Nova Patents
EP0459764A2

Optical head device.

Abstract

An optical head device having an optical system provided with at least a light source (10), a shaping prism, an diffracting element (20) and a photodetector (60). The light source emits light whose intensity distribution has an elliptic shape in its cross section orthogonal to the optical axis. The shaping prism directs the light to a recording medium (70) after shaping the intensity distribution thereof into a circular shape. The diffracting element has diffracting regions formed by at least one division line substantially parallel to a reference direction. The light reflected from the recording medium forms an elliptic bright portion on the diffracting element. The photodetector is divided by a plurality of division lines (64, 65), at least one of which is parallel to the reference direction. When there is no focus error, the diffracting element diffracts the reflected light so as to converge it on the division line substantially parallel to the reference direction in the photodetector. For example, when the shaping prism is adapted to shape the elliptic intensity distribution with respect to its minor axis direction, the optical system is arranged so that the major axis of the bright portion is parallel to the division line of the diffracting element. Thus, it is possible to suppress offsets in focusing control due to wave-length variations of light.

EP0459764A2, drawing sheet 1
Sheet 1 of 17

Term

Term ended

Projected expiry passed 29 May 2011, 15.3 years ago.

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

9 claims: 2 independent, 7 dependent

  1. 1
    An optical head device comprising:light generation means for generating light having intensity distribution showing a substantially elliptic shape in a cross section orthogonal to an optical axis, a major axis of the elliptic shape being parallel to a reference direction;photodetecting means for generating detection signals so as to obtain a focus error signal, the photodetecting means including a plurality of photodetecting sections formed by a plurality of division lines dividing a light-receiving face thereof, the detection signal being released by the respective photodetecting sections according to the intensity of the light entered thereto, at least one of the plurality of division lines being substantially parallel to the reference direction;diffraction means including a plurality of diffracting regions formed by a plurality of division lines dividing a diffraction face, at least one of the plurality of division lines for dividing the diffraction face being parallel to the reference direction;and    optical means for converging the light emitted from the light generation means on a recording track formed on the recording medium and further directing reflected light from the recording track to the diffraction means so that the major axis of an elliptic bright portion formed on the diffracting face by the reflected light may be positioned on said one of the division lines in the diffraction means, the division line being parallel to the reference direction.    whereby a value of the focus error signal is allowed to become zero when a part of the reflected light that has been diffracted by said one of the diffracting regions of the diffraction means is converged on said one of the division lines in the photodetecting means, which is substantially parallel to the reference direction.
  2. 9
    An optical head for projecting a light beam onto a recording track on an optical recording medium, the optical head including a light source which produces a light beam having an elliptical cross-section, an optical system for focussing the beam into a beam spot on said recording medium, a light detector for detecting light reflected from the recording medium and having a division line which separates two light detecting sections, and diffraction means disposed in the path of the reflected light where it forms a reflected beam of elliptical cross-section and having a division line which separates two diffraction regions for deflecting respective portions of the reflected beam impinging thereon away from the optical axis of the diffraction means toward respective positions of focus on said light detector, one of said positions lying on said division line of said light detector, whereby a focus error signal is derivable from detection signals obtained from said two light detecting sections, characterised in that the diffraction means is arranged so that the major axis of the cross-section of said reflected beam is substantially coincident with said division line of said diffraction means and in that said respective positions of focus are spaced apart in a direction corresponding to the direction of said major axis.