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    • 21. 发明授权
    • Forming optical structures on receivers
    • 在接收器上形成光学结构
    • US6106622A
    • 2000-08-22
    • US991699
    • 1997-12-16
    • Xin Wen
    • Xin Wen
    • G02B3/00F16K31/02
    • G02B3/0018G02B3/005
    • Apparatus responsive to an input image for forming an optical structure such as a lens array on a receiver including a fluid delivery chamber having a fluid capable of forming the optical structure. The apparatus enables the fluid chamber to deliver fluid to the receiver to form the optical structure; fluid channel for delivering fluid to the fluid delivery chamber; and fluid flow regulation for regulating the fluid flow to the fluid delivery chamber and from the delivery chamber to the receiver in response to the values of the input image and for positioning the receiver relative to the delivery chamber so as to form the desired optical structure.
    • 响应于输入图像的设备,用于在接收机上形成诸如透镜阵列的光学结构,其包括具有能够形成光学结构的流体的流体输送室。 该装置使得流体室能够将流体输送到接收器以形成光学结构; 用于将流体输送到流体输送室的流体通道; 以及流体流动调节,用于响应于输入图像的值调节流体输送室和从输送室到接收器的流体流动,并且用于相对于输送室定位接收器以形成期望的光学结构。
    • 23. 发明授权
    • Ink jet printing of color image and annotations
    • 喷墨打印彩色图像和注释
    • US6076917A
    • 2000-06-20
    • US164247
    • 1998-09-30
    • Xin Wen
    • Xin Wen
    • B41J2/175B41J11/00B41J11/66B41J2/21B41J2/145B41J2/15
    • B41J2/175B41J11/0085
    • Ink jet printing apparatus forms a color image from the digital image file and high-resolution annotation information relative to the color image on a receiver in response to a digital image and annotation information. The ink jet printing apparatus includes a print bar disposed at a first image transfer position across at least a portion of the width of the receiver and adapted to deliver colorants to the receiver to form a color image on the receiver, and a print head assembly spaced from the print bar and disposed at second image transfer position and adapted to be moved in a direction across the width direction of the receiver for delivering ink to the receiver to form annotation information on the receiver. The ink jet printing apparatus further includes control circuitry which causes the print head assembly to be transported relative to the receiver and for transporting the receiver relative to the print bar and the print head assembly. Print head drive electronics is responsive to the annotation information and the digital image for respectively actuating the print head assembly and the print bar to form a color image and annotation information relative to such color image on the receiver.
    • 喷墨打印装置响应于数字图像和注释信息,从数字图像文件和接收机上相对于彩色图像的高分辨率注释信息形成彩色图像。 喷墨打印设备包括设置在第一图像传送位置处的打印条,其穿过接收器的宽度的至少一部分,并且适于将着色剂输送到接收器以在接收器上形成彩色图像,并且打印头组件间隔开 并且被设置在第二图像传送位置,并适于沿着接收器的宽度方向的方向移动,以将墨水输送到接收器,以在接收器上形成注释信息。 喷墨打印设备还包括控制电路,其使得打印头组件相对于接收器被传送并且用于相对于打印头和打印头组件传送接收器。 打印头驱动电子设备响应于注释信息和数字图像,用于分别致动打印头组件和打印条以形成相对于接收器上的这种彩色图像的彩色图像和注释信息。
    • 24. 发明授权
    • Printer apparatus and method
    • 打印机设备及方法
    • US6033059A
    • 2000-03-07
    • US40121
    • 1998-03-17
    • Xin WenAnthony R. Lubinsky
    • Xin WenAnthony R. Lubinsky
    • B41J2/045B41J2/055B41J2/14
    • B41J2/04581B41J2/04588B41J2/14209B41J2202/10
    • Printer apparatus and method. The apparatus includes a substrate having a plurality of spaced-apart pairs of selectively actuatable side walls defining respective channels therebetween of different depths. Each channel receives an associated one of a plurality of ink bodies therein and the substrate is formed of piezoelectric material responsive to electric stimuli. The pairs of side walls are preferably separated one from another by means of an intervening cut-out for reducing mechanical coupling between the ink channels. A cover plate is connected to the substrate and has a plurality of orifices therethrough in registration with respective ones of the channels such that the orifices are off-set one from another. Accordingly, in one embodiment of the invention, the channels have different depths and, therefore, the orifices, which are in registration with the channels, are off-set one from another to accommodate the different depths of the channels. A selected ink channel, which belongs to a first group of channels having a first predetermined depth, pressurize as its pairs of side walls are actuated. Also, a non-selected ink channel, which belongs to a second group of channels having a second predetermined depth, remains unpressurized as the selected channel is actuated. Moreover, the two groups of channels are interleaved. The channels of the first group are actuated at a later time that the channels of the second group as the printhead traverses a receiver medium. This feature of the invention reduces mechanical and hydraulic coupling between channels because actuation of selected channels belonging the two groups are spaced-apart in time.
