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    • 71. 发明申请
    • SPECTROMETER DEVICE AND SYSTEM
    • WO2019115595A1
    • 2019-06-20
    • PCT/EP2018/084510
    • 2018-12-12
    • TRINAMIX GMBH
    • VALOUCH, SebastianGUST, RobertFEUERSTEIN, BertramSEND, RobertBRUDER, Ingmar
    • G01J3/26G02B27/09G01J3/02
    • G01J3/26G01J3/021G01J5/0014G01J2003/1234G01J2003/1282G02B27/0983
    • A spectrometer system (110) and a spectrometer device (112) are disclosed, which are suited for investigation or monitoring purposes, in particular, in the infrared (IR) spectral region, and for a detection of heat, flames, fire, or smoke. Herein, the spectrometer device (112) comprises - an optical element (122) designed for receiving incident light (114) from an object (116) and transferring the incident light (114) to a length variable filter (118), wherein the optical element (122) comprises an optical concentrator device (124), wherein the optical concentrator device (124) is operated in reverse direction (126), wherein the optical concentrator device (124) has a single sidewall (128) which is adapted for reflecting incident light, wherein the single sidewall (128) is designed as a rounded sidewall; - the length variable filter (118) which is designated for separating the incident light (114) into a spectrum of constituent wavelength signals; and - a detector array (120) comprising a plurality of pixelated sensors (144), wherein each of the pixelated sensors (144) is adapted to receive at least a portion of one of the constituent wavelength signals, wherein each of the constituent wavelength signals is related to an intensity of each constituent wavelength. The spectrometer device (112) allows capturing incident light (114) from the object (116) and transferring the incident light (114) to the length variable filter (118) with a particularly high concentration efficiency. Apart from the spectrometer device (112), the spectrometer system (110) further comprises an evaluation unit (150) designated for determining information related to a spectrum of an object (116) by evaluating the detector signals (204, 204', 204") provided by the spectrometer device (112).
    • 73. 发明申请
    • DETECTOR FOR OPTICALLY DETECTING AT LEAST ONE OBJECT
    • WO2019011803A1
    • 2019-01-17
    • PCT/EP2018/068370
    • 2018-07-06
    • TRINAMIX GMBH
    • SEND, RobertVALOUCH, SebastianBRUDER, IngmarEBERSPACH, MichaelOHMER, Thomas
    • G01S17/00G01S17/10G01S7/481G01S7/486G01S17/46
    • G01S7/486G01S7/4816G01S17/003G01S17/10G01S17/46
    • A detector (110) for determining a position of at least one object (112) is proposed. The detector (110) comprises: - at least one illumination source (114) adapted to generate at least one illumination light beam (116) for illuminating the object (112); a plurality of optical sensors (120), wherein each optical sensor (120) has at least one light sensitive area (121), wherein at least one of the optical sensors (120) is designed to generate at least one first sensor signal in response to an illumination of its respective light-sensitive area (121) by a reflection light beam (118) from the object (112), wherein the first sensor signal comprises at least one information of a first distance from the object (112) to the light sensitive area (121) of the optical sensor (120), wherein at least two of the optical sensors (120) are designed to generate at least one second sensor signal in response to the illumination of its respective light- sensitive area (121) by the reflection light beam (118), wherein each of the second sensor signal comprises at least one information about a beam profile of the reflection light beam (118) impinging on the light sensitive area (121); at least one evaluation device (128), wherein the evaluation device (128) is configured for determining at least one first longitudinal coordinate z 1 of the object (112) by evaluating the first sensor signal, wherein the evaluation device (128) is configured for determining at least one second longitudinal coordinate z 2 of the object (112) by evaluating a first combined signal Q from the second sensor signals.
