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    • 2. 发明申请
    • SHALLOW ANGLE VERTICAL ROTARY LOADER FOR ELECTRONIC DEVICE TESTING
    • 用于电子设备测试的倾斜角度旋转负载器
    • WO2012173775A3
    • 2013-06-13
    • PCT/US2012040056
    • 2012-05-31
    • ELECTRO SCIENT IND INCGARCIA DOUGLAS J
    • GARCIA DOUGLAS J
    • G01R31/01
    • B65G47/1471G01R31/2893
    • A rotary loader taught herein comprises a rotatable load plate including a plurality of component pockets arranged about a rotational axis of the load plate, the load plate inclined with respect to a horizontal surface at an angle of inclination of less than 50 degrees and a load wall arranged about a lower portion of the load plate adjacent certain ones of the plurality of component pockets and extending above a height of the load plate. The load wall includes a retention surface extending in a direction parallel to an outer peripheral edge of the load plate and a loading surface inclined with respect a line perpendicular to a top surface of the load plate in a direction away from the retention surface at an angle of inclination of less than 45 degrees.
    • 本文所述的旋转装载机包括可旋转的负载板,其包括围绕负载板的旋转轴线布置的多个部件凹口,所述负载板相对于水平表面以小于50度的倾斜角倾斜,并且负载壁 围绕所述负载板的下部布置成邻近所述多个部件袋中的某些部件并且在所述负载板的高度之上延伸。 负载壁包括沿平行于负载板的外周边缘的方向延伸的保持表面和相对于垂直于负载板的顶表面的线在垂直于保持表面的方向上以一定角度倾斜的负载表面 的倾斜度小于45度。
    • 3. 发明申请
    • SHALLOW ANGLE VERTICAL ROTARY LOADER FOR ELECTRONIC DEVICE TESTING
    • 用于电子设备测试的倾斜角度旋转负载器
    • WO2012173775A2
    • 2012-12-20
    • PCT/US2012/040056
    • 2012-05-31
    • ELECTRO SCIENTIFIC INDUSTRIES, INC.GARCIA, Douglas J.
    • GARCIA, Douglas J.
    • G01R31/01
    • B65G47/1471G01R31/2893
    • A rotary loader taught herein comprises a rotatable load plate including a plurality of component pockets arranged about a rotational axis of the load plate, the load plate inclined with respect to a horizontal surface at an angle of inclination of less than 50 degrees and a load wall arranged about a lower portion of the load plate adjacent certain ones of the plurality of component pockets and extending above a height of the load plate. The load wall includes a retention surface extending in a direction parallel to an outer peripheral edge of the load plate and a loading surface inclined with respect a line perpendicular to a top surface of the load plate in a direction away from the retention surface at an angle of inclination of less than 45 degrees.
    • 本文所述的旋转装载机包括可旋转的负载板,其包括围绕负载板的旋转轴线布置的多个部件凹口,所述负载板相对于水平表面以小于50度的倾斜角倾斜,并且负载壁 围绕所述负载板的下部布置成邻近所述多个部件袋中的某些部件并且在所述负载板的高度之上延伸。 负载壁包括沿平行于负载板的外周边缘的方向延伸的保持表面和相对于垂直于负载板的顶表面的线在垂直于保持表面的方向上以一定角度倾斜的负载表面 的倾斜度小于45度。
    • 8. 发明申请
    • CONFIGURATIONS OF ELECTRONIC COMPONENT-CARRYING APERTURES IN A TERMINATION BELT
    • 电子元件在终止带中的配置
    • WO2006104998A2
    • 2006-10-05
    • PCT/US2006011068
    • 2006-03-23
    • ELECTRO SCIENT IND INCSAUNDERS WILLIAM JGARCIA DOUGLAS JTUBBS NICK ABOE GERALD F
    • SAUNDERS WILLIAM JGARCIA DOUGLAS JTUBBS NICK ABOE GERALD F
    • B65D85/00
    • H05K13/0084Y10T29/49121
    • A miniature component carrier (50) includes a thin, resilient mask (100) through which are formed multiple spaced-apart apertures each of which is sized and shaped to compliantly receive and hold a miniature component (106) in a controlled orientation during termination processing such that the side margins (102) of the aperture primarily contact and grip the corner regions (110) of the miniature component. At least some of the apertures have side margins that form rhomboidal (104) or elliptical (120) apertures. The shape and size of the multiple spaced-apart apertures confine within an operational tolerance contact between the side margins of the aperture and the side (22, 24) or end (26, 28) wall surfaces of the electronic component. This reduces mechanical damage to the side and end wall surfaces that results from their contact with the side margins during receipt and gripping of the miniature component in the aperture.
    • 微型部件载体(50)包括薄的有弹性的掩模(100),多个间隔开的孔形成多个间隔开的孔,每个孔的尺寸和形状适于在终止处理期间以受控取向顺应地接收和保持微型部件(106) 使得孔的侧边缘(102)主要接触并抓住微型部件的拐角区域(110)。 至少一些孔具有形成菱形(104)或椭圆形(120)孔的侧边。 多个间隔开的孔的形状和尺寸限制在孔的侧边缘与电子部件的侧面(22,24)或端部(26,28)壁表面之间的操作公差接触中。 这减少了在接收和夹持孔中的微型部件时由于它们与侧边缘的接触而导致的侧壁和端壁表面的机械损伤。