EP1540401B1

Optical fiber mechanical splice with strain relief mechanism

Abstract

To provide an optical fiber splicing member which can hold optical fiber buffer coatings stably in a simple structure as compared with conventional art, and which enables use of an existing splicing tool. There are provided a joint element (110), a jacket (120), buffer retainers (131) and a cap (140). By setting and pressing the cap to the jacket, it becomes possible to splice bare fibers of optical fibers (190) with each other by the joint element and to press the buffer coatings (192) by the buffer retainers. Assembling the splicing member is thus facilitated while the existing optical fiber splicing tool is utilizable as it is. The buffer coatings can be held stably because the holding is achieved through the pressing.

EP1540401B1, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Expired 15 July 2023, 3.2 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

5 claims: 2 independent, 3 dependent

  1. 1
    A splicing member for splicing optical fibers (190) each having a bare fiber (191) coated with a buffer coating (192), comprising:a joint element (110) for retaining the bare fibers (191) in a state in which the bare fibers (191) are butt-jointed against each other;a jacket (120) including an element storage part (121) for storing the joint element (110), optical fiber passages (122) for guiding the optical fibers (190) to end parts of the joint element (110) stored in the element storage part (121) respectively, and buffer retainers (131) for opposing to the buffer coatings (192) of the optical fibers (190) when the optical fibers (190) are extended along the optical fiber passages (122), wherein each of the buffer retainers (131) has a first tongue-shaped member (132) extending in the extension direction of the optical fiber passages;and pressing parts (143) for pressing the buffer retainers (131) to the buffer coatings (192) of the optical fibers (190) when the optical fibers (190) are extended along the optical fiber passages (122), and an engagement part (133) formed to the first tongue-shaped member (132) in a manner engageable with the pressing part (143) for moving the first tongue-shaped member (132) towards the buffer coating (192) through the movement of a cap (140) in the orthogonal direction of the optical fibers;wherein the buffer coating (192) of optical fiber (190) is maintained between the first tongue-shaped member (132) of the buffer retainer (131) and the upper surface of the jacket (120).
  2. 5
    The optical fiber splicing member according to any one of claims 2 through 4, wherein the jacket (120) includes end plug storage parts (124a, 124b) formed to both ends thereof, and wherein end plugs (130) include the buffer retainers (131) and extend in the same direction as the direction of the optical fiber passages (122) while constituted integrally with the jacket (120) by being fitted in the end plug storage parts (124a, 124b).