会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Superconducting magnet system
    • 超导磁体系统
    • US06727699B2
    • 2004-04-27
    • US10050996
    • 2002-01-22
    • Arne Kasten
    • Arne Kasten
    • G01V300
    • G01R33/389G01R33/3815
    • The invention concerns a means and a method for stabilizing a magnetic field generated by a superconductingly short-circuited main coil located in a cryostat in the measuring volume of a high-resolution magnetic resonance spectrometer, which comprises compensation coils which are dimensioned and positioned such that they, in their entirety, are suited to largely compensate for field drifts of the superconductingly short-circuited main coil in the measuring volume. The drift compensation coils consist of HTS material and are disposed radially outside of the main coil at a higher temperature level.
    • 本发明涉及一种用于稳定位于高分辨率磁共振光谱仪的测量体积中的低温恒温器中的超导短路主线圈所产生的磁场的方法和方法,该补偿线圈的尺寸和位置使得 它们整体上适合于大大地补偿测量体积中超导短路主线圈的场漂移。 漂移补偿线圈由HTS材料组成,并在较高的温度水平位于主线圈的径向外侧。
    • 2. 发明授权
    • Apparatus and method for the rapid discharge of a superconducting magnet
coil
    • 用于快速放电超导磁体线圈的装置和方法
    • US5847633A
    • 1998-12-08
    • US861489
    • 1997-05-22
    • Tony KellerGunter LaukienRene JekerArne Kasten
    • Tony KellerGunter LaukienRene JekerArne Kasten
    • G01R33/3815H01F6/00H02H7/00H01F6/02
    • H01F6/003G01R33/3815H01F6/005H01F38/14H02H7/001Y02E40/68
    • A device for the safe discharge of a superconducting magnet coil (4) which is located inside a cryostat (2) and superconductively short-circuited by a superconducting switch (7) providing at or in the cryostat (2) a transmitter (10) of electromagnetic energy being located at a temperature level considerably above the cryogenic temperature of the superconducting magnet coil (4), which transmitter can be switched on quickly from outside, and by arranging in the region of the superconducting switch (7) at the cryogenic temperature level of the superconducting magnet coil (4) a receiver (20) for the emitted electromagnetic energy, which transmits the received energy directly or indirectly to a heating device (15) of the superconducting switch (7) or which activates an auxiliary energy source (41) in the region of the superconducting switch (7) , which on its turn effects a heating of the superconducting switch (7), so that it becomes normal-conducting and causes a discharge process of the superconducting magnet coil (4) via resistors (18) and/or diodes (19), being located at the cryogenic temperature level, there being no electrically conducting connection between transmitter (10; 10') and receiver (20). In this way, the magnet can be discharged without contact.
    • 一种用于安全地放电位于低温恒温器(2)内部并由超导开关(7)短路的超导磁体线圈(4)的装置,所述超导开关(7)在低温恒温器(2)处或其中提供低温恒温器(2)的发射器(10) 电磁能位于明显高于超导磁体线圈(4)的低温温度的温度水平,该发射器可以从外部快速接通,并且通过在超导开关(7)的区域内以低温温度排列 超导磁体线圈(4)的发射电磁能的接收器(20),其将所接收的能量直接或间接地传递到超导开关(7)的加热装置(15)或激活辅助能量源(41) )在超导开关(7)的区域中,其反过来影响超导开关(7)的加热,使得其变为正常导通并且导致 超导磁体线圈(4)经由电阻器(18)和/或二极管(19)位于低温温度水平,在发射器(10; 10')和接收器(20)。 以这种方式,可以不接触地排出磁体。
    • 3. 发明授权
    • Apparatus and method for the rapid discharge of superconducting magnet
coil
    • 超导磁体线圈快速放电的装置和方法
    • US5686877A
    • 1997-11-11
    • US559363
    • 1995-11-16
    • Tony KellerGunter LaukienRene JekerArne Kasten
    • Tony KellerGunter LaukienRene JekerArne Kasten
    • G01R33/3815H01F6/00H02H7/00H01F7/22
    • H01F6/003G01R33/3815H01F6/005H01F38/14H02H7/001Y02E40/68
    • A device for the safe discharge of a superconducting magnet coil (4) which is located inside a cryostat (2) and superconductively short-circuited by a superconducting switch (7) providing at or in the cryostat (2) a transmitter (10) of electromagnetic energy being located at a temperature level considerably above the cryogenic temperature of the superconducting magnet coil (4), which transmitter can be switched on quickly from outside, and by arranging in the region of the superconducting switch (7) at the cryogenic temperature level of the superconducting magnet coil (4) a receiver (20) for the emitted electromagnetic energy, which transmits the received energy directly or indirectly to a heating device (15) of the superconducting switch (7) or which activates an auxiliary energy source (41) in the region of the superconducting switch (7), which on its turn effects a heating of the superconducting switch (7), so that it becomes normal-conducting and causes a discharge process of the superconducting magnet coil (4) via resistors (18) and/or diodes (19), being located at the cryogenic temperature level, there being no electrically conducting connection between transmitter (10; 10') and receiver (20). In this way, the magnet can be discharged without contact.
