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公开(公告)号:AU2014280335B2
公开(公告)日:2018-03-22
申请号:AU2014280335
申请日:2014-06-05
Applicant: BASF SE
Inventor: WONNEBERGER HENRIKE , BRUDER INGMAR , THIEL ERWIN , SEND ROBERT , IRLE STEPHAN
Abstract: A detector device (111) for determining an orientation of at least one object (112) is disclosed. The detector device comprises: at least two beacon devices (204), the beacon devices (204) being adapted to be at least one of attached to the object (112), held by the object (112) and integrated into the object (112), the beacon devices (204) each being adapted to direct light beams (138) towards a detector (110), the beacon devices (204) having predetermined coordinates in a coordinate system of the object (112); at least one detector (110) adapted to detect the light beams (138) traveling from the beacon devices (204) towards the detector (110); at least one evaluation device (142), the evaluation device (142) being adapted to determine longitudinal coordinates of each of the beacon devices (204) in a coordinate system of the detector (110), the evaluation device (142) being further adapted to determine an orientation of the object (112) in the coordinate system of the detector (110) by using the longitudinal coordinates of the beacon devices (204).
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公开(公告)号:AU2014280334B2
公开(公告)日:2018-02-01
申请号:AU2014280334
申请日:2014-06-05
Applicant: BASF SE
Inventor: BRUDER INGMAR , SEND ROBERT , IRLE STEPHAN , THIEL ERWIN
Abstract: An optical detector (110) is disclosed. The optical detector (110) comprises: - an optical sensor (112), having a substrate (116) and at least one photosensitive layer setup (118) disposed thereon, the photosensitive layer setup (118) having at least one first electrode (120), at least one second electrode (130) and at least one photovoltaic material (140) sandwiched in between the first electrode (120) and the second electrode (130), wherein the photovoltaic material (140) comprises at least one organic material, wherein the first electrode (120) comprises a plurality of first electrode stripes (124) and wherein the second electrode (130) comprises a plurality of second electrode stripes (134), wherein the first electrode stripes (124) and the second electrode stripes (134) intersect such that a matrix (142) of pixels (144) is formed at intersections of the first electrode stripes (124) and the second electrode stripes (134); and - at least one readout device (114), the readout device (114) comprising a plurality of electrical measurement devices (154) being connected to the second electrode stripes (134) and a switching device (160) for subsequently connecting the first electrode stripes (124) to the electrical measurement devices (154).
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公开(公告)号:ZA201505108B
公开(公告)日:2017-11-29
申请号:ZA201505108
申请日:2015-07-16
Applicant: BASF SE
Inventor: WONNEBERGER HENRIKE , SEND ROBERT , IRLE STEPHAN , THIEL ERWIN , SPILLER SIMONE CHRISTINA , BRUDER INGMAR
Abstract: A detector having a transversal optical sensor adapted to determine a transversal position of at least one light beam traveling from an object to the detector and a longitudinal optical sensor having at least one sensor region. The longitudinal optical sensor is designed to affect at least one longitudinal sensor signal in a manner dependent on an illumination of the sensor region by the light beam. The longitudinal sensor signal, given the same total power of the illumination, is dependent on a beam cross-section of the light beam in the sensor region.
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公开(公告)号:AU2015249509A1
公开(公告)日:2016-10-27
申请号:AU2015249509
申请日:2015-04-16
Applicant: BASF SE
Inventor: SEND ROBERT , BRUDER INGMAR , IRLE STEPHAN , THIEL ERWIN
Abstract: A detector (110) for determining a position of at least one object (112) is proposed. The detector (110) comprises: - at least one optical sensor (114), wherein the optical sensor (114) has at least one sensor region (136), wherein the optical sensor (114) is designed to generate at least one sensor signal in a manner dependent on an illumination of the sensor region (136) by illumination light traveling from the object (112) to the detector (110), -at least one beam-splitting device (129), wherein the beam-splitting device (129) is adapted to split the illumination light in at least two separate light beams (139), wherein each light beam travels on a light path to the optical sensor (114), -at least one modulation device (137) for modulating the illumination light, wherein the at least one modulation device (137) is arranged on one of the at least two light paths, -at least one evaluation device (142), wherein the evaluation device (142) is designed to generate at least one item of information from the at least one sensor signal (114), in particular at least one item of information about the distance and/or the color of the object (112).
