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    • 4. 发明授权
    • Device for detecting a magnetic field
    • 用于检测磁场的装置
    • US6075361A
    • 2000-06-13
    • US977983
    • 1997-11-25
    • Reinder CoehoornJacques C. S. Kools
    • Reinder CoehoornJacques C. S. Kools
    • G01R33/09G11B5/39G01R33/02H01L43/08
    • G11C11/16B82Y25/00G01R33/093G11B5/397
    • The device comprises a Wheatstone bridge with at least four magnetoresistive elements (1a, 1b, 1c, 1d) on a substrate (15), each magnetoresistive element comprising at least one sensitive portion (13) comprising successively a first ferromagnetic layer (19) having a magnetic easy axis (27) extending in a first direction, a non-magnetic layer (21) and a second ferromagnetic layer (23) having a magnetic easy axis (29) extending in a second direction that is different from the first direction. The sensitive portions (13) have mutually parallel sensitive directions that are parallel to a third direction (X). Each magnetoresistive element (1a, 1b, 1c, 1d) is associated with a current conductor (35a, 35b, 35c, 35d) provided in the immediate vicinity of that magnetoresistive element. The first direction (27) is canted through an acute angle with respect to the third direction (X), and the second direction (29) is canted in the opposite sense through an acute angle with respect to the third direction. Each one of the current conductors (35a, 35b, 35c, 35d) extends over at least a portion of its length in a fourth direction (Y) perpendicular to the third direction (X).
    • 该装置包括在基板(15)上具有至少四个磁阻元件(1a,1b,1c,1d)的惠斯通电桥,每个磁阻元件包括至少一个敏感部分(13),其连续地包括第一铁磁层(19) 沿第一方向延伸的易磁化轴(27),具有沿与第一方向不同的第二方向延伸的易磁化轴(29)的非磁性层(21)和第二铁磁层(23)。 敏感部分(13)具有平行于第三方向(X)的相互平行的敏感方向。 每个磁阻元件(1a,1b,1c,1d)与设置在该磁阻元件紧邻处的电流导体(35a,35b,35c,35d)相关联。 第一方向(27)相对于第三方向(X)倾斜成锐角,并且第二方向(29)以相对于第三方向的锐角以相反的方向倾斜。 电流导体(35a,35b,35c,35d)中的每一个在垂直于第三方向(X)的第四方向(Y)上在其长度的至少一部分上延伸。
    • 6. 发明授权
    • Vehicle orientation sensor and method with magnetic stabilization
    • 车辆方向传感器和磁稳定方法
    • US5481808A
    • 1996-01-09
    • US422664
    • 1995-04-10
    • Jacques C. S. KoolsJosef P. M. NausWiepke FolkertsMartinus A. M. Gijs
    • Jacques C. S. KoolsJosef P. M. NausWiepke FolkertsMartinus A. M. Gijs
    • G01C17/28G01C17/30G01C17/38
    • G01C17/38G01C17/28
    • A device for determining the orientation of a vehicle includes a magnetic field sensor (3) which is arranged in the vicinity of a ferromagnetic outer wall of the body of the vehicle and which is rigidly connected to the wall. External magnetic fields could unpredictably magnetize the wall portion (1) of the body, in the vicinity of which the magnetic field sensor (3) is provided, so that the measurements would become inaccurate. In order to achieve a substantial reduction of these adverse effects of external magnetic fields, the relevant wall portion is magnetically stabilized, preferably by including it in a magnetic circuit which also includes at least a magnet (11; 23, 27). The magnetic circuit preferably comprises also a yoke (23, 25) which has an approximately U-shaped cross-section and which is made of a soft magnetic material, the free ends of limbs (25) of the yoke facing the relevant wall portion (1) and the yoke being at least partly enclosed by an electric coil (27) in order to form an electromagnet.
