IP Library Granted Patent US 8,675,460
Granted Patent B2
US 8,675,460 · App. 13/425,643 · Granted Mar 18, 2014

Optical disc device

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Quick Facts
Patent No.
US 8,675,460
App. No.
13/425,643
Granted
Mar 18, 2014
Kind
B2
Abstract

Provided is an optical disc device including: an objective lens; a plurality of light-receiving elements each for outputting an output signal corresponding to a light amount of reflected light from the optical disc medium; a plurality of amplifiers each for amplifying the output signal from a corresponding one of the light-receiving elements; and a signal output circuit for outputting a focus error signal based on amplified signals from the amplifiers. The optical disc device executes focus servo control of controlling, based on the focus error signal, a position of the objective lens so as to keep constant a distance between the objective lens and a signal surface; moves the objective lens to a position at which accuracy of reading information from the optical disc medium becomes high; and thereafter adjusts a gain of each amplifier so that levels of the amplified signals become close to each other.

Claims (46)

1. An optical disc device for reading information recorded on an optical disc medium, comprising:

an objective lens for focusing light onto the optical disc medium;

a plurality of light-receiving elements arranged in an array, each for receiving reflected light from the optical disc medium and outputting an output signal corresponding to a light amount of the reflected light;

a plurality of amplifiers each for amplifying the output signal output from a corresponding one of the plurality of light-receiving elements;

a signal output circuit for outputting, based on amplified signals respectively output from the plurality of amplifiers, a focus error signal indicating a deviation of a focal position of the objective lens with respect to a signal surface of the optical disc medium;

a focus servo control unit for controlling, based on the focus error signal, a position of the objective lens so as to keep constant a distance between the objective lens and the signal surface;

a position adjusting unit for moving the objective lens to a first temporary in-focus position, and then moving said objective lens to a second in-focus position at which accuracy of reading the information from the optical disc medium becomes higher than at the first temporary in-focus position; and

a gain adjusting unit for adjusting a gain of each of the plurality of amplifiers after said objective lens has been moved to said second in-focus position, so that levels of the amplified signals respectively output from the plurality of amplifiers become close to each other,

wherein the first temporary in-focus position is a position of the objective lens where the focus error signal is adjusted,

wherein the second in-focus position is a position of the objective lens where the focus servo control unit moves the objective lens to the second in-focus position based on a focus bias value and the plurality of amplifiers are adjusted after adjusting for the focus error signal, and

wherein the focus bias value is adjusted based on reading an evaluation value.

2. The optical disc device according to claim 1 , wherein the gain adjusting unit adjusts the gain of the each of the plurality of amplifiers so that the levels of the amplified signals respectively output from the plurality of amplifiers become close to each other after the position adjusting unit moves the objective lens to the second in-focus position, and that a total sum of the amplified signals respectively output from the plurality of amplifiers does not change before and after the adjustment.

3. The optical disc device according to claim 1 , wherein the position adjusting unit acquires, by changing the position of the objective lens, a plurality of evaluation values each indicating the accuracy of reading the information from the optical disc medium at one of a plurality of different positions, and moves the objective lens to a position determined based on the acquired plurality of evaluation values.

4. The optical disc device according to claim 3 , wherein each of the plurality of evaluation values comprises a jitter value.

5. A method of controlling an optical disc device,

the optical disc device comprising:

an objective lens for focusing light onto an optical disc medium having information recorded thereon;

a plurality of light-receiving elements arranged side by side, each for receiving reflected light from the optical disc medium and outputting an output signal corresponding to a light amount of the reflected light;

a plurality of amplifiers each for amplifying the output signal output from a corresponding one of the plurality of light-receiving elements; and

a signal output circuit for outputting, based on amplified signals respectively output from the plurality of amplifiers, a focus error signal indicating a deviation of a focal position of the objective lens with respect to a signal surface of the optical disc medium,

the method comprising:

