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    • 11. 发明申请
    • Device for Optically Measuring Distance and Method for Operating Said Type of Device
    • 用于光学测量距离的设备和操作所述类型设备的方法
    • US20090009747A1
    • 2009-01-08
    • US12162836
    • 2007-02-08
    • Peter WolfUwe Skultety-BetzClemens SchulteJoerg StierleBjoern HaaseKai Renz
    • Peter WolfUwe Skultety-BetzClemens SchulteJoerg StierleBjoern HaaseKai Renz
    • G01B11/14
    • G01C3/08G01S7/4816G01S17/08G01S17/32
    • The invention relates to a device for optically measuring distance, in particular a hand-held device, comprising an transmission unit (12) which is provided with a light source (17, 18) for emitting optical measuring radiation (13, 20, 22) towards a target object (15), and a capturing unit (14) which is arranged at a distance from the optical axis (38) of the transmission unit (12). Said capturing unit (14) comprises at least one optical detector (54) for capturing optical radiation (16, 49, 50) reflected by the target object (15). According to the invention, the detector (54) of the capturing unit (14) comprises a plurality of light-sensitive surfaces (70, 72, 74; 170, 172, 174; 270, 272, 274; 370, 372; 470, 472; 570, 572) which are separated from each other and which are be activated separately. The invention also relates to a method for operating a device for optically measuring distance.
    • 本发明涉及一种用于光学测量距离的装置,特别是一种手持式装置,包括传输单元(12),其具有用于发射光学测量辐射(13,20,22)的光源(17,18) 朝向目标物体(15)和与传动单元(12)的光轴(38)一定距离地设置的捕获单元(14)。 所述捕获单元(14)包括用于捕获被目标物体(15)反射的光辐射(16,49,50)的至少一个光学检测器(54)。 根据本发明,捕获单元(14)的检测器(54)包括多个光敏表面(70,72,74; 170,172,174; 270,272,274; 370,372; 470, 472; 570,572),它们彼此分离并且被单独地激活。 本发明还涉及一种操作用于光学测量距离的装置的方法。
    • 13. 发明授权
    • Device and method for optical distance measurement
    • 光学距离测量的装置和方法
    • US07728957B2
    • 2010-06-01
    • US10593595
    • 2005-07-01
    • Bjoern HaaseJoerg StierlePeter WolfCedric PahudKai RenzClemens Schulte
    • Bjoern HaaseJoerg StierlePeter WolfCedric PahudKai RenzClemens Schulte
    • G01C3/08
    • G01S17/36G01C3/085G01S17/48
    • The invention relates to a device for optical distance measurement, in particular a device functioning in accordance with the phase measurement principle, having at least one transmission unit (12) equipped with at least one light source (22, 24) for transmitting modulated optical measurement radiation (16) toward a target object (20), and having a reception unit (18) for receiving the optical measurement radiation (17) returning from the target object (20).According to the present invention, the device has means (51, 55, 68) that enable a measurement of distances from a target object (20′) by means of a triangulation method.The invention also relates to a method for optical distance measurement in which it is possible to switch back and forth between a phase measurement method for determining a distance of a distance measuring device from a target object (20, 20′) and a triangulation method for determining this distance.
    • 本发明涉及一种用于光学距离测量的装置,特别是根据相位测量原理起作用的装置,具有至少一个传输单元(12),该传输单元配备有至少一个光源(22,24),用于发射调制的光学测量 辐射(16)朝向目标物体(20),并且具有用于接收从目标物体(20)返回的光学测量辐射(17)的接收单元(18)。 根据本发明,该装置具有能够通过三角测量方法测量与目标物体(20')的距离的装置(51,55,68)。 本发明还涉及一种用于光学距离测量的方法,其中可以在用于确定距离测量装置与目标物体(20,20')的距离的相位测量方法和用于确定距离测量装置的距离的相位测量方法之间来回切换 确定这个距离。
    • 14. 发明申请
    • Device and Method for Optical Distance Measurement
    • 光学距离测量的装置和方法
    • US20070211329A1
    • 2007-09-13
    • US10593595
    • 2005-07-01
    • Bjoern HaaseJoerg StierlePeter WolfCedric PahudKai RenzClemens Schulte
    • Bjoern HaaseJoerg StierlePeter WolfCedric PahudKai RenzClemens Schulte
    • G02F1/01
    • G01S17/36G01C3/085G01S17/48
    • The invention relates to a device for optical distance measurement, in particular a device functioning in accordance with the phase measurement principle, having at least one transmission unit (12) equipped with at least one light source (22, 24) for transmitting modulated optical measurement radiation (16) toward a target object (20), and having a reception unit (18) for receiving the optical measurement radiation (17) returning from the target object (20). According to the present invention, the device has means (51, 55, 68) that enable a measurement of distances from a target object (20′) by means of a triangulation method. The invention also relates to a method for optical distance measurement in which it is possible to switch back and forth between a phase measurement method for determining a distance of a distance measuring device from a target object (20, 20′) and a triangulation method for determining this distance.
