IP Library Granted Patent US 11,677,369
Granted Patent B2
US 11,677,369 · App. 17/870,370 · Granted Jun 13, 2023

Differential noise cancellation

Inventor: Daniel Abawi (Gardnerville, NV)
Assignee: Baker Hughes Oilfield Operations LLC
H03F3/45071E21B41/00G01R13/0218G01R15/125H03F1/56H03F2200/129H03F2200/222H03F2200/228H03F2200/387H03F2203/45116H03F2203/45528
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Quick Facts
Patent No.
US 11,677,369
App. No.
17/870,370
Granted
Jun 13, 2023
Kind
B2
Abstract

In one implementation, a circuit can include a reference pin and an operational amplifier that can include an output pin, an inverting input pin and a non-inverting input pin. The inverting input pin can be electrically coupled to the output pin via a first impedance and to the reference pin via a second impedance. The non-inverting input pin can be electrically coupled to the reference pin via a third impedance and can be configured to receive a detection signal. The reference pin can be configured to receive a detection reference signal associated with the detection signal.

Claims (32)

1. A detection system comprising:

an input circuit comprising a first lead that transmits a detection signal and a second lead that transmits a detection reference signal; and

a buffer circuit comprising:

a reference pin configured to receive a detection reference signal associated with the detection signal;

an operational amplifier comprising:

an inverting input pin electrically coupled to the reference pin via a first impedance; and

a non-inverting input pin electrically coupled to the reference pin via a second impedance and configured to receive a detection signal.

2. The detection system of claim 1 , further comprising an instrumentation device electrically coupled to the buffer circuit and configured to analyze the detection signal.

3. The detection system of claim 2 , wherein the instrumentation device comprises an external circuit, and the instrumentation device configured to analyze the detection signal.

4. The detection system of claim 1 , wherein the operational amplifier comprises an output pin configured to electrically couple to a first lead of an external circuit and the reference pin is configured to electrically couple to a second lead of the external circuit, wherein the operational amplifier is configured to isolate an output signal at the output pin from a reference signal at the reference pin.

5. The detection system of claim 4 , wherein the operational amplifier is configured to isolate the output signal from the reference signal based on a feedback circuit comprising the first impedance and the second impedance, wherein the operational amplifier and the feedback circuit are configured to vary the output signal to follow fluctuations in the reference signal.

6. The detection system of claim 4 , wherein a first difference between the output signal at the output pin and the reference signal at the reference pin is indicative of a second difference between the detection signal and the detection reference signal.

7. The detection system of claim 6 , wherein the reference pin is configured to electrically couple to a third lead of an input circuit, wherein the third lead is configured to transmit the detection reference signal or a signal indicative of the detection reference signal.

8. The detection system of claim 4 , wherein isolation of the output signal comprises suppression of a noise signal indicative of voltage fluctuations in the external circuit, wherein the reference signal comprises the noise signal.

9. The detection system of claim 1 , wherein the detection signal and the detection reference signal are indicative of a sensor measurement at an oil and gas industrial machine.

10. The detection system of claim 1 , further comprising a filtering circuit wherein the reference pin or the non-inverting input pin is configured to receive the detection reference signal via the filtering circuit, wherein the filtering circuit comprises one of a high-pass filter, a low-pass filter, and a band-pass filter.

11. A detection system comprising:

an input circuit comprising a first lead that transmits a detection signal and a second lead that transmits a detection reference signal;

a buffer circuit comprising:

a reference pin; and

an operational amplifier comprising:

an inverting input pin electrically coupled to the reference pin via a first impedance, wherein the inverting input pin is configured to receive a detection signal; and

a non-inverting input pin electrically coupled to the reference pin via a second impedance, wherein the non-inverting input pin is configured to receive a detection reference signal associated with the detection signal.

12. The detection system of claim 11 , further comprising an instrumentation device electrically coupled to the buffer circuit and configured to analyze the detection signal.

13. The detection system of claim 12 , wherein the instrumentation device comprises an external circuit, the instrumentation device configured to analyze the detection signal.

14. The detection system of claim 11 , wherein the operational amplifier comprises an output pin, wherein the output pin is configured to electrically couple to a first lead of an external circuit and the reference pin is configured to electrically couple to a second lead of the external circuit, wherein the operational amplifier is configured to isolate an output signal at the output pin from a reference signal at the reference pin.

15. The detection system of claim 14 , wherein the operational amplifier is configured to isolate the output signal from the reference signal based on a feedback circuit comprising the first impedance and the second impedance, wherein the operational amplifier and the feedback circuit are configured to vary the output signal to follow fluctuations in the reference signal.

16. The detection system of claim 15 , wherein a first difference between the output signal at the output pin and the reference signal at the reference pin is indicative of a second difference between the detection signal and the detection reference signal.

17. The detection system of claim 15 , wherein isolation of the output signal comprises suppression of a noise signal indicative of voltage fluctuations in the external circuit, wherein the reference signal comprises the noise signal.

18. The detection system of claim 11 , wherein the detection signal and the detection reference signal are indicative of a sensor measurement at an oil and gas industrial machine.

19. The detection system of claim 11 , wherein the operational amplifier comprises one or more bipolar junction transistor and/or one or more metal-oxide semiconductor field-effect transistors.

20. The detection system of claim 14 , wherein the operational amplifier is configured to isolate an output signal at the output pin from a reference signal at the reference pin.

Assignments (1)
CHANGE OF NAME Recorded Mar 16, 2023
From: BAKER HUGHES, A GE COMPANY, LLC
To: BAKER HUGHES HOLDINGS LLC
Reel/Frame 063102/0887 →