IP Library Granted Patent US 9,667,454
Granted Patent B1
US 9,667,454 · App. 15/186,791 · Granted May 30, 2017

Adaptive equalizer

Inventors: Hideki Koba (Tokyo, JP); Keiki Watanabe (Tokyo, JP); Fumio Yuki (Tokyo, JP)
Assignee: Hitachi, Ltd.
H04L25/03063
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Quick Facts
Patent No.
US 9,667,454
App. No.
15/186,791
Granted
May 30, 2017
Kind
B1
Abstract

An adaptive equalizer includes: a speculative equalization circuit which operates a plurality of first tap coefficients with respect to input data and selects operation data corresponding to the input data from a plurality of operation data obtained by the operation; and an adaptive equalization circuit which generates the plurality of first tap coefficients, on the basis of the input data. The adaptive equalization circuit includes: an operation circuit which selects one of a plurality of second tap coefficients corresponding to the plurality of first tap coefficients and operates the selected second tap coefficient with respect to the input data; and a tap coefficient generation circuit which generates the plurality of first tap coefficients, on the basis of operation data obtained by the operation of the operation circuit, when the second tap coefficient selected at the time of the operation in the operation circuit corresponds to the first tap coefficient used for the operation of the operation data selected in the speculative equalization circuit.

Claims (25)

1. An adaptive equalizer comprising:

a speculative equalization circuit which operates a plurality of first tap coefficients with respect to input data and selects operation data corresponding to the input data from a plurality of operation data obtained by the operation; and

an adaptive equalization circuit which generates the plurality of first tap coefficients, on the basis of the input data, wherein

the adaptive equalization circuit includes:

an operation circuit which selects one of a plurality of second tap coefficients corresponding to the plurality of first tap coefficients and operates the selected second tap coefficient with respect to the input data; and

a tap coefficient generation circuit which generates the plurality of first tap coefficients, on the basis of operation data obtained by the operation of the operation circuit, when the second tap coefficient selected at the time of the operation in the operation circuit corresponds to the first tap coefficient used for the operation of the operation data selected in the speculative equalization circuit.

2. The adaptive equalizer according to claim 1 , wherein

the speculative equalization circuit operates in synchronization with a first clock signal and the operation circuit in the adaptive equalization circuit operates in synchronization with a second clock signal of which a frequency is lower than a frequency of the first clock signal.

3. The adaptive equalizer according to claim 2 , wherein

the adaptive equalization circuit includes a pattern generation circuit which generates a standby pattern to designate one of the plurality of second tap coefficients and a comparison circuit which compares a selection pattern to select the operation data in the speculative equalization circuit and the standby pattern, and

the tap coefficient generation circuit generates the plurality of first tap coefficients and the plurality of second tap coefficients, when a comparison result in the comparison circuit is determined as matching, and discards the operation data obtained by the operation in the operation circuit, when the comparison result in the comparison circuit is determined as mismatching.

4. The adaptive equalizer according to claim 3 , wherein

each of the plurality of first tap coefficients and the plurality of second tap coefficients represents an offset with respect to a reference,

the plurality of first tap coefficients have a first direction first tap coefficient representing an offset of the side of a first direction with respect to the reference and a second direction first tap coefficient representing an offset of the side of a second direction opposite to the first direction with respect to the reference, and

the plurality of second tap coefficients have a first direction second tap coefficient representing an offset of the side of the first direction with respect to the reference and a second direction second tap coefficient representing an offset of the side of the second direction.

5. The adaptive equalizer according to claim 4 , wherein

the adaptive equalization circuit includes a reference generation circuit which generates the reference, when the determination result in the comparison circuit is determined as matching.

6. The adaptive equalizer according to claim 3 , wherein

the standby pattern is represented by a combination of a plurality of logical values, and

when the pattern generation circuit generates standby patterns to be continuous temporally, the pattern generation circuit generates the standby patterns, such that combinations of logical values circulate between the continuous standby patterns.

7. The adaptive equalizer according to claim 3 , wherein

the standby pattern is represented by a combination of a plurality of logical values, and

when the pattern generation circuit generates standby patterns to be continuous temporally, the pattern generation circuit generates a standby pattern having a combination of logical values different from combinations of logical values of the continuous standby patterns, after a predetermined time passes, when the pattern generation circuit forms the standby patterns.

8. The adaptive equalizer according to claim 3 , wherein

the pattern generation circuit generates a standby pattern of a first frequency and then generates a standby pattern of a second frequency higher than the first frequency.

Assignments (2)
COMPANY SPLIT Recorded Aug 20, 2024
From: HITACHI, LTD.
To: HITACHI VANTARA, LTD.
Reel/Frame 069518/0761 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 20, 2016
From: KOBA, HIDEKI; WATANABE, KEIKI; YUKI, FUMIO
To: HITACHI, LTD.
Reel/Frame 038957/0346 →