Method for manufacturing three-dimensional object, three-dimensional object, and print medium
    1.
    发明授权
    Method for manufacturing three-dimensional object, three-dimensional object, and print medium 有权
    三维物体,三维物体和打印介质的制造方法

    公开(公告)号:US07924458B2

    公开(公告)日:2011-04-12

    申请号:US11616540

    申请日:2006-12-27

    IPC分类号: G06F15/00 G06F19/00

    摘要: An object of the present invention is to provide a method for manufacturing a three-dimensional object which method is able to easily manufacture a three-dimensional object using a low-cost apparatus. The present invention thus manufactures a three-dimensional object containing a three-dimensional image by printing a two-dimensional image on print media each having at least an ink receiving layer and a bonding layer, on the basis of an ink jet scheme, and stacking the print media on which the two-dimensional image is printed so that the print media are bonded together via the bonding layers.

    摘要翻译: 本发明的目的是提供一种用于制造三维物体的方法,该方法能够使用低成本装置容易地制造三维物体。 因此,本发明通过在基于喷墨方案的至少具有油墨接收层和粘合层的打印介质上印刷二维图像来制造包含三维图像的三维物体,并且堆叠 其上印刷有二维图像的打印介质,使得打印介质通过粘合层粘合在一起。

    Ink-jet printing method and ink-jet printing apparatus
    2.
    发明授权
    Ink-jet printing method and ink-jet printing apparatus 有权
    喷墨打印方法和喷墨打印装置

    公开(公告)号:US07311394B2

    公开(公告)日:2007-12-25

    申请号:US10549674

    申请日:2004-05-06

    IPC分类号: B41J2/01

    CPC分类号: B41J11/0015 B41J19/147

    摘要: A width A of the scanning area of the ink ejection orifices and a width B of the scanning area of the reacting liquid ejection orifices are respectively set as A=(n−a)×p and B=n×p, while amount of the feeding of the printing sheet during each scan corresponds to the width of the scanning area of the reacting liquid ejection orifices, that is, A=(n−a)×p. With this system, the width of the scanning area, wherein ejection of the reacting liquid precedes ejection of the ink, is made shorter by C=a×p than the width of following scanning area; the scanning area having the width C is scanned two times by the row of the ink ejection orifices, and the thinning process is applied to this area having the width C.

    摘要翻译: 喷墨孔的扫描区域的宽度A和反应液体喷射孔的扫描区域的宽度B分别设定为A =(na)×p和B = n×p,同时打印纸的进给量 在每次扫描期间对应于反应液体喷射孔的扫描区域的宽度,即A =(na)×p。 利用该系统,其中在墨水喷射之前喷射反应液体的扫描区域的宽度比后续扫描区域的宽度短C = axp; 具有宽度C的扫描区域被喷墨孔的行扫描两次,并且将薄化处理施加到具有宽度C的区域

    Ink-jet printing method and ink-jet printing apparatus
    3.
    发明申请
    Ink-jet printing method and ink-jet printing apparatus 有权
    喷墨打印方法和喷墨打印装置

    公开(公告)号:US20060176331A1

    公开(公告)日:2006-08-10

    申请号:US10549674

    申请日:2004-05-06

    IPC分类号: B41J29/38

    CPC分类号: B41J11/0015 B41J19/147

    摘要: A width A of the scanning area of the ink ejection orifices and a width B of the scanning area of the reacting liquid ejection orifices are respectively set as A =(n−a)×n p and B=n×p, while amount of the feeding of the printing sheet during each scan corresponds to the width of the scanning area of the reacting liquid ejection orifices, that is, A=(n−a)×p. With this system, the width of the scanning area, wherein ejection of the reacting liquid precedes ejection of the ink, is made shorter by C=a×p than the width of following scanning area; the scanning area having the width C is scanned two times by the row of the ink ejection orifices, and the thinning process is applied to this area having the width C.

    摘要翻译: 喷墨孔的扫描区域的宽度A和反应液体喷射孔的扫描区域的宽度B分别设定为A =(na)×n p,B = n×p,同时打印量的供给量 每次扫描期间的片材对应于反应液体喷射孔的扫描区域的宽度,即A =(na)×p。 利用该系统,其中在墨水喷射之前喷射反应液体的扫描区域的宽度比后续扫描区域的宽度短C = axp; 具有宽度C的扫描区域被喷墨孔的行扫描两次,并且将薄化处理施加到具有宽度C的区域

    Capacitive touch sensor laminate for display panel device
    4.
    发明授权
    Capacitive touch sensor laminate for display panel device 有权
    用于显示面板设备的电容式触摸传感器层压板

