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公开(公告)号:US20230266234A1
公开(公告)日:2023-08-24
申请号:US18006438
申请日:2021-07-23
Applicant: TRINAMIX GMBH
Inventor: Celal Mohan OEGUEN , Stefan HOOS , Robert GUST , Sebastian VALOUCH , Patrick SCHINDLER
IPC: G01N21/31
CPC classification number: G01N21/31
Abstract: Disclosed herein are a spectrometer device, a method for measuring optical radiation, and a spectrometer system including the spectrometer device. The spectrometer device includes
at least one radiation emitting element,
at least one photosensitive detector,
at least one control circuit, and
at least one readout circuit.
The spectrometer system is a mixed spectrometer which employs the advantages of a scanning spectrometer and a dispersive spectrometer. Compared to both, the mixed spectrometer constitutes a simplified spectrometer system by including a reduced number of required components and exhibiting a miniaturized mechanical set-up.-
公开(公告)号:US20200371237A1
公开(公告)日:2020-11-26
申请号:US16636148
申请日:2018-08-28
Applicant: trinamiX GmbH
Inventor: Patrick SCHINDLER , Peter SCHILLEN , Michael EBERSPACH , Christian LENNARTZ , Robert SEND , Ingmar BRUDER , Heiko HENGEN , Lars DIESSELBERG
Abstract: A detector for determining a position of at least one object is provided. The detector includes an evaluation device adapted to select at least one reflection feature of a reflection image, wherein the evaluation device is configured for determining at least one longitudinal region of the selected reflection feature of the reflection image by evaluating a combined signal Q from the sensor signals, wherein the evaluation device is adapted to determine at least one displacement region in at least one reference image corresponding to the longitudinal region, wherein the evaluation device is adapted to match the selected reflection feature with at least one reference feature within the displacement region.
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公开(公告)号:US20250104467A1
公开(公告)日:2025-03-27
申请号:US18729578
申请日:2023-02-15
Applicant: TRINAMIX GMBH
Inventor: Patrick SCHINDLER , Peter SCHILLEN , Christian LENNARTZ , Nicolas WIPFLER , Muhammad Muneeb HASSAN
Abstract: Disclosed herein is a system for identifying a subject interacting with a display device, where the system includes i) an image providing unit for providing a first image showing a first body part of the subject and a second image showing a second body part of the subject, where the first and the second image have been acquired by imaging the first and second body part, respectively, through a display of the display device, ii) a combined similarity determining unit for determining a combined degree of similarity of a) the first and the second image to b) a first and a second reference image corresponding to a reference subject identity, and iii) a subject identity determining unit for determining whether an identity of the subject corresponds to the reference subject identity based on the combined degree of similarity.
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公开(公告)号:US20250095335A1
公开(公告)日:2025-03-20
申请号:US18728129
申请日:2023-02-13
Applicant: TRINAMIX GMBH
Inventor: Peter SCHILLEN , Benjamin GUTHIER , Nicolas WIPFLER , Patrick SCHINDLER
IPC: G06V10/77 , G06V10/60 , G06V10/762 , G06V10/774 , G06V10/82 , G06V40/16
Abstract: Disclosed herein is a method for extracting material information of an object from a pattern image of the object. The pattern image showing the object while the object is illuminated with a light pattern is received. The pattern image is manipulated to generate a partial image from the pattern image. Material information of the object is extracted from the partial image by providing the partial image to a data-driven model. The data-driven model is parametrized according to a training data set including partial images and material information. The extracted material information is provided.
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公开(公告)号:US20240085518A1
公开(公告)日:2024-03-14
申请号:US18477104
申请日:2023-09-28
Applicant: trinamiX GmbH
Inventor: Michael EBERSPACH , Thomas OHMER , Robert SEND , Christian LENNARTZ , Christopher HAHNE , Stefan HENGEN , Sebastian VALOUCH , Christoph LUNGENSCHMIED , Ingmar BRUDER , Wilfried HERMES , Celal Mohan OEGUEN , Christian Daniel SCHILDKNECHT , Peter SCHILLEN , Patrick SCHINDLER , Peter FEJES
IPC: G01S5/16 , G01J1/04 , G01J1/42 , G01S7/48 , G01S7/481 , G01S7/493 , G01S11/12 , G01S17/32 , G01S17/36 , G01S17/46 , G01S17/50 , G01S17/66 , G01S17/89
CPC classification number: G01S5/16 , G01J1/0411 , G01J1/0422 , G01J1/4228 , G01S7/4804 , G01S7/4808 , G01S7/4816 , G01S7/493 , G01S11/12 , G01S17/32 , G01S17/36 , G01S17/46 , G01S17/50 , G01S17/66 , G01S17/89
Abstract: Described herein is a mobile device with an optical detector including:
at least one illumination source adapted to generate at least one illumination pattern for illuminating an object, where the illumination pattern includes a regular and/or constant and/or periodic pattern;
at least one sensor element having a matrix of optical sensors, the optical sensors each having a light-sensitive area, where each optical sensor is configured to generate at least one sensor signal in response to an illumination of the light-sensitive area by at least one light beam propagating from the object to the detector; and
at least one evaluation device adapted to determine at least one region of interest.-
公开(公告)号:US20240020864A1
公开(公告)日:2024-01-18
