Electronic devices having semiconductor sensors with metal optical filters
An electronic device may include an ambient light sensor or other semiconductor sensor. The sensor may produce signals in response to light incident on the electronic device and therefore incident on the sensor. In some cases, components within the electronic device, such as infrared components, or external light sources may interfere with the operation of the sensor. Therefore, the sensor may include a filter that transmits at least a portion of visible light while blocking infrared light. Because light may be incident on the electronic device from a variety of angles, a diffuser in the sensor may scatter the light into a desired angular distribution. To ensure that infrared light is blocked regardless of the angle of the incident light, the filter may include both thin-film dielectric layers and metal layers. The metal layers may be interleaved with the thin-film dielectric layers.
1 . An ambient light sensor configured to provide ambient light measurements to control circuitry in an electronic device, the ambient light sensor comprising:
a substrate;
a light detector integrated circuit on the substrate; and
a filter on the light detector integrated circuit, wherein the filter comprises a thin-film interference filter that includes a plurality of thin-film dielectric layers and multiple metal layers interleaved with the plurality of thin-film dielectric layers.
2 . The ambient light sensor defined in claim 1 , further comprising:
a diffuser, wherein the filter is interposed between the diffuser and the substrate.
3 . The ambient light sensor defined in claim 2 , wherein the thin-film interference filter is a band pass filter.
4 . The ambient light sensor defined in claim 3 , wherein the multiple metal layers comprises at least one of a silver layer, an aluminum layer, or a gold layer.
5 . The ambient light sensor defined in claim 4 , wherein the plurality of thin-film dielectric layers comprises a stack of dielectric layers with alternating high and low indices of refraction.
6 . The ambient light sensor defined in claim 3 , wherein the band pass filter is configured to pass a respective range of visible light wavelengths while blocking at least 95% of infrared light.
7 . The ambient light sensor defined in claim 2 , wherein the light detector integrated circuit comprises a plurality of photodetectors.
8 . The ambient light sensor defined in claim 7 , wherein the filter and the diffuser overlap the plurality of photodetectors.
9 . The ambient light sensor defined in claim 7 , wherein the filter is one of a plurality of filters that each respectively overlaps a given one of the plurality of photodetectors and wherein the diffuser overlaps the plurality of photodetectors.
10 . An electronic device, comprising:
a transparent layer;
an optical component window in a portion of the transparent layer through which light passes; and
a light sensor aligned with the optical component window, wherein the light sensor comprises:
a substrate;
a light detector integrated circuit on the substrate;
a filter that overlaps the light detector integrated circuit, wherein the filter comprises a metal layer;
a diffuser, wherein the filter is interposed between the diffuser and the substrate; and
a spacer between the diffuser and the filter and wherein the spacer, the diffuser, and the filter are stacked on the substrate and the light detector integrated circuit, wherein the spacer extends across the filter from a first edge to a second edge.
11 . The electronic device defined in claim 10 , wherein the filter is a thin-film interference filter that further comprises a stack of thin-film dielectric layers.
12 . The electronic device defined in claim 11 , wherein the metal layer is interposed between thin-film inorganic dielectric layers of the stack of thin-film dielectric layers.
13 . The electronic device defined in claim 12 , wherein the thin-film dielectric layers have alternating high and low indices of refraction.
14 . A semiconductor device configured to generate signals in response to incident light, comprising;
a substrate;
a light detector integrated circuit on the substrate;
a diffuser that overlaps the substrate and the light detector integrated circuit; and
a filter interposed between the diffuser and the substrate, wherein the filter comprises a stack of thin-film dielectric layers with alternating high and low indices of refraction and a plurality of metal layers interleaved with the stack of thin-film dielectric layers.
15 . The semiconductor device defined in claim 14 , wherein the diffuser and the filter are coupled to the substrate and the light detector integrated circuit without any air gaps.
16 . The semiconductor device defined in claim 14 , wherein the filter is a band pass filter.