    • 一种用于确定车辆定向的装置,包括一个磁场传感器(3),该磁场传感器设置在车身的铁磁外壁附近,并刚性地连接到车壁上。 外部磁场可以不可预测地磁化身体的壁部分(1),在其附近提供磁场传感器(3),使得测量将变得不准确。 为了实现外部磁场的这些不利影响的实质性减少,相关的壁部分被磁稳定,优选地将其包括在还包括至少一个磁体(11; 23,27)的磁路中。 磁路还优选还包括具有大致U形横截面且由软磁材料制成的磁轭(23,25),磁轭的四肢(25)的自由端面向相关的壁部分( 1),并且轭被至少部分地由电线圈(27)包围以形成电磁体。
    • 7. 发明授权
    • Magnetic field sensor having nickel oxide and cobalt containing ferromagnetic layers
    • 具有氧化镍和含铁磁性层的钴的磁场传感器
    • US06275033B1
    • 2001-08-14
    • US09013543
    • 1998-01-26
    • Jacques C. S. Kools
    • Jacques C. S. Kools
    • G01R3302
    • B82Y25/00G01R33/093Y10T428/1121
    • A magnetic field sensor comprising a layered structure (3) E/Fo/S/F, in which: E is an exchange-biasing layer, comprising nickel oxide; Fo is a ferromagnetic layer with a fixed magnetization, comprising cobalt; S is a spacer layer; Ff is a ferromagnetic layer with a free magnetization, whereby the material of the layer Ff has a magnetostriction constant of at most 1.5×10−6 and a crystal anisotropy of at most 1.3 J/m3. Such a structure (3) demonstrates a relatively high magneto-resistance ratio (of the order of 15%), and yet a relatively low coercivity (of the order of 0.2 kA/m). Examples of suitable materials for use in the layer Ff include Ni66Fe16Co18 and Ni72Fe21Co7.
    • 一种磁场传感器,包括层状结构(3)E / Fo / S / F,其中:E是交换偏压层,包括氧化镍; Fo是具有固定磁化强度的铁磁层,包括钴; S是 间隔层; Ff是具有自由磁化的铁磁层,由此层Ff的材料具有至多1.5×10 -6的磁致伸缩常数和至多1.3J / m 3的晶体各向异性。 这种结构(3)表现出相当高的磁阻比(约为15%),然而矫顽力相对较低(约为0.2kA / m)。 用于层Ff的合适材料的实例包括Ni66Fe16Co18和Ni72Fe21Co7。
    • 8. 发明授权
    • Thin film shielded magnetic read head device
    • 薄膜屏蔽磁头读头装置
    • US06271998B1
    • 2001-08-07
    • US09379958
    • 1999-08-24
    • Reinder CoehoornJacques C. S. KoolsDerk J. Adelerhof
    • Reinder CoehoornJacques C. S. KoolsDerk J. Adelerhof
    • G11B539
    • B82Y25/00B82Y10/00G11B5/3903G11B5/3961G11B2005/3996
    • A thin film shielded magnetic read head device comprises an end face extending in a first direction, in which a magnetic information carrier is movable with respect to the magnetic head device, and in a second direction, perpendicular to said first direction. The magnetic head device further comprises shield forming flux guiding elements for magnetic cooperation with the information carrier, which elements extend in the second direction and in a third direction, perpendicular to the first and the second direction. A number of magnetoresistive elements each having a spin tunnel junction structure is provided, which number of magnetoresistive elements corresponds to with the number of magnetic channels of the magnetic head device. One of said shields forms a common contact lead for the current through said magnetoresistive elements. Thin film magnetic read head device is applied in a system for reading information from a magnetic information carrier.
    • 薄膜屏蔽磁读头装置包括沿着第一方向延伸的端面,其中磁信息载体相对于磁头装置可移动,并且在垂直于所述第一方向的第二方向上延伸。 磁头装置还包括用于与信息载体磁协作的屏蔽形成磁通引导元件,这些元件在垂直于第一和第二方向的第二方向和第三方向上延伸。 提供了多个具有自旋隧道结结构的磁阻元件,其数量的磁阻元件对应于磁头器件的磁通道的数量。 所述屏蔽之一形成用于通过所述磁阻元件的电流的公共接触引线。 薄膜磁读头装置用于从磁信息载体读取信息的系统。