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    • 52. 发明授权
    • Device and method for optical distance measurement
    • 光学距离测量的装置和方法
    • US07221435B2
    • 2007-05-22
    • US10507996
    • 2003-05-19
    • Joerg StierlePeter WolfKai Renz
    • Joerg StierlePeter WolfKai Renz
    • G01C3/08
    • G01S17/36G01C3/08G01S7/4813
    • The invention relates to a device for optical distance measurement, in particular a handheld device, having at least one light source (50, 52), disposed in a housing (10) of the device, for generating an optical measurement signal, and having a first user input unit (12) with at least one user control function (24) for emitting a modulated, optical measurement signal for the sake of a distance measurement.According to the invention it is proposed that the device has at least one further user input unit (18) for emitting an optical signal (42).The invention furthermore relates to a method for optical distance measurement, in particular a method for optical distance measurement by means of a handheld measuring device, in which via the actuation of a first user input unit (12), a light source (50, 52) disposed in a housing (10) of the measuring device, a modulated optical measurement signal (42) is emitted in the direction of a target object (46) whose distance from the measuring device is to be ascertained, in which by the actuation of at least one further user input unit (18), the light source (50, 52) disposed in the measuring device can be switched on and/or off.
    • 本发明涉及一种用于光学距离测量的设备,特别是手持设备,其具有设置在设备的壳体(10)中的至少一个光源(50,52),用于产生光学测量信号,并具有 具有至少一个用户控制功能(24)的第一用户输入单元(12),用于为了进行距离测量发射调制的光学测量信号。 根据本发明,提出该装置具有用于发射光信号(42)的至少一个另外的用户输入单元(18)。 本发明还涉及一种用于光学距离测量的方法,特别是一种借助于手持式测量装置进行光学距离测量的方法,其中通过致动第一用户输入单元(12),光源(50,52) )设置在所述测量装置的壳体(10)中,调制的光学测量信号(42)沿着距离所述测量装置的距离被确定的目标物体(46)的方向发射,其中通过致动 设置在测量装置中的至少一个另外的用户输入单元(18),光源(50,52)可以被接通和/或关闭。
    • 53. 发明申请
    • Card receptacle and method
    • 卡插座和方法
    • US20070084922A1
    • 2007-04-19
    • US10555419
    • 2004-04-22
    • Dieter KlostermeierThomas RiesterTorsten WahlerPeter Wolf
    • Dieter KlostermeierThomas RiesterTorsten WahlerPeter Wolf
    • G06K7/06
    • G07C5/0858G06K13/063G06K13/08
    • A card receptacle and a method for receiving a card in a receptacle of this type are disclosed. The receptacle and method may be used in a tacograph with a planar construction in a motor vehicle. The receptacle includes a receiving opening for receiving a card that contains a data memory, a closure for closing the receiving opening and a locking unit including at least one locking element that can be displaced into a locked position, in which the locking element secures the closure. Complex technical difficulties arising from the need for a fully-automatic card insertion necessitate a requirement for a robust, space-saving, manipulation-proof mechanical and electronic system that can be operated without incurring damage. The invention provides a device and a method, in which the card receptacle has at least one first sensor and the position of the locking element can be captured by said first sensor
    • 公开了一种卡插座和用于在这种插座中接收卡的方法。 容器和方法可以在机动车辆中具有平面结构的十字刀中使用。 插座包括用于接收包含数据存储器的卡的接收开口,用于闭合接收开口的闭合件和包括至少一个可移位到锁定位置的锁定元件的锁定单元,锁定元件固定在该闭锁位置 。 由于需要全自动卡片插入所引起的复杂技术困难,需要一个坚固,节省空间的操纵防护机械和电子系统,可以在不造成损害的情况下运行。 本发明提供了一种装置和方法,其中卡插座具有至少一个第一传感器,并且锁定元件的位置可被所述第一传感器捕获
    • 54. 发明授权
    • Laser distance measuring device
    • 激光测距仪
    • US07075626B2
    • 2006-07-11
    • US10470429
    • 2002-12-05
    • Dierk SchmidtJoerg StierlePeter Wolf
    • Dierk SchmidtJoerg StierlePeter Wolf
    • G01C3/08G01C3/00
    • G01S17/36G01S7/491G01S7/4911
    • The invention is based on a laser range finder that has a transmitter unit (10) with at least one laser, a receiver unit (12), and a single sideband modulation unit (14) that can use a first single sideband modulation frequency (ZF1) generated by an oscillator unit (16) and a carrier frequency (T1) to generate a modulation frequency (S1) of the transmitter unit (10).According to the invention, the oscillator unit (16) can generate at least one additional frequency (ZF2) and the single sideband modulation unit (14) can use the additional frequency (ZF2) to generate a demodulation frequency (S2) of the receiver unit (12).