    公开(公告)号:US09207482B2

    公开(公告)日:2015-12-08

    申请号:US13990658

    申请日:2011-11-30

    摘要: A capacitive touch sensor laminate for use in a display panel device includes: a dielectric central substrate structure made of a transparent resin material and formed to have flat surfaces, respectively, on opposite sides thereof; a at least one-layer structured coat layer made of a transparent material, formed on each of the flat surfaces, and including at least one refractive index adjusting layer for suppressing visibility of an electrode pattern formed by the transparent electrically conductive layer; and a transparent electrically conductive layer formed on and in adjacent relation to the coat layer. The at least one-layer structured coat layers formed on respective ones of the flat surfaces are configured such that thicknesses of corresponding layers therein on respective opposite sides of the dielectric central substrate structure are set to allow the corresponding layers to become mutually symmetrical across the dielectric central substrate structure.

    摘要翻译: 一种用于显示面板装置的电容式触摸传感器层叠体包括:由透明树脂材料制成并分别形成在其相对侧上的平坦表面的电介质中心衬底结构; 形成在每个平坦表面上的由透明材料制成的至少一层结构的涂层,并且包括至少一个折射率调节层,用于抑制由透明导电层形成的电极图案的可视性; 以及形成在涂层上并与其相邻的透明导电层。 形成在各个平坦表面上的至少一层结构涂层被构造成使得其中介于其间的相应的层的相应层的厚度被设置为允许相应的层在电介质上互相对称 中心衬底结构。

    TRANSPARENT CONDUCTIVE FILM AND TOUCH PANEL
    5.
    发明申请
    TRANSPARENT CONDUCTIVE FILM AND TOUCH PANEL 有权
    透明导电膜和触控面板

    公开(公告)号:US20120114919A1

    公开(公告)日:2012-05-10

    申请号:US13271625

    申请日:2011-10-12

    IPC分类号: B32B3/10 B32B7/02

    摘要: The present invention provides a transparent conductive film in which the difference in visibility between the pattern portion and the pattern opening portion is kept small even when a transparent conductive layer is patterned. The transparent conductive film has a first dielectric layer, a second dielectric layer, and a transparent conductive layer in this order on a transparent film substrate, a thickness d21 of the first dielectric layer is larger than a thickness d22 of the second dielectric layer, the thickness d21 of the first dielectric layer is 8 to 40 nm and the thickness d22 of the second dielectric layer is 5 to 25 nm, and a difference between the thickness d21 of the first dielectric layer and the thickness d22 of the second dielectric layer, d21-d22, is 3 to 30 nm.

    摘要翻译: 本发明提供了一种透明导电膜,其中即使在透明导电层被图案化时,图案部分和图案开口部分之间的可见性差也保持较小。 透明导电膜在透明膜基板上依次具有第一电介质层,第二电介质层和透明导电层,第一电介质层的厚度d21大于第二电介质层的厚度d22, 第一电介质层的厚度d21为8〜40nm,第二电介质层的厚度d22为5〜25nm,第一电介质层的厚度d21与第二电介质层的厚度d22之差d21 -d22,为3〜30nm。

    Semiconductor device having universal logic cell
    6.
    发明申请
    Semiconductor device having universal logic cell 有权
    具有通用逻辑单元的半导体器件

    公开(公告)号:US20050218936A1

    公开(公告)日:2005-10-06

    申请号:US11092943

    申请日:2005-03-30

    CPC分类号: H03K19/173

    摘要: A universal logic module includes: a first inverter outputting an inverted input signal to an output terminal through a first transfer gate, the inverted input signal having an inverted level of an input signal provided from a first input terminal; and a second inverter outputting an inverted logic signal to the output terminal through a second transfer gate, the inverted logic signal having an inverted level of a first logic signal. The first input terminal is connected to one of a power supply line and a ground line. An input of the first transfer gate is directly connected to the other of the power supply line and the ground line. The first and the second transfer gates are complementarily turned on/off according to a level of a second logic signal. A result of a logical operation between the first and the second logic signals is outputted from the output terminal.

    摘要翻译: 通用逻辑模块包括:第一反相器,通过第一传输门将反相输入信号输出到输出端,反相输入信号具有从第一输入端提供的输入信号的反相电平; 以及第二反相器,通过第二传输门将输出反相逻辑信号输出到输出端,反相逻辑信号具有第一逻辑信号的反相电平。 第一输入端子连接到电源线和接地线之一。 第一传输门的输入直接连接到电源线和接地线中的另一个。 根据第二逻辑信号的电平,第一和第二传输门互补地导通/截止。 从输出端子输出第一和第二逻辑信号之间的逻辑运算的结果。

    Universal logic module and ASIC using the same
    7.
    发明授权
    Universal logic module and ASIC using the same 有权
    通用逻辑模块和ASIC使用相同

