IP Library Patent Application 18612997
Patent Application
App. No. 18/612,997

DEVICE AND METHOD FOR SCANNING MEASUREMENT OF THE DISTANCE TO AN OBJECT

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Quick Facts
Patent No.
US None
App. No.
18/612,997
Abstract

A device for scanning measurement of the distance to an object has a light source which generates an optical signal having a varying frequency. A scanning device directs measuring light in different directions. A detector detects a superposition of reference light and reflected light. An evaluation device determines a distance to the object from the superposition detected by the detector. A light sensor, which is arranged in the light path of the emitted measuring light behind the scanning device in such a way that it is exposed to the measuring light only once per scanning cycle, detects a scanning movement of the emitted measuring light. A switch-off device switches off the light source or otherwise prevents the emission of measuring light if the light sensor does not detect a scanning movement of the measuring light.

Claims (25)

1 . A device for scanning measurement of the distance to an object, comprising

a light source configured to generate an optical signal having a varying frequency,

a scanning device configured to direct measuring light in different directions, the measuring light being formed by a first part of the optical signal generated by the light source,

a detector configured to detect a superposition of reference light and reflected light, wherein

the reference light is formed by a second part of the optical signal generated by the light source which is not supplied to the scanning device, and wherein

the reflected light is formed by the measuring light after it has been at least partially reflected by the object,

an evaluation device which is configured to determine a distance to the object based on the superposition detected by the detector,

a monitoring device comprising

a light sensor which is arranged in the light path of the emitted measuring light behind the scanning device and is configured to detect a scanning movement of the emitted measuring light, the light sensor being arranged such that it is exposed to the measuring light only once per scanning cycle, and

a switch-off device which is connected to the light sensor and is configured to switch off the light source or otherwise prevent emission of measuring light if the light sensor does not detect a scanning movement of the measuring light.

2 . The device of claim 1 , wherein a plurality of light sensors are arranged around a field which is swept by the measuring light during a scanning cycle.

3 . The device of claim 1 , wherein the cut-off device comprises a switching relay or a safe semiconductor switch configured to interrupt the power supply to the light source in response to a control signal.

4 . The device according of claim 1 , wherein the scanning device comprises

an optical distribution matrix comprising a plurality of optical switches and/or optical splitters and configured to distribute the measurement light simultaneously or successively to a plurality of optical output waveguides, and

deflection optics which are configured to deflect the measuring light emerging from the optical output waveguides in such a way that it is emitted in different directions.

5 . The device of claim 1 , wherein the scanning device comprises a rotatably mounted optical element comprising a reflective surface.

6 . A method for scanning measurement of the distance to an object, wherein the method comprises the following steps:

a) generating an optical signal having a varying frequency;

b) directing measuring light in different directions, the measuring light being formed by a first part of the optical signal;

c) detecting a superposition of reference light and reflected light, wherein

the reference light is formed by a second part of the optical signal which is not directed in different directions, and wherein

the reflected light is formed by the measuring light after it has been at least partially reflected by the object;

d) determining a distance to the object based on the superposition detected in step c);

e) detecting a scanning movement of the emitted measuring light with a light sensor, which is arranged in such a way that it is exposed to the measuring light only once per scanning cycle; and

f) preventing measuring light from being emitted as soon as the light sensor in step e) no longer detects any scanning movement of the measuring light.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 6, 2026
From: SCANTINEL PHOTONICS GMBH
To: SCANTINEL GMBH
Reel/Frame 075353/0757 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2025
From: HORN, JAN
To: SCANTINEL PHOTONICS GMBH
Reel/Frame 070521/0786 →