Nova Patents
EP0805527B1

High efficiency laser diode package

Abstract

This record has no abstract on file.

EP0805527B1, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Expired 23 April 2017, 9.4 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

34 claims: 12 independent, 22 dependent

  1. 1
    A laser diode package (10), comprising:a laser diode (12) having an emitting surface (20), a reflective surface (22) opposing said emitting surface, and first (26) and second (28) surfaces between said emitting surface and said reflective surface, said laser diode having a diode height defined between said emitting surface (20) and said reflective surface (22);a heat sink (14) soldered to said first surface (26) of said laser diode (12), said heat sink (14) having a top surface (50) and base surface (52), said base surface for being coupled to a thermal reservoir (120) for dissipating heat from said laser diode, and a lid (17) soldered to said second surface (28) of said laser diode (12), characterized in that the heat sink height is approximately less than four times said diode height said heat sink height being defined between said top surface (50) and said base surface (52).
  2. 9
    The laser diode package of claims 1 to 8, wherein said heat sink is made of a material selected from the group consisting of copper, silver, and gold.
  3. 10
    The laser diode package of claims 1 to 9, wherein said first solder and said second solder are made of the same material.
  4. 13
    The laser diode package of claims 1 or 6, wherein said heat sink height is approximately less than two times said diode height.
  5. 14
    The laser diode package of claims 1 or 6, wherein said laser diode, said heat sink, and said lid each have a length, said lengths of said heat sink and said lid are slightly greater than said length of said laser diode.
  6. 15
    The laser diode package of claims 1 or 6, wherein said heat sink has a thickness, said thickness being greater than approximately 10% of said heat sink height.
  7. 19
    The laser diode package of claims 1 to 2, wherein said laser diode package can be arranged in a parallel configuration with other laser diode packages to create a laser diode array, each of said laser diodes packages being in electrical contact with at least one other of said laser diode packages, said electrical contact being effectuated by contact between a heat sink of a first one of said laser diode packages and a lid of an adjacent second one of said laser diode packages.
  8. 22
    The laser diode package of claims 4 and 19 to 21, wherein said array includes a backplane to which each of said base surface 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.
  9. 28
    The laser diode package of claims 4 and 19, wherein each of said heat sinks includes an exterior surface with a groove (60) thereon adjacent said top surface, each of said grooves extending along the length of said heat sink and for receiving a third solder to join said heat sink to a lid of an adjacent one of said laser diode packages.
  10. 30
    The laser diode package of claims 4 and 19, wherein each of said heat sinks includes an exterior surface with a series of notches (260) thereon adjacent said top surface, each of said notches extending along the length of said heat sink and for receiving a third solder to join said heat sink to a lid of an adjacent one of said laser diode packages.
  11. 32
    The laser diode package of claims 28 to 31, wherein a flow temperature of said first and second solders is greater than a flow temperature of said third solder.
  12. 33
    A method for producing a laser diode package (10) comprising the steps of:providing a laser diode (12) having an emitting surface (20) and a reflective surface (22);providing a heat sink (14) having a base surface (52) and a top surface (50);providing a lid (17) having an upper end surface (40) and a lower end surface (42);soldering said laser diode between said lid (17) and said heat sink (14), said upper end surface (40) of said lid and said top surface (50) of said heat sink being approximately coplanar with said emitting surface (20) of said laser diode, said reflective surface (22) being unobstructedly exposed between said heat sink (14) and said lid (17) wherein the height of said heat sink (14) defined between said top surface (50) and said base surface (52) permits exposure of said reflective surface and wherein said laser diode (12) has a height defined between said reflective surface (22) and said emitting surface (20), said heat sink height being less than approximately four times said laser diode height;and cleaning said reflective surface of said laser diode.