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    • 3. 发明授权
    • Apparatus for examining properties of objects
    • 用于检查物体属性的装置
    • US06927571B2
    • 2005-08-09
    • US10922894
    • 2004-08-23
    • Jürgen SchützmannUlrich Schanda
    • Jürgen SchützmannUlrich Schanda
    • G06K19/06G06K19/14G07D7/04G01R33/032
    • G07D7/04G06K19/06196G06K19/14G07D7/12
    • The invention relates to apparatus for examining magnetic properties of objects, in particular sheet material, such as bank notes (20). The apparatus comprises a magneto-optic layer (10) whose optical properties are influenceable by the magnetic properties of the sheet material (20), a light source (11) for producing light that is coupled into the magneto-optic layer (10), and a detector (13) for detecting light that is transmitted and/or reflected by the magneto-optic layer (10). For reliable examination of the magnetic properties of sheet material it is provided that the direction of propagation of the coupled-in light extends parallel to a base surface (9) of the magneto-optic layer (10). The invention permits the magnetic properties in particular of sheet material with areas emitting very weak magnetic fields to be examined with very high sensitivity and reliability.
    • 本发明涉及用于检查物体的磁特性的设备,特别是片材,例如钞票(20)。 该装置包括其光学特性受到片材(20)的磁性能影响的磁光层(10),用于产生耦合到磁光层(10)中的光的光源(11) 以及用于检测由所述磁光层(10)传输和/或反射的光的检测器(13)。 为了可靠地检查片材的磁特性,条件是连接光的传播方向平行于磁光层(10)的基面(9)延伸。 本发明允许以非常高的灵敏度和可靠性检查具有发射非常弱磁场的区域的片材的磁特性。
    • 4. 发明授权
    • Devices and methods for investigating the magnetic properties of objects
    • 用于调查物体磁性的装置和方法
    • US06806704B2
    • 2004-10-19
    • US10450444
    • 2003-10-17
    • Jürgen SchützmannUlrich Schanda
    • Jürgen SchützmannUlrich Schanda
    • G01R33032
    • G07D7/04G06K19/06196G06K19/14G07D7/12
    • The invention relates to apparatuses and a corresponding method for examining magnetic properties of objects, in particular sheet material, such as bank notes (20). The apparatuses comprise a magneto-optic layer (10) whose optical properties are influenceable by the magnetic properties of the sheet material (20), a light source (11) for producing light that is coupled into the magneto-optic layer (10), and a detector (13) for detecting light that is transmitted and/or reflected by the magneto-optic layer (10). For reliable examination of the magnetic properties of sheet material it is provided that the direction of propagation of the coupled-in light extends parallel to a base surface (9) of the magneto-optic layer (10). The invention permits the magnetic properties in particular of sheet material with areas emitting very weak magnetic fields to be examined with very high sensitivity and reliability.
    • 本发明涉及用于检查物体(特别是片材)如纸币(20)的磁性的装置和相应的方法。 这些装置包括其光学特性由片材(20)的磁性能影响的磁光层(10),用于产生耦合到磁光层(10)中的光的光源(11) 以及用于检测由磁光层(10)传输和/或反射的光的检测器(13)。为了可靠地检查片材的磁特性,提供耦合光的传播方向 平行于磁光层(10)的基面(9)延伸。本发明允许以非常高的灵敏度和可靠性检查具有发射非常弱的磁场的区域的片材的磁特性。
    • 6. 发明申请
    • SECURITY ELEMENT FOR DOCUMENTS OF VALUE
    • 价值文件的安全要素
    • US20100052307A1
    • 2010-03-04
    • US12515913
    • 2007-11-20
    • Jürgen SchützmannManfred Heim
    • Jürgen SchützmannManfred Heim
    • B42D15/00
    • B42D25/369B42D25/29B42D2033/16G07D7/004G07D7/04
    • The invention relates to a security element for securing value documents which has magnetic material. Further, the invention relates to a value document, a transfer material and a method for checking such a security element or value document. Along the security element, for example along a longitudinal direction of the security element, there are disposed one or more, maximally five, magnetic areas and one or more, maximally five, gap areas. The extension of the magnetic areas or the gap areas along the security element is preferably chosen so great that the magnetic signals of adjacent magnetization steps that arise upon transport of the security element past the magnetic sensor interfere constructively with each other.
    • 本发明涉及一种用于确保具有磁性材料的价值凭证的安全元件。 此外,本发明涉及一种用于检查这种安全元件或价值文件的价值文件,转移材料和方法。 沿着安全元件,例如沿着安全元件的纵向方向,设置一个或多个最大五个磁区和一个或多个最大五个间隙区域。 沿着安全元件的磁性区域或间隙区域的延伸优选地选择得如此之大,使得当安全元件传送通过磁性传感器时产生的相邻磁化步骤的磁信号彼此建设性地相互干扰。