IP Library Granted Patent US 8,040,263
Granted Patent B2
US 8,040,263 · App. 12/497,921 · Granted Oct 18, 2011

Analog-to-digital converter with a calibration function

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Quick Facts
Patent No.
US 8,040,263
App. No.
12/497,921
Granted
Oct 18, 2011
Kind
B2
Abstract

An analog-to-digital converter includes a reference voltage generator that outputs a reference voltage, a first comparator and a second comparator that compare the reference voltage and a voltage of an input signal and output a digital signal having a first logical value or a second logical value, and a calibrator that compares an output of the first comparator and an output of the second comparator and outputs a first offset control signal and a second offset control signal. The first comparator sets an offset value having a positive or negative polarity to an output inversion threshold level based on the first offset control signal, and the second comparator sets an offset value having a polarity opposite to the polarity set by the first comparator to an output inversion threshold level based on the second offset control signal.

Claims (101)

1. An analog-to-digital converter comprising:

a reference voltage generator that outputs a reference voltage;

a first comparator and a second comparator that compare the reference voltage and a voltage of an input signal and output a digital signal having a first logical value or a second logical value; and

a calibrator that compares an output of the first comparator and an output of the second comparator and outputs a first offset control signal and a second offset control signal, wherein

the first comparator sets an offset value having a positive or negative polarity to an output inversion threshold level based on the first offset control signal,

the second comparator sets an offset value having a polarity opposite to the polarity set by the first comparator to an output inversion threshold level based on the second offset control signal,

the first comparator comprises a first counter that increases or decreases a value of a first adjustment factor to output based on a polarity of the first offset control signal and sets the offset value based on the value of the first adjustment factor, and

the second comparator comprises a second counter that increases or decreases a value of a second adjustment factor to output based on a polarity of the second offset control signal and sets the offset value based on the value of the second adjustment factor.

2. The analog-to-digital converter according to claim 1 , wherein

the calibrator outputs the first offset control signal and the second offset control signal having different polarities if the output of the first comparator and the output of the second comparator have different logical values and outputs the first offset control signal and the second offset control signal having no polarity if the output of the first comparator and the output of the second comparator have the same logical value,

if the first offset control signal has a polarity, the first counter increases or decreases the value of the first adjustment factor according to the polarity, and if the first offset control signal has no polarity, the first counter maintains the value of the first adjustment factor, and

if the second offset control signal has a polarity, the second counter increases or decreases the value of the second adjustment factor according to the polarity, and if the second offset control signal has no polarity, the second counter maintains the value of the second adjustment factor.

3. The analog-to-digital converter according to claim 1 , wherein

the offset value is adjusted in units of steps having a smaller voltage value than a resolution of the analog-to-digital converter.

4. The analog-to-digital converter according to claim 1 , wherein

the first comparator comprises at least two comparators,

the reference voltage generator outputs a plurality of reference voltages having different voltage values, and

the analog-to-digital converter comprises:

a first switching circuit that switches between one of the first comparator and another one of the first comparator to which one of the plurality of reference voltages is to be input; and

a second switching circuit that switches between one of the first comparator and another one of the first comparator which is to be coupled to the second comparator.

5. The analog-to-digital converter according to claim 4 , wherein

the first switching circuit and the second switching circuit select the same first comparator based on a first switch control signal.

6. The analog-to-digital converter according to claim 1 , wherein

the second comparator comprises at least two comparators, and

the analog-to-digital converter comprises:

a third switching circuit that switches between one of the second comparator and another one of the second comparator to which one of a plurality of reference voltages is to be input; and

a fourth switching circuit that switches between one of the second comparator and another one of the second comparator which is to be coupled to the first comparator.

7. The analog-to-digital converter according to claim 6 , wherein

the third switching circuit and the fourth switching circuit select the same second comparator based on a second switch control signal.

8. The analog-to-digital converter according to claim 1 , wherein

the calibrator comprises a plurality of calibrators,

the reference voltage generator outputs a plurality of reference voltages having different voltage values, and

the analog-to-digital converter comprises:

a first switching circuit that switches among the plurality of reference voltages which is to be input to the first comparator; and

a second switching circuit that switches among the plurality of calibrators to which the first comparator is to be connected.

9. The analog-to-digital converter according to claim 1 , wherein

the first comparator and the second comparator comprise:

a first differential amplifier that amplifies a voltage difference between the reference voltage and the input signal and outputs a differential signal; and

a second differential amplifier that outputs the digital signal according to a polarity of the differential signal, and

the second differential amplifier sets the offset value having a positive or negative polarity to an output inversion threshold level for inverting a logical value of the digital signal based on the first offset control signal or the second offset control signal.

10. The analog-to-digital converter according to claim 1 , wherein

the first comparator and the second comparator comprise:

a first differential amplifier that amplifies a voltage difference between the reference voltage and the input signal and outputs a differential signal; and

a second differential amplifier that outputs the digital signal according to a polarity of the differential signal, and

the first differential amplifier sets the offset value having a positive or negative polarity to an output inversion threshold level for inverting a polarity of the differential signal based on the first offset control signal or the second offset control signal.

