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    • 2. 发明申请
    • SINGLE-POSITION HALL EFFECT MEASUREMENTS
    • 单一位置效应测量
    • US20140015552A1
    • 2014-01-16
    • US13996968
    • 2011-12-21
    • Fei WangDirch Hjorth PetersenOle Hansen
    • Fei WangDirch Hjorth PetersenOle Hansen
    • G01B7/14
    • G01B7/14G01R31/2648G01R31/2831H01L22/14H01L22/34
    • A method for determining a distance (Y) between a first position on and an electrical boundary (34) of a test sample by a multi-point probe comprising four contact elements, comprising: contacting the test sample with the four contact elements (20,22,24,26) at the first position, applying a magnetic field at the first position, performing a first and a second four-point measurement and deriving a first and a second resistance value, calculating a first resistance difference from the first and second resistance values, performing a third and a fourth four-point measurement and deriving a third and a fourth resistance value, calculating a second resistance difference from the third and fourth resistance values, defining a first relation including parameters representing the first resistance difference, the second resistance difference, and the distance between the first position and the electrical boundary, determining the distance by using the first and the second resistance differences in the first relation.
    • 用于通过包括四个接触元件的多点探针确定测试样品的第一位置和电气边界(34)之间的距离(Y)的方法,包括:使所述测试样品与所述四个接触元件 22,24,26),在第一位置施加磁场,执行第一和第二四点测量并导出第一和第二电阻值,从第一和第二位置计算第一电阻差 电阻值,执行第三和第四四点测量并导出第三和第四电阻值,从第三和第四电阻值计算第二电阻差,定义包括表示第一电阻差的参数的第一关系,第二电阻值 电阻差和第一位置与电气边界之间的距离,通过使用第一和第二电阻差确定距离 在第一关系。
    • 5. 发明授权
    • Method of determining an electrical property of a test sample
    • 确定试样的电性能的方法
    • US08907690B2
    • 2014-12-09
    • US12676124
    • 2008-09-03
    • Dirch H. PetersenOle Hansen
    • Dirch H. PetersenOle Hansen
    • G01R31/20G01R27/08G01R33/06G01R33/00H01L21/66G01R31/26
    • H01L22/14G01R31/2648H01L2924/0002H01L2924/00
    • A method of obtaining an electrical property of a test sample, comprising a non-conductive area and a conductive or semi-conductive test area, by performing multiple measurements using a multi-point probe. The method comprising the steps of providing a magnetic field having field lines passing perpendicularly through the test area, bringing the probe into a first position on the test area, the conductive tips of the probe being in contact with the test area, determining a position for each tip relative to the boundary between the non-conductive area and the test area, determining distances between each tip, selecting one tip to be a current source positioned between conductive tips being used for determining a voltage in the test sample, performing a first measurement, moving the probe and performing a second measurement, calculating on the basis of the first and second measurement the electrical property of the test area.
    • 通过使用多点探针进行多次测量,获得测试样品的电性能的方法,包括非导电区域和导电或半导体测试区域。 该方法包括以下步骤:提供具有垂直通过测试区域的场线的磁场,使探针进入测试区域的第一位置,探头的导电尖端与测试区域接触,确定位置 每个尖端相对于非导电区域和测试区域之间的边界,确定每个尖端之间的距离,选择位于用于确定测试样本中的电压的导电尖端之间的电流源的一个尖端,执行第一测量 移动探头并执行第二测量,基于第一和第二测量来测量测试区域的电特性。
    • 6. 发明授权
    • Flexible nano-imprint stamp
    • 灵活的纳刻印
    • US08075298B2
    • 2011-12-13
    • US11574645
    • 2005-09-07
    • Theodor NielsenAnders KristensenOle Hansen
    • Theodor NielsenAnders KristensenOle Hansen
    • B29C59/00
    • B41F17/001B81C99/009
    • The present invention relates to a nano-imprinting stamp for imprinting nanometer-sized to mm-sized structures, the stamp (1) having a base part and a first and a second imprinting section (2,3), the first and second imprinting sections having a lithographic pattern (7) intended for imprinting in a receiving substrate. In a first aspect, the first and the second imprinting sections (2,3) are independently displaceable in a direction substantially parallel to an imprinting direction of the imprinting stamp. In a second aspect, the first and the second imprinting sections (2,3) are mechanically weakly coupled in a direction substantially parallel to an imprinting direction of the imprinting stamp. The stamp limits the effect of imperfections in or on the substrate to be imprinted with a lithographic pattern (7) and imperfections in or on the stamp and any combinations of such imperfections by localising the bending of the stamp to the base part (5) in-between the imprinting sections (2,3).