    • 74. 发明申请
    • DETECTOR FOR OPTICALLY DETECTING AT LEAST ONE OBJECT
    • WO2018167215A1
    • 2018-09-20
    • PCT/EP2018/056545
    • 2018-03-15
    • TRINAMIX GMBH
    • SEND, RobertOEGUEN, Celal MohanHAHNE, ChristopherEBERSPACH, MichaelBRUDER, IngmarSCHERWATH, Bernd
    • G01S17/46G01S3/783G01S7/481
    • A detector (110) for determining a position of at least one object is proposed. The detector (110) comprises: - at least one angle dependent optical element (130) adapted to generate at least one light beam (131) having at least one beam profile depending on an angle of incidence of an incident light beam (116) propagating from the object (112) towards the detector (110) and illuminating the angle dependent optical element (130), wherein the angle dependent optical element (130) comprises at least one optical element selected from the group consisting of: at least one optical fiber, in particular at least one multifurcated optical fiber, in particular at least one bifurcated optical fiber; at least one diffractive optical element; at least one angle dependent reflective element, at least one diffractive grating element, in particular a blaze grating element; at least one aperture stop; at least one prism; at least one lens; at least one lens array, in particular at least one microlens array; at least one optical filter; at least one polarization filter; at least one bandpass filter; at least one liquid crystal filter, in particular a liquid crystal tunable filter; at least one short-pass filter; at least one long-pass filter; at least one notch filter; at least one interference filter; at least one transmission grating; at least one nonlinear optical element, in particular one birfringent optical element; - at least two optical sensors (113), wherein each optical sensor (113) has at least one light sensitive area (121), wherein each optical sensor (113) is designed to generate at least one sensor signal in response to an illumination of its respective light-sensitive area by the light beam (131) generated by the angle dependent optical element (130); at least one evaluation device (133) being configured for determining at least one longitudinal coordinate z of the object (112) by evaluating a combined signal Q from the sensor signals.
    • 75. 发明申请
    • DETECTOR FOR OPTICALLY DETECTING AT LEAST ONE OBJECT
    • 至少光学检测一个物体的探测器
    • WO2017186851A1
    • 2017-11-02
    • PCT/EP2017/060058
    • 2017-04-27
    • TRINAMIX GMBH
    • VALOUCH, SebastianSEND, RobertBRUDER, IngmarANDERMAHR, NiklasVOGLER, AndreasASFOUR, Jean-Michel
    • G01C3/06G01S17/46G01S3/786G02B27/10
    • G01S3/786G01C11/02G01S7/4912G01S17/46G02B27/1013
    • A detector (110) for an optical detection of at least one object (112) is disclosed. The detector (110) comprises: - at least one longitudinal optical sensor (114), wherein the longitudinal optical sensor (114) has at least one sensor region (134), wherein the longitudinal optical sensor (114) is designed to generate at least one longitudinal sensor signal in a manner dependent on an illumination of the sensor region (134) by a light beam, wherein 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 (134); - at least one transfer device (128), wherein the transfer device (128) exhibits at least two different focal lengths in response to at least one incident light beam, wherein the transfer device (128) is adapted to adjust the beam cross-section of at least one first light beam (130) having a first wavelength and at least one second light beam (132) having a second wavelength different from the first wavelength depending on the wavelength of respective light beams, such that in the sensor region (134), the beam cross-section of the first light beam (130) is different from the beam cross-section of the second light beam (132); and - at least one evaluation device (156), wherein the evaluation device (156) is adapted to differentiate the longitudinal sensor signal of the longitudinal optical sensor (114) into a first longitudinal sensor signal dependent on the illumination of the sensor region (134) by the first light beam and into a second longitudinal sensor signal dependent on the illumination of the sensor region (134) by the second light beam, wherein the evaluation device (156) is designed to generate at least one item of information on a longitudinal position of the object (112) by evaluating the first longitudinal sensor signal and the second longitudinal sensor signal.