    • 本发明基于一种激光测距仪,其具有具有至少一个激光器的发射器单元(10),接收机单元(12)和可以使用第一单边带调制频率(ZF)的单边带调制单元(14) 1)由振荡器单元(16)和载波频率(T 1)产生,以产生发射机单元(10)的调制频率(S 1)。 根据本发明,振荡器单元(16)可以产生至少一个附加频率(ZF 2),并且单边带调制单元(14)可以使用附加频率(ZF 2)来产生解调频率(S 2) 接收器单元(12)。
    • 57. 发明申请
    • Device and method for optical distance measurement
    • 光学距离测量的装置和方法
    • US20050151957A1
    • 2005-07-14
    • US10507996
    • 2003-05-19
    • Joerg StierlePeter Wolfkai Renz
    • Joerg StierlePeter Wolfkai Renz
    • G01C3/06G01C3/02G01C3/08G01S7/48G01S7/481G01S17/08G01S17/36
    • G01S17/36G01C3/08G01S7/4813
    • The invention relates to a device for optical distance measurement, in particular a handheld device, having at least one light source (50, 52), disposed in a housing (10) of the device, for generating an optical measurement signal, and having a first user input unit (12) with at least one user control function (24) for emitting a modulated, optical measurement signal for the sake of a distance measurement. According to the invention it is proposed that the device has at least one further user input unit (18) for emitting an optical signal (42). The invention furthermore relates to a method for optical distance measurement, in particular a method for optical distance measurement by means of a handheld measuring device, in which via the actuation of a first user input unit (12), a light source (50, 52) disposed in a housing (10) of the measuring device, a modulated optical measurement signal (42) is emitted in the direction of a target object (46) whose distance from the measuring device is to be ascertained, in which by the actuation of at least one further user input unit (18), the light source (50, 52) disposed in the measuring device can be switched on and/or off.
    • 本发明涉及一种用于光学距离测量的设备,特别是手持设备,其具有设置在设备的壳体(10)中的至少一个光源(50,52),用于产生光学测量信号,并具有 具有至少一个用户控制功能(24)的第一用户输入单元(12),用于为了进行距离测量发射调制的光学测量信号。 根据本发明,提出该装置具有用于发射光信号(42)的至少一个另外的用户输入单元(18)。 本发明还涉及一种用于光学距离测量的方法,特别是一种借助于手持式测量装置进行光学距离测量的方法,其中通过致动第一用户输入单元(12),光源(50,52) )设置在所述测量装置的壳体(10)中,调制的光学测量信号(42)沿着距离所述测量装置的距离被确定的目标物体(46)的方向发射,其中通过致动 设置在测量装置中的至少一个另外的用户输入单元(18),光源(50,52)可以被接通和/或关闭。
    • 58. 发明授权
    • Manual appliance for contactless distance measurement
    • 用于非接触式距离测量的手动设备
    • US06912888B2
    • 2005-07-05
    • US10399918
    • 2002-06-08
    • Joerg StierlePeter Wolf
    • Joerg StierlePeter Wolf
    • G01B21/16G01C3/00G01D11/24G01S7/481G01S17/08G01B21/00G01B3/30
    • G01C3/00G01D11/24G01S7/4813G01S17/08
    • The invention has disclosed a handheld device for contactless distance measurement, having a housing (11) with a housing front (15) pointing in the measuring direction (17) and a housing back (16) oriented away from it, having a linear first measuring stop (21) that is embodied on the housing back (16) oriented away from the measuring direction (17) and that lies in a reference plane for the distance measurement, and having means disposed on the housing back (16) for producing a flat second measuring stop (22) that is aligned at right angles to the measuring direction and points away from the measuring direction (17). In order to achieve a structurally simple embodiment of the second measuring stop (22) that also makes it possible to provide the housing (11) with a third flat measuring stop, which points in the measuring direction and is intended for another measuring task, the means for producing the second measuring stop (22) have a pivoting wedge (24) supported on the housing (11) in pivoting fashion, whose one wedge surface (241) supports the second measuring stop (22).
    • 本发明公开了一种用于非接触式距离测量的手持式装置,其具有壳体(11),其具有指向测量方向(17)的壳体前部(15)和远离其的壳体后部(16),具有线性第一测量 止动件(21),其被套置在远离测量方向(17)的壳体后部(16)上,并且位于距离测量的参考平面中,并且具有设置在壳体背部(16)上的装置,用于产生平面 第二测量止挡(22),其与测量方向成直角对准并远离测量方向(17)。 为了实现第二测量止挡(22)的结构简单的实施例,其还使得可以向壳体(11)提供指向测量方向并且用于另一测量任务的第三平坦测量止挡件, 用于生产第二测量止动件(22)的装置具有以枢转方式支撑在壳体(11)上的枢转楔(24),其一个楔形表面(241)支撑第二测量止挡(22)。