    • 本发明涉及一种用于光学距离测量的装置,特别是根据相位测量原理起作用的装置,具有至少一个传输单元(12),该传输单元配备有至少一个光源(22,24),用于发射调制的光学测量 辐射(16)朝向目标物体(20),并且具有用于接收从目标物体(20)返回的光学测量辐射(17)的接收单元(18)。 根据本发明,该装置具有能够通过三角测量方法测量与目标物体(20')的距离的装置(51,55,68)。 本发明还涉及一种用于光学距离测量的方法,其中可以在用于确定距离测量装置与目标物体(20,20')的距离的相位测量方法和用于确定距离测量装置的距离的相位测量方法之间来回切换 确定这个距离。
    • 15. 发明授权
    • Distance measuring unit
    • 测距单位
    • US08111382B2
    • 2012-02-07
    • US12525423
    • 2008-01-24
    • Peter WolfUwe Skultety-BetzJoerg StierleBjoern HaaseKai Renz
    • Peter WolfUwe Skultety-BetzJoerg StierleBjoern HaaseKai Renz
    • G01C3/08
    • G01S17/08G01C15/002G01S7/4813
    • The invention relates to a distance measuring unit (10) for contactless distance measurement, in particular a handheld unit, with a housing (12, 40), which has a housing front side (14), which points in the measurement direction (32), and a housing rear side (16), which faces away therefrom, wherein the housing rear side (16) forms a first reference plane (AA) for the distance measurement, and with at least one measurement stop (5) of a measurement stop element (4), which can be moved out of the housing (12). The invention proposes that the measurement stop element (46) is mounted in the housing (12, 40) in such a way that it moves automatically out of the housing (12, 40) once a locking apparatus (62, 63, 65) has been released and is optionally moved at least into a first (1) or into a second (1) measurement position.
    • 本发明涉及一种用于非接触式距离测量的距离测量单元(10),特别是具有壳体(12,40)的手持式单元,其具有在测量方向(32)上指向的壳体前侧(14) 和远离其的壳体后侧(16),其中壳体后侧(16)形成用于距离测量的第一参考平面(AA),以及至少一个测量停止点(5)的测量停止 元件(4),其可以移出外壳(12)。 本发明提出,一旦锁定装置(62,63,65)具有(1)的锁定装置(46),所述测量止挡元件(46)被安装在所述壳体(12,40)中,使得其自动地移出所述外壳(12,40) 被释放并且可选地至少移动到第一(1)或第二(1)测量位置。
    • 16. 发明授权
    • Device for optical distance measurement
    • 光学距离测量装置
    • US07834984B2
    • 2010-11-16
    • US12293861
    • 2007-02-12
    • Peter WolfUwe Skultety-BetzJoerg StierleBjoern HaaseKai Renz
    • Peter WolfUwe Skultety-BetzJoerg StierleBjoern HaaseKai Renz
    • G01C3/08
    • G01C15/002G01S7/4816G01S17/08G01S17/32
    • The invention relates to a device for optically measuring distance, in particular a hand-held device, comprising an transmitter unit (12) which is provided with a light source (17, 18) for transmitting optical measuring radiation (13, 20, 22) to a target object (15), and a capturing unit (14) which is arranged at a distance on the optical axis (38) of the transmitter unit (14). Said capturing unit (14) comprises at least one optical detector (54) comprising a detection surface (66) for capturing optical radiation (16, 49, 50) reflected by the target object (15). According to the invention, the detection surface (66) of the detector (54) comprises an optical near range element (68), whose optically active surface (72, 74) is elongated in the direction (61) of the radiation shift for receding target object separations (48) and expands or has at least one essentially constant extension.