    • 公开了一种用于光学检测至少一个物体(112)的检测器(110)。 检测器(110)包括: - 至少一个纵向光学传感器(114),其中纵向光学传感器(114)具有至少一个传感器区域(134),其中纵向光学传感器(114) 以取决于所述传感器区域(134)通过光束照射的方式的一个纵向传感器信号,其中,给定所述照射的相同总功率的所述纵向传感器信号取决于所述光束的光束横截面 在传感器区域(134)中; - 至少一个转移装置(128),其中转移装置(128)响应于至少一个入射光束呈现至少两个不同焦距,其中转移装置(128)适于调整光束横截面 的至少一个具有第一波长的第一光束(130)和具有取决于各个光束的波长的不同于第一波长的第二波长的至少一个第二光束(132),使得在传感器区域(134 ),第一光束(130)的光束横截面不同于第二光束(132)的光束横截面; 以及 - 至少一个评估装置(156),其中所述评估装置(156)适于根据所述传感器区域(134)的照明将所述纵向光学传感器(114)的所述纵向传感器信号区分为第一纵向传感器信号 )通过所述第一光束进入第二纵向传感器信号,并取决于所述第二光束对所述传感器区域(134)的照明,其中,所述评估装置(156)被设计为生成至少一个关于纵向 通过评估第一纵向传感器信号和第二纵向传感器信号来确定物体(112)的位置。
    • 76. 发明申请
    • DETECTOR FOR OPTICALLY DETECTING AT LEAST ONE OBJECT
    • WO2017186850A8
    • 2017-11-02
    • PCT/EP2017/060057
    • 2017-04-27
    • TRINAMIX GMBH
    • VALOUCH, SebastianBRUDER, IngmarSEND, RobertANDERMAHR, NiklasVOGLER, AndreasASFOUR, Jean-Michel
    • G01S17/46G01S7/481
    • A detector (110) for an optical detection of at least one object (112) is disclosed. The detector (110) comprises: at least one illumination source (118) adapted to emit at least one first light beam (120) and at least one second light beam (122), wherein the first light beam (120) has a first opening angle and the second light beam (122) has a second opening angle, wherein the first opening angle is different from the second opening angle; - at least one longitudinal optical sensor (114), wherein the longitudinal optical sensor (114) has at least one sensor region (136), wherein the longitudinal optical sensor (114) is designed to generate at least one longitudinal sensor signal in a manner dependent on an illumination of the sensor region (136) by a light beam, wherein 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 (136); and at least one evaluation device (164), wherein the evaluation device (164) is adapted to differentiate the longitudinal sensor signal of the longitudinal optical sensor (114) into a first longitudinal sensor signal dependent on the illumination of the sensor region (136) by the first light beam (120) and a second longitudinal sensor signal dependent on the illumination of the sensor region (136) by the second light beam (122), wherein the evaluation device (164) is designed to generate at least one item of information on a longitudinal position of the object (112) by evaluating the first longitudinal sensor signal and the second longitudinal sensor signal.
    • 77. 发明申请
    • DETECTOR FOR OPTICALLY DETECTING AT LEAST ONE OBJECT
    • 至少光学检测一个物体的探测器
    • WO2017186850A1
    • 2017-11-02
    • PCT/EP2017/060057
    • 2017-04-27
    • TRINAMIX GMBH
    • VALOUCH, SebastianBRUDER, IngmarSEND, RobertANDERMAHR, NiklasVOGLER, AndreasASFOUR, Jean-Michel
    • G01S17/46G01S7/481
    • G01S17/46G01S7/4815
    • A detector (110) for an optical detection of at least one object (112) is disclosed. The detector (110) comprises: at least one illumination source (118) adapted to emit at least one first light beam (120) and at least one second light beam (122), wherein the first light beam (120) has a first opening angle and the second light beam (122) has a second opening angle, wherein the first opening angle is different from the second opening angle; - at least one longitudinal optical sensor (114), wherein the longitudinal optical sensor (114) has at least one sensor region (136), wherein the longitudinal optical sensor (114) is designed to generate at least one longitudinal sensor signal in a manner dependent on an illumination of the sensor region (136) by a light beam, wherein 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 (136); and at least one evaluation device (164), wherein the evaluation device (164) is adapted to differentiate the longitudinal sensor signal of the longitudinal optical sensor (114) into a first longitudinal sensor signal dependent on the illumination of the sensor region (136) by the first light beam (120) and a second longitudinal sensor signal dependent on the illumination of the sensor region (136) by the second light beam (122), wherein the evaluation device (164) is designed to generate at least one item of information on a longitudinal position of the object (112) by evaluating the first longitudinal sensor signal and the second longitudinal sensor signal.
