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    • 42. 发明申请
    • Apparatus and method for automated stress testing of flip-chip packages
    • 倒装芯片封装自动应力测试的装置和方法
    • US20060210140A1
    • 2006-09-21
    • US11367562
    • 2006-03-03
    • Lyudmila Zaykova-FeldmanThomas Moore
    • Lyudmila Zaykova-FeldmanThomas Moore
    • G06K9/00
    • G01R31/2881G01M7/08G01N3/00G01N3/307G01N3/313G01N2203/0044G01N2203/005G01N2203/0057G01N2203/0296G01N2203/0676G01R31/2868H01L21/67011
    • An apparatus for testing flip-chip packages has a programmed computer, a test-engine stage for applying an impact to at least one package under test, and a monitoring stage. The test-engine stage causes an impact on the package on the side opposite its ball-grid array. The test-engine stage has actuators connected to the test-engine stage and the computer, for moving and aligning the test-engine stage. The monitoring stage has a digital camera connected to the computer for transmitting digital images from the ball-grid array side of the package to the computer. A microscope is preferably connected to the digital camera. A sample stage located between the test-engine stage and the monitoring stage holds the package under test. The sample stage has an acoustic transducer capable of being removably connected to the package under test. The acoustic transducer is connected to the computer for transmitting signals from the acoustic transducer to the computer.
    • 用于测试倒装芯片封装的装置具有编程的计算机,用于对至少一个待测试包进行冲击的测试引擎阶段和监视阶段。 测试引擎级在与球栅阵列相反的一侧对包装产生影响。 测试发动机级具有连接到测试发动机级和计算机的致动器,用于移动和对准测试引擎级。 监控级具有连接到计算机的数字照相机,用于将数字图像从包装的球栅阵列侧传输到计算机。 显微镜优选地连接到数码相机。 位于测试引擎级和监控级之间的样品台保持被测试的包装。 样品台具有能够可拆卸地连接到被测试包装的声学换能器。 声学换能器连接到计算机,用于将信号从声学传感器传输到计算机。
    • 43. 发明申请
    • Kit for preparing a TEM sample holder
    • 用于制备TEM样品架的试剂盒
    • US20060113478A1
    • 2006-06-01
    • US11335415
    • 2006-01-19
    • Thomas Moore
    • Thomas Moore
    • G21K7/00
    • H01J37/20H01J37/26H01J2237/31745Y10T29/49915Y10T29/49922Y10T29/5147
    • A kit for preparing TEM sample holders includes at least one TEM coupon made of a sheet of material and having one or more paths from its edge to a TEM sample holder form embodied in the TEM coupon. There is at least one hole in the coupon defining the outer boundary of the TEM sample holder form. This hole has a mouth that defines a land of material. This land connects the TEM sample holder form to the edge of the sheet. The kit preferably includes at least one probe tip, where the probe tip has a probe-tip point, and finally, a press. The press has inner and outer dies and a former rod opposing the inner and outer dies. A shear punch is situated coaxially with the former rod. Thus, when an actuator drives the shear punch toward the inner and outer dies, the shear punch severs the land and cuts an opening in the TEM sample holder form, and simultaneously the former rod presses the probe tip point or points into the sheet of material. The result is a TEM sample holder with probe-tip points embedded in it, ready for inspection in a TEM of samples attached to the probe-tip points.
    • 用于制备TEM样品保持器的试剂盒包括至少一种由一片材料制成的TEM试片,并且具有从其边缘到TEM样品保持器形式的一个或多个路径,其体现在TEM试片中。 试样中至少有一个孔限定了TEM样品保持器形式的外边界。 这个洞有一个口,定义了一块土地。 该土地将TEM样品架形式连接到片材的边缘。 套件优选地包括至少一个探针尖端,其中探针尖端具有探针尖端点,最后包括压力机。 压机具有内模和外模以及与内模和外模对置的前杆。 剪切冲头与前一个杆同轴设置。 因此,当致动器向内模和外模驱动剪切冲头时,剪切冲压器切割焊盘并切割TEM样品保持器形式的开口,同时前者杆将探针尖端点或点压入材料片 。 结果是具有探针尖点的TEM样品架,嵌入其中,准备在附着于探针尖端的样品的TEM中进行检查。
    • 46. 发明申请
    • Driveable catheter systems and methods
    • 可驱动的导管系统和方法
    • US20060084911A1
    • 2006-04-20
    • US11254234
    • 2005-10-18
    • W. BelefJohn ReamThomas MooreSteven RoeJeffrey JonesNiyazi BeyhanArcadi Elbert
    • W. BelefJohn ReamThomas MooreSteven RoeJeffrey JonesNiyazi BeyhanArcadi Elbert
    • A61M31/00
    • A61B8/12A61B1/0016A61B8/4209A61B8/4461A61B46/10A61M25/0113A61M2025/0008
    • The system (2) includes a catheter drive unit (22) and a catheter (24) extending therefrom movably mounted to a catheter drive sled (26). The catheter drive unit rotates and translates the catheter core (34) within the catheter sheath (36). The sled has a serrated, conical drive unit interface (82), with a bag-piercing tip (86) mateable with a translator drive output (92) so that a sterile drape (112) enclosing the catheter drive unit is automatically pierced when the catheter drive unit is mounted to the sled. A control unit (6) is spaced apart from the catheter drive unit and provides power and commands to the catheter drive unit and receives information and data from the catheter drive unit. The rotator and translator drive motors (54, 90) are operated from both the control unit and the catheter drive unit. Both the control unit and catheter drive unit have translation displacement displays (10, 30).
