Patents Examined by Sarah N Song
  • Patent number: 6118917
    Abstract: An optical fiber passive alignment apparatus for passively aligning optical fibers with input/output optical waveguides of an integrated optical device includes an optical fiber array block on which the optical fibers are mounted with a uniform spacing and having alignment grooves parallel to the optical fibers, and an optical fiber fixing plate for fixing the mounted optical fibers to a substrate; an optical waveguide device chip having an input/output optical waveguide array consisting of optical waveguides corresponding to the optical fibers, for coupling with the optical fibers, and alignment holes; and an alignment platform having first alignment ridges separated by the same spacing as the alignment grooves, for coupling with the alignment grooves, alignment bumps in positions corresponding to the alignment holes, for coupling with the alignment holes, and a space between the first alignment ridges for preventing the optical fiber plate of the optical fiber block array from contacting the alignment platf
    Type: Grant
    Filed: July 30, 1998
    Date of Patent: September 12, 2000
    Assignee: Samsung Electronics Co., Ltd.
    Inventors: Hyung-jae Lee, Byong-gwon You, Yong-woo Lee, Tae-hyung Rhee
  • Patent number: 6112004
    Abstract: An emission microscopy system with a coherent illuminator system and method wherein an incident energy beam is directed at an end of image conduit rotating around its axis. The incident energy beam may be generated by a laser or similar radiation source. A substantially cylindrically uniform radiation spot is obtained from the other end of the image conduit, which may be guided by waveguide means to an emission microscope used in IC failure analysis.
    Type: Grant
    Filed: October 28, 1998
    Date of Patent: August 29, 2000
    Inventor: James Barry Colvin
  • Patent number: 6108465
    Abstract: The object of the present invention is to provide an optical pulse generator which very stably generates for a long period of time a high cycling frequency optical pulse chain. In order to obtain this object, in a ring type resonator R, the present invention provides an optical path length regulator 14 which performs high precision optical path length adjustment and an optical path length regulator 60 which performs wide range optical path length adjustment, and extracts a clock signal by converting an optical pulse emitted from the ring type resonator R to an electrical signal by a clock extractor 42, detects the frequency difference between a base frequency signal output form a synthesizer 52 by a frequency difference detector 50, and controls said optical path length regulator 14 and said optical path length regulator 60.
    Type: Grant
    Filed: October 14, 1998
    Date of Patent: August 22, 2000
    Assignees: Ando Electric Co., Ltd., Nippon Telegraph and Telephone Corporation
    Inventors: Rikihiro Iida, Akio Ichikawa, Yoshihiro Kumagai, Yuka Asahina, Masataka Nakazawa, Eiji Yoshida