EP0052014A2

Optical fiber connector and method of producing same.

Abstract

An optical fiber connector (5) comprising a pair of plugs (6), a sleeve (10) and a pair of cap nuts (15) which is assembled at the site where optical fibers are installed, so as to connect the optical fibers with a high degree of positional accuracy. The plugs and the sleeve are molded of a composition including a synthetic resin added with a suitable content of a filler, such as glass beads.

EP0052014A2, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Projected expiry passed 10 November 2001, 24.9 years ago.

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

12 claims: 3 independent, 9 dependent

  1. 1
    .In an optical fiber connector comprising a plug adhesively attached to an end of an optical fiber cable, a sleeve threaded at either end of an outer peripheral surface thereof and adapted to have said plug inserted from opposite ends into a center axis portion thereof, a cap nut threaded at one end of an inner peripheral surface thereof for fixing the plug to the sleeve, and a spring mounted on an outer peripheral portion of the plug so as to be located between the plug and the cap nut, the improvement wherein said plug is formed of a synthetic resin by using a mold including a core for defining a forward end of the plug having a core pin of a larger than the optical fiber by 1 to several µm attached to said core and adapted to be abutted at one end by another core extending from the other side, so that the plug and the sleeve can be formed of a synthetic resin of the same composition.
  2. 4
    An optical fiber connecter as claimed in claim wherein said plug has an outer diameter greater than the inner diameter of said sleeve by +3 to -2 µm.
  3. 11
    A method of producing an optical fiber connector comprising the steps of:removing in a predetermined length each of a secondary coat and a primary coat of an optical fiber cable at one end portion thereof and cleaning the outer peripheries of the exposed portions of the primary coat and an optical fiber with an organic solvent;fitting a cap nut and a spring over the optical fiber at its end portion from which the coats have been removed;introducing a predetermined amount of adhesive agent into an orifice of a plug;inserting the optical fiber cable into the plug until the optical fiber sticks out of the forward end face of the plug before the adhesive agent inserted in the plug sets;andcutting the length of the optical fiber sticking out of the forward end face of the plug after the plug and the optical fiber are affixed to each other as a unit following setting of the adhesive agent and lapping the end faces of the plug and the optical fiber to provide mirror-like surfaces.