IP Library Granted Patent US 12680954
Granted Patent B2
US 12680954 · App. 18/294,887 · Granted Jul 14, 2026

Spectral sensing device and method for measuring optical radiation

Inventors: Celal Mohan Oeguen (Ludwigshafen, DE); Thomas Hupfauer (Ludwigshafen, DE); Samiul Islam (Ludwigshafen, DE)
Assignee: TRINAMIX GMBH
G01N21/359
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Quick Facts
Patent No.
US 12680954
App. No.
18/294,887
Filed
Feb 2, 2024
Granted
Jul 14, 2026
Kind
B2
Art Unit
2884
USPC
250/341.1
Abstract

Disclosed herein are a spectral sensing device and a method for measuring optical radiation. The optical radiation is provided by at least one measurement object and includes non-modulated optical radiation. The spectral sensing device includes at least one radiation emitting element; at least one photosensitive detector; and at least one evaluation unit. The spectral sensing device is arranged in a manner such that modulated optical radiation is guided within the spectral sensing device towards at least one photosensitive detector. The spectral sensing device and a method for measuring optical radiation are configured to perform, preferably in a fully automatized fashion, a self-calibration of the spectral sensing device without requiring any predefined reflection target.

Claims (48)

1 . A spectral sensing device for measuring optical radiation emitted by at least one measurement object, wherein the optical radiation emitted by the at least one measurement object comprises non-modulated optical radiation, the spectral sensing device comprising:

at least one radiation emitting element, wherein the at least one radiation emitting element is designated for emitting modulated optical radiation;

at least one photosensitive detector, wherein the at least one photosensitive detector has at least one photosensitive region designated for receiving optical radiation, wherein at least one detector signal generated by the at least one photosensitive detector is dependent on an illumination of the at least one photosensitive region; and

at least one evaluation unit, wherein the at least one evaluation unit is configured for generating at least one piece of measurement information about the illumination of the at least one photosensitive region by the optical radiation emitted by the at least one measurement object by using at least one modulated detector signal as generated by the illumination of the at least one photosensitive region by a superposition of the modulated optical radiation and the optical radiation emitted by the at least one measurement object,

wherein the spectral sensing device is arranged in a manner that the modulated optical radiation is guided within the spectral sensing device towards the at least one photosensitive detector.

2 . The spectral sensing device according to claim 1 , wherein the at least one piece of measurement information relates to a responsivity of the at least one photosensitive detector.

3 . The spectral sensing device according to claim 1 , wherein the at least one piece of measurement information comprises at least one of a change ΔR in a resistance of the at least one photosensitive detector and a responsivity dependent quotient of the at least one photosensitive detector.

4 . The spectral sensing device according to claim 3 , wherein the at least one responsivity dependent quotient is defined as a quotient of the change ΔR in the resistance of the at least one photosensitive detector divided by a DC resistance R DC of the at least one photosensitive detector.

5 . The spectral sensing device according to claim 3 , wherein the change ΔR in the resistance of the at least one photosensitive detector is induced by a superposition of the optical radiation emitted by the at least one measurement object with the modulated optical radiation emitted by the at least one radiation emitting element at the at least one photosensitive detector.

6 . The spectral sensing device according to claim 1 , wherein the at least one radiation emitting element is designated for emitting the modulated optical radiation in a manner that the modulated optical radiation has a constant average illumination power over a time interval.

7 . The spectral sensing device according to claim 1 , comprising at least two individual photosensitive detectors, wherein

the at least one photosensitive region of at least one first photosensitive detector is designated for receiving the modulated optical radiation; and

the at least one photosensitive region of at least one second photosensitive detector is designated for receiving the optical radiation emitted by the at least one measurement object and the modulated optical radiation.

8 . The spectral sensing device according to claim 7 , further comprising at least one radiation separating element, wherein the at least one radiation separating element is designated and arranged for separating the modulated optical radiation from the optical radiation emitted by the at least one measurement object.

9 . The spectral sensing device according to claim 8 , wherein the at least one radiation separating element comprises at least one

first optical filter element, wherein the at least one first optical filter element is designated and arranged in a manner that the at least one photosensitive region of the at least one first photosensitive detector only receives the modulated optical radiation.

