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    • 14. 发明公开
    • Apparatus for interfacing indexing and continuous motion machines and method of utilizing apparatus
    • 用于连接索引和连续运动机器的设备和利用设备的方法
    • EP0562844A3
    • 1994-03-23
    • EP93302248.5
    • 1993-03-24
    • McNEIL-PPC, INC.
    • Helmstetter, Thomas J.
    • B65G47/74B65G37/00B65G47/51
    • B65G47/5122
    • An apparatus and method for facilitating the interfacing between indexing motion and continuous motion machines wherein interfacing structure is provided by a continuous motion interfacing loop conveyor (40) which is operatively interposed between the discharge end (14) of an indexing conveyor (12) of the intermittent motion machine and an article-receiving end (34) of a continually advancing receiving conveyor (16) of the continuous motion machine. The interfacing loop conveyor has a reciprocatory or oscillating motion component superimposed on the continuous advance thereof proximate the article-discharging end of the indexing conveyor so as to correlate the relative speeds between the advance of the interfacing conveyor and that of the indexing conveyor end from which the articles of manufacture are transferred to the interfacing conveyor so as to produce a uniform transfer of the articles to the interfacing conveyor, and a continuous advance of the articles to the receiving conveyor of the continuous motion machine.
    • 一种用于促进分度运动和连续运动机器之间的接口的装置和方法,其中接口结构由连续运动接口环形传送器(40)提供,所述连续运动接口环形传送器可操作地插入在分度传送器(12)的排出端(14) 间歇运动机器和连续运动机器的连续前进的接收输送机(16)的物品接收端(34)。 接口环形输送机具有往复运动或摆动运动部件,其叠加在其接近输送机的物品排出端的连续前进部上,以便将接口输送机的前进和输送机端的前进之间的相对速度相关联 将制造的物品转移到接口输送机上,以便将物品均匀地输送到接口输送机,并且将物品连续推进到连续运动机器的接收输送机。
    • 18. 发明公开
    • Shuttle actuated singulation apparatus
    • Vereinzelungsvorrichtung im Pendelbetrieb。
    • EP0241248A2
    • 1987-10-14
    • EP87302962.3
    • 1987-04-06
    • MICRO COMPONENT TECHNOLOGY, INC.
    • Anderson, Richard D.
    • B65G25/04B65G47/08H01L21/00H05K13/02B65G47/74
    • B65G47/74B07C5/02H05K13/02
    • A shuttle-actuated singulation apparatus for use in handling integrated circuit devices (l6). A shuttle (39), acting to isolate or singulate an individual integrated circuit device (l6) for transfer to a test apparatus, is included. A shuttle assembly (30) is carried by a splined shaft (34) for rotational movement of shuttle (39) carried thereby. The assembly (30), additionally, is moved laterally by means of cable drive means (36). Rotation of a shuttle barrel (32) and associated upward pivoting of shuttle projectiles (42) carried by barrel (32) effects engagement of a bell crank (70) which, in turn, engages a belt drive mount (82) carrying a drive belt (80). The drive belt (80), thereafter, is engaged with an integrated circuit device (l6) to impel the device (l6) out of a track (l2) in which it is received. The engagement of the shuttle projectiles (42) with a shoulder (72) of the bell crank (70) pivots the belt drive mount (82), thereby overcoming belt drive mount spring biasing means (90) which normally retains the belt drive mount (82) in its original position. A stop (60) associate with each track (l2) is also engaged by upward rotation of the shuttle projectiles (42). Engagement of the stop (60) by projectiles (42) overcomes stop spring biasing means to allow the belt drive (80) to push an integrated circuit device (l6) out of the track (l2) and into the shuttle assembly (30). The shuttle assembly (30) is then moved laterally to a position in alignment with a chute and shuttle (39) rotated to a second position where the integrated circuit device (l6) is expelled from the shuttle by means of a spring (48) into the common test site chute.
    • 一种用于处理集成电路器件(16)的穿梭致动分离装置。 包括用于隔离或分离用于传送到测试装置的单个集成电路装置(16)的梭(39)。 梭子组件(30)由花键轴(34)承载,用于由其承载的梭(39)的旋转运动。 另外,组件(30)通过电缆驱动装置(36)横向移动。 梭筒(32)的旋转和由筒(32)承载的穿梭弹丸(42)的相关联的向上枢转实现了曲柄(70)的接合,该曲柄转动器接合与传动带(82) (80)。 驱动带(80)此后与集成电路装置(16)接合,以将装置(16)推出其所接收的轨道(12)。 穿梭弹体(42)与钟形曲柄(70)的肩部(72)的接合使皮带驱动装置(82)枢转,从而克服通常保持皮带驱动装置(82)的皮带传动安装弹簧偏置装置(90) 82)原来的位置。 与每个轨道(12)相关联的止动件(60)也通过穿梭弹体(42)的向上旋转接合。 通过弹丸(42)使止动器(60)的接合克服了止动弹簧偏置装置,以允许皮带驱动器(80)将集成电路装置(16)推出轨道(12)并进入梭组件(30)。 梭子组件(30)然后横向地移动到与滑槽(39)对齐的位置,该斜槽和梭子(39)旋转到第二位置,在该第二位置,集成电路装置(16)借助于弹簧(48)从梭子排出,进入 常见测试场地滑槽。