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    • 1. 发明授权
    • Bilateral media storage unit
    • 双边媒体存储单元
    • US5785399A
    • 1998-07-28
    • US748564
    • 1996-11-13
    • Richard F. FrankenyVerlon E. WhiteheadRonald E. Hunt
    • Richard F. FrankenyVerlon E. WhiteheadRonald E. Hunt
    • G11B33/04A47B81/06
    • G11B33/0405Y10S312/901Y10T16/525Y10T16/528
    • A bilateral media storage unit for storing and carrying CD ROMs, computer diskettes, removable disk storage devices and the like. The storage unit includes a discus shaped portable housing having a generally bowl shaped lower base component and a generally bowl shaped upper cover component which are coupled together at opposite points on their peripheries by selectively releasable hinges which pivotally couple the upper cover component to the lower base component and which release the upper cover component to pivot away from the lower base component when released. An accordion pleated extendable media receptacle is mounted within the portable housing. The accordion pleated extendable media receptacle includes a first group of extensible slots which are adapted to receive a first group of substantially planar storage media and a second group of extensible slots which are adapted to receive a second group of substantially planar storage media wherein the first group of extensible slots are extended in response to a pivoting of the upper cover component away from the lower base component in a first direction and wherein the second group of extensible slots are extended in response to a pivoting of the upper cover component away from the lower base component in a second direction.
    • 用于存储和携带CD ROM,计算机软盘,可移动磁盘存储装置等的双向媒体存储单元。 存储单元包括一个铁饼形便携式外壳,其具有大致碗形的下部基座部件和一个大致碗状的上盖部件,它们通过选择性地可释放的铰链将上部部件枢转地连接到下部基座 并且当释放时释放上盖部件以远离下部基部部件枢转。 手提包折叠的可扩展介质插座安装在便携式外壳内。 手风琴折叠的可扩展介质容器包括适于接收第一组基本上平面的存储介质的第一组可扩展槽和适于接收第二组基本上平面的存储介质的第二组可扩展槽,其中第一组 响应于上盖部件沿着第一方向远离下基部部件的枢转而延伸的可伸展狭槽,并且其中第二组可延伸狭槽响应于上盖部件远离下基部的枢转而延伸 分量在第二方向。
    • 2. 发明授权
    • Method and apparatus for positioning components
    • 用于定位组件的方法和装置
    • US5044875A
    • 1991-09-03
    • US353299
    • 1989-05-17
    • Ronald E. HuntVerlon E. Whitehead
    • Ronald E. HuntVerlon E. Whitehead
    • H05K13/04
    • H05K13/0408Y10T29/49133Y10T29/53178
    • A method and apparatus are provided for simultaneously positioning electronic components, such as surface-mounted chips on a circuit board. A removable load plate carries a plurality of chip placement assemblies, each having a support disposing a plurality of such components in a stack adjacent the board. The assemblies are disposed about the load plate in a geometric pattern corresponding to that of chips to be placed. A stripping component of each assembly in slidable engagement with the support sequentially urges each chip in the stack transversely from the stack to a second position opposing a corresponding desired site on the board where the chip is to be placed. Each support includes a mounting block having a connector for releasable interconnection of each positioning apparatus to the load plate. A chamber maintains the chip at the second position in response to fluid pressure differential. The support receives a tube for transporting the chip from the second position to a third position wherein it engages the board site. A shuttle plate simultaneously urges the stripping components of all assemblies in the slidable motion to strip chips from the stack. The load plate is easily replaced with one re-loaded off line to carry a replenished supply of chips in the same or different pattern.
    • 提供了一种方法和装置,用于将诸如表面安装的芯片的电子部件同时定位在电路板上。 可移动的载重板承载多个芯片放置组件,每个芯片放置组件具有支撑件,该组件在与板相邻的堆叠中布置多个这样的部件。 组件围绕负载板以与要放置的芯片的几何图案相对应的几何图案设置。 每个组件与支撑件滑动接合的剥离部件顺序地将堆叠中的每个芯片从堆叠横向推动到与放置芯片的板上相应的所需位置相对的第二位置。 每个支撑件包括具有用于将每个定位装置可释放地互连到负载板的连接器的安装块。 腔室响应于流体压差而将芯片保持在第二位置。 支撑件接收用于将芯片从第二位置运送到第三位置的管,其中其接合板部位。 穿梭板同时推动所有组件的剥离部件在滑动运动中以从堆叠中剥离碎屑。 负载板容易用一个重新加载的离线替换,以携带相同或不同图案的补充的芯片供应。
    • 7. 发明授权
    • Print element cartridge
    • 打印元件盒
    • US4264221A
    • 1981-04-28
    • US968321
    • 1978-12-11
    • Adolph B. HabichRonald E. Hunt
    • Adolph B. HabichRonald E. Hunt
    • B41J1/30B41J1/24
    • B41J1/246
    • A cartridge for housing a daisy wheel print element during printing use and non-use. The cartridge has a front, sides, and a back, and is structured to substantially enclose the print element. Included in the makeup of the cartridge are (1) a slot in the top of the front for accommodating a print hammer during printing operations, (2) an orientation opening generally centralized within the front to accept a matching orientation protrusion carried by the print element, (3) a loading opening in the bottom for insertion and removal of the print element, (4) a card holder carried by the top of the back, (5) a ribbon guide carried by the top of the front, and (6) a center bowed leaf spring located within the cartridge. The lower end of the spring acts against the lower inside of the back and the bow acts against the inside of the front adjacent the orientation opening. As such, a ramp is provided for caming the orientation protrusion toward the orientation opening during insertion of the print element into the cartridge. Upon engagement of the orientation opening and orientation protrusion, the spring then serves to maintain the print element latched in a desired rotational position.
