IP Library Granted Patent US 12687432
Granted Patent B2
US 12687432 · App. 18/652,501 · Granted Jul 21, 2026

Multi-application optical sensing apparatus and method thereof

Inventors: Chih-Wei Yeh (Hsinchu County, TW); Hung-Chih Chang (Hsinchu County, TW); Yun-Chung Na (San Jose, CA); Tsung-Ting Wu (Hsinchu County, TW); Shu-Lu Chen (Hsinchu County, TW)
Assignee: Artilux, Inc.
G01J3/50G01B11/24G01J3/0208G01J3/51H04N25/53H04N25/702
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Quick Facts
Patent No.
US 12687432
App. No.
18/652,501
Granted
Jul 21, 2026
Kind
B2
Abstract

Systems, apparatuses, and methods for multi-application optical sensing are provided. For example, an optical sensing apparatus can include a photodetector array, a first circuitry, and a second circuitry. The photodetector array includes a plurality of photodetectors, wherein a first subset of the plurality of photodetectors are configured as a first region for detecting a first optical signal, and a second subset of the plurality of photodetectors are configured as a second region for detecting a second optical signal. The first circuitry, coupled to the first region, is configured to perform a first function based on the first optical signal to output a first output result. The second circuitry, coupled to the second region, is configured to perform a second function based on the second optical signal to output a second output result.

Claims (30)

1 . An optical sensing apparatus, comprising:

a light emitter configured to emit an optical signal to a target object;

a first die comprising a photodetector, wherein the photodetector is configured to detect a first optical signal with a first wavelength and a second optical signal with a second wavelength which is different from the first wavelength, wherein the photodetector comprises a same region for detecting the first optical signal and the second optical signal at different times, wherein the first optical signal is a first portion of the optical signal reflected by the target object, wherein the second optical signal is a second portion of the optical signal reflected by the target object, wherein the first optical signal is detected by the photodetector at a first time, and wherein the second optical signal is detected by the photodetector at a second time that is different from the first time; and

a processing circuitry configured to receive a first output result associated with the first optical signal and a second output result associated with the second optical signal, and perform a predetermined function based on the first output result and the second output result,

wherein the predetermined function comprises recognizing a material type of the target object.

2 . The optical sensing apparatus of claim 1 , further comprising a circuitry coupled to the photodetector, the circuitry configured to output the first output result associated with the first optical signal and to output the second output result associated with the second optical signal.

3 . The optical sensing apparatus of claim 2 , wherein the circuitry outputs the first output result and outputs the second output result at different times.

4 . The optical sensing apparatus of claim 2 , wherein the circuitry is formed on a second die, and the first die is bonded to the second die to form a single chip.

5 . The optical sensing apparatus of claim 1 , wherein the second wavelength is within short-wavelength infrared (SWIR) wavelength range.

6 . The optical sensing apparatus of claim 1 , wherein recognizing the material type of the target object further comprises determining a difference between the first output result and the second output result.

7 . The optical sensing apparatus of claim 1 , further comprising a driver configured to generate a driving signal to the light emitter to generate the optical signal.

8 . The optical sensing apparatus of claim 1 , wherein the light emitter comprises multiple light sources each configured to emit a different signal with a different wavelength.

9 . The optical sensing apparatus of claim 1 , wherein the photodetector comprises a light-absorption material including germanium, and the light-absorption material is formed on a silicon substrate.

10 . The optical sensing apparatus of claim 1 , further comprising a first wavelength filter arranged to pass light having the first wavelength.

11 . The optical sensing apparatus of claim 1 , further comprising a microlens formed on the photodetector.

12 . An optical sensing apparatus, comprising:

a substrate;

a light emitter arranged on the substrate and configured to emit an optical signal to a target object; and

a chip arranged on the substrate and comprising:

a first die comprising a photodetector, wherein the photodetector is configured to detect a first optical signal with a first wavelength and a second optical signal with a second wavelength which is different from the first wavelength, wherein the first optical signal is a first portion of the optical signal reflected by the target object and the second optical signal is a second portion of the optical signal reflected by the target object, and wherein the photodetector comprises a same region for detecting the first optical signal and the second optical signal at different times; and

a second die bonded to the first die, the second die comprising circuitry configured to perform a predetermined function based on the first optical signal and the second optical signal;

wherein the predetermined function comprises recognizing a material type of the target object.

13 . The optical sensing apparatus of claim 12 , wherein the circuitry is configured to output a first output result associated with the first optical signal and to output a second output result associated with the second optical signal, and wherein performing the predetermined function further comprises performing the predetermined function based on the first output result and the second output result.

14 . The optical sensing apparatus of claim 13 , wherein the circuitry outputs the first output result and outputs the second output result at a different time.

15 . The optical sensing apparatus of claim 13 , wherein recognizing the material type of the target object further comprises determining a difference between the first output result and the second output result.

16 . The optical sensing apparatus of claim 12 , wherein the photodetector comprises a light-absorption material including germanium, and the light-absorption material is formed on a silicon substrate.

17 . The optical sensing apparatus of claim 12 , wherein the second wavelength is within short-wavelength infrared (SWIR) wavelength range.

18 . The optical sensing apparatus of claim 12 , further comprising a first wavelength filter arranged to pass light having the first wavelength.

19 . The optical sensing apparatus of claim 12 , further comprising a microlens formed on the photodetector.

20 . The optical sensing apparatus of claim 12 , wherein the light emitter comprises multiple light sources each configured to emit a different signal with a different wavelength.