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    • 3. 发明授权
    • Chip separation and alignment apparatus
    • 芯片分离和对准装置
    • US4953749A
    • 1990-09-04
    • US280222
    • 1988-12-05
    • Shigeru KubotaShoji KanouMasahiro Kubo
    • Shigeru KubotaShoji KanouMasahiro Kubo
    • B65G47/14H05K13/02
    • H05K13/027B65G47/1407
    • A chip separation and alignment apparatus capable of accurately and readily accomplishing separation and alignment of chips with a simple construction. The apparatus includes a chip separation and alignment section and a chip separation section. The chip separation and alignment section includes a chip cassette formed into a flat rectangular box-like shape, in which are formed a chip storage chamber, a chip alignment hole provided with an upper end opening through which the chip alignment hole is communicated with a lower portion of the chip storage chamber and a lower end opening, and at least one air ejection port arranged near the upper end opening to intermittently eject air therethrough. The chip separation section is arranged at the lower end opening of the chip alignment hole to separate chips one by one and to successively supply the separated chips to a subsequent step.
    • 一种能够以简单的结构准确且容易地实现芯片的分离和对准的芯片分离和对准装置。 该装置包括芯片分离和对准部分和芯片分离部分。 芯片分离和取向部分包括形成为扁平矩形盒状形状的芯片盒,其中形成有芯片存储室,芯片对准孔设置有上端开口,芯片对准孔通过该上端开口与下部 芯片存储室的一部分和下端开口,以及布置在上端开口附近的至少一个空气喷射口,以间歇地喷出空气。 芯片分离部设置在芯片对准孔的下端开口处,逐个分离芯片,并将分离的芯片依次供给到随后的步骤。
    • 4. 发明授权
    • Chip separation and alignment apparatus
    • 芯片分离和对准装置
    • US4801044A
    • 1989-01-31
    • US54497
    • 1987-05-27
    • Shigeru KubotaShoji KanouMasahiro Kubo
    • Shigeru KubotaShoji KanouMasahiro Kubo
    • B65G47/14H05K13/02B23Q7/12B65H3/08
    • H05K13/027B65G47/1407
    • A chip separation and alignment apparatus capable of accurately and readily accomplishing separation and alignment of chips with a simple construction. The apparatus includes a chip separation and alignment section and a chip separation section. The chip separation and alignment section includes a chip cassette formed into a flat rectangular box-like shape, in which are formed a chip storage chamber, a chip alignment hole provided with an upper end opening through which the chip alignment hole is communicated with a lower portion of the chip storage chamber and a lower end opening, and at least one air ejection port arranged near the upper end opening to intermittenly eject air therethrough. The chip separation section is arranged at the lower end opening of the chip alignment hole to separate chips one by one and to successively supply the separated chips to a subsequent step.
    • 一种能够以简单的结构准确且容易地实现芯片的分离和对准的芯片分离和对准装置。 该装置包括芯片分离和对准部分和芯片分离部分。 芯片分离和取向部分包括形成为扁平矩形盒状形状的芯片盒,其中形成有芯片存储室,芯片对准孔设置有上端开口,芯片对准孔通过该上端开口与下部 芯片存储室的一部分和下端开口,以及布置在上端开口附近的至少一个空气喷射口,以间断地喷出空气。 芯片分离部设置在芯片对准孔的下端开口处,逐个分离芯片,并将分离的芯片依次供给到随后的步骤。
    • 5. 发明授权
    • Method and apparatus for press-fitting caps on electronic parts and the
like
    • 用于在电子部件等上压配盖的方法和装置
    • US4231152A
    • 1980-11-04
    • US881
    • 1979-01-04
    • Shigeru KubotaSeiji KanoMasahiro Kubo
    • Shigeru KubotaSeiji KanoMasahiro Kubo
    • H01C17/28H01C1/148H01C17/00H01G13/00
    • H01C17/00H01C1/148Y10T29/49101Y10T29/49945Y10T29/53187Y10T29/53209
    • Method and apparatus are provided for press-fitting caps on electric parts and the like. The apparatus has a device for feeding component rods of electric parts to a rod-conveying wheel provided on its circumference with lateral equally spaced grooves for receiving the rods fed from the rod-feeding device one by one, and a cap-feeding device for feeding caps to a pair of cap-conveying wheels each provided on its circumference with lateral equally-spaced grooves for receiving the caps fed from the cap-feeding device, the cap-conveying wheels being arranged symmetrically and obliquely with respect to the rod-conveying wheel so that the lower ends thereof come in contact with the lower end of the rod-conveying wheel thereby to press-fit the caps on the rods successively, and the rod-conveying and cap-conveying wheels being rotated in synchronization with one another. The method performed using the above apparatus comprises: feeding the rods onto the lateral grooves of the rod-conveying wheel one by one, feeding the caps onto the lateral grooves of the cap-conveying wheels one by one, and press-fitting the caps on both ends of the respective rods in succession.
