Optical connector plug, optical connector and manufacturing method of optical waveguide
An object of the present disclosure is to connect an optical fiber and an optical waveguide with a low loss. The present disclosure is an optical connector plug, including: an optical waveguide having two guide pin V-grooves engraved on one surface thereof and having a cross section of one or more cores appearing between cross sections of the guide pin V-grooves on one end face thereof; two guide pins separately arranged in the two guide pin V-grooves; a flat substrate so fixed as to tuck the two guide pins in the two guide pin V-grooves on the one surface of the optical waveguide; and a fixing member equipped with the optical waveguide, the two guide pins, and the flat substrate.
1 . An optical connector plug, comprising: an optical waveguide having two guide pin V-grooves engraved on one surface thereof and having a cross section of one or more cores appearing between cross sections of the guide pin V-grooves on one end face thereof, two guide pins separately arranged in the two guide pin V-grooves; a flat substrate so fixed as to tuck the two guide pins in the two guide pin V-grooves on the one surface of the optical waveguide; two laser processing grooves engraved in the one surface of the optical waveguide; a fixing member equipped with the optical waveguide, the two guide pins, and the flat substrate; and an alignment pin fixed to a surface, on a side in contact with the flat substrate, of the fixing member; and an alignment V-groove, locked to the alignment pin, on a surface of the flat substrate on a side in contact with the fixing member.
2 . The optical connector plug according to claim 1 , wherein the two laser processing grooves are positioned between the two guide pin V-grooves and are equal distance from center of an adjacent guide pin V-groove.
3 . The optical connector plug according to claim 1 , wherein each cross-sectional center of the one or more cores is arranged on an imaginary line connecting cross-sectional centers of the two guide pins.
4 . The optical connector plug according to claim 1 , wherein the optical waveguide is an optical splitter in which one core is branched into a plurality of cores, cross sections of the plurality of cores appear on the one end face, and a cross section of the one core appears on the other end face, and
a core of a single-core optical fiber is connected to the one core of the other end face.
5 . The optical connector plug according to claim 1 , wherein the optical waveguide is a fan-out for inputting and outputting an optical signal between one multi-core optical fiber having a plurality of cores and a plurality of different single-core optical fibers, cross sections of a plurality of cores appear in a linear arrangement on the one end face, and cross sections of a plurality of cores corresponding to the one multi-core optical fiber appear on the other end face, and
cores of the multi-core optical fiber are separately connected to the plurality of cores of the other end face.
6 . An optical connector, comprising:
the optical connector plug according to claim 1 ; and
an MT ferrule including guide pin holes fitted to two guide pins of the optical connector plug.