EP0260370A2

Semiconductor device comprising a housing with cooling means.

Abstract

A semiconductor device comprises a substrate (12), a semiconductor element (11) mounted on the substrate (12), a cap (13, 51, 62) having an opening (13c, 51a, 62a) smaller than the external size of the semiconductor element (11) for covering the semiconductor element (11) to provide a hermetic seal, and heatsink member (14, 63) mounted on the cap (13c, 51, 62) to cover the opening (13, 51a, 62a) and to make contact with the semiconductor element (11) via the opening (13c, 51a, 62a), so that heat generated by the semiconductor element (11) is conducted directly to the heatsink member (14, 63). A method of producing the semiconductor device comprises the steps of mounting the semiconductor element (11) on the substrate (12), covering the semiconductor element (11) by the cap (13, 51, 62) which is fixed to the substrate (12), and mounting the heatsink member (14, 63) on the cap (13, 51, 62) to cover the opening (13c, 51a, 62a) and to make contact with the semiconductor element (11) via the opening (13c, 51a, 62a).

EP0260370A2, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Projected expiry passed 22 January 2007, 19.7 years ago.

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

13 claims: 9 independent, 4 dependent

  1. 1
    A semiconductor device characterized in a substrate (12) having at least one wiring layer (17) formed on a top surface thereof;at least one semiconductor element (11) mounted with a top face (11a) thereof downward on said substrate (12) and electrically coupled to said wiring layer (17);a cap (13,51) having at least one opening (13c, 51a) which is smaller than an external size of said semiconductor element (12), a peripheral portion (13b, 51b) of said cap (13, 51) being adhered on the top surface of said substrate (12) and a portion (13a) of said cap (13, 51) around said opening (13c, 51a) being adhered on a bottom face (11b) of said semiconductor element (11) to thereby hermetically seal said semiconductor element (11);and a heatsink member (14) mounted on said cap (13, 51), said heatsink member (14) having a portion (14a) which fits into said opening (13c, 51a) and makes contact with the bottom face (11b) of said semiconductor element (11).
  2. 4
    A semiconductor device as claimed in any one of claims 1 to 3, characterized in that said cap (13, 62) has a flange portion (13b) which is adhered on the top surface of said substrate (12, 61) and a raised portion (13a), portions of said raised portion (13a) around each of said plurality of openings (62a) or said one opening (13c) being adhered on the bottom face (11b) of the corres­ponding ones of said plurality of semiconductor elements (11) or said one semiconductor element (12).
  3. 5
    A semiconductor device as claimed in any one of claims 1 to 4, characterized in that the peripheral portion of said cap (13, 62) is soldered on the top surface of said substrate (12, 61) and the portions of said cap (13, 62) around each of said plurality of openings (62) or said one opening (13c) are soldered on the bottom face (11b) of the corresponding ones of said plurality of semiconductor elements (11) or said one semiconductor element (12).
  4. 6
    A semiconductor device as claimed in any one of claims 1 to 5, characterized in that said heatsink member (14, 63) has an external size which is approximately the same as an external size of said substrate (12, 61).
  5. 7
    A semiconductor device as claimed in any one of claims 1 to 6, characterized in that the portions (14a, 63a) of said heatsink member (14, 63) fitted into said plurality of openings (62a) or said one opening (13c) are soldered on the bottom face (11b) of the corresponding ones of said plurality of semiconductor elements (11) or said one semiconductor element (12).
  6. 8
    A semiconductor device as claimed in any one of claims 1 to 7, characterized in that said heatsink member (14, 63) is made of a material selected from a group of Mo, Cu, Al, AlN and SiC and having a thermal conductivity higher than that of a material constituting said cap (13, 62).
  7. 9
    A semiconductor device as claimed in any one of claims 1 to 6, characterized in that said heatsink member has fins (31, 41) on a top surface thereof.
  8. 10
    A method of producing a semiconductor device, character­ized in the steps of:forming a wiring layer (17) on a top surface of a substrate (12);mounting at least one semiconductor element (11) with a top face (11a) thereof downward on said substrate (12) and electrically coupled to said wiring layer (17);placing first and second preformed solders (21, 22;52) on said substrate (12) and on a bottom face (11a) of said semiconductor element (11);placing a cap (13, 51, 62) on said substrate (12), said cap (13, 51, 62 having at least one opening (13, 51a, 62a) which is smaller than an external size of said semicon­ ductor element (11), a peripheral portion of said cap (13, 51, 62) resting on the top surface of said substrate (12) via said first preformed solder (21;52) and a portion (13b, 51b) of said cap (13, 51, 62) around said opening (13c, 51a, 62a) resting on the bottom face of said semicon­ductor element (11) via said second preformed solder (22);placing a heatsink member (14, 63) on said cap (13, 51, 62), said heatsink member (14, 63) having a portion (14a, 63a) which fits into said opening (13c, 51a, 62a) and rests on the bottom face (11b) of said semiconductor element (11);and heating said semiconductor device (10, 30, 40, 50, 60) to reflow said first and/or said second preformed solder (21, 22, 52) to thereby hermetically seal said semiconductor element (11).
  9. 13
    A method of producing a semiconductor device, characteri­zed in the steps of:forming a wiring layer (17) on a top surface of a substrate (12);mounting at least one semiconductor element (11) with a top face (11a) thereof downward on said substrate (12) and electrically coupled to said wiring layer (17);mounting a cap (13, 51, 62) on said substrate (12), said cap (13, 51, 62) having at least one opening (13c, 51a, 62a) which is smaller than an external size of said semicon­ductor element (11), a peripheral portion of said cap (13, 51, 62) being soldered on the top surface of said substrate (12) and a portion of said cap (13, 51, 62) around said opening (13c,51a, 62a) being soldered on the bottom face (11b) of said semiconductor element (11) to thereby hermetically seal said semiconductor element (11);checking whether or not a satisfactory connection is obtained between said cap (13, 51, 62) and said semiconductor element (11);mounting a heatsink member (14, 63) on said cap (13, 51, 62), said heatsink member (14, 63) having a portion (14a, 63a) which fits into said opening (13c, 51a, 62a) and is soldered on the bottom face (11b) of said semicon­ductor element (11).