Power die package
A power die package includes a lead frame having a flag with power leads on one lateral side and signal leads on one or more other lateral sides. A power die is attached to a bottom surface of the flag and electrically connected to the power leads with a conductive epoxy. A control die is attached to a top surface of the flag and electrically connected to the signal leads with bond wires. A mold compound is provided that encapsulates the dies, the bond wires, and proximal parts of the leads, while distal ends of the leads are exposed, forming a PQFN package.
1. A power die package, comprising:
a lead frame having a flag having an upper surface for receiving a control die and a lower surface for receiving a power die, a plurality of power leads adjacent to and spaced from a first lateral side of the flag and a plurality of signal leads adjacent to and spaced from at least one other lateral side of the flag, wherein the plurality of power leads have proximal ends nearer to the flag and distal ends spaced further from the flag;
a control die having a back side attached to the upper surface of the flag and an active side opposite said back side that includes a plurality of control die electrodes, wherein a first set of the plurality of control die electrodes are electrically connected to the plurality of signal leads with first bond wires, and a second set of the plurality of control die electrodes, different from the first set of the plurality of control die electrodes, is electrically connected to a second set of the power die electrodes, different from the first set of power die electrodes, with second bond wires; and
a power die having a first side attached to the lower surface of the flag, wherein the power die has a plurality of power die electrodes including a first set of power die electrodes that are electrically connected to respective leads of the plurality of power leads.
2. The power die package of claim 1 , wherein the power die has a larger footprint than the flag such that a portion of the power die including the first set of power die electrodes overhangs the flag.
3. The power die package of claim 2 , wherein the first set of power die electrodes are in direct contact with the plurality of power die leads.
4. The power die package of claim 3 , wherein the signal leads and the distal ends of the power die leads lie in a first plane and proximal ends of the power die leads and the flag lie in a second plane, wherein the second plane is parallel to and spaced from the first plane, such that the proximal ends of the power die leads rest on top of and are in electrical contact with the first set of power die electrodes.
5. The power die package of claim 4 , wherein an active surface of the power die is attached to the lower surface of the flag with an electrically conductive epoxy and the proximal ends of the power die leads are attached to the first set of power die electrodes also with electrically conductive epoxy.
6. The power die package of claim 2 , wherein the control die has a smaller footprint than the flag such that the control die is disposed within the footprint of the flag.
7. The power die package of claim 6 , wherein the control die is attached to the flag with a die attach adhesive tape.
8. The power die package of claim 1 , wherein the flag is rectangular, and the power leads are adjacent to the first lateral side of the flag and the signal leads are spaced around the remaining three other sides of the flag.
9. The power die package of claim 1 , further comprising a mold compound that encases the flag, the proximal ends of the power leads, the signal leads, the control die, the power die, and the electrical connections between the power leads and the power die electrodes and the signal leads and the first set of the plurality of control die electrodes, wherein a bottom surface of the power die is exposed.
10. The power die package of claim 9 , further comprising a layer of solder formed over the exposed bottom surface of the power die.
11. The power die package of claim 9 , wherein the package comprises a quad flat no-leads (QFN) package.
12. The power die package of claim 9 , wherein:
the first set of the plurality of control die electrodes are electrically connected to the plurality of signal leads with first bond wires;
a second set of the plurality of control die electrodes, different from the first set of the plurality of control die electrodes, is electrically connected to a second set of the power die electrodes, different from the first set of power die electrodes, with second bond wires;
the power die has a larger footprint than the flag such that a portion of the power die including the first set of power die electrodes overhangs the flag;
the first set of power die electrodes are in direct contact with the plurality of power die leads;
the signal leads and the distal ends of the power die leads lie in a first plane and proximal ends of the power die leads and the flag lie in a second plane, wherein the second plane is parallel to and spaced from the first plane, such that the proximal ends of the power die leads rest on top of and are in electrical contact with the first set of power die electrodes;
an active surface of the power die is attached to the lower surface of the flag with a conductive epoxy and the proximal ends of the power die leads are attached to the first set of power die electrodes also with conductive epoxy;
the control die has a smaller footprint than the flag such that the control die is disposed within the footprint of the flag; and
the control die is attached to the flag with a die attach adhesive tape.
13. A method of assembling a power die package, comprising:
providing a lead frame including a flag having an upper surface for receiving a control die and a lower surface for receiving a power die, a plurality of power leads adjacent to and spaced from a first lateral side of the flag and a plurality of signal leads adjacent to and spaced from at least one other lateral side of the flag, wherein the power leads have proximal ends nearer to the flag and distal ends spaced further from the flag;
attaching an active side of a power die to the lower surface of the flag, wherein the power die has a larger footprint than the flag such that a portion of the power die overhangs the flag, and wherein the portion of the power die that overhangs the flag has a plurality of power die electrodes including a first set of power die electrodes that are in contact with and electrical communication with the proximal ends of the power leads;
attaching a back side of a control die to the upper surface of the flag, wherein an active side of the control die opposite said back side of the flag includes a plurality of control die electrodes;
electrically connecting a first set of the plurality of control die electrodes with the plurality of signal leads with first bond wires;
encasing the flag, the proximal ends of the power leads, the signal leads, the control die, the power die, the electrical connections between the power leads and the first set of power die electrodes, and the first bond wires with a mold compound, wherein a bottom surface of the power die is exposed.
14. The method of claim 13 , further comprising forming a layer of solder over the exposed bottom surface of the power die.
15. The method of claim 13 , further comprising electrically connecting a second set of the plurality of control die electrodes with a second set of the power die electrodes with second bond wires.
16. The method of claim 13 , further comprising performing a trim and form step on exposed portions of the power leads and the signal leads to form a Quad Flat No-leads (QFN) package.
17. The method of claim 13 , wherein the signal leads and the distal ends of the power die leads lie in a first plane and proximal ends of the power die leads and the flag lie in a second plane, wherein the second plane is parallel to and spaced from the first plane, such that the proximal ends of the power die leads rest on top of and are in electrical contact with the first set of power die electrodes.
18. The method of claim 13 , wherein the power die is attached to the flag with an electrically conductive epoxy and the control die is attached to the flag with a non-conductive die attach adhesive.
19. A power die package, comprising:
a lead frame having a flag having an upper surface for receiving a control die and a lower surface for receiving a power die, a plurality of power leads adjacent to and spaced from a first lateral side of the flag and a plurality of signal leads adjacent to and spaced from at least one other lateral side of the flag, wherein the plurality of power leads have proximal ends nearer to the flag and distal ends spaced further from the flag;
a control die having a back side attached to the upper surface of the flag and an active side opposite said back side that includes a plurality of control die electrodes, wherein a first set of the plurality of control die electrodes are electrically connected to the plurality of signal leads with first bond wires; and
a power die having a first side attached to the lower surface of the flag, wherein the power die has a plurality of power die electrodes including a first set of power die electrodes that are electrically connected to respective leads of the plurality of power leads, and wherein the power die has a larger footprint than the flag such that a portion of the power die including the first set of power die electrodes overhangs the flag.
20. The power die package of claim 19 , wherein the first set of power die electrodes are in direct contact with the plurality of power die leads.