    • 公开了一种用于光学检测至少一个物体(112)的检测器(110)。 检测器(110)包括:适于发射至少一个第一光束(120)和至少一个第二光束(122)的至少一个照明源(118),其中第一光束(120)具有第一开口 第二光束(122)具有第二打开角度,其中第一打开角度不同于第二打开角度; - 至少一个纵向光学传感器(114),其中所述纵向光学传感器(114)具有至少一个传感器区域(136),其中所述纵向光学传感器(114)被设计为以一种方式产生至少一个纵向传感器信号 取决于通过光束对传感器区域(136)的照明,其中给定相同照明总功率的纵向传感器信号取决于传感器区域(136)中的光束的光束横截面, ; 和至少一个评估装置(164),其中评估装置(164)适于根据传感器区域(136)的照明将纵向光学传感器(114)的纵向传感器信号区分为第一纵向传感器信号, 通过所述第一光束(120)和取决于所述第二光束(122)对所述传感器区域(136)的照明的第二纵向传感器信号,其中所述评估装置(164)被设计为生成至少一个 通过评估第一纵向传感器信号和第二纵向传感器信号来获取关于物体(112)的纵向位置的信息。
    • 78. 发明申请
    • DETECTOR FOR AN OPTICAL DETECTION OF AT LEAST ONE OBJECT
    • 探测器用于至少一个物体的光学探测
    • WO2017182432A1
    • 2017-10-26
    • PCT/EP2017/059114
    • 2017-04-18
    • TRINAMIX GMBH
    • VALOUCH, SebastianHERMES, WilfriedLUNGENSCHMIED, ChristophSEND, RobertBRUDER, Ingmar
    • G01S17/46G01S5/16G01S7/481H01L31/108H01L51/42
    • G01S17/66G01S5/16G01S7/4816G01S17/08G01S17/42H01L27/307H01L31/035218H01L31/1085H01L51/0037H01L51/4206H01L51/4226H01L51/426H01L51/4273H01L51/445
    • A detector (110) for an optical detection of at least one object (112) is proposed. The detector (110) comprises: - at least one transversal optical sensor (114), the transversal optical sensor (114) being adapted to determine a transversal position of a light beam (136) traveling from the object (112) to the detector (110), wherein the transversal position is a position in at least one dimension perpendicular to an optical axis (116) of the detector (110), wherein the transversal optical sensor (114) has at least one photovoltaic layer (130) embedded between at least two conductive layers (132, 132'), wherein the photovoltaic layer (130) comprises a plurality of quantum dots (134), wherein at least one of the conductive layers (132) is at least partially transparent allowing the light beam (136) to travel to the photovoltaic layer (130), wherein the transversal optical sensor (114) further has at least one split electrode located at one of the conductive layers (132'), wherein the split electrode has at least two partial electrodes (138, 138') adapted to generate at least one transversal sensor signal, wherein the at least one transversal sensor signal indicates the transversal position of the light beam (136) in the photovoltaic layer (130); and - at least one evaluation device (140), wherein the evaluation device (140) is designed to generate at least one item of information on a transversal position of the object (112) by evaluating the at least one transversal sensor signal. Thereby, a simple and, still, efficient detector (110) for an accurate determining of a lateral position of at least one object (112) is provided.
    • 提出了用于光学检测至少一个物体(112)的检测器(110)。 所述检测器(110)包括: - 至少一个横向光学传感器(114),所述横向光学传感器(114)适于确定从所述物体(112)行进到所述检测器的光束(136)的横向位置 其中所述横向位置是垂直于所述检测器(110)的光轴(116)的至少一个维度中的位置,其中所述横向光学传感器(114)具有至少一个光伏层(130),所述光伏层嵌入在 至少两个导电层(132,132'),其中所述光电层(130)包括多个量子点(134),其中所述导电层(132)中的至少一个是至少部分透明的,允许所述光束 )传播至所述光伏层(130),其中所述横向光学传感器(114)还具有位于所述导电层(132')之一处的至少一个分裂电极,其中所述分裂电极具有至少两个部分电极(138 ,138'),适于在...处产生 至少一个横向传感器信号,其中所述至少一个横向传感器信号指示光伏层(130)中光束(136)的横向位置; 以及 - 至少一个评估装置(140),其中所述评估装置(140)被设计为通过评估所述至少一个横向传感器信号来生成关于所述物体(112)的横向位置的至少一项信息。 从而,提供了用于精确确定至少一个物体(112)的横向位置的简单且仍然有效的检测器(110)。
    • 79. 发明申请
    • DETECTOR FOR OPTICALLY DETECTING AT LEAST ONE OBJECT
    • 至少光学检测一个物体的探测器
    • WO2017093453A1
    • 2017-06-08
    • PCT/EP2016/079529
    • 2016-12-02
    • TRINAMIX GMBH
    • SEND, RobertBRUDER, IngmarVALOUCH, Sebastian
    • G01S17/42G01S17/46G01S7/481
    • G01S17/46G01S7/4816G01S11/12G01S17/42H01L31/02024
    • A detector (110) for an optical detection of at least one object (112) is disclosed. The detector (110) comprises: - at least one longitudinal optical sensor (114), wherein the longitudinal optical sensor (114) has at least one sensor region (130), wherein the longitudinal optical sensor (114) is designed to generate at least one longitudinal sensor signal in a manner dependent on an illumination of the sensor region (130) by a light beam (132), wherein the longitudinal sensor signal, given the same total power of the illumination, is dependent on a beam cross-section of the light beam (132) in the sensor region (130), wherein the longitudinal sensor signal is further dependent on at least one property of the longitudinal optical sensor (114), wherein the property of the longitudinal optical sensor (114) is adjustable; and - at least one evaluation device (138), wherein the evaluation device (138) is designed to generate at least one item of information on a longitudinal position of the object (112) by evaluating the longitudinal sensor signal of the longitudinal optical sensor (114).
