Nova Patents
EP1569280A2

Device having light transmission means

Abstract

A device (1) having a light transmission means wherein a light-emitting element (3), a driving circuit for driving this light-emitting element (3), a light-receiving element (light-detecting element) (5), a light-guiding path (wave-guiding path) (4) for guiding light from the light-emitting element (3) to the light-receiving element (5), an amplifying circuit 6, wiring (electric wiring) (7) and a circuit (8) are successively provided on a substrate (2). The light (light signals) from the light-emitting element (3) passes through the light-guiding path (4) and is received at the light-receiving element (5), transferring photoelectricity. The electric signals from the light-receiving element (5) are amplified at the amplifying circuit (6) and are input to the circuit (8) through the wiring (7). The circuit (8) operates based on these electric signals.

EP1569280A2, drawing sheet 1
Sheet 1 of 13

Term

Term ended

Projected expiry passed 27 August 2019, 7.1 years ago.

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

21 claims: 5 independent, 16 dependent

  1. 1
    A device for transmitting light, comprising:a light-emitting section;a light-receiving section receiving light emitted from the light-emitting section;and a light-guiding path in which the light travels towards the light-receiving section, the light-emitting section including, a first, transparent electrode;a second electrode;and a light-emitting layer sandwiched between the first and the second electrodes,    wherein the first electrode faces the light-guiding path such that the light from the light-emitting section reaches the light-guiding path through the first electrode.
  2. 7
    A device for transmitting light, comprising:a light-emitting section;a light-receiving section receiving light emitted from the light-emitting section, and a light-guiding path in which the light travels towards the light-receiving section, the light-receiving section including: a first, transparent electrode;a second electrode, and a semiconductor element sandwiched between the first and second electrodes,    wherein the light-receiving section receives the light from the light-guiding path through the first electrode.
  3. 11
    A device for transmitting light, comprising:a light-emitting section including a plurality of light-emitting elements, a peak wavelength emitted from each of the light-emitting elements being different from each other;a light-receiving section receiving light emitted from the light-emitting section, and a light-guiding path in which the light travels towards the light-receiving section, each light-emitting element of the light-emitting section including: a first, transparent electrode;a second electrode, and a light-emitting layer sandwiched between the first and the second electrode,    wherein the first electrode faces the light-guiding path such that the light from the light-emitting section reaches the light-guiding path through the first electrode.
  4. 20
    A device for transmitting light, comprising:a light-emitting section;a light-receiving section including a plurality of light-receiving elements for receiving light emitted from the light-emitting section, a peak wavelength of the light to be received being different in each light-receiving element;a light-guiding path in which the light travels towards the light-receiving section, each light-receiving element in the light-receiving section including: a first, transparent electrode;a second electrode, and a semiconductor element sandwiched between the first and the second electrodes,    wherein the light-receiving element electrode receives the light from the light-guiding path through the first electrode.
  5. 21
    A method for manufacturing a device for transmitting light, comprising:forming at least two banks above a light-guiding path;forming a first electrode above a light-guiding path;forming a light-emitting layer above the first electrode and between the banks;and forming a second electrode above the light-emitting layer, at least one of the first electrode and the light-emitting layer being formed by: ejecting a predetermined material between the banks, and solidifying the predetermined material.