EP0396285A2

Recording/reproducing compressed data on a rotatable record medium.

Abstract

Image data is recorded in successive turns on a rotatable record medium driven at substantially constant linear velocity by converting a first of successive image frames of image data to an intraframe code signal, converting the (n-1) next-following frames to (n-1) interframe code signals, and recording the intraframe and (n-1) interframe code signals on the record medium. In one embodiment, n is the maximum number of image frames that can be recorded in the innermost turn of the record medium and n is constant for all turns, whereby the same number (n-1) of interframe code signals separate successive intraframe code signals from turn to turn. In another embodiment, n is a variable and increases as the radius of the turn in which the code signals are recorded increases, whereby a larger number (n-1) of interframe code signals separate successive intraframe code signals as the turn radius increases. The recorded image data is recovered by reproducing the recorded intraframe and interframe code signals and selectively coupling the reproduced code signals to an intraframe decoder or to an interframe decoder as a function or whether intraframe or interframe code signals are reproduced.

EP0396285A2, drawing sheet 1
Sheet 1 of 6

Term

Term ended

Projected expiry passed 20 April 2010, 16.4 years ago.

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30 claims: 5 independent, 25 dependent

  1. 1
    A method of recording image data in successive tracks on a rotatable medium (10, 30) driven such that the relative velocity between a record head and that portion of the medium being recorded on is substantially constant, the method comprising:receiving (32) successive image frames (F1, F2, ...) of said image data;converting (34, 36, 37a, 38, 44, 46, 48, 50) a first image frame of image data to an intraframe code signal (F1, Fig. 1;F1, F8, ...F73, F85, Fig. 4);and converting (34, 36, 37b, 45, 38, 44, 46, 48, 50) (n-1) succeeding image frames (F2-F7) of image data to (n-1) interframe code signals (F2-F6, Fig. 1;F2-F7, F9-F14, ...F74-F84, F86-F96, Fig. 4), characterized in that n is the maximum number of image frames (F1-F6, Fig. 1;F1-F7, Fig. 4) recordable in an innermost track (T1) of said medium when driven at said substantially constant velocity relative to said record head;and recording (52, 54) the intraframe code signal (F1, Fig. 1;...F73, Fig. 4) and (n-1) succeeding interframe code signals (F2-F6, Fig. 1;...F74-F84, Fig. 4) on the medium.
  2. 4
    A method according to any one of the preceding claims, wherein each track is comprised of a number of data frames (Figs. 2 and 5), and characterized in that an intraframe code signal is recorded in plural data frames and (n-1) interframe code signals are recorded in less than (n-1) data frames.
  3. 5
    A method according to any one of the preceding claims, characterized in that intraframe code signals are recorded at locations proximate each other in successive tracks.
  4. 9
    A method according to any one of the preceding claims characterized in that an image frame of image data is converted to an interframe code signal by comparing (60, 62, 35) one frame of image data to a preceding frame of image data and encoding (38, 44, 46, 48) the differences therebetween such that said interframe code signal represents said differences.
  5. 10
    A method of reproducing image data from successive turns (T1, T2, ...T121, T122...) and a rotatable record medium (10, 30) driven such that the relative velocity between a read head and that portion of the medium being read is substantially constant, wherein said image data is recorded as an intraframe code signal (F1, Fig. 1; F1, F8, ...F73, F85 ...Fig. 4) representing an image frame followed by a number of successive interframe code signals representing an equal number of successive image frames, said method comprising:reproducing (12, 14, 16, 18, 20;72, 74, 76, 78, 80, 82) the intraframe and interframe code signals in each turn;coupling (22;86, 90) the reproduced code signals to an intraframe decoder (24;84, 90, 92) to recover image data therefrom;and coupling (22;86, 90) the reproduced code signals to an interframe decoder (26;88, 90, 84) to recover image data therefrom;characterized in that the number of interframe code signals between successive intraframe code signals is at least as large as the number of interframe code signals that can be recorded in the innermost turn of the record medium, and the reproduced code signals are changed over between the intraframe decoder and the interframe decoder as a function of whether intraframe or interframe code signals are reproduced.
  6. 16
    A method according to any one of claims 10 to 15, wherein the intraframe code signal and/or the interframe code signal includes identifying data;and the reproduced code signals are coupled to said intraframe decoder or to said interframe decoder in response to detected (78) identifying data.
  7. 30
    An apparatus according to any one of claims 24 to 29 characterized in that intraframe code signals are recorded at locations proximate each other in successive turns.