11. The analog-to-digital converter according to claim 1 , comprising:

a first path through which a first input signal is input to the first comparator;

a first switch that is placed on a second path through which a second input signal is input to the second comparator;

a second switch that connects between input terminals of the first comparator and the second comparator; and

a control circuit that controls on and off state of the first switch and the second switch, wherein

the control circuit turns off the first switch and turns on the second switch in a first operation mode, and turns on the first switch and turns off the second switch in a second operation mode.

12. The analog-to-digital converter according to claim 11 , further comprising:

a third switch that is placed on the first path, wherein

the control circuit turns on the third switch in the first operation mode and the second operation mode, and turns off the third switch and turns on the first switch and the second switch in a third operation mode.

13. An analog-to-digital converter comprising:

an input terminal that inputs an input signal;

a first reference voltage input terminal and a second reference voltage input terminal that input reference voltages having the same voltage value;

a first comparator that compares the reference voltage input from the first reference voltage input terminal and a voltage of the input signal and outputs a digital signal having a first logical value or a second logical value;

a second comparator that compares the reference voltage input from the second reference voltage input terminal and a voltage of the input signal and outputs a digital signal having a first logical value or a second logical value;

a first counter that is placed corresponding to the first comparator;

a second counter that is placed corresponding to the second comparator; and

a calibrator that compares an output of the first comparator and an output of the second comparator and outputs a first offset control signal and a second offset control signal having polarities opposite to each other, wherein

the first counter increases or decreases a value of a first adjustment factor based on a polarity of the first offset control signal,

the first comparator sets an offset value of an output inversion threshold level based on a value of the first adjustment factor,

the second counter increases or decreases a value of a second adjustment factor based on a polarity of the second offset control signal, and

the second comparator sets an offset value of an output inversion threshold level based on a value of the second adjustment factor.

14. The analog-to-digital converter according to claim 13 , wherein

the calibrator outputs the first offset control signal and the second offset control signal having no polarity if the output of the first comparator and the output of the second comparator have the same logical value, and

the first counter and the second counter maintain the values of the first adjustment factor and the second adjustment factor if the first offset control signal and the second offset control signal have no polarity.

15. The analog-to-digital converter according to claim 13 , wherein

the offset value is adjusted in units of steps having a smaller voltage value than a resolution of the analog-to-digital converter.

16. The analog-to-digital converter according to claim 13 , wherein

the first comparator comprises at least two comparators,

the reference voltage generator outputs a plurality of reference voltages having different voltage values, and

the analog-to-digital converter comprises:

a first switching circuit that switches between one of the first comparator and another one of the first comparator to which one of the plurality of reference voltages is to be input; and

a second switching circuit that switches between one of the first comparator and another one of the first comparator which is to be coupled to the second comparator.

17. The analog-to-digital converter according to claim 16 , wherein

the first switching circuit and the second switching circuit select the same first comparator based on a first switch control signal.

18. The analog-to-digital converter according to claim 13 , wherein

the second comparator comprises at least two comparators, and

the analog-to-digital converter comprises:

a third switching circuit that switches between one of the second comparator and another one of the second comparator to which one of a plurality of reference voltages is to be input; and

a fourth switching circuit that switches between one of the second comparator and another one of the second comparator which is to be coupled to the first comparator.

19. The analog-to-digital converter according to claim 18 , wherein

the third switching circuit and the fourth switching circuit select the same second comparator based on a second switch control signal.

20. The analog-to-digital converter according to claim 13 , wherein

the calibrator comprises a plurality of calibrators,

the reference voltage generator outputs a plurality of reference voltages having different voltage values, and

the analog-to-digital converter comprises:

a first switching circuit that switches among the plurality of reference voltages which is to be input to the first comparator; and

a second switching circuit that switches among the plurality of calibrators to which the first comparator is to be connected.

21. The analog-to-digital converter according to claim 13 , comprising:

a first path through which a first input signal is input to the first comparator;

a first switch that is placed on a second path through which a second input signal is input to the second comparator;

a second switch that connects between input terminals of the first comparator and the second comparator; and

a control circuit that controls on and off state of the first switch and the second switch, wherein

the control circuit turns off the first switch and turns on the second switch in a first operation mode, and turns on the first switch and turns off the second switch in a second operation mode.

22. The analog-to-digital converter according to claim 21 , further comprising:

a third switch that is placed on the first path, wherein

the control circuit turns on the third switch in the first operation mode and the second operation mode, and turns off the third switch and turns on the first switch and the second switch in a third operation mode.

Assignments (3)
CHANGE OF ADDRESS Recorded Nov 29, 2017
From: RENESAS ELECTRONICS CORPORATION
To: RENESAS ELECTRONICS CORPORATION
Reel/Frame 044928/0001 →
CHANGE OF NAME Recorded Oct 26, 2010
From: NEC ELECTRONICS CORPORATION
To: RENESAS ELECTRONICS CORPORATION
Reel/Frame 025193/0156 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2009
From: NAKAJIMA, YUJI
To: NEC ELECTRONICS CORPORATION
Reel/Frame 022927/0044 →