WO2000042605A1 - Noncircular-shaped compact disc having positioning markers and sliding-resistance - Google Patents

Noncircular-shaped compact disc having positioning markers and sliding-resistance Download PDF

Info

Publication number
WO2000042605A1
WO2000042605A1 PCT/KR1999/000607 KR9900607W WO0042605A1 WO 2000042605 A1 WO2000042605 A1 WO 2000042605A1 KR 9900607 W KR9900607 W KR 9900607W WO 0042605 A1 WO0042605 A1 WO 0042605A1
Authority
WO
WIPO (PCT)
Prior art keywords
disc
sliding
resistance
positioning
noncircular
Prior art date
Application number
PCT/KR1999/000607
Other languages
French (fr)
Inventor
Won Rae Lee
Original Assignee
Won Rae Lee
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from KR1019990000471A external-priority patent/KR19990037747A/en
Application filed by Won Rae Lee filed Critical Won Rae Lee
Priority to EP99973612A priority Critical patent/EP1092219A1/en
Priority to JP2000594112A priority patent/JP2002535796A/en
Priority to AU60094/99A priority patent/AU6009499A/en
Publication of WO2000042605A1 publication Critical patent/WO2000042605A1/en

Links

Classifications

    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B23/00Record carriers not specific to the method of recording or reproducing; Accessories, e.g. containers, specially adapted for co-operation with the recording or reproducing apparatus ; Intermediate mediums; Apparatus or processes specially adapted for their manufacture
    • G11B23/0014Record carriers not specific to the method of recording or reproducing; Accessories, e.g. containers, specially adapted for co-operation with the recording or reproducing apparatus ; Intermediate mediums; Apparatus or processes specially adapted for their manufacture record carriers not specifically of filamentary or web form
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B7/00Recording or reproducing by optical means, e.g. recording using a thermal beam of optical radiation by modifying optical properties or the physical structure, reproducing using an optical beam at lower power by sensing optical properties; Record carriers therefor
    • G11B7/24Record carriers characterised by shape, structure or physical properties, or by the selection of the material
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B17/00Guiding record carriers not specifically of filamentary or web form, or of supports therefor
    • G11B17/02Details
    • G11B17/04Feeding or guiding single record carrier to or from transducer unit
    • G11B17/05Feeding or guiding single record carrier to or from transducer unit specially adapted for discs not contained within cartridges
    • G11B17/053Indirect insertion, i.e. with external loading means
    • G11B17/056Indirect insertion, i.e. with external loading means with sliding loading means
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B7/00Recording or reproducing by optical means, e.g. recording using a thermal beam of optical radiation by modifying optical properties or the physical structure, reproducing using an optical beam at lower power by sensing optical properties; Record carriers therefor
    • G11B7/002Recording, reproducing or erasing systems characterised by the shape or form of the carrier
    • G11B7/0033Recording, reproducing or erasing systems characterised by the shape or form of the carrier with cards or other card-like flat carriers, e.g. flat sheets of optical film

