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    • 1. 发明授权
    • High capacity beverage dispensing system
    • 高容量饮料分配系统
    • US5127551A
    • 1992-07-07
    • US616117
    • 1990-11-20
    • William J. BlackScott C. Milton
    • William J. BlackScott C. Milton
    • B67D1/08
    • B67D1/0864Y10T137/6579Y10T137/85938Y10T137/85954
    • The present invention is a beverage dispensing system for providing the parallel connection of a plurality of refrigeration sources responsible for the cooling of associated beverages dispensed from a plurality of dispensing valves. A coolant fluid, such as carbonated water, is cooled by each refrigeration unit and is then co-mingled in a common outflow manifold prior to distribution to each of the valves. Likewise, each similar beverage cooled by each refrigeration unit can be co-mingled in a particular manifold before distribution to each of the dispensing valves. Thus, the failure of one refrigeration unit does not to require the shut-down of a valve or valves, as carbonated water and beverages cooled thereby are co-mingled with the carbonated water and same beverages continuing to be cooled by the remaining functioning refrigeration units prior to delivery thereof to the valves.
    • 本发明是一种饮料分配系统,用于提供负责冷却从多个分配阀分配的相关饮料的多个制冷源的并联连接。 诸如碳酸水的冷却剂流体由每个制冷单元冷却,然后在分配到每个阀门之前共同混合在共同的流出歧管中。 同样,每个制冷单元冷却的每个相似的饮料可以在分配到每个分配阀之前在特定歧管中共混。 因此,一个制冷单元的故障不需要关闭阀门或阀门,因为由此冷却的碳酸水和饮料与碳酸水共同混合,并且由剩余功能的制冷单元继续冷却的相同饮料 在将其传送到阀之前。
    • 2. 发明授权
    • Label printer dot line registration assembly
    • 标签打印机点线注册组件
    • US06768502B2
    • 2004-07-27
    • US09683715
    • 2002-02-06
    • Scott C. Milton
    • Scott C. Milton
    • B41J25304
    • B41J3/4075B41J25/304
    • A label printer registration assembly for use in a label printer is disclosed. The registration assembly includes: a registration device securable to a base portion frame of the label printer, and a print head assembly mountable to a cover portion frame of the label printer. The print head assembly further includes: a variably loadable print head for printing to a variety of label media types and sizes; and a registration face attached to the print head. The registration face is engageable with the registration device to maintain registration between the print head and the registration device. The print head is variably loadable to a media-specific load. The print head can also be unloaded while the print head and registration roller are engaged so as to achieve and maintain an unloaded registration. The invention also includes a method for printing a dot line to a label media. The invention accomplishes printing in a manner that can accommodate adjustment or varying of the load that is applied to the label media according to the specific label media used.
    • 公开了一种用于标签打印机的标签打印机注册组件。 登记组件包括:可安装到标签打印机的基部框架的登记装置,以及可安装到标签打印机的盖部分框架的打印头组件。 打印头组件还包括:用于打印到各种标签介质类型和尺寸的可变装载的打印头; 以及附着在打印头上的配准面。 登记面可与登记装置接合,以保持打印头与登记装置之间的对准。 打印头可变地装载到介质特定的负载。 当打印头和定位辊接合时,打印头也可以卸载,以便实现和保持卸载的配准。 本发明还包括一种将点线打印到标签介质上的方法。 本发明以可以适应根据所使用的特定标签介质适用于标签介质的负载的调整或变化的方式实现打印。
    • 6. 发明授权
    • Device for optics alignment and mounting
    • 用于光学对准和安装的设备
    • US07090177B2
    • 2006-08-15
    • US10716713
    • 2003-11-19
    • Scott C. MiltonTorsten J. R. Blaetter
    • Scott C. MiltonTorsten J. R. Blaetter
    • F16M11/02H04N1/04
    • G02B7/003
    • A method of aligning an optics deck in six degrees of freedom comprising: mounting an optics deck having a scanline slot on an optics alignment station by means of three adjustable leveler assemblies located at three apexes of a triangle which enclose the slot and whose sides establish axes about which adjustment of the leveler assemblies is carried out such that the bottom surface of the optics deck is parallel to the optics alignment station and at a known height relative to the optics alignment station; translating the optics deck to bring it into proper optical alignment by translating the deck linearly along an axis coincident with the center line of the slot and rotationally about first and second points coincident with the end points of the scan line; and fixing the optics deck after the translating to the leveler assemblies.
