Scanning probe microscope and measurement method using the same
    5.
    发明授权
    Scanning probe microscope and measurement method using the same 失效
    扫描探针显微镜和测量方法使用相同

    公开(公告)号:US07333191B2

    公开(公告)日:2008-02-19

    申请号:US10893364

    申请日:2004-07-19

    IPC分类号: G01B1/00

    CPC分类号: G01Q20/02 G01Q30/06 G01Q70/04

    摘要: A scanning probe microscope has a cantilever with a probe facing a sample and a measurement section for measuring a physical quantity occurring between the probe and the sample when the probe scans a surface of the sample, holding the physical quantity constant to measure the surface of the sample. The above microscope further has a probe tilt mechanism, an optical microscope etc. for detecting a position of the probe when the probe is tilted, and a control section for setting the probe in a first tilt posture and second tilt posture, measuring a surface of the sample by the measurement section at each tilt posture, detecting the position of the probe at least at the second tilt posture by the optical microscope etc., and making a measurement location at the second tilt posture match with a measurement location at the first tilt posture for measurement.

    摘要翻译: 扫描探针显微镜具有悬臂,探针面向样品和测量部分,用于测量探头和样品之间发生的物理量,当探针扫描样品的表面时,保持物理量常数以测量样品的表面 样品。 上述显微镜还具有探针倾斜机构,光学显微镜等,用于在探头倾斜时检测探头的位置;以及控制部,用于将探针设置在第一倾斜姿势和第二倾斜姿势中, 通过测量部分在每个倾斜姿势下的样本,至少通过光学显微镜等检测第二倾斜姿势的探测器的位置,并且使第二倾斜姿势的测量位置与第一倾斜处的测量位置匹配 测量姿势。

    Probe replacement method for scanning probe microscope
    7.
    发明申请
    Probe replacement method for scanning probe microscope 审中-公开
    用于扫描探针显微镜的探头更换方法

    公开(公告)号:US20070180889A1

    公开(公告)日:2007-08-09

    申请号:US10565509

    申请日:2004-03-22

    IPC分类号: G12B21/00 G01N13/10

    CPC分类号: G01Q10/06 G01Q30/06 G01Q70/02

    摘要: A probe replacement method for a scanning probe microscope for measuring the surface of a sample, having a cantilever (21) having a probe (20), and a measurement unit for measuring a physical quantity between the probe and sample. The scanning probe microscope is provided with a cantilever mount (22), a cantilever cassette (30), an XY stage (14) and Z stage (15) for moving the cantilever cassette, and an optical microscope (18). In a first step, a cantilever is selected from the cantilever cassette and is mounted on the cantilever mount. In a second step, an optical microscope is moved and the mounted cantilever is set in a prescribed position in the field of view after the cantilever is mounted in the scanning probe microscope. In the second step, a step is provided for moving the optical microscope side or the cantilever side and performing positional adjustment.

    摘要翻译: 一种用于测量具有具有探针(20)的悬臂(21)的样品表面的扫描探针显微镜的探针替换方法和用于测量探针和样品之间的物理量的测量单元。 扫描探针显微镜具有用于移动悬臂盒的悬臂安装座(22),悬臂盒(30),XY台(14)和Z台(15)以及光学显微镜(18)。 在第一步中,从悬臂盒中选择悬臂,并安装在悬臂安装座上。 在第二步骤中,移动光学显微镜,并且在将悬臂安装在扫描探针显微镜中之后,将安装的悬臂设置在视野中的规定位置。 在第二步骤中,提供移动光学显微镜侧或悬臂侧并执行位置调整的步骤。

    Method of Control of Probe Scan and Apparatus for Controlling Probe Scan of Scanning Probe Microscope
    8.
    发明申请
    Method of Control of Probe Scan and Apparatus for Controlling Probe Scan of Scanning Probe Microscope 审中-公开
    探针扫描控制方法及扫描探针显微镜探头扫描控制装置