a focus servo control step of controlling, based on the focus error signal, a position of the objective lens so as to keep constant a distance between the objective lens and the signal surface;

a position adjusting step of moving the objective lens to a first temporary in-focus position, and then moving said objective lens to a second in-focus position at which accuracy of reading the information from the optical disc medium becomes higher than at the first temporary in-focus position; and

a gain adjusting step of adjusting a gain of each of the plurality of amplifiers after said objective lens has been moved to said second in-focus position, so that levels of the amplified signals respectively output from the plurality of amplifiers become close to each other,

wherein the first temporary in-focus position is a position of the objective lens where the focus error signal is adjusted,

wherein the second in-focus position is a position of the objective lens where the objective lens is moved to the second in-focus position based on a focus bias value and the plurality of amplifiers are adjusted after adjusting for the focus error signal, and

wherein the focus bias value is adjusted based on reading an evaluation value.

6. A non-transitory computer-readable information storage medium having stored thereon a program for controlling an optical disc device,

the optical disc device comprising:

an objective lens for focusing light onto an optical disc medium having information recorded thereon;

a plurality of light-receiving elements arranged side by side, each for receiving reflected light from the optical disc medium and outputting an output signal corresponding to a light amount of the reflected light;

a plurality of amplifiers each for amplifying the output signal output from a corresponding one of the plurality of light-receiving elements; and

a signal output circuit for outputting, based on amplified signals respectively output from the plurality of amplifiers, a focus error signal indicating a deviation of a focal position of the objective lens with respect to a signal surface of the optical disc medium,

the program including instructions that cause a computer to:

control, based on the focus error signal, a position of the objective lens so as to keep constant a distance between the objective lens and the signal surface;

move the objective lens to a first temporary in-focus position, and then moving said objective lens to a second in-focus position at which accuracy of reading the information from the optical disc medium becomes higher than at the first temporary in-focus position; and

adjust a gain of each of the plurality of amplifiers after said objective lens has been moved to said second in-focus position, so that levels of the amplified signals respectively output from the plurality of amplifiers become close to each other,

wherein the first temporary in-focus position is a position of the objective lens where the focus error signal is adjusted,

wherein the second in-focus position is a position of the objective lens where the objective lens is moved to the second in-focus position based on a focus bias value and the plurality of amplifiers are adjusted after adjusting for the focus error signal, and

wherein the focus bias value is adjusted based on reading an evaluation value.

7. The optical disc device of claim 1 , wherein the position adjusting unit moves the objective lens in an axial direction closer to, or further away from said signal surface.

8. The optical disc device of claim 7 , wherein said position adjusting unit moves the objective lens to an in-focus position with respect to a distance from said signal surface.

9. The optical disc device of claim 1 , wherein the focus bias is set to zero after the gain adjusting unit has adjusted the gain of each of the plurality of amplifiers.

10. The method of claim 5 , further comprising setting the focus bias to zero after adjusting the gain of each of the plurality of amplifiers.

11. The non-transitory computer-readable information storage medium of claim 6 , wherein the program includes instructions that further cause the computer to set the focus bias to zero after adjusting the gain of each of the plurality of amplifiers.

12. The optical disc device of claim 1 , wherein the amplifier gains are adjusted only after the second in-focus position.

Assignments (4)
CHANGE OF NAME Recorded Sep 6, 2017
From: SONY COMPUTER ENTERTAINMENT INC.
To: SONY INTERACTIVE ENTERTAINMENT INC.
Reel/Frame 043761/0577 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 6, 2017
From: SONY CORPORATION
To: SONY INTERACTIVE ENTERTAINMENT INC.
Reel/Frame 043761/0975 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2014
From: SONY COMPUTER ENTERTAINMENT INC.
To: SONY CORPORATION
Reel/Frame 031951/0710 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 30, 2012
From: KITAICHI, YASUNORI; NAKAO, SHINICHI
To: SONY COMPUTER ENTERTAINMENT INC.
Reel/Frame 028285/0276 →