    • 一种用于安全地放电位于低温恒温器(2)内部并由超导开关(7)短路的超导磁体线圈(4)的装置,所述超导开关(7)在低温恒温器(2)处或其中提供低温恒温器(2)的发射器(10) 电磁能位于明显高于超导磁体线圈(4)的低温温度的温度水平,该发射器可以从外部快速接通,并且通过在超导开关(7)的区域内以低温温度排列 超导磁体线圈(4)的发射电磁能的接收器(20),其将所接收的能量直接或间接地传递到超导开关(7)的加热装置(15)或激活辅助能量源(41) )在超导开关(7)的区域中,其反过来影响超导开关(7)的加热,使得其变为正常导通并且引起s的放电过程 通过位于低温温度水平的电阻器(18)和/或二极管(19)的高导磁体线圈(4),在发射器(10; 10')和接收器(20)。 以这种方式,可以不接触地排出磁体。
    • 4. 发明授权
    • Magnet system with superconducting field coils
    • 具超导磁场线圈的磁体系统
    • US5276399A
    • 1994-01-04
    • US775980
    • 1991-10-28
    • Arne KastenWolfgang Hans-Georg Muller
    • Arne KastenWolfgang Hans-Georg Muller
    • A61B5/055B61B13/08G01R33/20G01R33/3815G01R33/3875G01R33/421H01F6/00G01V3/00
    • G01R33/3815G01R33/421
    • In a magnet system with two coil systems of different mean diameter arranged coaxially with respect to the longitudinal axis of the system defined by the direction of the field in the homogeneity region, which are rotationally symmetrical and are arranged symmetrically about the transverse median plane of the system perpendicular to the longitudinal axis and can carry exciting currents which result in overlapping magnetic fields that compensate, at least approximately, for the dipole fields of the two coil systems, an operating mode selector switch device (22) configured as a superconducting network is provided, by means of which the magnet system (10) can also be switched, as an alternative to the operating mode which provides considerable dipole-field compensation in the outer space of the magnet system (10), to that operating mode in which the magnetic fields generated by the two coil systems (11 and 12) at the center thereof are aligned in the same direction. In a special configuration, the ratio B.sub.0i :B.sub.0a between the values of the field strengths B.sub.0 1 and B.sub.a generated by the inner field coil (11) and the outer field coil (12) is equal to 3.