    • 提供了用于电气部件等上的压配盖的方法和装置。 该装置具有用于将电气部件的杆部供给到设置在其圆周上的杆状输送轮的装置,其具有横向等间距的槽,用于接收从杆供给装置一个接一个地供给的杆;以及用于进给的盖供给装置 一对盖子输送轮分别设置在其圆周上,具有横向等间隔的槽,用于接收从盖子供给装置供给的盖子,盖子输送轮相对于杆传送轮对称地和倾斜地布置 使得其下端与杆传送轮的下端接触,从而相继压配合杆上的盖,并且杆传送和盖输送轮彼此同步地旋转。 使用上述装置执行的方法包括:将棒一个接一个地将棒输送到杆输送轮的横向槽上,一个接一个地将盖子一个一个地将盖子输送到盖输送轮的横向槽上,并将盖子压配合 相应杆的两端相继连接。
    • 7. 发明授权
    • Method of multiple powder coating employing geneva gears
    • 使用日内瓦齿轮的多种粉末涂层方法
    • US4124729A
    • 1978-11-07
    • US717617
    • 1976-08-25
    • Shigeru KubotaShoji KanoMasahiro Kubo
    • Shigeru KubotaShoji KanoMasahiro Kubo
    • C25D13/00B05D1/18B05D1/28B05C3/09
    • B05D1/18B05D2258/02B05D2401/32Y10T74/18528Y10T74/19879
    • A method of multiple powder coating wherein articles to be coated are fed to a conveyor which comprises a pair of Geneva gears secured to both ends of a rotatable shaft. The Geneva gears have a plurality of channels around the periphery thereof for holding the articles. The gears are rotated intermittently at an interval of one channel and an article to be coated is fed to a pair of channels at every Y intermittent rotations, where Y is the number of coatings to be applied. The article is coated once in each cycle of rotation of the Geneva gears and is removed following X times Y intermittent rotations, where X is the number of channels around the periphery of each gear. X is odd when Y is even and X/Y is a decimal when Y is odd.
    • 一种多粉末涂料的方法,其中待涂覆的制品被馈送到包括一对固定在可旋转轴的两端的日内瓦齿轮的输送机。 日内瓦齿轮具有围绕其周边的多个通道,用于保持物品。 齿轮以一个通道的间隔间歇地旋转,并且待涂覆的制品在每Y次间歇旋转时被供给到一对通道,其中Y是要施加的涂层的数量。 物品在日内瓦齿轮的每个旋转周期中被涂覆一次,并且在X次Y间歇旋转之后被移除,其中X是围绕每个齿轮的周边的通道数。 当Y为偶数时X为奇数,Y为奇数时为X / Y为小数。
    • 9. 发明授权
    • Channel selector valve and method of driving the same, compressor with the channel selector valve, and device for controlling refrigerating cycle
    • 通道切换阀及其驱动方法,具有通道切换阀的压缩机,以及用于控制制冷循环的装置
    • US06684651B1
    • 2004-02-03
    • US09743079
    • 2001-01-02
    • Yoshitaka YoshizawaKenji SuzukiMitsuaki NodaShigeru KubotaTadashi AokiHiroshi ItoNobuyuki KiuchiSeiichi Nakahara
    • Yoshitaka YoshizawaKenji SuzukiMitsuaki NodaShigeru KubotaTadashi AokiHiroshi ItoNobuyuki KiuchiSeiichi Nakahara
    • G12B100
    • F16K11/0655F25B41/046Y10T137/86839
    • Upon a selector operation of a valve such as a four-way selector valve provided in a refrigerating cycle for selecting a channel of fluid, prevention of environmental pollution and energy saving and the like are effectively achieved. A sliding valve is coupled with a piston in a housing of a channel selector valve provided in a refrigerating cycle and the sliding valve moves due to a difference in pressure and so on at both sides of the piston, thereby a channel of fluid is selected. A processing section of a control device is constituted with microcomputers of an indoor and outdoor control sections, while a detecting section of the control device includes temperature sensor, detection means for detecting pressure, detection means for detecting flow rate, detection means for detecting voltage/current, and detection means for detecting frequency. Driving sections of an electrically-driven expansion valve, an indoor heat exchanger, an outdoor heat exchanger and a compressor are means that function in response to execution of control programs so that physical quantity, such as pressure, differential pressure and flow rate in the channel selector valve provided in the refrigerating cycle, and a rate of change in physical quantity, such as a rate of change in pressure, a rate of change in differential pressure and a rate of change in flow rate, are controlled, thereby a channel of the fluid is selected by the channel selector valve.
    • 在设置在用于选择流路的冷冻循环中的四通换向阀等阀的选择操作时,有效地实现防止环境污染和节能等。 滑阀与设置在制冷循环中的通道切换阀的壳体中的活塞联接,并且滑阀由于活塞两侧的压力差等而移动,从而选择流体通道。 控制装置的处理部分由室内和室外控制部分的微型计算机组成,而控制装置的检测部分包括温度传感器,用于检测压力的检测装置,检测流量的检测装置,检测电压/ 电流和检测装置,用于检测频率。 电动膨胀阀,室内热交换器,室外热交换器和压缩机的驱动部分是响应于控制程序的执行起作用的装置,使得通道中的物理量例如压力,压差和流量 设置在制冷循环中的选择阀,以及压力变化率,压差变化率和流量变化率等物理量的变化率被控制,由此, 流体由流路切换阀选择。