    • 本发明涉及一种用于光学测量距离的装置,特别是一种手持式装置,包括一个发射器单元(12),该发射器单元(12)设置有用于传输光学测量辐射(13,20,22)的光源(17,18) 以及在发射器单元(14)的光轴(38)上一定距离配置的拍摄单元(14)。 所述捕获单元(14)包括至少一个光学检测器(54),其包括用于捕获由目标物体(15)反射的光辐射(16,49,50)的检测表面(66)。 根据本发明,检测器(54)的检测表面(66)包括光学近距离元件(68),其光学活性表面(72,74)在辐射移位的方向(61)上是细长的,用于后退 目标对象分离(48)并扩展或具有至少一个基本上恒定的扩展。
    • 18. 发明申请
    • DISTANCE MEASURING UNIT
    • 距离测量单位
    • US20100225896A1
    • 2010-09-09
    • US12525423
    • 2008-01-24
    • Peter WolfUwe Skultety-BetzJoerg StierleBjoern HaaseKai Renz
    • Peter WolfUwe Skultety-BetzJoerg StierleBjoern HaaseKai Renz
    • G01C3/08
    • G01S17/08G01C15/002G01S7/4813
    • The invention relates to a distance measuring unit (10) for contactless distance measurement, in particular a handheld unit, with a housing (12, 40), which has a housing front side (14), which points in the measurement direction (32), and a housing rear side (16), which faces away therefrom, wherein the housing rear side (16) forms a first reference plane (AA) for the distance measurement, and with at least one measurement stop (5) of a measurement stop element (4), which can be moved out of the housing (12). The invention proposes that the measurement stop element (46) is mounted in the housing (12, 40) in such a way that it moves automatically out of the housing (12, 40) once a locking apparatus (62, 63, 65) has been released and is optionally moved at least into a first (1) or into a second (1) measurement position.
    • 本发明涉及一种用于非接触式距离测量的距离测量单元(10),特别是具有壳体(12,40)的手持式单元,其具有在测量方向(32)上指向的壳体前侧(14) 和远离其的壳体后侧(16),其中壳体后侧(16)形成用于距离测量的第一参考平面(AA),以及至少一个测量停止点(5)的测量停止 元件(4),其可以移出外壳(12)。 本发明提出,一旦锁定装置(62,63,65)具有(1)的锁定装置(46),所述测量止挡元件(46)被安装在所述壳体(12,40)中,使得其自动地移出所述外壳(12,40) 被释放并且可选地至少移动到第一(1)或第二(1)测量位置。
    • 19. 发明申请
    • Electro-Optical Measuring Device
    • 电光测量装置
    • US20080192256A1
    • 2008-08-14
    • US11917049
    • 2006-07-25
    • Peter WolfUwe Skultety-BetzJoerg StierleBjoern HaaseKai Renz
    • Peter WolfUwe Skultety-BetzJoerg StierleBjoern HaaseKai Renz
    • G01N21/55
    • G01S7/4813G01S17/08
    • The invention relates to an electrooptical measuring device, in particular a hand-held device (10) for contactless distance measurement, said device having an optical transmission path (28), which has at least one optical transmitter (20) for transmitting a measurement signal, and having a reception path (29) having at least one receiving optical system for focusing a measurement signal in the direction of a receiver (26), and having an optical system carrier (40) which holds components of the transmission and reception paths. The invention proposes that the optical system carrier (40) is made from plastic. The invention also relates to a method for producing such an electrooptical measuring device.
    • 本发明涉及一种电光测量装置,特别是用于非接触式距离测量的手持式装置(10),所述装置具有光传输路径(28),该光传输路径具有至少一个光发送器(20),用于传送测量信号 并且具有接收路径(29),该接收路径具有至少一个接收光学系统,用于在接收机(26)的方向上聚焦测量信号,并具有保持发送和接收路径的分量的光学系统载体(40)。 本发明提出光学系统载体(40)由塑料制成。 本发明还涉及这种电光测量装置的制造方法。
    • 20. 发明授权
    • Measuring device
    • 测量工具
    • US07952687B2
    • 2011-05-31
    • US11911183
    • 2006-06-28
    • Uwe Skultety-BetzBjoern HaaseJoerg StierlePeter WolfKai Renz
    • Uwe Skultety-BetzBjoern HaaseJoerg StierlePeter WolfKai Renz
    • G01C3/08
    • G01D11/245G01S7/481G01S17/36H05K5/069Y10T29/49002
    • The invention relates to measuring device, particularly a distance measuring device for contactlessly measuring distance, comprising a housing (12) made of at least one first material and with at least one electronic component (56), which is arranged inside an interior (48) of the housing (12), as well as with a second material that at least partially surrounds the housing (48). The invention provides that the second material also seals at least one opening (63) of the housing interior (48). The invention also relates to a method for producing a measuring device of the aforementioned type during which the second material is provided as a sealing element that seals at least one opening of the housing interior.
    • 本发明涉及测量装置,特别是用于非接触式测量距离的距离测量装置,包括由至少一个第一材料制成的壳体和至少一个电子部件(56),所述至少一个电子部件布置在内部(48)内, 壳体(12)以及至少部分地围绕壳体(48)的第二材料。 本发明提供第二材料还密封壳体内部(48)的至少一个开口(63)。 本发明还涉及一种用于生产上述类型的测量装置的方法,其中第二材料被设置为密封壳体内部的至少一个开口的密封元件。