    公开(公告)号:US20080236259A1

    公开(公告)日:2008-10-02

    申请号:US11660271

    申请日:2005-08-18

    IPC分类号: G01B5/28

    CPC分类号: G01Q10/065

    摘要: A scanning probe microscope provided with a cantilever 21 having a probe 20 facing a sample 12, a measurement unit 24 measuring a physical quantity occurring between the probe and sample, and movement mechanisms 11, 29 changing a positional relationship between the probe and sample to cause a scanning operation and making the probe scan the surface of the sample by the movement mechanism and measure the surface of the sample by the measurement unit. This method is provided with a step of feeding the probe in a direction along the surface of the sample at a position separate from the surface at certain distances, a step of making the probe approach the sample at each of a plurality of measurement points determined at certain distances and perform measurement to obtain measurement values, then retract, and a step setting a measurement point at a position between a certain measurement point and next measurement point for measurement when a difference between a measurement value at the certain measurement point and a measurement value at the next measurement point is larger than a reference value.

    摘要翻译: 具有悬臂21的扫描探针显微镜,其具有面向样品12的探针20,测量在探针和样品之间发生的物理量的测量单元24和改变探针与样品之间的位置关系的移动机构11,29, 扫描操作并使探针通过移动机构扫描样品的表面,并通过测量单元测量样品的表面。 该方法具有以下步骤:沿着与样品表面在一定距离处分开的位置沿着样品表面的方向进给探针,使得探针在多个测量点中的每一个测量点处接近样品的步骤 一定距离并进行测量以获得测量值,然后缩回,并且当在某个测量点处的测量值与测量值之间的差异时,将某个测量点和下一测量点之间的位置处的测量点设置为测量点 在下一个测量点大于参考值。

    Fine movement mechanism unit and scanning probe microscope
    10.
    发明授权
    Fine movement mechanism unit and scanning probe microscope 失效
    精细运动机构单元和扫描探针显微镜

    公开(公告)号:US06229607B1

    公开(公告)日:2001-05-08

    申请号:US09182048

    申请日:1998-10-29

    IPC分类号: G01B1114

    CPC分类号: G01Q10/04 Y10S977/87

    摘要: A fine movement mechanism unit is configured by a supporting member, two fixed sections fixed to this supporting member, two pairs of parallel-plate flexural sections disposed between the two fixed sections, an X fine movement mechanism, a Y fine movement mechanism, and a Z fine movement mechanism. The X fine movement mechanism has an X moving section movable in an X direction, connected to each of the two fixed sections through the two pairs of parallel-plate flexural sections, and two X direction piezoelectric actuators causing the X moving section to move. The Y fine movement mechanism arranged to the X moving section, has other two pairs of parallel-plate flexural sections, a Y moving section movable in the Y direction, connected to the X moving section through the other two pairs of parallel-plate flexural sections, and two Y direction piezoelectric actuators causing the Y moving section to move relatively to the X moving section. The Z fine movement mechanism arranged to the Y moving section, has a Z moving section movable in a Z direction perpendicular to both of the X and Y directions, and a Z direction piezoelectric actuator causing the Z moving section to move.

    摘要翻译: 精细运动机构单元由支撑构件构成,固定在该支撑构件上的两个固定部,设置在两个固定部之间的两对平行板弯曲部,X微移动机构,Y细移动机构和 Z精细机芯。 X精细机构具有可沿X方向移动的X移动部,通过两对平行板弯曲部连接到两个固定部中的每一个,以及使X移动部移动的两个X方向压电致动器。 设置在X移动部分上的Y细移动机构具有其他两对平行板弯曲部分,Y方向移动的Y移动部分,通过另外两对平行板弯曲部分连接到X移动部分 以及两个Y方向的压电致动器,其使Y移动部相对于X移动部移动。 配置在Y移动部上的Z细移动机构具有能够沿与X方向和Y方向垂直的Z方向移动的Z移动部,Z方向的压电致动器使Z移动部移动。