    • 本发明涉及用于压印纳米尺寸至mm尺寸结构的纳米压印印模,所述印模(1)具有基部和第一和第二印记部分(2,3),所述第一和第二印记部分 具有用于压印在接收衬底中的光刻图案(7)。 在第一方面,第一和第二压印部分(2,3)可以在基本上平行于压印印模的压印方向的方向上独立地移位。 在第二方面,第一和第二压印部分(2,3)在基本上平行于压印印记的压印方向的方向上机械地弱耦合。 印章通过将印模的弯曲定位到基部(5)的弯曲来限制在印模上或其上印有凹版印刷图案(7)的缺陷的影响以及印模中或印记上的缺陷以及这些缺陷的任何组合。 - 刻印部分(2,3)之间。
    • 8. 发明授权
    • Power generation in a combination power plant with a gas turbine and a steam turbine
    • 具有燃气轮机和蒸汽轮机的组合发电厂的发电
    • US06256978B1
    • 2001-07-10
    • US09330117
    • 1999-06-10
    • Bernd GerickeNorbert FaustmannHans-O. JeskeOle Hansen
    • Bernd GerickeNorbert FaustmannHans-O. JeskeOle Hansen
    • F02C600
    • F01K3/185F01K23/106Y02E20/12Y02E20/14Y02E20/16Y02P80/152Y02P80/154
    • A combination power plant is provided with a gas turbine (1) with generator (28) and with steam generators (2, 10) for a steam turbine (6) with generator (29), wherein the exhaust gas of the gas turbine (1) is fed to a first waste heat boiler (2) with superheaters (23, 24), economizer (3), HP evaporator (22) and auxiliary burner (27), and flue gases of a thermal conversion unit are fed to a second waste heat boiler (10). A high-pressure (HP) evaporator (16) with a supporting tube system (13) and HP steam collecting drum (11), on the one hand, and a low-pressure (LP) evaporator (17) with a supporting tube system (14) and LP steam collecting drum (12), on the other hand, are arranged in the second waste heat boiler (10), through which flue gases flow. The P evaporator (16) is connected via a steam line (21) to the first (23) and second HP steam superheaters (24) arranged in the first waste heat boiler (2). An HP steam collecting drum (5) with surface cooler (46) is arranged upstream of the two HP steam superheaters (23, 24). The HP steam superheater (24) is connected to the steam turbine (6) via an HP steam line (20) and the LP evaporator (17) [is connected to the steam turbine (6)] via an LP steam line (25).
    • 组合发电厂设有带有发电机(28)的燃气轮机(1)和具有发电机(29)的蒸汽轮机(6)的蒸汽发生器(2,10),其中燃气轮机(1)的排气 )被供给到具有过热器(23,24),节能器(3),HP蒸发器(22)和辅助燃烧器(27)的第一废热锅炉(2),并且热转换单元的烟道气被馈送到第二 废热锅炉(10)。 一方面,具有支撑管系统(13)和HP蒸汽收集鼓(11)的高压(HP)蒸发器(16)和一个具有支撑管系统的低压(LP)蒸发器(17) 另一方面,在第二废热锅炉(10)中设置有(14)和LP蒸汽收集鼓(12),烟道气通过该蒸发器排出。 P蒸发器(16)经由蒸汽管线(21)连接到布置在第一废热锅炉(2)中的第一(23)和第二HP蒸汽过热器(24)。 具有表面冷却器(46)的HP蒸汽收集鼓(5)布置在两个HP蒸汽过热器(23,24)的上游。 HP蒸汽过热器(24)经由HP蒸汽管线(20)和LP蒸发器(17)经由LP蒸汽管线(25)连接到蒸汽轮机(6)[连接到蒸汽轮机(6)] 。