    • PCT No.PCT / DE90 / 00300 Sec。 371日期1991年10月28日 102(e)日期1991年10月28日PCT 1990年4月25日PCT PCT。 出版物WO90 / 日期为1990年11月15日。在具有不同平均直径的两个线圈系统的磁体系统中,相对于由均匀区域中的场的方向限定的系统的纵向轴线同轴地布置,该旋转对称并且对称地布置 关于垂直于纵向轴线的系统的横向中间平面,并且可以承载导致重叠的磁场的激励电流,至少大体上补偿两个线圈系统的偶极子场,操作模式选择器开关装置(22) 配置为超导网络,通过该磁体系统(10)也可以切换,作为在磁体系统(10)的外部空间中提供相当大的偶极场补偿的操作模式的替代, 其中由两个线圈系统(11和12)在其中心产生的磁场在相同方向上对准的操作模式。 在特殊构造中,内磁场线圈(11)和外磁场线圈(12)产生的场强B01和Ba的值之间的比率B0i:B0a等于3。
    • 6. 发明授权
    • Analysis device with variably illuminated strip detector
    • 具有可变照明条状探测器的分析装置
    • US07263161B2
    • 2007-08-28
    • US11236651
    • 2005-09-28
    • Ekkehard GerndtPawel GrybosLutz BruegemannRachel EisenhowerArne Kasten
    • Ekkehard GerndtPawel GrybosLutz BruegemannRachel EisenhowerArne Kasten
    • G01N23/20
    • G01N23/20G01T1/2914
    • An X-ray or neutron-optical analysis device comprising means for directing radiation from a source (1) onto a sample (2), and a detector (7) with n substantially identical detector elements (Di) which are disposed parallel, next to each other in a first direction x and which extend in strips in a second direction y, wherein i=1, . . . n, for one-dimensional spatially-resolved detection of radiation reflected, scattered or diffracted by the sample (2) onto the detector (7), and with a detection electronics for processing the detector signals of the n detector elements (Di), wherein the detection electronics can reliably process a maximum radiation intensity per detector element (Di) without overloading, is characterized in that an optical element is disposed in front of the detector (7) which covers or weakens radiation incident on the surfaces of the respective n detector elements (Di) in correspondence with a predetermined, non-constant transmission function f(x) and/or the optical element comprises a collimator (6) which can be displaced along the strip direction y. The inventive analysis device permits artificial enlargement of the dynamic range of the detector (7).
    • 一种X射线或中子光学分析装置,包括用于将来自源(1)的辐射引导到样品(2)上的装置,以及具有n个基本上相同的检测器元件(D)的检测器(7) ),它们在第一方向x彼此相邻地平行设置,并且在第二方向y上以条状延伸,其中i = 1。 。 。 n,用于由样品(2)反射,散射或衍射到检测器(7)上的辐射的一维空间分辨检测,以及用于处理n个检测器元件的检测器信号的检测电子装置(D& 其中检测电子装置可以可靠地处理每个检测器元件的最大辐射强度而不过载,其特征在于,光学元件设置在检测器的前面( 7),其对应于预定的非常数透射函数f(x)覆盖或削弱入射在各个n个检测器元件(D SUB)上的辐射的辐射, 准直器(6),其可沿条带方向y移位。 本发明的分析装置允许人造扩大检测器(7)的动态范围。
    • 7. 发明授权
    • NMR high field magnet coil system with superconducting capability and having an outwardly protruding inner coil section
    • NMR高场磁体线圈系统,具有超导能力并具有向外突出的内线圈段
    • US06774752B2
    • 2004-08-10
    • US10345491
    • 2003-01-17
    • Klaus SchlengaGerhard RothArne Kasten
    • Klaus SchlengaGerhard RothArne Kasten
    • H01F722
    • G01R33/3815Y10S336/01Y10S505/705Y10S505/879
    • The invention concerns an NMR (nuclear magnetic resonance) high field magnet coil system comprising superconducting conductor structures for generating a homogeneous magnetic field B0 in a measuring volume (23) with several radially nested solenoidal coil sections (12, 13, 31), which is characterized in that the radially innermost coil section (31) is wound with a band-shaped superconductor with an aspect ratio (width to thickness) >3 on a coil support which axially projects, at least at one axial end, past the winding packet of the radially neighboring coil section (12) and the band-shaped superconductor is guided on this side tangentially towards the outside to a region of reduced magnetic field strength and terminates in at least one electrical connecting point (16). This permits use of a brittle band-shaped superconductor for the innermost coil system (31) which cannot be strongly bent at the upper edge.
    • 本发明涉及一种包括超导导体结构的NMR(核磁共振)高场磁体线圈系统,用于在具有多个径向嵌套的螺线管线圈段(12,13,31)的测量体积(23)中产生均匀磁场B0, 其特征在于,径向最内侧的线圈部分(31)在线圈支架上缠绕有长宽比(宽度 - 厚度)> 3的带状超导体,至少在一个轴向端部沿轴向突出超过绕组包 径向相邻的线圈部分(12)和带状超导体在该侧面上朝向外侧切向导致磁场强度降低的区域,并且终止于至少一个电连接点(16)。 这允许对最上面的线圈系统(31)使用脆性带状超导体,其不能在上边缘处强烈弯曲。