EP0243729A2

Method and apparatus for eliminating apparent offset in the servo code in a magnetic disc drive.

Abstract

This method and apparatus for eliminating apparent offset in the servo code adjacent to a guard band on a magnetic memory disc utilizes at least two phases of servo code per magnetic cell for seeking and track centering, or track following, operations and two phases of guard band code per magnetic cell. The two phases of guard band code are each either in phase or similarly out of phase with the respective phases of the servo code in individual magnetic cells. Phase lacking on a selected phase of guard band code is achieved by providing a synchronizing code in the guard band using an irregular pattern of guard band code, providing a timing signal count representing a cell count, for example, decoding the synchronizing code to provide an end of code signal and utilizing the end of code signal and a predetermined cell count signal to achieve phase locking on the correct phase of the guard band code.

EP0243729A2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 3 April 2007, 19.5 years ago.

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17 claims: 5 independent, 12 dependent

  1. 1
    A servo disc for a disc memory drive, comprising:a. a memory disc having a uniformly magnetized disc surface of one magnetic polarity;b. a servo section of said disc surface having at least two phases of discrete magnetic zones in a repeating pattern in concentric servo tracks in said disc surface;c. a guard band section of said disc surface comprising two phases of discrete magnetic zones in a repeating pattern in said disc surface, in concentric guard tracks concentrically disposed with respect to said concentric servo tracks, respectively in a predetermined phase relationship with respective phases of said discrete magnetic zones of said servo code;d. each said two phases of discrete magnetic zones in said servo section and said two phases of discrete magnetic zones in said guard band section being of a magnetic polarity different from said one magnetic polarity and defining and lying within a magnetic cell extending radially of said memory disc.
  2. 13
    A disc memory drive, comprising:a. a memory disc having a magnetized disc surface of one magnetic polarity and radially extending . circumferentially adjacent magnetic cells;b. a guard band section having a predetermined pattern of single phases of discrete magnetic zones in differing phase positions in said magnetic cells in concentric guard tracks, defining a synchronizing code;c. a servo section having at least two phases of discrete magnetic zones in each of said magnetic cells in a repeating pattern in concentric servo tracks which are concentrically disposed with respect to said concentric guard tracks, respectively in a predetermined phase relationship with individual phases of said discrete magnetic zones of said synchronizing code;d. means for rotating said memory disc;e. a magnetic head for sensing said discrete magnetic zones;f. servo means responsive to the output of said magnetic head for moving said magnetic head radially over said surface of said memory disc and for maintaining said magnetic head centered over a selected guard band track;g. means for producing a cell count signal;h. means for producing an end of synchronizing code signal, and i. means responsive to said cell count signal and to said end of synchronizing code signal for phase locking said servo means to a predetermined phase in a predetermined magnetic cell on said memory disc.
  3. 15
    The method of eliminating apparent offset in the servo code in a magnetic disc drive, comprising:a. writing a guard band in adjacent concentric guard band tracks on a servo disc, using two phases of pulses;b. writing a servo section in adjacent concentric servo tracks on said servo disc using two phases of pulses which are in phase with said two pulses used in writing said guard band, and c. using said two phases of servo code to generate a position error signal.
  4. 16
    The method of eliminating apparent offset in the servo code in a magnetic disc drive, comprising:a. writing a guard band in adjacent concentric guard band tracks on a servo disc using two phases of pulses;b. writing a servo section in adjacent concentric servo tracks on said servo disc using two phases of pulses respectively in quadrature phase with said two pulses used in writing said guard band;and c. using said two phases of servo code to generate a position error signal.
  5. 17
    The method of phase locking on a selected phase of a multiphase guard band on a servo disc surface, comprising:a. providing a synchronizing code in said guard band having a pattern of single phase magnetic zones in different phase positions in separate adjacent magnetic cells on said servo disc surface;b. decoding said synchronizing code to produce an end of synchronizing code signal;c. producing cell count signals;and d. utilizing said end of synchronizing code signal and a predetermined one of said cell count signals to provide a phase lock signal.