second supply voltage is less than a predefined threshold, and

the second output signal has a fourth value when the difference between the first supply voltage and the second supply voltage is greater than the predefined threshold, indicating that at least one of the first supply voltage or the second supply voltage deviates too far from its respective target value.

17. The electrical device of claim 14 , wherein:

the second output signal has a third value when a difference between the first supply voltage and the second supply voltage is less than a predefined threshold, and

the second output signal has a fourth value when the difference between the first supply voltage and the second supply voltage is greater than the predefined threshold, indicating that at least one of the first supply voltage or the second supply voltage deviates too far from its respective target value.

18. The electrical device of claim 14 , wherein the first verification circuit comprises a bandgap comparator configured to derive the first internal voltage and the second internal voltage from the first supply voltage and to compare the first internal voltage with the second internal voltage, wherein both a sensing terminal and a power supply terminal of the bandgap comparator are connected to the first supply voltage.

19. The electrical device of claim 14 , wherein the second verification circuit comprises a first comparator, wherein a first sensing terminal of the first comparator is connected to the second input terminal of the second verification circuit and a second sensing terminal of the first comparator is connected to the third input terminal of the second verification circuit, wherein an input offset voltage of the first comparator corresponds to a predefined threshold for comparing the first supply voltage with the second supply voltage.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 3, 2021
From: MOTZ, MARIO; ARACRI, UMBERTO; MICHELUTTI, ALESSANDRO
To: INFINEON TECHNOLOGIES AG
Reel/Frame 056111/0990 →
Priority Claims (1)
DE 10 2017 102 499.9 · Feb 8, 2017 · national
Continuity (2)
Continuation 15876315 · Jan 22, 2018
Related Publication 20210255651A1 · Aug 19, 2021