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    • 53. 发明授权
    • Measuring device for contactless distance measurement
    • 无接触距离测量用测量装置
    • US07142288B2
    • 2006-11-28
    • US10495810
    • 2002-10-11
    • Joerg StierlePeter Wolf
    • Joerg StierlePeter Wolf
    • G01C3/08
    • G01S7/481G01S7/497
    • A measuring device for contactless distance measurement is disclosed, which has an optical transmission path (12), with an optical transmitter (22), and an optical receiver (13), with a receiving optical element (29) and an optical receiver (30), as well as an equipment module (11) that receives these components of the transmission and reception paths (12, 13). To maintain high measurement precision over the entire temperature range, the components of the transmission and reception paths (12, 13) are placed such that upon a temperature-dictated curvature of the equipment module (11) in the direction of the optical axes (121, 131) of the transmission and reception paths (12, 13), the optical axes (121, 131) are deflected in the same direction by the same amount. For this purpose, the transmission and reception paths (12, 13) are preferably convoluted such that the transmitter (22) and receiver (30) are both located on the same flat fastening face, fixed in the equipment module (11), the fastening face preferably being a printed circuit board (15) for receiving electronic components (FIG. 2).
    • 公开了一种用于非接触式距离测量的测量装置,其具有光学传输路径(12),具有光学发射器(22)和具有接收光学元件(29)和光学接收器(30)的光学接收器(13) ),以及接收发送和接收路径(12,13)的这些组件的设备模块(11)。 为了在整个温度范围内保持高的测量精度,发送和接收路径(12,13)的组件被放置成使得在设备模块(11)的温度指定曲率沿光轴(121)的方向 ,131),光轴(121,131)沿相同方向偏转相同的量。 为此,发送和接收路径(12,13)优选地被卷绕,使得发送器(22)和接收器(30)都位于固定在设备模块(11)中的相同的平坦紧固面上,紧固 面优选地是用于接收电子部件的印刷电路板(15)(图2)。
    • 55. 发明申请
    • Method and device for distance measurement
    • 距离测量方法和装置
    • US20050083512A1
    • 2005-04-21
    • US10503650
    • 2003-05-12
    • Joerg StierlePeter WolfGunter Flinspach
    • Joerg StierlePeter WolfGunter Flinspach
    • G01S7/48G01C15/00G01S7/491G01S7/493G01S7/497G01S17/08G01S17/36G01C3/08
    • G01S7/493G01C15/002G01S7/491G01S7/497G01S17/36
    • The present invention relates to a device (10) for distance measurement, with at least one transmitting branch (14) with a transmission source (22, 24) for a measurement signal for emitting a modulated measuring beam (16, 26, 36) in the direction of a target object (20), and with a receive branch (18) for the measurement radiation (17, 44) returning from the target object (30), and with a control and evaluation unit (28, 58) for determining the distance of the device (10) to the target object (20) from the measurement radiation returning from the target object (20). It is proposed according to the invention that the device (10) include means that enable measurement of distances with predetermined measurement uncertainties. The present invention further relates to a method for distance measurement, with which a measurement of distances with predetermined measurement uncertainties is possible. To ensure a distance measurement in a certain, predetermined measurement time, the value on which a distance measurement is based can be adjusted to the measurement uncertainty, and can be increased incrementally in particular.
