Optical sensor package and method of producing same
11143550 · 2021-10-12
Assignee
Inventors
Cpc classification
G01J1/0437
PHYSICS
G01J3/0205
PHYSICS
G01J1/0407
PHYSICS
G01J1/0266
PHYSICS
International classification
Abstract
The optical sensor package comprises an optical sensor device with a sensor element arranged inside a housing comprising a cap. A diffuser is arranged in an aperture of the cap opposite the sensor element and prolongs the cap in the aperture or closes the aperture. The method comprises forming a cap with an aperture, arranging a diffusing material in the aperture, thus forming a diffuser, and after forming the diffuser, arranging an optical sensor device with a sensor element inside a housing that includes the cap, such that the sensor element is opposite the diffuser.
Claims
1. An optical sensor package, comprising: an optical sensor device with a sensor element, a cover of the optical sensor device, and a housing comprising a cap with an aperture, the optical sensor device being arranged inside the housing, a diffuser is arranged in the aperture opposite the sensor element, the diffuser prolongs the cap within the aperture or closes the aperture, and the cover being arranged at a distance from the diffuser, wherein the distance is adjusted with respect to the cover in such a manner that a maximal angle of incidence of 40° is obtained at the sensor element for radiation of at least one wavelength that is to be detected.
2. The optical sensor package of claim 1, wherein the diffuser comprises an epoxy resin.
3. The optical sensor package of claim 1, wherein the diffuser comprises silicone.
4. The optical sensor package of claim 1, wherein the cap comprises a liquid-crystal polymer.
5. The optical sensor package of claim 1, wherein the cap comprises a polyphenylene sulfide.
6. The optical sensor package of claim 1, wherein the cap comprises a metal.
7. The optical sensor package of claim 1, wherein the cover has a refractive index greater than a refractive index that is present between the cover and the diffuser by a factor of at least 1.5 for at least one wavelength that is to be detected.
8. The optical sensor package of claim 1, wherein a lateral surface of the cap facing the aperture is provided with a structural feature.
9. The optical sensor package of claim 8, wherein the lateral surface is tapered towards the diffuser.
10. A method of producing an optical sensor package, comprising: forming a cap with an aperture, arranging a diffusing material in the aperture, thus forming a diffuser, and after forming the diffuser, arranging an optical sensor device with a sensor element inside a housing that includes the cap, such that the sensor element is opposite the diffuser, wherein the optical sensor device comprises a cover that is arranged at a distance from the diffuser, and wherein the distance is adjusted with respect to the cover in such a manner that a maximal angle of incidence of 40° is obtained at the sensor element for radiation of at least one wavelength that is to be detected.
11. The method of claim 10, wherein an epoxy resin or silicone is used for the diffusing material.
12. The method of claim 10, wherein a material selected from the group consisting of liquid-crystal polymer, polyphenylene sulfide and metal is used for the cap.
13. The method of claim 10, further comprising: forming the cap and the diffuser by injection molding, using an opaque material for the cap and a diffusing material for the diffuser.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The following is a detailed description of examples of the optical sensor package and the method of production in conjunction with the appended figures.
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION
(6)
(7) The cap 2 comprises an aperture 11. The diffuser 3 is arranged in the aperture 11, so that it prolongs the cap 2 inside the aperture 11 and thus complements the shape of the cap 2. The diffuser 3 may in particular close the aperture 11. The cap 2 may especially comprise an opaque material. The diffuser 3 comprises a diffusing material, which may include an epoxy resin or silicone.
(8) In the example shown in
(9) A further compartment 16 may be formed in the housing 1, 2, as shown in
(10) Above the further optical device 6, the cap 2 comprises a further aperture 13, which allows light emitted by the further optical device 6 to exit the housing 1, 2. In this example, the further aperture 13 need not be provided with a further diffuser. In embodiments that are intended for different applications, the further aperture 13 may be provided with a further diffuser as well.
(11) The optical sensor package according to
(12)
(13) The cover 7 has an upper surface that is at a distance d from the diffuser 3. The gap between the diffuser 3 and the cover 7 may be filled with air, for instance. Hence a value of approximately 1 may be assumed for the refractive index in the gap. The cover 7 may be formed from a clear molding compound having a refractive index that is typically greater than 1.5 for at least one wavelength that is to be detected. The wavelength may especially be 589 nm, which is used in standard refractive index measurements. Thus the cover has a refractive index greater than a refractive index that is present between the cover and the diffuser by a factor of at least 1.5 for at least one wavelength that is to be detected.
(14)
(15) If the ratio of the refractive indices is assumed to be 1.56, which is typical for a clear molding compound and for a wavelength within the range of wavelengths to be detected, the maximal angle of incidence a is approximately 40°. The maximal angle of incidence a is half the apex angle of the cone defining the solid angle of the field of view that is obtained by the aperture 11 including the diffuser 3.
(16) The path of the light ray shown in
(17)
(18) The aperture 11 is filled with a diffusing material. This may especially be accomplished by dispensing epoxy resin or silicone.
(19) Injection molding of two components may also be employed for the production of the cap 2 with the diffuser 3. The components may include an opaque material, in particular a black material, and a diffusing material, in particular a white material.
(20)
(21) The described optical sensor package allows to combine a color sensor and a proximity sensor. If the apertures provided for the color sensor and the proximity sensor are spatially separated, as in the example according to
(22) The described optical sensor package with integrated diffuser provides a relatively wide field of view together with an appropriate restriction of the maximal angle of light incidence. It does not require external components and enables the calibration of the sensor during a final test.