Semiconductor device manufacturing method and lead frame
A lead frame has a back surface having a multiple-irradiated region that is irradiated with laser light scanned in a first scan step and laser light scanned in a second scan step, a unit resin molded product that is formed in a cutting step has corner regions overlapping the multiple-irradiated region of the lead frame, and the multiple-irradiated region prevents the laser light emitted to the back surface from reaching portions of the resin material on the front surface of the lead frame, the portions being located at a position corresponding to the corner regions.
1 . A semiconductor device manufacturing method comprising:
a preparation step of preparing a lead frame having a front surface on which a semiconductor chip is mounted, and a back surface opposite the front surface, the back surface having a first groove extending in a first direction and a second groove extending in a second direction intersecting with the first direction;
a molding step of forming a resin molded product by sealing the lead frame and a plurality of semiconductor chips mounted on the lead frame with a resin material;
a first scan step of removing the resin material from the first groove by scanning laser light over the first groove in the first direction;
a second scan step of removing the resin material from the second groove by scanning laser light over the second groove in the second direction; and
a cutting step of forming a plurality of unit resin molded products by cutting and singulating the resin molded product along the first groove and the second groove, wherein
when the back surface of the lead frame is viewed in a direction perpendicular to the back surface,
the back surface of the lead frame has a multiple-irradiated region that is irradiated with laser light scanned in the first scan step and laser light scanned in the second scan step,
at least one of the plurality of unit resin molded products, formed in the cutting step, has a corner region located overlapping the multiple-irradiated region of the lead frame, and
the multiple-irradiated region of the lead frame prevents laser light emitted to the back surface from reaching a portion of the resin material on the front surface of the lead frame, the portion being located at a position corresponding to the corner region.
2 . The semiconductor device manufacturing method according to claim 1 , wherein
when the back surface of the lead frame is viewed in the direction perpendicular to the back surface, the lead frame prepared through the preparation step has:
a first tie bar portion extending in the first direction and having the back surface in which the first groove is formed; and
a second tie bar portion extending in the second direction and having the back surface in which the second groove is formed, wherein
the multiple-irradiated region is provided in an area where the first tie bar portion and the second tie bar portion intersect,
a width of the multiple-irradiated region in the second direction is greater than a width, in the second direction, of a portion of the first tie bar portion that is connected to the multiple-irradiated region, and
a width of the multiple-irradiated region in the first direction is greater than a width, in the first direction, of a portion of the second tie bar portion that is connected to the multiple-irradiated region.
3 . The semiconductor device manufacturing method according to claim 2 , wherein
the multiple-irradiated region is provided so as to form a hollow shape and no lead frame is disposed therein.
4 . A lead frame, having:
a front surface on which a semiconductor chip is mounted; and
a back surface opposite the front surface, the back surface having a first groove extending in a first direction and a second groove extending in a second direction intersecting with the first direction, wherein
the lead frame, together with a plurality of semiconductor chips mounted on the lead frame, is sealed with a resin material to form a resin molded product,
the resin material is removed from the first groove by scanning laser light over the first groove in the first direction, the resin material is removed from the second groove by scanning laser light over the second groove in the second direction, and a plurality of unit resin molded products are formed by cutting and singulating the resin molded product along the first groove and the second groove, wherein
when the back surface of the lead frame is viewed in a direction perpendicular to the back surface,
the back surface has a multiple-irradiated region that is irradiated with laser light when the resin material is removed from the first groove by scanning laser light over the first groove along the first direction, and when the resin material is removed from the second groove by scanning laser light over the second groove along the second direction, wherein
each of the plurality of unit resin molded products has a corner region located overlapping the multiple-irradiated region of the lead frame, and
the multiple-irradiated region of the lead frame prevents laser light emitted to the back surface from reaching a portion of the resin material on the front surface of the lead frame, the portion being located at a position corresponding to the corner region.
5 . The lead frame according to claim 4 , wherein
when the back surface of the lead frame is viewed in the direction perpendicular to the back surface, the lead frame has:
a first tie bar portion extending in the first direction and having the back surface in which the first groove is formed; and
a second tie bar portion extending in the second direction and having the back surface in which the second groove is formed, wherein
the multiple-irradiated region is provided in an area where the first tie bar portion and the second tie bar portion intersect,
a width of the multiple-irradiated region in the second direction is greater than a width, in the second direction, of a portion of the first tie bar portion that is connected to the multiple-irradiated region, and
a width of the multiple-irradiated region in the first direction is greater than a width, in the first direction, of a portion of the second tie bar portion that is connected to the multiple-irradiated region.
6 . The lead frame according to claim 5 , wherein
the multiple-irradiated region is provided so as to form a hollow shape, and no lead frame is disposed therein.