    • 打印机设备及方法 该装置包括具有多个间隔开的可选择性致动侧壁对的基板,其在不同深度之间限定相应的通道。 每个通道在其中接收多个墨体中相关联的一个墨体,并且该基底由响应于电刺激的压电材料形成。 优选地,通过用于减少墨水通道之间的机械联接的中间切口,一对侧壁彼此分离。 盖板连接到基板,并且具有多个通孔,与相应的通道对准,使得孔彼此偏移。 因此,在本发明的一个实施例中,通道具有不同的深度,因此,与通道对准的孔彼此偏离,以适应通道的不同深度。 属于具有第一预定深度的第一组通道的选定油墨通道被致动作为其对侧壁加压。 此外,属于具有第二预定深度的第二组通道的未选择的油墨通道在所选择的通道被致动时保持未加压。 此外,两组信道被交织。 稍后,第一组的通道被致动,当打印头的第二组的通道穿过接收器介质时。 本发明的该特征减少了通道之间的机械和液压耦合,因为属于两组的选定通道的致动在时间上是分开的。
    • 25. 发明授权
    • Mandrel for forming a nozzle plate having orifices of precise size and
location and method of making the mandrel
    • 用于形成具有精确尺寸和位置的孔口以及制造心轴的方法的喷嘴板的心轴
    • US6022752A
    • 2000-02-08
    • US215526
    • 1998-12-18
    • Jeffrey I. HirshXin Wen
    • Jeffrey I. HirshXin Wen
    • B41J2/135B41J2/16G01D15/20
    • B41J2/162B41J2/1625B41J2/1628B41J2/1629B41J2/1631B41J2/1643C25D1/08
    • A mandrel for forming a nozzle plate having orifices of precise size and location, and method of making the mandrel. The nozzle plate is formed by overcoating a substrate with a metal film. The film is covered with a photoresist material. Portions of the photoresist are exposed to light passing through a photomask having an annular light-transparent regions, of precise diameters and pitch. The photoresist is subjected to a developer bath which dissolves the photoresist exposed to the light, thereby revealing selected portion of the film. Next, an etchant is brought into contact with the film for etching-away the film so as to an annular opening in the film defining a column of precise diameter at the center of each opening. A new photoresist layer is then applied to the film. Portions of the new photoresist layer is exposed to light passing through a second photomask. The new photoresist material is then subjected to the developer which dissolves the new photoresist material to reveal the film beneath the photoresist and selected areas of the substrate. A second etchant is applied to create an annular recess extending into the substrate. The column resides at the center of the recess. This forms the nozzle plate mandrel. Next, a metal layer that will form the nozzle plate is deposited onto the film and grows into the recess to substantially fill the recess, except for the space occupied by the column. The finished nozzle plate is separated from the film/substrate structure to obtain orifices with precise diameters and pitch.
    • 用于形成具有精确尺寸和位置的孔口的喷嘴板的心轴和制造心轴的方法。 喷嘴板通过用金属膜涂覆基板而形成。 该膜被光致抗蚀剂材料覆盖。 光致抗蚀剂的一部分暴露于通过具有精确直径和间距的环形透光区域的光掩模的光。 对光致抗蚀剂进行显影剂浴,其溶解暴露于光的光致抗蚀剂,从而显露出选定部分的膜。 接下来,使蚀刻剂与膜接触以蚀刻掉膜,以便膜中的环形开口限定每个开口中心处的精确直径的柱。 然后将新的光致抗蚀剂层施加到膜上。 新的光致抗蚀剂层的一部分暴露于通过第二光掩模的光。 然后将新的光致抗蚀剂材料经受溶解新的光致抗蚀剂材料的显影剂,以在光致抗蚀剂下方的基底的选定区域下方露出膜。 施加第二蚀刻剂以产生延伸到基底中的环形凹部。 柱位于凹槽的中心。 这形成喷嘴板心轴。 接下来,将形成喷嘴板的金属层沉积到膜上并生长到凹部中以基本上填充凹部,除了柱所占据的空间。 将完成的喷嘴板与膜/基板结构分离以获得具有精确直径和间距的孔。
    • 27. 发明授权
    • Ink jet printing apparatus and method accommodating printing mode control
    • 喷墨打印设备和方法适应打印模式控制
    • US5975672A
    • 1999-11-02
    • US899616
    • 1997-07-24
    • Xin Wen
    • Xin Wen
    • B41J2/01B41J2/04B41J2/045B41J2/05B41J2/055B41J2/205B41M5/00H04N1/23
    • B41J2/04551B41J2/04B41J2/0458B41J2/04588B41J2/0459B41J2/04591B41J2/04593B41J2/04595
    • Ink jet printing apparatus accommodating printing mode control for printing an output image on a receiver medium in response to an input image file having a plurality of pixel values. The printing mode is selected in such a manner that image artifacts are eliminated without excessively increasing printing time or ink laydown. The apparatus comprises a printhead and at least one nozzle integrally connected to the printhead, which nozzle is capable of ejecting an ink droplet therefrom. The apparatus also comprises a waveform generator associated with the nozzle for generating an electronic waveform to be supplied to the nozzle, so that the nozzle ejects the ink droplet in response to the waveform supplied thereto. In addition, a printer mode look-up table is also provided for storing a printing mode assigned to the waveform. A calibrator is connected to the first calibrator and is also associated with the waveform generator for adjusting the electronic waveform. An image halftoning unit is connected to the second calibrator for halftoning the calibrated image file in order to generate a halftoned image file having the pixel value defined by the waveform serial number. All the pixels are obtained without increasing the number of printing passes.