10 . The spectral sensing device according to claim 8 , wherein the at least one radiation separating element comprises

at least one non-transparent optical element, wherein the at least one non-transparent optical element is designated and arranged in a manner that

the at least one photosensitive region of the at least one first photosensitive detector only receives the modulated optical radiation.

11 . The spectral sensing device according to claim 1 , further comprising

at least one further radiation emitting element, wherein the at least one further radiation emitting element is designated for emitting further modulated optical radiation;

wherein the at least one evaluation unit is further configured for generating at least one piece of spectral information about the at least one measurement object by using

at least one modulated detector signal as generated by the illumination of the at least one photosensitive region by a superposition of the optical radiation emitted by the at least one measurement object and the further modulated optical radiation; and

the at least one piece of measurement information,

wherein the spectral sensing device is arranged in a manner that the further modulated optical radiation is guided towards the at least one measurement object.

12 . The spectral sensing device according to claim 11 , wherein the at least one evaluation unit is further configured for

generating at least one piece of calibration information by comparing the at least one modulated detector signal as generated by the illumination of the at least one photosensitive region by the modulated optical radiation and at least one further modulated detector signal as generated by the illumination of the at least one photosensitive region by the further modulated optical radiation.

13 . The spectral sensing device according to claim 11 , wherein the at least one further radiation emitting element is designated for emitting the further modulated optical radiation in a manner that the further modulated optical radiation has a constant average illumination power over a time interval.

14 . The spectral sensing device according to claim 11 , wherein the spectral sensing device is arranged in a manner that the further modulated optical radiation is reflected by the at least one measurement object.

15 . The spectral sensing device according to claim 11 , comprising at least two individual photosensitive detectors, wherein

the at least one photosensitive region of at least one further first photosensitive detector is designated for receiving the modulated optical radiation; and

the at least one photosensitive region of at least one further second photosensitive detector is designated for receiving the further modulated optical radiation and the optical radiation emitted by the at least one measurement object.

16 . The spectral sensing device according to claim 1 , further comprising

at least one temperature stabilizing element, wherein the at least one temperature stabilizing element is designated for maintaining a temperature of at least one of

the at least one photosensitive detector; and

the at least one radiation emitting element

at a constant level.

17 . The spectral sensing device according to claim 1 , further comprising at least one partially reflective optical element to reflect the modulated optical radiation towards the at least one photosensitive detector, the partially reflective optical element transparent to the non-modulated optical radiation emitted by the measurement object.

18 . A method for measuring optical radiation emitted by at least one measurement object, wherein the optical radiation emitted by the at least one measurement object comprises non-modulated optical radiation, the method comprising the following steps:

a) emitting modulated optical radiation by using at least one radiation emitting element, wherein the modulated optical radiation is guided within a spectral sensing device towards at least one photosensitive detector, wherein the at least one photosensitive detector has at least one photosensitive region designated for receiving optical radiation, wherein at least one detector signal generated by the at least one photosensitive detector is dependent on an illumination of the at least one photosensitive region; and

b) generating at least one piece of measurement information about the illumination of the at least one photosensitive region by the optical radiation emitted by the at least one measurement object by using at least one evaluation unit by using at least one detector signal generated by the illumination of the at least one photosensitive region by a superposition of the modulated optical radiation and the optical radiation emitted by the at least one measurement object.

19 . The method according to claim 18 , further comprising the following steps:

c) emitting further modulated optical radiation by using at least one further radiation emitting element, wherein the further modulated optical radiation is guided towards the at least one measurement object; and

d) generating at least one piece of spectral information about the at least one measurement object by using the at least one evaluation unit by using

at least one modulated detector signal as generated by the illumination of the at least one photosensitive region by a superposition of the optical radiation emitted by the at least one measurement object and the further modulated optical radiation; and

the at least one piece of measurement information.

20 . The method according to claim 18 , further comprising the following step:

e) generating at least one piece of calibration information by using the at least one evaluation unit by further comparing the at least one detector signal as generated by the illumination of the at least one photosensitive region by the modulated optical radiation and at least one further detector signal as generated by the illumination of the at least one photosensitive region by the further modulated optical radiation.