IP Library › Granted Patent US 10,230,359
Granted Patent B1
US 10,230,359 · App. 15/964,689 · Granted Mar 12, 2019

DFE hysteresis compensation (specific)

Inventors: Oscar Elisio Mattia (Leuven, BE); Davide Guermandi (Leuven, BE)
Assignee: IMEC VZW
H03K5/086H03K5/24H03K3/3562
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Quick Facts
Patent No.
US 10,230,359
App. No.
15/964,689
Granted
Mar 12, 2019
Kind
B1
Abstract

According to a first aspect of the present inventive concept there is provided an equalizer system comprising a decision feedback equalizer (DFE), the DFE comprising: a static comparator configured as a decision device of the DFE; and a feedback path comprising a set of filter taps including at least a first filter tap; wherein the static comparator presents hysteresis and wherein a tap coefficient of the first filter tap is set such that an input signal level of the static comparator is shifted to compensate for the hysteresis.

Claims (39)

1. An equalizer system comprising a decision feedback equalizer (DFE), the DFE comprising:

a static comparator configured as a decision device of the DFE; and

a feedback path comprising a set of filter taps including at least a first filter tap;

wherein the static comparator presents hysteresis and wherein a tap coefficient of the first filter tap is set such that an input signal level of the static comparator is shifted to compensate for the hysteresis.

2. An equalizer system according to claim 1 , further comprising a tap coefficient adaption circuit, the tap coefficient adaption circuit comprising:

an input stage comprising an auxiliary comparator with an adjustable threshold, the auxiliary comparator further having an auxiliary comparator input coupled to a signal input of the equalizer system and having an auxiliary comparator output:

wherein said adjustable threshold is set to a third threshold in response to a high-level output signal level at the output of the static comparator, and

wherein said adjustable threshold is set to a fourth threshold in response to a low-level output signal level at the output of the static comparator; and

a coefficient determination stage having a first input coupled to the auxiliary comparator output and a second input coupled to an output of the static comparator, and being configured to determine said tap coefficient to reduce an error between a signal received at the first input and a signal received at the second input.

3. An equalizer system according to claim 2 , wherein the static comparator presents a first threshold in response to an increasing input signal level and a second threshold in response to a decreasing input signal level, and wherein the tap coefficient adaption circuit is configured such that a difference between the third and fourth thresholds of the auxiliary comparator corresponds to a difference between the first and second thresholds.

4. An equalizer system according to claim 1 , further comprising a tap coefficient adaption circuit, the tap coefficient adaption circuit comprising:

an input stage comprising:

an auxiliary comparator having a first auxiliary comparator input coupled to a signal input of the equalizer system, the auxiliary comparator further having a second auxiliary comparator input and an auxiliary comparator output, and

a threshold selector circuit having an output coupled to the second auxiliary comparator input and being configured to output a third threshold level to the second auxiliary comparator input in response to a high-level output signal level at the output of the static comparator, and a fourth threshold level to the second auxiliary comparator input in response to a low-level output signal level at the output of the static comparator; and

the tap coefficient adaption circuit further comprising a coefficient determination stage having a first input coupled to the auxiliary comparator output and a second input coupled to an output of the static comparator, and being configured to determine said tap coefficient to reduce an error between a signal received at the first input and a signal received at the second input.

5. An equalizer system according to claim 4 , wherein the static comparator presents a first threshold in response to an increasing input signal level and a second threshold in response to a decreasing input signal level, and wherein the threshold selector circuit is configured such that a difference between the third and fourth threshold levels corresponds to a difference between the first and second thresholds.

6. An equalizer system according to claim 1 , wherein said static comparator forms a first static comparator and the equalizer system further comprises a second static comparator presenting hysteresis, the first and the second static comparators being coupled between a common input node and a common output node, and

wherein the feedback path is coupled from the common output node to the common input node via the set of filter taps and wherein the tap coefficient of the first filter tap is set such that a signal level at the common input node is shifted to compensate for the hysteresis of the first and the second static comparators.

