Nova Patents
EP0844501A2

Plastic optical fibre with two cores

Abstract

The present invention provides a plastic optical fiber comprising a cladding, a first core disposed inside the cladding, and a second core disposed inside the first core; wherein a ratio X of a diameter (D2) of the second core to a diameter (D1) of the first core (=D2/D1) and a ratio Y of a difference (n1 - n0) between a refractive index (n1) of the first core and a refractive index (n0) of the cladding to a difference (n2 - n0) between a refractive index of the second core (n2) and the refractive index (n0) of the cladding (=(n1 - n0)/(n2 - n0)) satisfy the following relational expressions: 0.3 ≤ X ≤ 0.95, 0.4 ≤ Y ≤ 0.95, 1 ≤ X + Y ≤ 1.9.

EP0844501A2, drawing sheet 1
Sheet 1 of 60

Term

Term ended

Projected expiry passed 25 November 2017, 8.8 years ago.

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10 claims: 2 independent, 8 dependent

  1. 1
    A plastic optical fiber comprising a cladding, a first core disposed inside said cladding, and a second core disposed inside said first core;    wherein a ratio X of a diameter (D2) of said second core to a diameter (D1) of said first core ( = D2/D1 ), and a ratio Y of a difference (n 1 - n 0 ) between a refractive index (n 1 ) of said first core and a refractive index (n 0 ) of said cladding to a difference (n 2 - n 0 ) between a refractive index (n 2 ) of said second core and the refractive index (n 0 ) of said cladding ( = (n 1 - n 0 )/(n 2 - n 0 ) ) satisfy the following relational expressions:0.3 ≤ X ≤ 0.95, 0.4 ≤ Y ≤ 0.95, 1 ≤ X + Y ≤ 1.9.
  2. 8
    A plastic optical fiber comprising a cladding, a first core disposed inside said cladding, a second core disposed inside said first core, and a third core disposed inside said second core;    wherein a ratio X1 of a diameter (D3) of said third core to a diameter (D1) of said first core ( = D3/D1 ), a ratio X2 of a diameter (D2) of said second core to the diameter (D1) of said first core ( = D2/D1 ), a ratio Y1 of a difference (n 3 - n 2 ) between a refractive index (n 3 ) of said third core and a refractive index (n 2 ) of said second core to a difference (n 3 - n 0 ) between the refractive index (n 3 ) of said third core and a refractive index (n 0 ) of said cladding ( = (n 3 - n 2 )/(n 3 - n 0 ) ), and a ratio Y2 of a difference (n 3 - n 1 ) between the refractive index (n 3 ) of said third core and a refractive index (n 1 ) of said first core to the difference (n 3 - n 0 ) between the refractive index (n 3 ) of said third core and the refractive index (n 0 ) of said cladding ( = (n 3 - n 1 )/(n 3 - n 0 ) ) satisfy the following relational expressions:0.53 ≤ X1 ≤ 0.67, 0.77 ≤ X2 ≤ 0.97, 0.07 ≤ Y1 ≤ 0.14, 0.27 ≤ Y2 ≤ 0.93.