Nova Patents
EP0803745A1

Fiber optics device

Abstract

A fiber optics device of this invention includes first (2) and second (3) optical members. The first optical member (2) is obtained by integrating a plurality of optical fibers (21) of the first type by bundling, and has first (23) and second (22) end faces formed obliquely to the optical axis of the optical fibers of the first type and parallel to each other. The second optical member (3) is obtained by integrating a plurality of optical fibers (31) of the second type by bundling, and has first (32) and second (33) end faces formed obliquely to the optical axis of the optical fibers of the second type and parallel to each other. The optical fibers of the second (3) type have a larger numerical aperture than that of the optical fibers of the first type. The first end (32) face of the second (3) optical member is bonded (23) to the second end (22) face of the first (2) optical member.

EP0803745A1, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Projected expiry passed 22 April 2017, 9.4 years ago.

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6 claims: 3 independent, 3 dependent

  1. 1
    A fiber optics device comprising:a first optical member obtained by integrating a plurality of optical fibers of a first type by bundling and having first and second end faces, the first end face obliquely intersecting an image transmitting direction at a first angle, the second end face being substantially parallel to the first end face thereof, and the optical fibers of the first type having a first numerical aperture and cores with a first refractive index;and a second optical member obtained by integrating a plurality of optical fibers of a second type by bundling and having first and second end faces, the first end face obliquely intersecting the image transmitting direction at a second angle, the second end face being substantially parallel to the first end face thereof, the optical fibers of the second type having a second numerical aperture larger than the first numerical aperture and cores with a second refractive index, and the first end face of the second optical member being bonded to the second end face of the first optical member.
  2. 2
    A fiber optics device according to Claim 1, wherein the first angle is set smaller than the second angle.
  3. 3
    A fiber optics device according to Claim 1, wherein the first refractive index is substantially equal to or less than the second refractive index.
  4. 4
    A fiber optics device according to Claim 1, wherein light propagating through the first optical member and becoming incident on the first end face of the second optical member, light components having the maximum incident angle become incident on the boundary surface between the core and the cladding layer of the optical fibers of the second type at an incident angle equal to or larger than the critical angle.
  5. 5
    An optical apparatus comprising:a first optical fiber having first and second end faces which form an oblique angle with an optical axis defined by the first optical fiber, a second optical fiber having third and fourth end faces which form a second oblique angle with a second optical axis defined by the second optical fiber, wherein the second end face and the third end face are connected together, the first and second oblique angles are different and the first and second optical fibers are of a substantially different width.
  6. 6
    An optical apparatus comprising:a first optical medium having parallel end faces and a first optical path along a first optical axis at a first oblique angle to the end faces, and a second optical medium having parallel end faces and a second optical path along a second optical axis at a second oblique angle to the end faces, and wherein: the first oblique angle is different than the second oblique angle, one of the end faces of the first optical medium is so connected with one of the end faces of the other optical medium that the first and second optical axes are coincident thereat, and the width of the tirst optical path in a direction perpendicular to the first optical axis is different than that of the second optical paths, which widths are so selected that at the end faces of the respective media the widths of the optical paths are substantially equal.