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公开(公告)号:AU2014310703A1
公开(公告)日:2016-04-07
申请号:AU2014310703
申请日:2014-08-15
Applicant: BASF SE
Inventor: SEND ROBERT , BRUDER INGMAR , IRLE STEPHAN , THIEL ERWIN , WONNEBERGER HENRIKE
IPC: G01B11/25
Abstract: An optical detector (1 10) is disclosed, the optical detector (1 10) comprising: - at least one spatial light modulator (1 14) being adapted to modify at least one property of a light beam (136) in a spatially resolved fashion, having a matrix (132) of pixels (134), each pixel (134) being controllable to individually modify the at least one optical property of a portion of the light beam (136) passing the pixel (134); - at least one optical sensor (1 16) adapted to detect the light beam (136) after passing the matrix (132) of pixels (134) of the spatial light modulator (1 14) and to generate at least one sensor signal; - at least one modulator device (1 18) adapted for periodically controlling at least two of the pixels (134) with different modulation frequencies; and - at least one evaluation device (120) adapted for performing a frequency analysis in order to determine signal components of the sensor signal for the modulation frequencies.
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公开(公告)号:AU2014280332A1
公开(公告)日:2016-01-07
申请号:AU2014280332
申请日:2014-06-05
Applicant: BASF SE
Inventor: SEND ROBERT , BRUDER INGMAR , IRLE STEPHAN , THIEL ERWIN
Abstract: A detector (110) for determining a position of at least one object (118) is disclosed. The detector (110) comprises: at least one optical sensor (112), the optical sensor (112) being adapted to detect a light beam (150) traveling from the object (1 18) towards the detector (110), the optical sensor (112) having at least one matrix (152) of pixels (154); and at least one evaluation device (126), the evaluation device (126) being adapted for determining an intensity distribution of pixels (154) of the optical sensor (112) which are illuminated by the light beam (150), the evaluation device (126) further being adapted for determining at least one longitudinal coordinate of the object (118) by using the intensity distribution.
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公开(公告)号:AU2012219157C1
公开(公告)日:2015-08-20
申请号:AU2012219157
申请日:2012-02-09
Applicant: BASF SE
Inventor: BRUDER INGMAR , EICKEMEYER FELIX , ERK PETER , SENS RUEDIGER , IRLE STEPHAN , AL MOHAMEDI HAROUN , PELSTER ANDREAS , THIEL ERWIN
IPC: G01C3/00
Abstract: A detector (110) for optically detecting at least one object (112) is proposed. The detector (110) comprises at least one optical sensor (114). The optical sensor (114) has at least one sensor region (116). The optical sensor (114) is designed to generate at least one sensor signal in a manner dependent on an illumination of the sensor region (116). The sensor signal, given the same total power of the illumination, is dependent on a geometry of the illumination, in particular on a beam cross section of the illumination on the sensor area (118). The detector (110) furthermore has at least one evaluation device (122). The evaluation device (122) is designed to generate at least one item of geometrical information from the sensor signal, in particular at least one item of geometrical information about the illumination and/or the object (112).
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公开(公告)号:AU2013365772A2
公开(公告)日:2015-07-30
申请号:AU2013365772
申请日:2013-12-18
Applicant: BASF SE
Inventor: BRUDER INGMAR , SPILLER SIMONE CHRISTINA , THIEL ERWIN , IRLE STEPHAN , SEND ROBERT , WONNEBERGER HENRIKE
IPC: G01C3/06
Abstract: A detector (110) for determining a position of at least one object (112) is proposed. The detector (110) comprises: - at least one transversal optical sensor (130), the transversal optical sensor (130) being adapted to determine a transversal position of at least one light beam (138) traveling from the object (112) to the detector (110), the transversal position being a position in at least one dimension perpendicular to an optical axis (116) of the detector (110), the transversal optical sensor (130) being adapted to generate at least one transversal sensor signal; - at least one longitudinal optical sensor (132), wherein the longitudinal optical sensor (132) has at least one sensor region (136), wherein the longitudinal optical sensor (132) is designed to generate at least one longitudinal sensor signal in a manner dependent on an illumination of the sensor region (136) by the light beam (138), wherein the longitudinal sensor signal, given the same total power of the illumination, is dependent on a beam cross-section of the light beam (138) in the sensor region (136); - at least one evaluation device (142), wherein the evaluation device (142) is designed to generate at least one item of information on a transversal position of the object (112) by evaluating the transversal sensor signal and to generate at least one item of information on a longitudinal position of the object (112) by evaluating the longitudinal sensor signal.
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公开(公告)号:ZA201003275B
公开(公告)日:2011-08-31
申请号:ZA201003275
申请日:2010-05-10
Applicant: BASF SE
Inventor: SENS RUDIGER , VAMVAKARIS CHRISTOS , AHLERS WOLFGANG , THIEL ERWIN
IPC: G01N20060101 , G01J20060101
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公开(公告)号:DE502005007590D1
公开(公告)日:2009-08-06
申请号:DE502005007590
申请日:2005-12-21
Applicant: BASF SE
Inventor: SENS RUEDIGER , THIEL ERWIN
Abstract: A method for detecting differences between physically measurable properties of a sample and a reference sample. A two-dimensional reference field is generated and first and second two-dimensional patterns are produced respectively from the reference sample and the sample. A correction is made to sample response functions to eliminate time-dependent and location-dependent fluctuations of the detector.
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