Nova Patents
EP0805527A2

High efficiency laser diode packaging

Abstract

A laser diode package includes a laser diode, a heat sink and a lid. The laser diode has an emitting surface, a reflective surface opposing the emitting surface, and first and second surfaces between the emitting surface and the reflective surface. The laser diode has a diode height defined between the emitting surface and the reflective surface. The heat sink has an interior surface, an exterior surface opposing the interior surface, a top surface and a base surface. The height of the heat sink is defined between the top surface and the base surface and is approximately less than four times the laser diode height. The first surface of the diode is attached to the interior surface of the heat sink with a first solder. The base surface of the heat sink is coupled to a thermal reservoir. The lid is attached to the second surface of the laser diode via a second solder. An upper end of the lid is near the emitting surface of the laser diode. A lower end of the lid is typically slightly below the reflecting surface of the laser diode. A plurality of laser diode packages are grouped together to form an array. The heat sink of each of the laser diode packages is attached to a backplane which is then connected to a thermal reservoir.

EP0805527A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 23 April 2017, 9.4 years ago.

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

32 claims: 9 independent, 23 dependent

  1. 1
    A laser diode package, comprising:a laser diode having an emitting surface, a reflective surface opposing said emitting surface, and first and second surfaces between said emitting surface and said reflective surface, said laser diode having a diode height defined between said emitting surface and said reflective surface;a heat sink having an interior surface, an exterior surface opposing said interior surface, a top surface and a base surface, said heat sink having a heat sink height defined between said top surface and said base surface, said first surface of said laser diode being attached with a first solder to said interior surface of said heat sink, said base surface for being coupled to a thermal reservoir for dissipating heat from said laser diode, said heat sink height being approximately less than four times said diode height;and a lid attached to said second surface of said laser diode through a second solder.
  2. 5
    The laser diode package of claims 1-4, wherein said heat sink is made of a material selected from the group consisting of copper, silver, and gold.
  3. 6
    The laser diode package of claims 1-5, wherein said first solder and said second solder are made of the same material.
  4. 8
    The laser diode package of claims 1-4, wherein said heat sink is made of a material selected from the group consisting of diamond, beryllium oxide, aluminum nitride, and boron nitride, said heat sink further including a metallic layer on said top surface and portions of said interior and exterior surfaces.
  5. 14
    The laser diode package of claims 12-13, wherein said lid height is less than said heat sink height.
  6. 18
    The laser diode package of claims 15-17, wherein said array includes a backplane to which each of said base surfaces of said heat sinks is attached, said backplane including electrical insulating means to prevent an electrical short between adjacent ones of said laser diode packages.
  7. 21
    The laser diode array of claims 19-20, wherein said electrically insulative material is a material selected from the group consisting of beryllium oxide, aluminum nitride, boron nitride, and diamond.
  8. 28
    The laser diode array of claims 24-27, wherein a flow temperature of said first and second solders is greater than a flow temperature of said third solder.
  9. 29
    A method producing a laser diode package comprising the steps of:providing a laser diode having an emitting surface and a reflective surface;providing a heat sink having a base surface and a top surface;providing a lid having an upper end and a lower end;soldering said laser diode between said lid and said heat sink, said upper end of said lid and said top surface of said heat sink being approximately coplanar with said emitting surface of said laser diode, said reflective surface being exposed without an obstructing structure positioned therebelow and between said base surface of said heat sink and said lower end of said lid;and accessing said reflective surface of said laser diode and cleaning said reflective surface.