Definitions

  • the present invention relates, in general, to
  • compact discs and, more particularly, to a
  • the conventional compact disc is played in a compact
  • the loading methods are typically classified into two types; a manual loading method
  • compact disc is a rectangular-shaped CD-ROM that has a
  • the compact disc is symmetric and is properly placed
  • this conveying deck 10 has two positioning recesses
  • invention is to provide a noncircular-shaped compact
  • present invention provides a noncircular-shaped
  • compact disc having positioning markers and sliding- resistance comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance, comprised of: two or more positioning markers and sliding- resistance
  • the sliding-resistance means may be comprised of
  • the sliding-resistance means may be comprised of
  • the sliding-resistance means may have a
  • the sliding-resistance means may have a circular shape.
  • the markers may be printed shapes on the upper
  • the markers may be carved notches on the upper
  • the noncircular-shaped compact disc may have a
  • the noncircular-shaped compact disc may be any shape
  • CD-ROM capable of storing read-only data
  • CD-R capable of writing data one time
  • CD-RW CD-RW
  • Fig. 1 is a perspective view showing that a
  • noncircular compact disc having positioning markers and sliding-resistance according to an embodiment of
  • this invention is positioned on the disc conveying
  • Fig. 2 is a perspective view showing the
  • Fig. 3 is a plan view showing the process wherein
  • the compact disc having positioning markers and
  • Fig. 4a shows the bottom surface of the
  • Fig. 4b is the bottom surface of the noncircular
  • compact disc having positioning markers and sliding-
  • Fig. 5 is a perspective view showing a conventional disc conveying deck.
  • compact disc having positioning markers and sliding-
  • this invention should have a symmetric shape.
  • a credit card is 54 mm in height and 85 mm in
  • Fig. 1 illustrates a noncircular compact disc 1
  • FIG. 3 illustrates the process wherein
  • the compact disc 1 having positioning markers and
  • dotted line shown in Fig. 3 and designated by reference numeral 13 is the exterior contour 13 of a
  • reference numeral 14 is the exterior contour 14 of a
  • the noncircular compact disc 1 having positioning
  • markers and sliding-resistance is positioned on the
  • the disc 1 may be positioned on the
  • first positioning depression 11 having 120 mm in
  • the four positioning marks are
  • contour 14 of the positioning depression 12 meets the
  • the four marks may be
  • the disc 1 are on the exterior contour 14 of the
  • center of the disc 1 may deviate from the center of the positioning depressions of the deck 10, since the
  • a sliding-resistance means is provided on the
  • resistance means 5 can be formed within the area free
  • resistance means 5 is in the form of two spaced
  • the sliding-resistance means 5 is made of a
  • plurality of prominences and depressions may be
  • the noncircular-shaped compact disc 1 having
  • present invention prevents unexpected movement of the
  • the deck may be loaded

Landscapes

  • Feeding And Guiding Record Carriers (AREA)
  • Optical Record Carriers And Manufacture Thereof (AREA)

Abstract

A noncircular-shaped compact disc mountable in any computer compact disc drive is disclosed. The disc has two or more positioning marks and sliding-resistance means. The marks are formed on the positions, at which the exterior contour of the inside positioning depression of a disc conveying deck meets the long sides of the disc while the center of the disc is positioned at the center of the positioning depression. The sliding-resistance means is provided within the data-free area of the bottom surface of the disc, and is made of a sliding-resistance material having a large coefficient of friction. The means is adapted for preventing the disc from unexpectedly moving on the deck. The sliding-resistance means may have a longitudinal rectangular shape. The sliding-resistance means may have a circular shape. The noncircular-shaped compact disc having positioning markers and sliding-resistance may have a rectangular credit card shape. The noncircular-shaped compact disc having positioning markers and sliding-resistance may be any one of a CD-ROM capable of storing read-only data, a CD-R capable of recording data only once, and a CD-RW capable of reading, writing and erasing data many times.

