Barriers for selective exposed molding of variable height components
Packages and methods of assembly are described in which barriers are utilized during overmolding to improve volumetric efficiency. In one embodiment, a barrier includes multiple variable height components located on an interior of the barrier, where the barrier prevents the variable height components from being overmolded during the encapsulation process. In one embodiment, a barrier includes a camera module mounted on an image sensor located on an interior of the barrier, where the barrier prevents the camera module and image sensor from being overmolded during the encapsulation process. In an embodiment, a barrier is mounted on a secondary tier with the secondary tier mounted on a primary tier, where the barrier prevents multiple connector components located on an interior of the barrier from being overmolded during the encapsulation process.
1 . An electronic package comprising:
a substrate, the substrate including a bottom side and a top side;
a first set of components mounted on the bottom side of the substrate,
a barrier mounted on the top side of the substrate, wherein an interior surface of the barrier is coated with an ultraviolet (UV) reflective coating;
a second set of components mounted on the top side of the substrate, the second set of components including an interior set of components located within an interior of the barrier and an exterior set of components located on an exterior of the barrier;
a UV-cured molding compound on the top side encapsulating the interior set of components located within the interior of the barrier; and
a thermally cured molding compound on the top side encapsulating the exterior set of components located on the exterior of the barrier, wherein the thermally cured molding compound does not penetrate the interior of the barrier.
2 . The electronic package of claim 1 , wherein the interior set of components are mounted side-by-side.
3 . The electronic package of claim 2 , wherein a height of the barrier is at least as tall as a height of a tallest component of the interior set of components located within the interior of the barrier.
4 . The electronic package of claim 1 , wherein the interior set of components are arranged on top of each other.
5 . The electronic package of claim 4 , wherein the interior set of components include an image sensor mounted on the top side of the substrate and a camera module mounted on the image sensor.
6 . The electronic package of claim 5 , wherein the barrier includes a step surface, the step surface including an upper step wall, a step edge, and a lower step wall.
7 . The electronic package of claim 6 , wherein the step surface is coated with the ultraviolet (UV) reflective coating.
8 . The electronic package of claim 7 , wherein a flange of the camera module contacts the step edge of the barrier.
9 . The electronic package of claim 1 , wherein the thermally cured molding compound is a high-temperature molding compound.
10 . The electronic package of claim 1 , wherein the thermally cured molding compound is a low-temperature molding compound.
11 . The electronic package of claim 1 , wherein the first set of components mounted on the bottom side of the substrate are encapsulated with another molding compound.
12 . The electronic package of claim 1 , wherein the barrier is metallic.
13 . The electronic package of claim 1 , wherein the barrier is dielectric.
14 . The electronic package of claim 1 , wherein the barrier mates with a grommet window, the grommet window including a lens assembly.
15 . The electronic package of claim 1 , wherein the barrier is an interposer.
16 . The electronic package of claim 1 , wherein the barrier is mounted on a secondary substrate, the secondary substrate being mounted on multiple support walls of a primary substrate.
17 . The electronic package of claim 16 , wherein the secondary substrate includes a third set of components, the third set of components including connector components.