Nova Patents
EP1501160A2

Electro-optical element

Abstract

An electro-optical element (100) of the invention includes a light-emitting part (140) and a light-receiving part (120) having an optical surface (108) and being formed on the light-receiving part (120). The element (100) emits light at least in the direction in that the light-emitting part (140) and the light-receiving part (120) are formed in layers. In addition, the optical member (160) is formed at least on the optical surface (108).

EP1501160A2, drawing sheet 1
Sheet 1 of 12

Term

Term ended

Projected expiry passed 22 July 2024, 2.2 years ago.

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

19 claims: 6 independent, 13 dependent

  1. 1
    An electro-optical element, comprising:a light-emitting part (140;240;340);a light-receiving part (120;220;320) including an optical surface (108;208;308) and provided on the light-emitting part (140;240;340), light being emitted at least in a direction in that the light-emitting part (140;240;340) and the light-receiving part (120;220;320) are stacked upon each other;and an optical member (160;260;360) provided at least on the optical surface (108;208;308),
  2. 12
    The element according to any one of Claims 1 through 6, wherein:the light-emitting part (140;240;340) includes a first mirror (102;202), an active layer (103;203) provided on the first mirror (102;202), and a second mirror (104;204) provided on the active layer (103;203);and the light-receiving part (120;220;320) includes a first contact layer (111;211), a light absorption layer (112;212) provided on the first contact layer (111;211), and a second contact layer (113;213) provided on the light absorption layer (112;212).
  3. 13
    The element according to any one of Claims 1 through 6, wherein the light-emitting part (140;240;340) is a surface emitting semiconductor laser.
  4. 15
    A method of manufacturing an electro-optical element, comprising:forming a stacked structure made up of a light-emitting part (140;240;340) and a light-receiving part (120;220;320) including an optical surface (108;208;308);forming an optical member precursor (160b) by ejecting a liquid drop to the optical surface (108;208;308);and forming an optical member (160;260;360) by curing the optical member precursor.
  5. 17
    An optical module, comprising:a first electro-optical element (400, 400a, 400b) according to any one of Claims 1 through 6;a second electro-optical element (400, 400a, 400b) according to any one of Claims 1 through 6;and an optical waveguide (30), wherein: light emitted from the optical surface (108;208;308) of the first electro-optical element transmits through the optical waveguide, and is incident on the optical surface (108;208;308) of the second electro-optical element;light emitted from the optical surface (108;208;308) of the second electro-optical element transmits through the optical waveguide, and is incident on the optical surface (108;208;308) of the second electro-optical element.
  6. 19
    A method of driving an optical module that includes a first electro-optical element according to any one of Claims 1 through 6, a second electro-optical element according to any one of Claims 1 through 6, and an optical waveguide, the method comprising:controlling the first and the second electro-optical element such that if the first electro-optical element is under a light-emitting state, the second electro-optical element is in a light-receiving state, and if the first electro-optical element is under a light-receiving state, the second electro-optical element is in a light-emitting state.