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Yoshifumi Adachi

age ~74

from Westminster, CA

Also known as:
  • Yoshi F Adachi
  • Yuko Adachi
  • Yoshifu Adachi
Phone and address:
16241 Watson Cir, Westminster, CA 92683
714-847-8775

Yoshifumi Adachi Phones & Addresses

  • 16241 Watson Cir, Westminster, CA 92683 • 714-847-8775
  • Lake Forest, CA
  • Garden Grove, CA
  • Huntington Beach, CA

Us Patents

  • Diode Laser Having Minimal Beam Diameter And Optics

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  • US Patent:
    53217179, Jun 14, 1994
  • Filed:
    Apr 5, 1993
  • Appl. No.:
    8/043201
  • Inventors:
    Yoshifumi Adachi - Westminster CA
    Iwao P. Adachi - Westminster CA
  • International Classification:
    H01S 308
  • US Classification:
    372100
  • Abstract:
    A diode laser and optical system uses the minimum number of elements to obtain a small diameter beam (1 mm). A large numerical aperture lens collimates the full energy from the diode and the oval shaped output of the collimator is corrected for astigmatism by means of a cylinder lens and made circular by two identical prisms arranged to receive the corrected, collimated beam directly at a right angle surface of the first prism and transmit the beam after deflection to the second prism further which demagnifies the beam producing the round (. ltoreq. 1 mm diameter) beam spot output of the laser. The output beam is well collimated (1 mRad) and wave front aberration is diffraction limited. The spot size at 50 feet distance is maintained. In order to hold total Gaussian distribution energy, the prisms are coated with a multilayer dielectric thin film eliminate reflection and to transmit the TE mode wave without loss at the Brewster angle.
  • Real-Time Analysis Keratometer

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  • US Patent:
    46920030, Sep 8, 1987
  • Filed:
    Nov 7, 1983
  • Appl. No.:
    6/549157
  • Inventors:
    Iwao P. Adachi - Westminster CA
    Yoshifumi Adachi - Westminster CA
    Robert E. Frazer - La Canada CA
  • International Classification:
    A61B 310
  • US Classification:
    351212
  • Abstract:
    A computer assisted keratometer in which a fiducial line pattern reticle illuminated by CW or pulsed laser light is projected on a corneal surface through lenses, a prismoidal beamsplitter quarterwave plate, and objective optics. The reticle surface is curved as a conjugate of an ideal corneal curvature. The fiducial image reflected from the cornea undergoes a polarization shift through the quarterwave plate and beamsplitter whereby the projected and reflected beams are separated and directed orthogonally. The reflected beam fiducial pattern forms a moire pattern with a replica of the first recticle. This moire pattern contains transverse aberration due to differences in curvature between the cornea and the ideal corneal curvature. The moire pattern is analyzed in real time by computer which displays either the CW moire pattern or a pulsed mode analysis of the transverse aberration of the cornea under observation, in real time. With the eye focused on a plurality of fixation points in succession, a survey of the entire corneal topography is made and a contour map or three dimensional plot of the cornea can be made as a computer readout in addition to corneal radius and refractive power analysis.

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