Description

NONCIRCULAR-SHAPED COMPACT DISC
HAVING POSITIONING MARKERS AND SLIDING-RESISTANCE
Field of the Invention
The present invention relates, in general, to
compact discs and, more particularly, to a
noncircular-shaped compact disc mountable on a compact
disc drive in computers, allowing precise and easy
positioning of the disc on a disc conveying deck and
preventing unexpected movement of the disc on the deck
due to retraction of the deck into a compact disc
drive and any reasonable degree of external impact.
Description of the Prior Art
As well known to those skilled in the art, a
conventional compact disc used in computers is
circular and has a diameter of either 80mm or 120mm.
The conventional compact disc is played in a compact
disc drive after the disc drive has been loaded with
the compact disc. The loading methods are typically classified into two types; a manual loading method
wherein the compact disc is inserted onto the center
of the disc drive while the cover of the disc drive is
opened by hand, and an automatic loading method
wherein the disc drive is automatically loaded by
retracting the conveying deck into the disc drive
while the compact disc has been deposited on the
protruded conveyor deck.
Recently, a noncircular-shaped compact disc is
developed. An example of the noncircular-shaped
compact disc is a rectangular-shaped CD-ROM that has a
shape similar to the shape of a credit card.
However, such a newly developed noncircular-
shaped compact disc is problematic when loaded into
the disc drive mainly due to the lack of a size-
appropriate recess in the conveyor deck.
When automatically or manually loading the disc
drive with the noncircular-shaped compact disc when
the compact disc is symmetric and is properly placed
in the disc drive, vibration of the compact disc is minimized in operational rotation due to the symmetric
shape.
On the other hand, as shown in Fig. 5, a
conventional conveying deck 10, conveying a circular-
shaped compact disc into the disc drive, is provided
with two-stepped tracks 11 and 12, the tracks 11 and
12 having two outside diameters respectively identical
to the diameters of the two standard circular compact
discs (80 mm and 120 mm) . The two tracks 11 and 12 of
the conveying deck 10 function to accord the center of
the placed compact disc with the center of rotation
and prevent unexpected movement of the disc on the
disc conveying deck despite retraction of the deck and
any reasonable degree of external impact. That is,
this conveying deck 10 has two positioning recesses,
the positioning recesses having the exterior
diameters, of 80mm and 120mm, pursuant to the exterior
diameters of standard circular compact discs.
Since the noncircular compact disc, which is not
circular and does not have the same exterior diameter as a positioning recess, does not fit tightly within
the positioning recesses of the conveying deck 10, the
noncircular compact disc often moves unexpectedly on
the deck 10 during retraction of the deck 10.
Consequently, it is difficult to load the disc drive
with the noncircular compact disc using the deck.
Disclosure of the Invention
Accordingly, the present invention has been made
keeping in mind the aforementioned problems occurring
in the prior art, and an objective of the present
invention is to provide a noncircular-shaped compact
disc having positioning markers and sliding-resistance
on a disc conveying deck and preventing unexpected
movement of the disc onto the deck despite retraction
of the deck into a compact disc drive and any
reasonable degree of external impact.
In order to accomplish the above objective, the
present invention provides a noncircular-shaped
compact disc having positioning markers and sliding- resistance, comprised of: two or more positioning
marks formed on the upper side of the compact disc, at
which the exterior contour of the inside positioning
depression of a disc conveying deck meets the long
sides of the disc while the center of the disc is
positioned at the center of the positioning
depression; and sliding-resistance means provided
within the data-free area of the bottom surface of the
disc, and made of a sliding-resistant material having
a large coefficient of friction, the means being
adapted to prevent the disc from unexpectedly moving
on the deck.
The sliding-resistance means may be comprised of
a thin film made of rubber, urethane or silicon.
The sliding-resistance means may be comprised of
a plurality of prominences and depressions integrally
formed on the disc.
The sliding-resistance means may have a
longitudinal rectangular shape.
The sliding-resistance means may have a circular shape.
The markers may be printed shapes on the upper
side of the disc.
The markers may be carved notches on the upper
side of the disc.
The noncircular-shaped compact disc may have a
rectangular credit card shape.
The noncircular-shaped compact disc may be any
one of a CD-ROM capable of storing read-only data, a
CD-R capable of writing data one time, and a CD-RW
capable of reading and writing data many times.
Brief Description of the Drawings
The above and other objectives, features and
other advantages of the present invention will be more
clearly understood from the following detailed
description taken in conjunction with the accompanying
drawings, in which:
Fig. 1 is a perspective view showing that a
noncircular compact disc having positioning markers and sliding-resistance according to an embodiment of
this invention is positioned on the disc conveying
deck;
Fig. 2 is a perspective view showing the
noncircular compact disc having positioning markers
and sliding-resistance and printed markers according
to an embodiment of this invention;
Fig. 3 is a plan view showing the process wherein
the compact disc having positioning markers and
sliding-resistance is positioned on the conveyor deck;
Fig. 4a shows the bottom surface of the
noncircular compact disc having positioning markers
and sliding-resistance and its longitudinal
rectangular-shaped sliding resistance means according
to an embodiment of the invention;
Fig. 4b is the bottom surface of the noncircular
compact disc having positioning markers and sliding-
resistance with its circular sliding resistance means
according to another embodiment of the invention; and
Fig. 5 is a perspective view showing a conventional disc conveying deck.
Best Mode for Carrying Out the Invention
In order to minimize vibration, a noncircular
compact disc having positioning markers and sliding-
resistance according to the preferred embodiment of
this invention should have a symmetric shape.
A credit card is 54 mm in height and 85 mm in
width, this size being prescribed by an international
standard of ISO 7816-1 and 10536. Since devices using
credit cards are well known and used worldwide, the
credit card-sized compact disc can be employed as a
typical noncircular-shaped compact disc having
positioning markers and sliding-resistance, and both
credit cards and such discs may enjoy a variety of
interchangeable uses.
In the credit card-sized compact disc, the
capacity of writing data depends upon the disc's
height. The width of the disc, which is not directly
related to the capacity, is 85 mm according to the above-noted international standard, while the height
of the disc is 56 mm because correction allowance must
be provided to prevent manufacturing error. The
capacity of the disc 85 mm in width and 56 mm in