    • 一种在六个自由度上对准光学平台的方法,包括:通过位于三角形的三个顶点的三个可调整的矫直机组件将安装具有扫描线槽的光学平台安装在光学对准站上,三角形的三个顶点包围狭槽, 关于矫正器组件的哪些调整被执行,使得光学平台的底表面平行于光学对准站并且相对于光学对准站处于已知的高度; 平移光学平台以使其通过沿着与槽的中心线重合的轴线线性地平移甲板而使其成为适当的光学对准,并且围绕与扫描线的端点重合的第一和第二点旋转地旋转; 并在平移机组平移之后固定光学平台。
    • 9. 发明授权
    • Sheet recording apparatus with dual nip transport
    • 具有双辊隙运输的纸张记录装置
    • US07244072B2
    • 2007-07-17
    • US10977841
    • 2004-10-29
    • Jeffery R. HawverMark D. BedzykScott C. Milton
    • Jeffery R. HawverMark D. BedzykScott C. Milton
    • B41J11/58B41J13/10
    • B65H29/12B41J11/42B41J13/0009B65H5/062B65H2403/10
    • An apparatus for recording an image onto a sheet medium (12) has an entrance nip (14) for transporting the sheet medium (12) into an image recording section (20). A write head (56) records onto a portion of the sheet medium (12) between the entrance nip (14) and exit nip (24). The exit nip (24) is formed by a drive roller (26) paired with a corresponding exit pressure roller (28). A motor (60) provides rotary motion to either the entrance drive roller (16) or the exit drive roller (26). A coupling apparatus (54) has a coupling roller (36) and a loading mechanism providing a loading force to nest the coupling roller (36) into continuous rotational contact against the entrance and exit drive rollers (16,26), whereby rotation is transferred between the exit drive roller (26) and the entrance drive roller (16).
    • 用于将图像记录到片材介质(12)上的装置具有用于将片材介质(12)输送到图像记录部分(20)中的入口压区(14)。 写入头(56)记录在入口压区(14)和出口压区(24)之间的薄片介质(12)的一部分上。 出口压区(24)由与对应的出口压力辊(28)配对的驱动辊(26)形成。 马达(60)向入口驱动辊(16)或出口驱动辊(26)提供旋转运动。 联接装置(54)具有连接辊(36)和装载机构,该装载机构提供将联接辊(36)嵌套到入口和出口驱动辊(16,26)上的连续旋转接触的装载力,从而转动 在出口驱动辊(26)和入口驱动辊(16)之间。
    • 10. 发明授权
    • Label media-specific plotter cutter depth control
    • US06664995B2
    • 2003-12-16
    • US09683717
    • 2002-02-06
    • Scott C. MiltonDaniel K. Workman
    • Scott C. MiltonDaniel K. Workman
    • B41J1100
    • B26D3/085
    • Methods and systems are disclosed for controlling cutting depth of a label media such that the depth of cut is media-specific, that is, specific to the media being cut. The method includes: providing a plotter cutter and a force-generating mechanism; providing a memory device for electronic communication with the plotter cutter, the memory device having a label media-specific value stored thereon; reading the label media-specific value from the memory device; converting the label media-specific value to a label media-specific current signal; providing a label media-specific current based on the label media-specific current signal; applying the label media-specific current to a force-generating mechanism; generating a label media-specific cutting force based on the label media-specific current; and transferring the label media-specific cutting force to the plotter cutter to control plotter cutting at the label media-specific cutting depth. The methods and systems work towards eliminating waste or scrap plotter test cuts by plotter cutting a label media using information from, for example, a memory device associated with a label media supply. The methods and systems obviate the need for manual resetting of plotter cutter depth from one label media to another.