    • 用于在打印使用和不使用期间容纳菊花轮印刷元件的盒。 盒具有前侧,后侧和后面,并且构造成基本上包围印刷元件。 包括在盒的构成中的是(1)在打印操作期间用于容纳打印锤的前部的顶部的槽,(2)通常集中在前部中的定向开口,以接受由打印元件承载的匹配的定向突起 ,(3)用于插入和取出打印元件的底部中的装载开口,(4)由背面顶部承载的卡夹,(5)由前部的顶部承载的色带引导件和(6 )位于墨盒内的中心弯曲的弹簧片。 弹簧的下端作用在靠背的下部内侧,并且弓与邻近定向开口的作用抵靠在前部的内侧。 因此,提供了一种斜面,用于在将打印元件插入盒中期间朝向定向开口凸轮定向突出部。 在接合定向开口​​和定向突起时,弹簧用于将打印元件保持在期望的旋转位置。
    • 8. 发明授权
    • System for chip orientation
    • 芯片方向系统
    • US5133636A
    • 1992-07-28
    • US693877
    • 1991-04-30
    • Ronald E. HuntVerlon E. Whitehead
    • Ronald E. HuntVerlon E. Whitehead
    • B65G51/03H05K13/02
    • B65G47/525B65G47/256H05K13/022
    • A queue of randomly oriented chips is advanced down a track. Each chip in the queue is sequentially and individually elevated into a pneumatic circuit and pressed against a mirrored surface of an upper slide member to which it adheres if the chip was oriented with upwardly disposed solder lands. A jet of compressible fluid insufficient in magnitude to dislodge the chip is injected in a direction toward the queue. If the chip, alternatively, was oriented with the solder lands down, this fluid jet propels the chip about the oval-shaped pneumatic circuit so as to reorient the chip with the lands extending in the desired upward orientation, whereupon the chip is injected into a storage magazine. If the chip was adhered to the mirrored surface, after the first fluid jet, a second fluid jet is introduced to dislodge the correctly oriented chip from the mirrored surface, whereupon a third fluid jet oriented in a direction opposite to that of the first jet and in the direction of the advancing queue, propels the correctly oriented chip along a passageway to the storage magazine. This passageway joins with the oval-shaped inverting passageway which was employed to reorient or flip incorrectly disposed chips as they traversed the reorienting oval.
    • 随机取向的芯片的队列在轨道上向前推进。 队列中的每个芯片依次单独地升高到气动回路中,并且如果芯片被定向成向上设置的焊接区域,则被压靠在上部滑动构件的与其粘合的镜面上。 将不足够尺寸的可压缩流体的射流排出到排队队列的方向上。 如果芯片可替代地以焊料焊盘为中心,则该流体射流推动芯片围绕椭圆形的气动回路,以便以期望的向上方向延伸的焊盘重新定向芯片,由此将芯片注入到 存储杂志。 如果芯片粘附到镜面上,则在第一流体射流之后,引入第二流体射流以将正确定向的芯片从镜面上移出,由此在与第一射流的方向相反的方向上定向的第三流体射流,以及 在推进队列的方向上,将正确定向的芯片沿通道推向存储仓库。 该通道与椭圆形的反转通道连接,该通道用于在穿过重新定向的椭圆形时重新定向或翻转不正确布置的切屑。
    • 9. 发明授权
    • System and method for chip orientation
    • 芯片方向的系统和方法
    • US5044872A
    • 1991-09-03
    • US520440
    • 1990-05-08
    • Ronald E. HuntVerlon E. Whitehead
    • Ronald E. HuntVerlon E. Whitehead
    • B65G51/03H05K13/02
    • H05K13/022B65G51/03
    • A queue of randomly oriented chips is advanced down a track. Each chip in the queue is sequentially and individually elevated into a pneumatic circuit and pressed against a mirrored surface of an upper slide member to which it adheres if the chip was oriented with upwardly disposed solder lands. A jet of compressible fluid insufficient in magnitude to dislodge the chip is injected in a direction toward the queue. If the chip, alternatively, was oriented with the solder lands down, this fluid jet propels the chip about the oval-shaped pneumatic circuit so as to reorient the chip with the lands extending in the desired upward orientation, whereupon the chip is injected into a storage magazine. If the chip was adhered to the mirrored surface, after the first fluid jet, a second fluid jet is introduced to dislodge the correctly oriented chip from the mirrored surface, whereupon a third fluid jet oriented in a direction opposite to that of the first jet and in the direction of the advancing queue, propels the correctly oriented chip along a passageway to the storage magazine. This passageway joins with the oval-shaped inverting passageway which was employed to reorient or flip incorrectly disposed chips as they traversed the reorienting oval.