7. An equalizer system according to claim 6 , further comprising a tap coefficient adaption circuit, the tap coefficient adaption circuit comprising:

an input stage comprising an auxiliary comparator with an adjustable threshold, the auxiliary comparator further having an auxiliary comparator input coupled to said common input node of the equalizer system and having an auxiliary comparator output:

wherein said adjustable threshold is set to a third threshold in response to a high-level output signal level at the output of the first static comparator, and

wherein said adjustable reference is set to a fourth threshold in response to a low-level output signal level at the output of the first static comparator; and

a coefficient determination stage having a first input coupled to the auxiliary comparator output and a second input coupled to an output of the static comparator, and being configured to determine said tap coefficient to reduce an error between a signal received at the first input and a signal received at the second input.

8. An equalizer system according to claim 7 , wherein the first static comparator presents a first threshold in response to an increasing input signal level and a second threshold in response to a decreasing input signal level, and the second static comparator presents a fifth threshold in response to an increasing input signal level and a sixth threshold in response to a decreasing input signal level, wherein a difference between the first and the second threshold corresponds to a difference between the fifth and sixth threshold, and wherein the tap coefficient adaption circuit is configured such that a difference between the third and fourth thresholds of the auxiliary comparator corresponds to a difference between the first and second thresholds.

9. An equalizer system according to claim 6 , further comprising a tap coefficient adaption circuit, the tap coefficient adaption circuit comprising:

an input stage comprising:

an auxiliary comparator having a first auxiliary comparator input coupled to said common input node of the equalizer system, the auxiliary comparator further having a second auxiliary comparator input and an auxiliary comparator output, and

a threshold selector circuit having an output coupled to the second auxiliary comparator input and being configured to output a third threshold level to the second auxiliary comparator input in response to a high-level output signal level at the output of the first static comparator, and a fourth threshold level to the second auxiliary comparator input in response to a low-level output signal level at the output of the first static comparator; and

the tap coefficient adaption circuit further comprising a coefficient determination stage having a first input coupled to the auxiliary comparator output and a second input coupled to an output of the static comparator, and being configured to determine said tap coefficient to reduce an error between a signal received at the first input and a signal received at the second input.

10. An equalizer system according to claim 9 , wherein the first static comparator presents a first threshold in response to an increasing input signal level and a second threshold in response to a decreasing input signal level, and the second static comparator presents a fifth threshold in response to an increasing input signal level and a sixth threshold in response to a decreasing input signal level, wherein a difference between the first and the second threshold corresponds to a difference between the fifth and sixth threshold, and wherein the tap coefficient adaption circuit is configured such that a difference between the third and fourth thresholds of the auxiliary comparator corresponds to a difference between the first and second thresholds.

11. A method for operating an equalizer system, the method comprising:

feeding an input signal to a decision feedback equalizer (DFE) of the equalizer system, the DFE comprising a static comparator configured as a decision device of the DFE, the static comparator presenting hysteresis, and the DFE further comprising a feedback path comprising a set of filter taps including at least a first filter tap; and

setting a tap coefficient of the first tap such that an input signal level of the static comparator is shifted to compensate for the hysteresis.

12. A method according to claim 11 , further comprising:

comparing, by an auxiliary comparator, said input signal to an adjustable threshold,

wherein said adjustable threshold is set to a third threshold in response to a high-level output signal level at the comparator output, and

wherein said adjustable threshold is set to a fourth threshold in response to a low-level output signal level at the comparator output; and

determining said tap coefficient to reduce an error between a signal output by the auxiliary comparator and a signal output by the static comparator.

13. A method according to claim 12 , wherein the static comparator presents a first threshold in response to an increasing input signal level and a second threshold in response to a decreasing input signal level, and wherein the third and fourth thresholds are set such that a difference between the third and fourth thresholds corresponds to a difference between the first and second thresholds.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 1, 2018
From: MATTIA, OSCAR ELISIO; GUERMANDI, DAVIDE
To: IMEC VZW; VRIJE UNIVERSITEIT BRUSSEL
Reel/Frame 045681/0480 →
Cited By (2)
US 12,218,639 US 12,603,801