    • 公开了一种用于光学检测至少一个物体(112)的检测器(110)。 检测器(110)包括: - 至少一个纵向光学传感器(114),其中纵向光学传感器(114)具有至少一个传感器区域(130),其中纵向光学传感器(114) 以取决于光束(132)对传感器区域(130)的照明的方式的一个纵向传感器信号,其中给定相同照明总功率的纵向传感器信号取决于传感器区域(130)的光束横截面 (130)中的光束(132),其中纵向传感器信号进一步取决于纵向光学传感器(114)的至少一个属性,其中纵向光学传感器(114)的属性是可调整的; 以及 - 至少一个评估装置(138),其中,所述评估装置(138)被设计为通过评估所述纵向光学传感器的纵向传感器信号来生成关于所述物体(112)的纵向位置的至少一项信息 114)。
    • 80. 发明申请
    • DETECTOR FOR OPTICALLY DETECTING AT LEAST ONE OBJECT
    • 至少光学检测一个物体的探测器
    • WO2017089540A1
    • 2017-06-01
    • PCT/EP2016/078812
    • 2016-11-25
    • TRINAMIX GMBH
    • SEND, RobertBRUDER, IngmarLUNGENSCHMIED, Christoph
    • G06F3/03G01S17/46G01S5/16G06F3/042
    • G06F3/0304G01S5/16G01S7/4816G01S17/46G01S17/66G06F3/0308G06F3/042
    • A detector (110) for determining a position of at least one object (162) is disclosed. The detector (110) comprises: • at least one longitudinal optical sensor (155) for determining a longitudinal position of at least one light beam (174) traveling from the object (162) to the detector (110); • at least one transversal optical sensor (112) for determining at least one transversal position of the at least one light beam (174) traveling from the object (162) to the detector (110), comprising • at least one fluorescent waveguiding sheet (114) containing at least one fluorescent material (122), adapted to generate fluorescence light in response to the illumination by the light beam (174), • at least two photosensitive elements (124, 126, 128, 130) located at least two edges (132, 134, 136, 138) of the fluorescent waveguiding sheet (114) capable of generating transversal sensor signals; and • at least one evaluation device (140) configured to determine at least one longitudinal and at least one transversal coordinate of the object (162). Further, a camera (156), a detector system (158), a human-machine interface (164), an entertainment device (166), a tracking system (168), and a scanning system (170), which comprise the detector (110), are disclosed.
    • 公开了一种用于确定至少一个物体(162)的位置的检测器(110)。 检测器(110)包括:·至少一个纵向光学传感器(155),用于确定从物体(162)行进到检测器(110)的至少一个光束(174)的纵向位置; ·至少一个横向光学传感器(112),用于确定从所述物体(162)行进到所述检测器(110)的所述至少一个光束(174)的至少一个横向位置,所述至少一个横向光学传感器包括●至少一个荧光波导片 114),所述至少两个光敏元件(124,126,128,130)包含至少一种荧光材料(122),所述至少一种荧光材料适于响应于所述光束(174)的照射而产生荧光;至少两个光敏元件 (114)的能够产生横向传感器信号的波长(132,134,136,138) 以及·至少一个评估装置(140),其被配置为确定所述物体(162)的至少一个纵向坐标和至少一个横向坐标。 此外,包括检测器(156),检测器系统(158),人机界面(164),娱乐装置(166),跟踪系统(168)和扫描系统(170) (110),被披露。