    • 本发明涉及一种用于距离测量的设备(10),具有至少一个发射分支(14),其具有用于发射调制测量光束(16,26,36)的测量信号的发射源(22,24) 目标对象(20)的方向,以及用于从目标对象(30)返回的测量辐射(17,44)的接收分支(18)以及用于确定目标对象的控制和评估单元(28,58) 所述装置(10)与所述目标物体(20)距离从所述目标物体(20)返回的测量辐射的距离。 根据本发明提出,装置(10)包括能够以预定的测量不确定性测量距离的装置。 本发明还涉及一种用于距离测量的方法,通过该方法可以进行具有预定测量不确定性的距离的测量。 为了在一定的预定测量时间内确保距离测量,可以将距离测量所基于的值调整到测量不确定度,并且可以特别地增量地增加。
    • 56. 发明授权
    • Device for optically measuring distances
    • 用于光学测量距离的设备
    • US06801305B2
    • 2004-10-05
    • US10333496
    • 2003-06-16
    • Joerg StierlePeter Wolf
    • Joerg StierlePeter Wolf
    • G01C308
    • G01S7/4814G01B13/20G01S17/08G01S17/32
    • The invention relates to an apparatus for optical distance measurement, having a transmitter unit (12) for emitting optical radiation (13), in particular laser radiation, in the direction of a target object (15); having a receiver unit (14) for receiving the radiation (16, 49) reflected by the target object (15); and having a control and evaluation unit (56) for ascertaining the distance between the apparatus and the target object (15), and also having at least one optical means (26, 28, 30, 50) for beam guidance. It is proposed that the relative position of the at least one optical means (26, 28, 30, 50) and the light source (17, 18) of the apparatus to one another be variable.
    • 本发明涉及一种用于光学距离测量的装置,具有用于在目标物体(15)的方向上发射光辐射(特别是激光辐射)的发射器单元(12)。 具有用于接收由目标物体(15)反射的辐射(16,49)的接收器单元(14)。 并具有用于确定设备与目标物体之间的距离的控制和评估单元(56),并且还具有用于光束引导的至少一个光学装置(26,28,30,50)。 装置的至少一个光学装置(26,28,30,50)和光源(17,18)的相对位置是可变的。
    • 58. 发明申请
    • THERMOPLASTIC LINOLEUM
    • 热塑性LINOLEUM
    • US20100261824A1
    • 2010-10-14
    • US12747369
    • 2008-12-11
    • Konrad KnollMichel PepersPeter WolfPiyada Charoensirisomboon
    • Konrad KnollMichel PepersPeter WolfPiyada Charoensirisomboon
    • C08K5/09
    • D06N1/00
    • The present invention relates to a thermoplastic molding composition comprising (A) as component A, particles composed of at least one oxidatively crosslinked vegetable oil as core, encapsulated by at least one thermoplastic, (B) as component B, at least one further thermoplastic compatible with the at least one thermoplastic present in the shell of component A, (C) as component C, at least one resin compatible with the at least one thermoplastic present in the shell of component A, (D) as component D, at least one filler, and (E) as component E, if appropriate, further additives, and also to a process for the production of this thermoplastic molding composition.
    • 本发明涉及一种热塑性模塑组合物,其包含(A)作为组分A,由至少一种氧化交联的植物油作为芯组成的颗粒,由至少一种热塑性塑料包封,(B)作为组分B,至少一种另外的热塑性相容性 存在于组分A的外壳中的至少一种热塑性材料(C)作为组分C,至少一种与组分A壳体中存在的至少一种热塑性塑料相容的树脂,(D)作为组分D,至少一种 填充剂和(E)作为组分E,如果合适的话,还可使用其它添加剂,以及制备该热塑性模塑组合物的方法。
    • 60. 发明申请
    • Fa-resistant textile gut
    • 耐磨纺织品肠
    • US20070014899A1
    • 2007-01-18
    • US10555197
    • 2004-03-03
    • Peter Wolf
    • Peter Wolf
    • A22C13/00
    • A22C13/0013A22C2013/0069
    • A textile skin is disclosed which has at least one longitudinal seam and which comprises a textile material and a fat-tight film, preferably a plastic film. This film is connected to the inside of the textile material in a two-dimensional manner such that it forms a projection over the longitudinal seam and the edge of the textile material. In the region of the projection the film is closed in a fat-tight manner. The textile skin is used especially as artificial sausage casing, in particular for raw sausages having a high fat content.
    • 公开了一种具有至少一个纵向接缝并且包括纺织材料和不透油膜(优选塑料膜)的织物皮肤。 该膜以二维方式连接到纺织材料的内部,使得其在纵向接缝和纺织材料的边缘上形成突起。 在投影区域,胶片以不透气的方式封闭。 纺织皮肤特别用作人造香肠肠衣,特别是具有高脂肪含量的原料香肠。