IP Library › Granted Patent US 11,863,137
Granted Patent B2
US 11,863,137 · App. 17/302,435 · Granted Jan 2, 2024

Chopper system and method

Inventors: Mario Motz (Wernberg, AT); Umberto Aracri (Villach, AT)
Assignee: Infineon Technologies AG
H03F3/38G01R33/075H03F2200/459H03M1/04
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Quick Facts
Patent No.
US 11,863,137
App. No.
17/302,435
Granted
Jan 2, 2024
Kind
B2
Abstract

Systems and methods are provided for which a chopper modulator and a chopper demodulator of a chopped apparatus having a variable chopper frequency are described. A feedback path is used to reduce ripples and/or remaining offsets as a result of the variable chopper frequency.

Claims (23)

1. A system, comprising:

a chopped apparatus having a chopper modulator at an input and a chopper demodulator at an output,

a device for providing a chopper signal having a variable chopper frequency to the chopper modulator and the chopper demodulator, and

a feedback path from an output of the chopper demodulator to the chopped apparatus, configured to reduce ripples or offsets caused by the variable chopper frequency.

2. The system as claimed in claim 1 , wherein an output signal of the feedback path is configured to set an offset of the chopped apparatus.

3. The system as claimed in claim 1 , wherein the variable chopper frequency has a repetition rate at which chopper frequencies repeat, and

wherein the feedback path has a filter frequency that is lower than the repetition rate by at least a factor of 2.

4. The system as claimed in claim 1 , wherein the variable chopper frequency is in a frequency range above 200 kHz.

5. The system as claimed in claim 1 , wherein the feedback path has a filter frequency that is lower than a minimum chopper frequency of the variable chopper frequency by at least a factor of 2.

6. The system as claimed in claim 1 , wherein the feedback path comprises a demodulator, which is configured to operate based on the chopper signal, and an integrator.

7. The system as claimed in claim 1 , further comprising:

a spinning current Hall sensor, wherein an output of the spinning current Hall sensor is coupled to an input of the chopper modulator, wherein the spinning current Hall sensor is configured to be operated at a variable spinning frequency that is an integer multiple of the variable chopper frequency.

8. A method, comprising:

providing a chopper signal having a variable chopper frequency to a chopper arrangement, and

providing feedback from an output of the chopper arrangement to a chopped apparatus to compensate for ripples or offsets caused by the variable chopper frequency.

9. The method as claimed in claim 8 , wherein the feedback is configured to set an offset of the chopped apparatus.

10. The method as claimed in claim 8 , wherein the variable chopper frequency has a repetition rate at which chopper frequencies repeat, and

wherein the feedback has a filter frequency that is lower than the repetition rate by at least a factor of 2.

11. The method as claimed in claim 8 , wherein the variable chopper frequency is in a frequency range above 200 kHz.

12. The method as claimed in claim 8 , wherein the feedback has a filter frequency that is lower than a minimum chopper frequency of the variable chopper frequency by at least a factor of 2.

13. The method as claimed in claim 8 , wherein the providing of the feedback comprises demodulating an output signal of the chopper arrangement based on the chopper signal, and integrating the demodulated output signal.

14. The method as claimed in claim 8 , further comprising:

operating a Hall sensor using a spinning current technique, wherein an output of the Hall sensor is coupled to an input of the chopper arrangement, wherein the spinning current technique is operated at a variable spinning frequency that is an integer multiple of the variable chopper frequency.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2021
From: MOTZ, MARIO; ARACRI, UMBERTO
To: INFINEON TECHNOLOGIES AG
Reel/Frame 056128/0682 →
Priority Claims (1)
DE 102020111914.3 · May 4, 2020 · national
Continuity (1)
Related Publication 20210344315A1 · Nov 4, 2021