申请号:US18363420
申请日:2023-08-01
Applicant: TRINAMIX GMBH
Inventor: Patrick SCHINDLER , Friedrich SCHICK , Christian LENNARTZ , Peter SCHILLEN , Jakob UNGER
Abstract: A detector for determining a position of at least one object, the detector including:
at least one projector for illuminating the object with at least one illumination pattern;
at least one sensor element having a matrix of optical sensors; and
at least one evaluation device configured for determining initial distance information of reflection features by analysis of their respective beam profiles, where the evaluation device is configured for performing a calibration method.-
公开(公告)号:US20240013416A1
公开(公告)日:2024-01-11
申请号:US18363437
申请日:2023-08-01
Applicant: TRINAMIX GMBH
Inventor: Patrick SCHINDLER
Abstract: A method for determining a depth map of at least one object, the method including:
a) illuminating a scene including the object by using at least one flood light source; and imaging at least one pixelated flood image of the scene by using at least one camera;
b) projecting at least one illumination pattern on the scene by using at least one projector and imaging at least one pixelated reflection image using the at least one camera;
c) evaluating the flood image by using at least one evaluation device thereby determining reflectance R(x) for each pixel position x of the flood image;
d) evaluating the reflection image by using the evaluation device;
e) assigning and extrapolating with the evaluation device; and
f) determining the depth map with the evaluation device.-
公开(公告)号:US20240011770A1
公开(公告)日:2024-01-11
申请号:US18363474
申请日:2023-08-01
Applicant: TRINAMIX GMBH
Inventor: Patrick SCHINDLER , Christian BONSIGNORE , Benjamin REIN , Ruben HUEHNERBEIN
CPC classification number: G01B11/2504 , H04N23/56 , G03B21/208 , G06T7/80 , G03B21/2013
Abstract: Described herein is a method for calibrating a detector including at least one camera and at least one projector. The projector is configured for illuminating at least one target with at least one predefined illumination pattern including a plurality of illumination features. The camera has at least one sensor element having a matrix of optical sensors, the optical sensors each having a light-sensitive area, where each optical sensor is designed to generate at least one sensor signal in response to an illumination of its respective light-sensitive area by a light beam propagating from the target to the camera. The target includes at least one first target and at least one second target. The first target and the second target have a predefined fixed relative distance. The target is positioned at a pre-defined distance from the detector.
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公开(公告)号:US20240005538A1
公开(公告)日:2024-01-04
申请号:US18468327
申请日:2023-09-15
Applicant: TRINAMIX GMBH
Inventor: Patrick SCHINDLER , Benjamin REIN , Christian BONSIGNORE , Michael EBERSPACH , Peter SCHILLEN
IPC: G06T7/521 , G01B11/22 , G01B11/25 , G06V10/141 , G06V10/147 , G06V10/145 , G06V10/94 , G06V20/64
CPC classification number: G06T7/521 , G01B11/22 , G01B11/2513 , G06V10/141 , G06V10/147 , G06V10/145 , G06V10/94 , G06V20/647
Abstract: Disclosed herein is a display device including
a. at least one illumination source configured for projecting at least one illumination pattern comprising a plurality of illumination features on at least one scene;
b. at least one optical sensor having at least one light sensitive area, wherein the optical sensor is configured for determining at least one first image comprising a plurality of reflection features generated by the scene in response to illumination by the illumination features;
c. at least one translucent display configured for displaying information, wherein the illumination source and the optical sensor are placed in direction of propagation of the illumination pattern in front of the display; and
d. at least one evaluation device for analyzing the first image, wherein the evaluation device is configured for unambiguously matching of reflection features with corresponding illumination features.-
公开(公告)号:US20200183006A1
公开(公告)日:2020-06-11
申请号:US16347364
申请日:2017-11-17
Applicant: Trinamix GmbH
Inventor: Michael EBERSPACH , Christoph LUNGENSCHMIED , Robert SEND , Thomas OHMER , Stefan HENGEN , Ingmar BRUDER , Wilfried HERMES , Sebastian VALOUCH , Christian LENNARTZ , Peter SCHILLEN , Patrick SCHINDLER
Abstract: A detector (110) for determining a position of at least one object (112) is disclosed. The detector (110) comprises: at least one sensor element (118) having a matrix (120) of optical sensors (122), the optical sensors (122) each having a light-sensitive area (124), wherein each optical sensor (122) is configured to generate at least one sensor signal in response to an illumination of the light-sensitive area (124) by at least one light beam (116) propagating from the object (112) to the detector (110); at least one evaluation device (134) configured for evaluating the sensor signals, by a) determining at least one optical sensor (122) having the highest sensor signal and forming at least one center signal; b) evaluating the sensor signals of the optical sensors (122) of the matrix (120) and forming at least one sum signal; c) determining at least one combined signal by combining the center signal and the sum signal; and d) determining at least one longitudinal coordinate z of the object (112) by evaluating the combined signal.
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