Chip package with decoupled thermal management
Chip packages and methods for fabricating the same are provided which utilize a first heat spreader interfaced with a first integrated circuit (IC) die and a second heat spreader separately interfaced with a second IC die. The separate heat spreaders allow the force applied to the first IC die to be controlled independent of the force applied to the second IC die.
1 . An electronic device comprising:
a package substrate;
a stiffener mounted to the package substrate;
a first IC die having a first surface and a second surface facing away from the first surface, the second surface of the first IC die facing the package substrate;
a second IC die having a first surface and a second surface, the second surface of the second IC die facing the package substrate;
a first heat spreader having a first surface and a second surface, the first surface of the first heat spreader having a die contact region configured for contacting the first surface of the first IC die, first heat spreader having an opening;
a second heat spreader having a first surface and a second surface, the second heat spreader movably disposed in the opening of the first heat spreader, the second heat spreader spaced from the first heat spreader by a gap defining a portion of the opening; and
a flexible heat pipe in thermal contact with the first heat spreader and the second heat spreader, the heat pipe movable with the second heat spreader relative to the first heat spreader, the heat pipe having a phase change material disposed therein.
2 . The electronic device of claim 1 , wherein the heat pipe has a first end fixed to the first heat spreader.
3 . The electronic device of claim 2 , wherein the heat pipe is disposed in a groove formed in the first surface of the second heat spreader.
4 . The electronic device of claim 2 , wherein the heat pipe is retained by a clip over the second heat spreader.
5 . The electronic device of claim 4 , wherein the heat pipe is movable within the clip.
6 . The electronic device of claim 2 , wherein the heat pipe is fixed to the second heat spreader, wherein a least a portion of the heat pipe on at least one side of the gap is free of the heat spreader in a manner that allows the second heat spreader to move relative to the first heat spreader.
7 . The electronic device of claim 1 further comprising:
a plurality of second springs biasing the second heat spreader to move relative to the first heat spreader.
8 . The electronic device of claim 7 further comprising:
a plurality of first springs biasing the first heat spreader to move in a direction in which the second heat spreader is urged relative to the first heat spreader by the plurality of second springs.
9 . The electronic device of claim 2 , wherein the second IC die is a photonics die.
10 . The electronic device of claim 1 , wherein opening is U-shaped.
11 . The electronic device of claim 1 , wherein opening is bounded on four sides by the first heat spreader.
12 . The electronic device of claim 1 , wherein the heat pipe has a first end fixed to the second heat spreader.
13 . The electronic device of claim 12 , wherein the heat pipe has a second end fixed to the first heat spreader.
14 . The electronic device of claim 12 , wherein the heat pipe has a fork terminating at a second end and a third end, the second and third forked ends of the heat pipe are fixed to the first heat spreader.
15 . The electronic device of claim 14 further comprising:
an active heat transfer device interfaced to the first heat spreader between the second and third forked ends of the heat pipe.
16 . The electronic device of claim 1 further comprising:
an interposer having the first IC die mounted thereto, the interposer mechanically and electrically connected to the package substrate.