height is approximately 16 MB.
However, when the height of the disc is
increased, the capacity becomes greater. For instance,
when the height of the disc is 58 mm, the capacity
increases to approximately 30 MB.
Fig. 1 illustrates a noncircular compact disc 1
having positioning markers and sliding-resistance
according to an embodiment of this invention,
positioned on the conventional disc conveying deck 10
of Fig. 5. In Fig. 2, the credit card-sized
noncircular compact disc 1 having positioning markers
and sliding-resistance according to the embodiment is
illustrated. Fig. 3 illustrates the process wherein
the compact disc 1 having positioning markers and
sliding-resistance is positioned on the deck 10. The
dotted line shown in Fig. 3 and designated by reference numeral 13, is the exterior contour 13 of a
first or outside positioning depression 11, while the
dotted line shown in Fig. 3 and designated by
reference numeral 14, is the exterior contour 14 of a
second or inside positioning depression 12.
When the disc is 85 mm in width and 56 mm in
height, its maximum radius is 49.5mm. Therefore, when
the noncircular compact disc 1 having positioning
markers and sliding-resistance is positioned on the
conveying deck 10, the disc 1 may be positioned on the
first positioning depression 11 having 120 mm in
diameter, while the disc 1 is positioned on top of the
second positioning depression 12 having 80 mm in
diameter.
According to the embodiment of this invention,
four positioning marks are indicated on the upper
surface of the disc 1 so as to position the center of
the disc 1 at the center of the positioning
depressions of the deck 10 when the disc 1 is placed
on the deck 10. In more detail, the four positioning marks are
marked on the four positions at which the exterior
contour 14 of the positioning depression 12 meets the
long sides of the disc 1 while the center of the disc
1 is positioned at the center of the positioning
depression of the deck 10. Although the positioning
marks are shown as small triangles, the shape of the
four marks is not limited to the triangle. The four
marks may be changed according to the technique of
printing or other application. The four marks may be
carved notches. Additionally, the number of marks is
not fixed at four, but may be no less than two.
When a user positions the disc 1 on the deck 10
in such a manner that the ends of the four marks of
the disc 1 are on the exterior contour 14 of the
second depression, the center of the disc 1 is
automatically set at the center of the positioning
depressions of the deck 10.
When the disc 1 is positioned on the deck 10, the
center of the disc 1 may deviate from the center of the positioning depressions of the deck 10, since the
conventional disc conveying deck 10 is designed to
allow for deviation to some degree, it does not matter
that the center of the disc 1 deviates from the center
of the positioning depressions of the deck 10 within
an allowed degree during the positioning of the disc
1.
In Fig. 4a, the noncircular compact disc with
positioning markers and sliding-resistance, provided
with a longitudinal rectangular-shaped sliding-
resistance means, according to an embodiment of the
invention, is illustrated. In Fig. 4b, the noncircular
compact disc with positioning markers and sliding-
resistance, provided with a circular sliding-
resistance means, according to another embodiment of
the invention, is illustrated.
A sliding-resistance means is provided on the
bottom surface of the disc 1, the sliding-resistance
means being made of a sliding-resistant material, thus
having a large coefficient of friction and preventing the disc from sliding.
As shown in Figs. 4a and 4b, the sliding-
resistance means 5 can be formed within the area free
from data 15. The data-free area effective for placing
sliding-resistance material is the area outside the
exterior contours 14 of the second positioning
depressions 12. In Figs. 4a and 4b, the areas 15, on
which slant lines are drawn, are the areas inside the
exterior contours 14 of the second positioning
depressions 12 or the areas on which data are allowed
to be recorded.
In the embodiment shown in Fig. 4a, the sliding-
resistance means 5 is in the form of two spaced
longitudinal rectangles individually formed along the
short ends of the disc 1, while in the embodiment
shown in Fig. 4b, the sliding-resistance means 5 is in
the form of four circles individually formed at a
corner portion.
The sliding-resistance means 5 is made of a
sliding-resistant material, with the sliding-resistant material having the coefficient of friction sufficient
to prevent the disc from sliding on the deck 10.
Examples of the sliding-resistant materials are
materials which solidify in the form of thin films
after being coated in a liquid phase and have large
coefficients of friction. Such materials are rubber,
urethane, silicon, etc. When such materials are
employed as the sliding-resistant materials, the
sliding-resistance means is allowed to be formed in an
arbitrary shape because the materials may be coated in
liquid phase, and the disc is allowed to be easily
dealt with because the materials solidify in the form
of thin films.
On the other hand, rubber film, urethane film,
silicon film, sand paper, etc. already solidified may
be employed as sliding-resistant materials.
Further, as the sliding-resistance means, a
plurality of prominences and depressions may be
integrally formed on the bottom surface of the disc 1
using a metal mould. When the compact disc 1 having positioning
markers and sliding-resistance, provided with such a
sliding-resistance means, is positioned on the first
positioning depression 11 of the conveying deck 10,
the position of the disc 1 is not changed despite
retraction of the deck into a compact disc drive and
any reasonable degree of external impact. No
occurrence of change is due to the friction between
the sliding-resistance means 5 and the deck 10.
As described above, a noncircular-shaped compact
disc having positioning markers and sliding-resistance
of the present invention allows precise and easy
positioning of the disc on the disc conveying deck
because positioning marks are indicated on the upper
surface of the disc.
The noncircular-shaped compact disc 1 having
positioning markers and sliding-resistance of the
present invention prevents unexpected movement of the
disc on the deck despite retraction of the deck into a
compact disc drive and any reasonable degree of external impact because the sliding-resistance means
is provided on the bottom surface of the disc.
By these means, the noncircular-shaped compact
disc can be mounted in any computer disc drive.
Industrial Applicability
According to noncircular-shaped compact disc
having positioning markers and sliding-resistance of
this invention, in case that the structure of a disc
conveying deck is not changed or an auxiliary device
is not provided to the deck, the deck may be loaded
with noncircular-shaped compact disc having
positioning markers and sliding-resistance by means of
an automatic loading method or a manual loading
method.
Although the preferred embodiments of the present
invention have been disclosed for illustrative
purposes, those skilled in the art will appreciate
that various modifications, additions and
substitutions are possible, without departing from the scope and spirit of the invention as disclosed in the
accompanying claims.