    • 适用于响应于具有多个像素值的输入图像文件在接收介质上打印输出图像的打印模式控制的喷墨打印设备。 以这样的方式选择打印模式,即消除图像伪像,而不会过度增加打印时间或墨水沉积。 该装置包括打印头和与打印头一体连接的至少一个喷嘴,该喷嘴能够从其喷射墨滴。 该装置还包括与喷嘴相关联的波形发生器,用于产生要供应到喷嘴的电子波形,使得喷嘴响应于供给的波形喷射墨滴。 此外,还提供了一种用于存储分配给该波形的打印模式的打印机模式查找表。 校准器连接到第一校准器,并且还与用于调整电子波形的波形发生器相关联。 图像半色调单元连接到第二校准器,用于对校准图像文件进行半色调,以便生成具有由波形序列号定义的像素值的半色调图像文件。 获得所有像素,而不增加打印次数。
    • 28. 发明授权
    • Air isolation of ink segments by microfluidic printing
    • 通过微流体印刷空气隔离油墨段
    • US5973708A
    • 1999-10-26
    • US942879
    • 1997-10-02
    • Werner FasslerXin WenCharles D. DeBoer
    • Werner FasslerXin WenCharles D. DeBoer
    • B41J2/005B41J2/04
    • B41J2/04B41J2/005
    • A microfluidic printing apparatus for transferring ink to a receiver includes at least one ink reservoir; a structure defining a plurality of chambers arranged so that the chambers form an array with each chamber being arranged to form an ink pixel; a plurality of microchannels connecting the reservoir to a chamber; and a plurality of microfluidic pumps each being associated with a single microchannel for supplying ink from an ink reservoir through a microchannel for delivery to a particular chamber. Air is delivered to isolate ink in the chamber so that a predetermined amount of ink in the chamber can be transferred to a receiver, and the microfluidic pumps are operated for delivering the predetermined amount of ink to each chamber.
    • 用于将墨转移到接收器的微流体打印装置包括至少一个墨水容器; 限定多个室的结构,其布置成使得所述室形成阵列,每个室被布置成形成墨像素; 将储存器连接到室的多个微通道; 以及多个微流体泵,每个微流体泵与单个微通道相关联,用于通过微通道从墨水储存器供墨以输送到特定的室。 输送空气以隔离室中的墨水,使得室中的预定量的墨水可以转移到接收器,并且操作微流体泵以将预定量的墨水输送到每个室。
    • 30. 发明授权
    • Platen-drive thermal dye printer with cone shaped scuff rollers
transporting the receiver in reciprocating directions
    • 压板驱动式热敏染料打印机,带有锥形刮擦辊,以便往复运动的方向运送接收器
    • US5897258A
    • 1999-04-27
    • US975868
    • 1997-11-21
    • Xin WenJohn D. Delorme
    • Xin WenJohn D. Delorme
    • B41J11/00B41J13/02B41J13/036B41J11/42
    • B41J11/0055B41J13/02B41J13/036
    • A platen-driven thermal dye printer mechanism (1), and more particularly to a cone-shaped scuff roller (7) which aligns a dye print receiver media sheet (2) with the receiver guide wall (8) during printing in a reciprocating direction (5). Using at least one conical shaped scuff roller (7) at one end of a platen roller (4) to transport the precut dye receiver media (2). The conical scuff roller (7) presses the back surface of the dye receiver media (2) against the non-imaging margin of the thermal dye printer mechanism (1). The invention uses a smooth guiding plate (28) and platen (4) thus, preventing scratches on the front surface of the receiver media (2). The invention is not subject to costly breakdowns, in that it uses the clockwise and counter-clockwise rotation of the platen (4) to provide perfect alignment of the receiver media (2) and printer head (9).
    • 一种压板驱动的热染料打印机构(1),更具体地说,涉及一种锥形刮擦辊(7),其在打印过程中沿着往复运动方向将染料打印接收介质片(2)与接收器引导壁(8) (5)。 在压纸辊(4)的一端使用至少一个圆锥形的刮擦辊(7)来运送预切染料接收介质(2)。 锥形刮擦辊(7)将染料接收介质(2)的背面压靠在热染料打印机机构(1)的非成像边缘上。 本发明使用平滑的导向板(28)和压盘(4),从而防止在接收器介质(2)的前表面上划伤。 本发明不会经历昂贵的故障,因为它使用压板(4)的顺时针和逆时针旋转来提供接收介质(2)和打印头(9)的完美对准。