IP Library › Granted Patent US 10,312,930
Granted Patent B1
US 10,312,930 · App. 15/880,010 · Granted Jun 4, 2019

ADC digital gain error compensation

Inventors: Eamonn J. Byrne (Limerick, IE); Jesus Bonache (Mutxamel, ES); Andrejs Tunkels (Carrigaline, IE)
Assignee: Analog Devices Global Unlimited Company
H03M1/183H03F3/2175H03M1/06
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Quick Facts
Patent No.
US 10,312,930
App. No.
15/880,010
Granted
Jun 4, 2019
Kind
B1
Abstract

Techniques are provided for compensating gain of a combined amplifier and analog-to-digital converter (ADC) circuit, for example, due to additional filtering added to an input of the circuit. In an example, an integrated circuit including an amplifier and ADC can include an amplifier circuit configured to receive an input signal and to amplify the input signal based on an input resistance and a feedback resistance, and to provide an amplified representation of the input signal, and an ADC circuit configured to receive an output of the amplifier, to determine a digital coefficient associated with an additional input resistance coupled to the amplifier, and to provide a compensated digital representation of the amplified representation of the input signal using the digital compensation coefficient.

Claims (42)

1. An integrated circuit for compensating a gain error associated with an analog-to-digital converter (ADC), the integrated circuit comprising:

an amplifier circuit configured to receive an input signal and to amplify the input signal based on an input resistance and a feedback resistance, and to provide an amplified representation of the input signal; and

an ADC circuit configured to receive an output of the amplifier, to determine a digital coefficient associated with an additional input resistance coupled to the amplifier, and to provide a compensated digital representation of the amplified representation of the input signal using the digital compensation coefficient.

2. The integrated circuit of claim 1 , including a memory location indicative of an input resistance of the amplifier circuit.

3. The integrated circuit of claim 1 , wherein the amplifier circuit includes:

an amplifier;

an input resistor configured to couple the input signal to an input of the amplifier;

an adjustable feedback resistor coupled between an output of the amplifier and the input to the amplifier.

4. The integrated circuit of claim 1 , including a first register configured to store an indication of the additional input resistance.

5. The integrated circuit of claim 4 , including a second register configured to store a setting for the feedback resistance.

6. The integrated circuit of claim 5 , wherein the second register is a user-programmable register.

7. The integrated circuit of claim 4 , wherein the ADC circuit includes a digital processing circuit configured to retrieve a first value of the first register, a second value of the memory location and to determine the digital coefficient.

8. The integrated circuit of claim 7 , wherein the digital processing circuit is configured to digitally apply the digital coefficient to provide the compensated digital representation of the amplified representation of the input signal.

9. The integrated circuit of claim 7 , wherein the ADC circuit includes the ADC; and

wherein the digital processing circuit is configured to digitally multiply the digital coefficient with an output of the ADC to provide the compensated digital representation of the amplified representation of the input signal.

10. The integrated circuit of claim 1 , including a first port configured to receive a setting for the feedback resistance.

11. The integrated circuit of claim 10 , including a second port configured to receive user input indicative of the additional input resistance.

12. A method for compensating gain error of an analog-to-digital converter (ADC) circuit, the method comprising:

receiving an indication of an external resistance coupled to an input of a combined amplifier and ADC integrated circuit;

amplifying a received input signal of the combined amplifier and ADC integrated circuit;

converting the amplified signal to an uncompensated digital signal;

determining a compensation coefficient using the indication and a stored indication of an input resistance of the combined amplifier and ADC integrated circuit; and

digitally multiplying the compensation coefficient with the uncompensated digital signal to provide an output of the combined amplifier and ADC integrated circuit.

13. The method of claim 12 , including receiving a setting for a feedback resistance of an amplifier of the combined amplifier and ACD integrated circuit via a port of the combined amplifier and ACD integrated circuit.

14. The method of claim 13 , including adjusting a switch to provide the feedback resistance associated with the setting.

15. The method of claim 12 , wherein determining the compensation coefficient includes retrieving the indication of the external resistance from a first register and retrieving the stored indication of the input resistance from a second register.

16. The method of claim 15 , wherein determining the compensation coefficient includes dividing a sum of the input resistance and the external resistance by the internal resistance.

17. A data acquisition system comprising:

an electrical apparatus;

an integrated analog-to-digital converter (ADC) circuit configured to receive a signal from the electrical apparatus and provide a digital representation of the signal; and

wherein the integrated ADC circuit includes:

an amplifier circuit configured to receive an input signal and to amplify the input signal based on an input resistance of the amplifier and a feedback resistance, and to provide an amplified representation of the input signal; and

an ADC circuit configured to receive an output of the amplifier, to determine a compensation coefficient associated with an additional input resistance coupled to the amplifier, and to provide a compensated digital representation of the amplified representation of the input signal using the compensation coefficient.

18. The data acquisition system of claim 17 , including:

a first register configured to store an indication of the input resistance of the amplifier;

a second register configured to store a setting for the additional input resistance;

wherein the ADC circuit includes a digital processing circuit configured to retrieve a first value of the first register, a second value of the second register and to determine the compensation coefficient.

19. The data acquisition system of claim 18 ,

wherein the ADC circuit includes an ADC;

wherein the digital processing circuit is configured to digitally multiply the compensation coefficient with an output of the ADC to provide the compensated digital representation of the amplified representation of the input signal; and

wherein the compensation coefficient is equal to a sum divided by the first value, wherein the sum is equal to an addition of the first value with the second value.

20. The data acquisition system of claim 17 , wherein the electrical apparatus includes a power generation and distribution sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2018
From: BYRNE, EAMONN J.; BONACHE, JESUS; TUNKELS, ANDREJS
To: ANALOG DEVICES GLOBAL UNLIMITED COMPANY
Reel/Frame 044731/0112 →
Cited By (1)
US 12,470,228