Claims

CLATMS
1. A noncircular-shaped compact disc having
positioning markers and sliding-resistance, comprised
of:
two or more positioning marks formed on
positions, at which an exterior contour of an inside
positioning depression of a disc conveying deck meets
the long sides of the disc while the center of the
disc is positioned at the center of said positioning
depression; and
sliding-resistance means provided within a data-
free area of a bottom surface of the disc, and made of
a sliding-resistance material having a large
coefficient of friction, said means being adapted for
preventing the disc from unexpectedly moving on the
deck.
2. The disc according to Claim 1, wherein said
sliding-resistance means is comprised of a thin film made of rubber, urethane or silicon.
3. The disc according to Claim 1, wherein said
sliding-resistance means are comprised of a plurality
of prominences and depressions integrally formed on
the disc.
4. The disc according to any one of Claims 1 to
3, wherein said sliding-resistance means has a
longitudinal rectangular shape.
5. The disc according to any one of Claims 1 to
3, wherein said sliding-resistance means has a
circular shape.
6. The disc according to any one of Claims 1 to
3, wherein said noncircular-shaped compact disc having
positioning markers and sliding-resistance has a
rectangular credit card shape.
7. The disc according to any one of Claims 1 to
3, wherein said noncircular-shaped compact disc having
positioning markers and sliding-resistance is any one
of a CD-ROM capable of storing read-only data, a CD-R
capable of writing data once, and a CD-RW capable of
reading, writing and erasing data many times.
PCT/KR1999/000607 1999-01-11 1999-10-08 Noncircular-shaped compact disc having positioning markers and sliding-resistance WO2000042605A1 (en)