    • 系统(2)包括导管驱动单元(22)和从其可移动地安装到导管驱动滑架(26)上的导管(24)。 导管驱动单元旋转并平移导管芯(34)在导管套(36)内。 滑板具有锯齿状的锥形驱动单元接口(82),具有与翻译器驱动输出(92)配合的穿刺尖端(86),使得当包括导管驱动单元的无菌悬垂(112)自动穿透时 导管驱动单元安装在滑轨上。 控制单元(6)与导管驱动单元间隔开,并向导管驱动单元提供电力和命令,并从导管驱动单元接收信息和数据。 旋转器和转换器驱动马达(54,90)从控制单元和导管驱动单元两者操作。 控制单元和导管驱动单元都具有平移位移显示器(10,30)。
    • 47. 发明申请
    • Multiple gas injection system for charged particle beam instruments
    • 多重气体注入系统用于带电粒子束仪器
    • US20060022136A1
    • 2006-02-02
    • US11186706
    • 2005-07-21
    • Thomas Moore
    • Thomas Moore
    • G21K7/00
    • H01J37/3178G21K7/00H01J37/3056H01J2237/006H01J2237/30411H01J2237/30455H01J2237/31H01J2237/31744
    • We disclose a gas injection system having at least one crucible, each crucible holding at least one deposition constituent; at least one transfer tube, the number of transfer tubes corresponding to the number of crucibles, each transfer tube being connected to a corresponding crucible. There is at least one metering valve, the number of metering valves corresponding to the number of transfer tubes, each metering valve being connected to a corresponding transfer tube so that the metering valve can measure and adjust vapor flow in the corresponding transfer tube. A sensor is provided capable of sensing reactions between deposition constituents and a focused ion beam A computer is connected to receive the output of the sensor; the computer is also connected to each metering valve to control the operation of the valve, and the computer is programmed to send control signals to each metering valve to control the operation of the valve; the control signals being computed responsive to feedback from the output of the sensor.
    • 我们公开了具有至少一个坩埚的气体注入系统,每个坩埚保持至少一个沉积成分; 至少一个传送管,传送管的数量对应于坩埚的数量,每个传送管连接到相应的坩埚。 存在至少一个计量阀,计量阀的数量对应于转移管的数量,每个计量阀连接到相应的转移管,使得计量阀可以测量和调节相应的转移管中的蒸气流。 提供能够感测沉积成分和聚焦离子束之间的反应的传感器。计算机被连接以接收传感器的输出; 计算机还连接到每个计量阀以控制阀的操作,并且计算机被编程为向每个计量阀发送控制信号以控制阀的操作; 响应于来自传感器的输出的反馈来计算控制信号。
    • 50. 发明授权
    • Method and device for collecting fractions after material separation
    • 材料分离后收集馏分的方法和装置
    • US06698470B1
    • 2004-03-02
    • US10169449
    • 2002-07-01
    • Anton HornStefan KreuschThomas MooreGuenther SammlerGuenter Ditze
    • Anton HornStefan KreuschThomas MooreGuenther SammlerGuenter Ditze
    • G01N100
    • G01N35/1079B01L3/50853
    • An airbag cover is defined by a predetermined breaking line which is introduced into a shaped flat material in a recessed manner. The recesses are achieved by removing material by means of laser radiation. According to the invention, the flat material is provided with a barrier layer. The barrier layer, by reason of its material properties, has greater resistance to removal of material by laser action than the material of the rest of the flat material. The recesses made by removing material extend along the predetermined breaking line in the flat material up to the barrier layer. The barrier layer makes it possible to produce a predetermined breaking line by means of laser machining which allows an exact residual wall thickness of the airbag cover in the area of the predetermined breaking line, so that the tearing strength can be adjusted very accurately, which is critically important for a reliable deployment of an airbag. Further, a method for the efficient production of an airbag cover of this type is indicated.
    • 安全气囊盖由预定的断裂线限定,其以凹进的方式被引入成形的平坦材料中。 通过用激光辐射去除材料来实现凹陷。 根据本发明,扁平材料设置有阻挡层。 阻挡层由于其材料性质而具有比平坦材料的其余部分的材料更大的抗激光作用的材料去除。 通过去除材料制成的凹槽沿着平坦材料中的预定断裂线延伸直到阻挡层。 阻挡层可以通过激光加工来制造预定的断裂线,这允许安全气囊盖在预定断裂区域的区域中的准确的残留壁厚,从而可以非常精确地调节撕裂强度,即 对于安全气囊的可靠部署至关重要。 此外,示出了用于有效地生产这种类型的安全气囊盖的方法。