IP Library Granted Patent US 7,567,499
Granted Patent B2
US 7,567,499 · App. 11/512,507 · Granted Jul 28, 2009

Optical disc and method of producing the same

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Quick Facts
Patent No.
US 7,567,499
App. No.
11/512,507
Granted
Jul 28, 2009
Kind
B2
Abstract

An optical disc includes a first substrate having a first surface having a first recording layer formed thereon, a first reflective film formed on the first recording layer, a second substrate having a second surface and a third surface on both sides with a second recording layer and a third recording layer formed thereon, respectively, a second semi-transparent reflective film formed on the second recording layer, a third semi-transparent reflective film formed on the third recording layer, an adhesive layer provided between the first and second reflective films, and a transparent cover layer having a fourth surface and a fifth surface on both sides, formed on the third semi-transparent reflective film at the fourth surface. The first recording layer is capable of storing first data in compliance with first specifications. The second recording layer is capable of storing second data in compliance with the first specifications. The third recording layer is capable of storing third data in compliance with second specifications different from the first specifications. The second semi-transparent reflective film has a thickness in the range from 5 nm to 15 nm. The transparent cover layer has a thickness of 100 μm±3 μm. The cover layer allows a laser beam to pass therethrough via the fifth surface in reproduction of the first, the second or the third data from the first, the second, or the third recording layer, respectively.

Claims (20)

1. An optical disc comprising:

a first substrate having a first surface, the first surface having a first recording layer formed thereon, the first recording layer being capable of storing first data in compliance with first specifications;

a first reflective film formed on the first recording layer;

a second substrate having a second surface and a third surface on both sides, the second surface having a second recording layer formed thereon, the second recording layer being capable of storing second data in compliance with the first specifications, the third surface having a third recording layer formed thereon, the third recording layer being capable of storing third data in compliance with second specifications different from the first specifications;

a second semi-transparent reflective film formed on the second recording layer, the second semi-transparent reflective film having a thickness in the range from 5 nm to 15 nm;

a third semi-transparent reflective film formed on the third recording layer;

an adhesive layer provided between the first and second reflective films; and

a transparent cover layer, having a thickness of 100 μm±3 μm, with a fourth surface and a fifth surface on both sides, the transparent layer being formed on the third semi-transparent reflective film at the fourth surface, the fifth surface allowing a laser beam to pass therethrough in reproduction of the first, the second or the third data from the first, the second, or the third recording layer, respectively.

2. The optical disc according to claim 1 , wherein the third semi-transparent reflective film has a thickness in the range from 13 nm to 21 nm and is made from a material including SiC as a primary component and at least one element among nitrogen, oxygen and hydrogen as a secondary component, the secondary component being involved in the material in the range from 1 atomic % to 10 atomic % in content.

3. The optical disc according to claim 1 , wherein the third semi-transparent reflective film exhibits a lower reflectivity than the transparent cover layer to a laser beam having a wavelength in the first specifications.

4. A method of producing an optical disc comprising the steps of:

forming a first recording layer on a first surface of a first substrate, the first recording layer being capable of storing first data in compliance with first specifications;

forming a first reflective film formed on the first recording layer;

forming a second recording layer and a third recording layer on a second surface and a third surface, respectively, of a second substrate on both sides, the second recording layer being capable of storing second data in compliance with the first specifications, the third recording layer being capable of storing third data in compliance with second specifications different from the first specifications;

forming a second semi-transparent reflective film on the second recording layer, the second semi-transparent reflective film having a thickness in the range from 5 nm to 15 nm;

forming a third semi-transparent reflective film on the third recording layer;

bonding the first and second reflective films via an adhesive layer provided therebetween; and

forming a transparent cover laye, having a thickness of 100 μm±3 μm on the third semi-transparent reflective film.

5. The method according to claim 4 , wherein the third semi-transparent reflective film is formed so as to have a thickness in the range from 13 nm to 21 nm and made from a material including SiC as a primary component and at least one element among nitrogen, oxygen and hydrogen as a secondary component, the secondary component being involved in the material in the range from 1 atomic % to 10 atomic % in content.

6. The method according to claim 4 , wherein the third semi-transparent reflective film is formed so as to exhibit a lower reflectivity than the transparent cover layer to a laser beam having a wavelength in the first specifications.

Assignments (2)
MERGER Recorded Apr 6, 2012
From: VICTOR COMPANY OF JAPAN, LTD.
To: JVC KENWOOD CORPORATION
Reel/Frame 028000/0170 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2006
From: NAKAMURA, ITSURO; ONIZAWA, TAKAYUKI; NAKAGAWA, NAOYUKI; OISHI, KENJI; OHGO, TAKASHI
To: VICTOR COMPANY OF JAPAN, LTD.
Reel/Frame 018438/0935 →