Priority Applications (3)

Application Number Priority Date Filing Date Title
EP99973612A EP1092219A1 (en) 1999-01-11 1999-10-08 Noncircular-shaped compact disc having positioning markers and sliding-resistance
JP2000594112A JP2002535796A (en) 1999-01-11 1999-10-08 Non-circular compact disc with position marker and anti-slip function
AU60094/99A AU6009499A (en) 1999-01-11 1999-10-08 Noncircular-shaped compact disc having positioning markers and sliding-resistance

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
KR1019990000471A KR19990037747A (en) 1999-01-11 1999-01-11 NON-STANDARD SHAPE AND SIZE CD DlSC MOUNTING
KR1999/471 1999-01-11
KR1999/37182 1999-09-02
KR1019990037182A KR100315905B1 (en) 1999-01-11 1999-09-02 Non-circulary Shaped Compact Disc Having A Stable Mounting Structure

Publications (1)

Publication Number Publication Date
WO2000042605A1 true WO2000042605A1 (en) 2000-07-20

Family

ID=26634558

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/KR1999/000607 WO2000042605A1 (en) 1999-01-11 1999-10-08 Noncircular-shaped compact disc having positioning markers and sliding-resistance

Country Status (4)

Country Link
EP (1) EP1092219A1 (en)
JP (1) JP2002535796A (en)
AU (1) AU6009499A (en)
WO (1) WO2000042605A1 (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2001011625A1 (en) * 1999-08-04 2001-02-15 Atop Innovation S.P.A. Improved mass memory
WO2002041304A1 (en) * 2000-11-15 2002-05-23 Iq-Data Gmbh Disc-shaped optical data support
US6931382B2 (en) 2001-01-24 2005-08-16 Cdck Corporation Payment instrument authorization technique
US7673310B2 (en) 2005-03-03 2010-03-02 Enxnet, Inc. Optical disc having a reduced planar thickness
US7716695B2 (en) 2005-10-07 2010-05-11 Enxnet, Inc. Thin optical disc having remote reading capability
US7774806B2 (en) 2005-10-07 2010-08-10 Enxnet, Inc. Thin optical disc having remote reading capability

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0479340A2 (en) * 1987-10-01 1992-04-08 Polaroid Corporation Optical record cards
JPH07169178A (en) * 1993-12-13 1995-07-04 Canon Inc Card type optical recording medium

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0479340A2 (en) * 1987-10-01 1992-04-08 Polaroid Corporation Optical record cards
EP0479339A2 (en) * 1987-10-01 1992-04-08 Polaroid Corporation Optical record cards
JPH07169178A (en) * 1993-12-13 1995-07-04 Canon Inc Card type optical recording medium

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
PATENT ABSTRACTS OF JAPAN *

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2001011625A1 (en) * 1999-08-04 2001-02-15 Atop Innovation S.P.A. Improved mass memory
WO2002041304A1 (en) * 2000-11-15 2002-05-23 Iq-Data Gmbh Disc-shaped optical data support
US6931382B2 (en) 2001-01-24 2005-08-16 Cdck Corporation Payment instrument authorization technique
US7673310B2 (en) 2005-03-03 2010-03-02 Enxnet, Inc. Optical disc having a reduced planar thickness
US7716695B2 (en) 2005-10-07 2010-05-11 Enxnet, Inc. Thin optical disc having remote reading capability
US7774806B2 (en) 2005-10-07 2010-08-10 Enxnet, Inc. Thin optical disc having remote reading capability

Also Published As

Publication number Publication date
EP1092219A1 (en) 2001-04-18
AU6009499A (en) 2000-08-01
JP2002535796A (en) 2002-10-22

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