Nova Patents
EP0479340A2

Optical record cards.

Abstract

An optical information storage card having a rectangular format, said card comprising:    a substrate having, on at least one side thereof, surface relief formations forming an optically machine readable information surface; and,    a protection layer being in overlying juxtaposed relationship to said information surface;    said substrate and said protection layer being transmissive to a selected range of electromagnetic radiation usable for optically reading said information surface;    said information surface having a generally spiral and/or concentric format whereby said information surface can be read as said card is rotated about at least one axis.

EP0479340A2, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 1 September 2008, 18.1 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

26 claims: 4 independent, 22 dependent

  1. 1
    An optical storage card (10, 70) capable of being carried in a wallet, said card comprising:a first substrate (74) having on at least one surface thereof surface relief formations some of which form an optical machine readable information surface (76);a reflection layer (78) disposed in superposed relationship to said information surface (76) to reflect at least some of a select range of reading electromagnetic spectral wavelengths used for reading said information surface (76);a second substrate (72) disposed in at least adjacent relationship to said reflection layer (78);said second substrate (72) being made of material which allows machine readable information to be optically written thereon, as well as optically erased therefrom;said second substrate (72) being transmissive to said select reading range;and,    a protection layer (80) disposed in overlying relationship to said second substrate (72).
  2. 7
    An optical information storage card (10, 70') capable of being carried in a wallet, said card comprising:a first substrate (74') having on at least one surface thereof surface formations some of which form an optical machine readable information surface (76'), said first substrate (74') being transmissive to a select range of reading electromagnetic spectral wavelengths used for reading said information surface (76');a second substrate (72') disposed in at least adjacent relationship to said information surface (76');said second substrate (72') being made of material which allows machine readable information to be optically written thereon, as well as optically erased therefrom, said second substrate (72') being transmissive to said select reading range of spectral wavelengths;and,    a protection layer (80') disposed in overlying relationship to said second substrate (72'), said protection layer (80') being transmissive to said select range of spectral wavelengths.
  3. 13
    An optical information storage card (10, 82) having a rectangular format, said card comprising:a first substrate (90) having on at least one surface thereof surface relief formations some of which form a machine readable information surface (88),    a reflection layer (86) covering said information surface (88) and allowing said information surface (88) to be optically read in a reflection mode to a preselected range of electromagnetic spectral wavelengths;a second substrate (84) which is optically writable and disposed in adjacent relationship to said reflection layer (86);said second substrate (84) being responsive to incident radiant energy within a select range of spectral wavelengths for effecting a visually discernible change in the spectral absorption characteristics thereof;a protection layer (92) disposed in overlying relationship to at least said second substrate (84);at least said second substrate (84) being transmissive to at least said select range of spectral wavelengths, whereby said reflection layer (86) overlying said information surface (88) can be read in a reflection mode.
  4. 20
    An optical information storage card (10, 82') having a rectangular format, said card comprising:a first substrate (90') having on at least one surface thereof surface relief formations some of which form a machine readable information surface (88');a second substrate (84') which is optically writable and disposed in adjacent relationship to said first substrate layer (90');said second substrate (84') being responsive to incident radiant energy within a select range of spectral wavelengths for effecting a visually discernible change in the spectral absorption characteristics thereof;and,    a protection layer (92') disposed in overlying relationship to said second substrate (84');said first and second substrates (90', 84') being transmissive to at least said select range of spectral wavelengths, whereby said information surface (88') can be read in a transmission mode.