Nova Patents
EP0241724A2

Optical connector and splicer.

Abstract

An optical connector and splicer including an optical fiber positioning member for optical coupling of optical fibers where the coupling is assisted by at least two guide pins. The optical fiber positioning member comprises a substrate plate (1) and a flat plate (2). The substrate plate has optical fiber grooves (3) and guide pin grooves (4) each formed at one surface thereof for positioning the one optical fibers (11) and said guide pins, respectively. The flat plate has a flat surface confronting with the grooved surface of the substrate plate. An exposed area is formed on a part of the substrate plate where said flat plate is not joined for facilitating an insertion of the optical fibers into the optical fiber grooves. A method of the optical connector and splicer comprises the steps of: preparing a substrate plate assembly form a single wafer made of a hard and brittle material; continuously forming a predetermined pattern of optical fiber grooves and guide pin grooves on a surface of said substrate plate assembly; bonding at least one flat plate to said surface of said substrate plate assembly with an adhesive thin layer, so that optical fiber groove holes and guide pin groove holes are provided; cutting a bonded assembly into sections each having predetermined dimensions of said positioning member; and fixing the optical fibers in said optical fiber groove holes by bonding with an adhesive (16).

EP0241724A2, drawing sheet 1
Sheet 1 of 17

Term

Term ended

Projected expiry passed 13 March 2007, 19.5 years ago.

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

26 claims: 20 independent, 6 dependent

  1. 1
    An optical connector including an optical fiber positioning member for use in an optical coupling of optical fibers, said coupling being assisted by at least two guide pins, said connector comprising:a substrate plate having at least one optical fiber groove and guide pin grooves each formed at one surface thereof for positioning said at least one optical fiber and said guide pins, respectively;and     a flat plate mounted on said substrate plate, and having a flat surface confronting with said one surface and having a length shorter than said substrate plate, said flat plate being joined to a part area of said substrate plate for defining at least one optical fiber groove hole and guide pin groove holes, a remaining area of said substrate plate, where said flat plate is not joined, defining an exposed area for facilitating an insertion of said optical fiber into said optical fiber groove hole, said positioning member comprising said substrate and flat plates.
  2. 2
    An optical connector as claimed in claim l, wherein said substrate and flat plates are made of a hard and brittle material.
  3. 3
    An optical connector as claimed in claim l, said positioning member further comprising an adhesive thin layer formed between said substrate plate and said flat plate for bonding said flat plate to said part area of said substrate plate.
  4. 9
    An optical connector as claimed in claim l, further comprising a housing which surrounds said positioning member for protecting and pressing said positioning member.
  5. 10
    l0. An optical connector as claimed in claim l, wherein each of said guide pin groove holes has an open end portion, which portion provides enlarged clearance.
  6. 11
    An optical connector as claimed in claim l, wherein said optical fiber groove and said guide pin grooves are V-shaped.
  7. 12
    An optical connector as claimed in claim ll, wherein said optical fiber groove and said guide pin grooves have the same angle of V.
  8. 13
    l3 An optical connector as claimed in claim l, said optical fiber groove hole and guide pin groove holes are defined by an inscribed circle of a triangle.
  9. 14
    An optical connector as claimed in claim l, wherein said positioning member has a step at a side of said exposed area for fixing a coated optical fiber.
  10. 15
    An optical connector as claimed in claim l, wherein said flat plate is made of a transparent material.
  11. 16
    An optical splicer for permanently connecting an optical fiber, comprising:a substrate plate having at least one optical fiber groove formed on an upper surface thereof for positioning said at least one optical fiber along said optical fiber groove;a flat plate having a length shorter than said substrate plate, said flat plate being joined to a part area of said substrate plate for defining at least one optical fiber groove hole, remaining area of said substrate plate, where said flat plate is not joined, defining exposed areas for facilitating an insertion of said optical fiber into said optical groove hole, said exposed areas being formed on both longitudinal sides of the upper surface of said substrate plate, said substrate plate and flat plates being made of a hard and brittle material.
  12. 17
    An optical splicer as claimed in claim l6, wherein said flat plate is made of a transparent material.
  13. 18
    A method of machining a optical connector and a splicer having a positioning member comprising the steps of:preparing a substrate plate assembly from a single wafer made of a hard and brittle material;continuously forming a predetermined pattern of optical fiber grooves and guide pin grooves on a surface of said substrate plate assembly;bonding at least one flat plate to said surface of said substrate plate assembly with an adhesive thin layer so that optical fiber groove holes and guide pin groove holes are provided;cutting a bonded assembly into sections each having predetermined dimensions of said positioning member;inserting optical fibers from at least one side of said positioning member into said optical fiber groove holes;and     fixing inserted optical fibers in said optical fiber groove holes by bonding with an adhesive.
  14. 19
    A method as claimed in claim l8, wherein said groove forming step is performed by using a single cutting tool selectively varying cutting depth, deep cutting corresponding to said guide pin grooves, and shallow cutting corresponding to said optical fiber grooves.
  15. 20
    A method as claimed in claim l8, wherein said cutting step is performed by cutting parts of said flat plate to remove at least said parts, to provide an exposed area for facilitating an insertion of optical fibers into said optical fiber groove holes, and by cutting completely said bonded assembly, to provide respective positioning members.
  16. 22
    A method as claimed in claims 20 and 2l, wherein said cuttings are carried out by using a single whetstone.
  17. 23
    A method as claimed in claim l8, wherein said bonding is performed by spin coating.
  18. 24
    A method as claimed in claim l8, wherein said bonding is performed by sputtering.
  19. 25
    A method as claimed in claim l8, wherein said bonding is performed by vacuum vapor.
  20. 26
    A method as claimed in claim l8, wherein said bonding is performed by photo-resist method.
Independent claims20