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    • 3. 发明授权
    • Pin-supported and -aligned linear encoder strip for a scanning incremental printer
    • 用于扫描增量打印机的引脚支持和对齐线性编码器条
    • US06254292B1
    • 2001-07-03
    • US09253566
    • 1999-02-19
    • Emilio Angulo Navarro
    • Emilio Angulo Navarro
    • B41J2942
    • B41J19/207
    • Spaced pins support and align the strip. Apertures in the strip engage the pins with no fastening. The strip—best a transparent member and glued strength member—is end-mounted and -tensioned. Ideally the apertures are slots to constrain the strip as to only one dimension, and spaced (ideally about 30 cm on centers) to facilitate cutting various-size strips (e. g. for spans of roughly 91½, 106½, 152½ and 183 cm) from common, preapertured stock. The strip is longer than a meter; the invention is progressively more valuable for 1¼ m or longer strips. At least one pin is placed to keep fundamental oscillation of the strip, due to environmental vibration, from moving the strip out of position. The invention can take the form of the strip only, for use with the pins; or a printer with encoding system having the strip and pins—and a sensor responsive to the encoder to control printing; or a method of preparing a system for use. The pins prevent the strip from leaving the sensor and permit use of very low tension—only that needed to hold up the strip, within its vertical-alignment tolerance, over a short span between pins. The tension, and thereby the vertical-dimension stack from encoder scale to sensor, are thus made virtually independent of encoder-strip length. Such a printer ideally has a printhead carriage that scans parallel to the strip; the sensor (adjacent to the strip and carried on the carriage) develops signals representing position and velocity of the sensor and carriage relative to the strip. Printheads on the carriage form color marks to construct an image on a print medium. A medium-advance mechanism provides relative motion between carriage and medium. A processor responds to the position/velocity signals, and coordinates the printheads and advance mechanism to form the image.
    • 间距针脚支撑并对齐条带。 条带中的孔径与销没有紧固接合。 带状最佳透明构件和胶合强度构件 - 端部安装和张紧。 理想地,孔是用于将条约束为仅一个尺寸的狭槽,并且间隔开(理想地,中心约30cm),以便于切割各种尺寸的条(例如,距离共同的大约91½,106½,152½和183cm的跨度) 预先存货 该条长于一米; 本发明对于1cm或更长的条带逐渐更有价值。 放置至少一个销以保持条带的基本振荡,由于环境振动,将条带移出位置。 本发明可以仅采用条带的形式,与销一起使用; 或具有编码系统的打印机具有条带和针脚以及响应于编码器的传感器来控制打印; 或者制备用于使用的系统的方法。 引脚防止条带离开传感器,并允许在引脚之间的短跨度内,在其垂直对准公差范围内使用非常低的拉伸强度。 因此,张力,从而从编码器尺度到传感器的垂直尺寸堆叠实际上与编码器条长度无关。 这种打印机理想地具有平行于条带扫描的打印头托架; 传感器(与条带相邻并承载在托架上)产生表示传感器和托架相对于条带的位置和速度的信号。 滑架上的打印头形成彩色标记,以在打印介质上构建图像。 中等提前机制提供滑架和介质之间的相对运动。 处理器响应位置/速度信号,并协调打印头和前进机构以形成图像。
    • 8. 发明申请
    • Latent inkjet printing, to avoid drying and liquid-loading problems, and provide sharper imaging
    • 潜水喷墨打印,避免干燥和液体加载问题,并提供更清晰的成像
    • US20060164489A1
    • 2006-07-27
    • US11043772
    • 2005-01-26
    • Ramon VegaJordi FerranEduardo MartinEmilio AnguloJorge CastanoPedro Heras
    • Ramon VegaJordi FerranEduardo MartinEmilio AnguloJorge CastanoPedro Heras
    • B41J2/01
    • B41J2/01B41J2002/012
    • Ejected liquid forms a latent image on a charged transfer surface. In some invention aspects electrostatic charge is first applied to the surface; inkjet devices eject the image-forming liquid; voltage is established between the devices and surface; another, separate substance associated with the latent image actuates it. In other aspects hydrophobic or hydrophilic material in the surface stabilizes the image on it; electrostatic apparatus, associated with the surface, cooperates with the stabilizing material, further controlling image-droplet position and size. In other aspects a desired image forms on a final printing medium, based on an input electronic image-data array; the liquid ejection is onto an intermediate transfer surface, based on detailed incremental control by the data, forming a latent image representing the desired image. An actuating substance, initially discrete from the liquid, is associated with the image, and a reaction initiated to modify that substance—which is transferred from surface to final medium.
    • 喷射液体在带电转印表面上形成潜像。 在一些发明方面,首先将静电电荷施加到表面; 喷墨装置喷射图像形成液体; 设备和表面之间建立电压; 与潜像相关联的另一个独立物质驱动它。 在其他方面,表面上的疏水或亲水材料稳定其上的图像; 与表面相关的静电设备与稳定材料配合,进一步控制图像液滴位置和尺寸。 在其他方面,基于输入的电子图像数据阵列,在最终打印介质上形成期望的图像; 基于数据的详细增量控制,液体喷射到中间转印表面上,形成表示所需图像的潜像。 最初离开液体的致动物质与图像相关联,并且开始反应以改变从表面转移到最终介质的物质的反应。