EP1127352B1

Apparatus for developing a dynamic servo signal from data in a magnetic disc drive and method

Abstract

This record has no abstract on file.

EP1127352B1, drawing sheet 1
Sheet 1 of 8

Term

Term ended

Expired 4 November 2019, 6.9 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

14 claims: 8 independent, 6 dependent

  1. 1
    A data acquisition system (20) including a servo control system (42) for maintaining a tracking relationship between a detector (26) of the data acquisition system and a signal source (24) embodying data to be recovered by the data acquisition system, the servo control system (42) receiving servo information about the tracking relationship and adjusting the tracking relationship in response to the servo information, and the data acquisition system comprising data recovery circuitry coupled to receive signals detected from the signal source, the data recovery circuitry (204) recovering data from the detected signals, the data recovery circuitry (204) generating a measure of quality of the detected signals from a constraint characteristic of the detected signals, the measure responsive to an accuracy of the tracking relationship between the detector and the signal source, the servo control system (42) receiving the measure and adjusting the tracking relationship between the detector (26) and the signal source (24) in response to determinations of the measure obtained while the data acquisition system retrieves data from the signal source, the data acquisition system characterised by :the signal source (24) including plural servo data structures interspersed with the signals embodying data, the servo data structures dedicated to servo operations and not containing data, the servo data structures readable by the detector and providing the servo information about the tracking relationship, and the servo control system (42) receiving the servo information and adjusting the tracking relationship between the detector (26) and the signal source (24) in response to the servo information at predetermined intervals during data retrieval so that servo control operations are performed both in response to the measure and to the servo information derived from the servo data structures.
  2. 3
    The system of claims 1 or 2, wherein the measure represents an extent of errors in the detected signals derived from the detected signals and an encoding characteristic of the data.
  3. 4
    The system of claims 1-3, wherein the data recovery circuitry (204) processes the detected signals to derive the recovered data and errors represented in the detected signals, the measure being derived from the errors.
  4. 5
    The system of claims 1-4, wherein the detector comprises first and second detector elements (176,178) each detecting signals, corresponding portions of the data recovery circuit (250,252) generating first and second data signals and first and second measures of quality between the first and second recovered and detected signals, respectively, the control system determining a direction for an adjustment between the detector and the signal source in response to the first and second measures.
  5. 6
    The system of claims 1 or 2, wherein the measure represents variations in the detected signals from valid signal levels defined by the constraint.
  6. 9
    A data acquisition system within a magnetic disk storage system (184), the data acquisition system including a servo control system (204,206) for maintaining a relative positional relationship between a transducer (194) of the data acquisition system and data storage locations (190) comprising signals representative of data and provided on a data storage surface (186) within the magnetic disk storage system (184), the control system (204,206) receiving servo information about misalignments in the relative positional relationship between the transducer (194) and the data storage locations (190) and adjusting the transducer (194) position in response to the servo information, and the data acquisition system comprising data processing circuitry (202,204) coupled to receive signals detected from the data storage locations, the data recovery circuitry recovering data from the detected signals, the data acquisition system characterised by :the data recovery (202,204) generating a measure of errors between the recovered data and the detected signals, the measure varying with misalignments in the relative positional relationship between the transducer (194) and the data storage locations (190) in a predetermined manner;the control system (204,206) receiving the measure and performing a control function in response to determinations of the measure while the data acquisition system retrieves data from the data storage structure;the data storage locations (190) including plural servo data structures interspersed with the signals embodying data, the servo data structures primarily dedicated to servo operations, the servo data structures readable by the transducer (194) and providing the servo information about the relative positional relationship between the transducer (194) and the data storage locations (190), and the control system (204,206) receiving the servo information and performing the control function of adjusting the relative positional relationship between the transducer (194) and the data storage locations (190) in response to the servo information at predetermined intervals during data retrieval, so that the control system (204, 206) performs the control function of adjusting the relative positional relationship of the transducer (194) and the data storage locations (190) in response to both the measure and the servo information derived from the servo data structures.
  7. 12
    The system of claims 9-11, wherein the data recovery circuitry (204) processes the detected signals in accordance with partial response maximum likelihood (PRML) data processing to derive both the recovered data and errors between the detected signals and the recovered data, the measure being derived from the calculated errors.
  8. 13
    The system claims 9-12, wherein the measure is derived by a first transducer (764,766,768,779) detecting signals from a first set of data storage locations on a first data surface (752,754) and the control function includes adjusting a position of a second transducer (764,766,768,779) with respect to a second set of data storage locations.