OPTOELECTRONIC MODULE FOR SPECTRAL AND PROXIMITY DATA ACQUISITION
Optoelectronic modules for proximity determination and ambient light sensing include hybrid optical assemblies configured with multiple field-of-views. The field of view in a region of the hybrid optical assembly can be dedicated to a first detector, while the field of views in another region of the hybrid optical assembly can be dedicated to both the emission of light and ambient light sensing. Embodiments relate particularly to implementation in a mobile phone or other portable electronic devices.
1 . An optoelectronic module comprising:
a substrate on which are integrated a light source operable to emit light at a particular one or more wavelengths with respect to an emission axis, a first detector operable to detect light at one or more wavelengths, and a second detector operable to detect light at one or more wavelengths;
a spacer structure laterally surrounding the light source, the second detector and the first detector, wherein the spacer structure is composed of a material that is non-transparent to the particular one or more wavelengths of light emitted by the light source or detectable by the second detector or first detector;
an inner wall isolating the first detector from the light source, wherein the inner wall is composed of a material that is non-transparent to the particular one or more wavelengths of light emitted by the light source or detectable by the second detector or the first detector; and
a hybrid optical assembly laterally surrounded by the spacer structure, the hybrid optical assembly including a first region characterized by a first field-of-view and a first optical axis, and a second region characterized by a second field-of-view and a second optical axis, and a third region characterized by a third field-of-view and a third optical axis, wherein the first region is aligned with the light source, the second region is aligned with the second detector, and the third region is aligned with the first detector.
2 . The optoelectronic module of claim 1 further comprising:
a first filter aligned with the first detector, wherein the first filter is transparent to the one or more wavelengths of light emitted by the light source; and
a second filter aligned with the second detector, wherein the second filter is non-transparent to the one or more wavelengths of light emitted by the light source.
3 . The optoelectronic module of claim 1 , further comprising:
a baffle structure composed of a material that is non-transparent to a particular one or wavelengths of light emitted by the light source or detectable by the second detector or the first detector.
4 . The optoelectronic module of claim 1 , in which the emission axis is substantially perpendicular to the substrate.
5 . The optoelectronic module of claim 1 , in which the first optical axis is substantially perpendicular to the substrate.
6 . The optoelectronic module of claim 1 , in which the emission axis is substantially coaxial with the first optical axis.
7 . The optoelectronic module of claim 1 , in which the first field-of-view is between 10° and 20°.
8 . The optoelectronic module of claim 1 , in which the first field-of-view is between 5° and 10°.
9 . The optoelectronic module of claim 1 , in which the first field-of-view is between 1° and 3°.
10 . The optoelectronic module of claim 1 , in which the second field-of-view is between 60° and 180°.
11 . The optoelectronic module of claim 1 , in which the light source emits light with wavelengths corresponding to infrared light.
12 . The optoelectronic module of claim 1 , in which the light source is a vertical-cavity surface-emitting laser.
13 . The optoelectronic module of claim 1 , in which the light source is operable to emit modulated light.
14 . The optoelectronic module of claim 1 , in which the hybrid optical assembly comprises an overmold that encases the second detector, the first detector and the light source.
15 . The optoelectronic module of claim 1 , in which the third optical axis is substantially perpendicular to the substrate.
16 . The optoelectronic module of claim 1 , in which the third optical axis is tilted with respect to the substrate such that the first field-of-view of the first region partially overlaps the third field-of-view of the third region.
17 . The optoelectronic module of claim 1 , in which the first field-of-view and third field-of-view partially overlap.