EP1587151A2

Semiconductor light emitting device and fabrication method thereof

Abstract

A light emitting device comprises a light emitting element having a first electrode and a second electrode, and a semiconductor member having a cavity in a principal surface thereof, inside which the light emitting element is mounted, and electrically connected to the light emitting element, wherein the semiconductor member is constructed as a voltage regulating diode for stabilizing a voltage supplied from the exterior. As a result, the light emitting element can be protected from a static electricity or a surge voltage flowed therein from the exterior, the entire size of the system can be remarkably reduced so as to simplify a structure thereof, and heat generated from the system can be effectively discharged to the exterior. In addition, by providing a reflection portion in the cavity, light emitted from the light emitting element can be efficiently condensed.

EP1587151A2, drawing sheet 1
Sheet 1 of 6

Term

Term ended

Projected expiry passed 13 April 2025, 1.4 years ago.

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56 claims: 5 independent, 51 dependent

  1. 1
    A light emitting device comprising:a light emitting element having a first electrode and a second electrode;and a semiconductor member having a cavity in a principal surface thereof, inside which the light emitting element is mounted, and electrically connected to the light emitting element.
  2. 8
    The device of claim 8, wherein the entire principal surface is provided with an insulating layer having contact holes formed therein to electrically connect the semiconductor regions, respectively, to the first and second electrodes.
  3. 25
    A light emitting device comprising:a light emitting element having a first electrode and a second electrode;and a semiconductor member having a cavity in a principal surface, inside which the light emitting element is mounted, and electrically connected to the light emitting element,    wherein the semiconductor member is a voltage regulating diode in which at least two semiconductor regions, which are electrically connected to the first and second electrodes respectively on the principal surface, are formed on the principal surface extended from an upper end of the side wall of the cavity.
  4. 30
    A light emitting device comprising:a light emitting element having a first electrode and a second electrode;and a semiconductor member having a cavity in a principal surface, inside which the light emitting element is mounted, and electrically connected to the light emitting element,    wherein the semiconductor member is a voltage regulating diode in which at least two semiconductor regions, which are electrically connected to the first and second electrodes, respectively, on the principal surface, are formed at a bottom surface of the cavity.
  5. 35
    A light emitting system comprising:a light emitting device including a light emitting element having a first electrode and a second electrode, and a semiconductor member having a cavity in a principal surface,, inside which the light emitting element is mounted, and electrically connected to the light emitting element, wherein the semiconductor member is a voltage regulating diode having at least two semiconductor regions electrically connected to the first and second electrodes, respectively, on the principal surface;a stem portion having the light emitting device mounted therein, and electrically connected to the first and second electrodes and to the semiconductor regions;and a cap portion for covering the stem portion to seal the light emitting device.
  6. 38
    A fabrication method for a light emitting device comprising the steps of:forming a cavity in a principal surface of a semiconductor substrate;forming at least one impurity diffusion region on the principal surface to thereby form a plurality of semiconductor regions;forming an insulating layer over the principal surface and patterning contact holes at parts of the insulating layer so as to expose two regions of the plurality of semiconductor regions therethrough;forming a pair of connection electrodes extended from a bottom surface of the cavity to an upper portion of the principal surface along the side wall of the cavity to fill up the contact holes in order to electrically connect the two exposed semiconductor regions with a light emitting element to be mounted later and to be electrically connected to external components;and connecting the light emitting element to the pair of connection electrodes so as to position the light emitting element inside the cavity.