    公开(公告)号:US06946875B2

    公开(公告)日:2005-09-20

    申请号:US10325572

    申请日:2002-12-19

    CPC分类号: H03K19/1735

    摘要: A universal logic module that may have a reduced off-leak current in universal logic cells (100) not used as logic circuits has been disclosed. A universal logic module may include universal logic cells (100) that may be formed with a second wiring for connecting universal logic cells (100) from a base configuration formed with a first wiring. Unused universal logic cell (100) may include transistors in basic cells (A to E) that are non-connected to a power supply (VDD) and/or a ground potential (VSS). Furthermore, unused universal logic cell (100) may include transistors in basic cells (A to E) that may provide a capacitor between a power supply (VDD) and a ground potential (VSS). In this way, off-leak current may be reduced and noise on a power line and/or a ground line may be reduced.

    摘要翻译: 已经公开了可以在不用作逻辑电路的通用逻辑单元(100)中具有减小的漏电流的通用逻辑模块。 通用逻辑模块可以包括可以形成有第二布线的通用逻辑单元(100),用于将通用逻辑单元(100)与形成有第一布线的基座配置相连接。 未使用的通用逻辑单元(100)可以包括未连接到电源(VDD)和/或接地电位(VSS)的基本单元(A至E)中的晶体管。 此外,未使用的通用逻辑单元(100)可以包括可在电源(VDD)和接地电位(VSS)之间提供电容器的基本单元(A至E)中的晶体管。 以这种方式,可以减少泄漏电流,并且可以减少电力线和/或接地线上的噪声。

    Liquid jet recording method and apparatus and recording head therefor
    8.
    发明授权
    Liquid jet recording method and apparatus and recording head therefor 失效
    液体喷射记录方法及装置及记录头

    公开(公告)号:US06467882B2

    公开(公告)日:2002-10-22

    申请号:US07967412

    申请日:1992-10-28

    IPC分类号: B41J2/14 B41J2/05

    摘要: A liquid jet recording method using thermal energy to eject liquid from a liquid passage through an ejection outlet, the liquid passage being provided with a heat generating resistor, wherein at least one of the following conditions is satisfied: 0.1≦H/L≦0.9 R/L≧0.5 &phgr;/Wn≦1.0 S/Sh≦3.0 where L is a distance between the heat generating resistor and the ejection outlet, H is a height of the liquid passage, R is a maximum diameter of the ejection outlet, &phgr; is a converted diameter of the ejection outlet, Wn is a passage width of a portion where the heat generating resistor is disposed, S is an area of the ejection outlet, and Sh is an area of the. heat generating resistor; wherein a bubble created by heat generating resistor communicates with ambience.

    摘要翻译: 一种液体喷射记录方法,使用热能从液体通道喷出液体通过喷射出口,所述液体通道设有发热电阻器,其中满足以下条件中的至少一个:0.1 <= H / L < 0.9R / L> = 0.5phi / Wn <= 1.0S / Sh <= 3.0其中L是发热电阻和喷射出口之间的距离,H是液体通道的高度,R是最大直径 喷射出口,phi是喷射出口的转换直径,Wn是设置发热电阻器的部分的通道宽度,S是喷射出口的面积,Sh是该喷射出口的面积。 发热电阻; 其中由发热电阻产生的气泡与环境通气。

    Output apparatus and output method
    9.
    发明授权
    Output apparatus and output method 失效
    输出设备及输出方式

    公开(公告)号:US06278527B1

    公开(公告)日:2001-08-21

    申请号:US09002372

    申请日:1998-01-02

    IPC分类号: G06K1500

    摘要: An output apparatus which produces the print output by saving in a first memory print data input via a two-way interface, and converting the print data into the print out information, comprising a second memory different from the first memory for saving the print data with a print ID number added which is input via the interface, a retrieving unit for retrieving corresponding print data of the second memory based on a print ID number input from the outside, and an output unit for outputting the retrieved print data converted into the print out information.

    摘要翻译: 一种输出装置,其通过保存经由双向接口输入的第一存储器打印数据并将打印数据转换为打印输出信息来产生打印输出,该打印输出装置包括与第一存储器不同的第二存储器,用于保存打印数据, 经由接口输入的打印ID号码,基于从外部输入的打印ID号来检索第二存储器的相应打印数据的检索单元,以及用于输出被转换成打印输出的检索到的打印数据的输出单元 信息。

    Liquid jet recording method and apparatus and recording head therefor
    10.
    发明授权
    Liquid jet recording method and apparatus and recording head therefor 失效
    液体喷射记录方法及装置及记录头

    公开(公告)号:US06203142B1

    公开(公告)日:2001-03-20

    申请号:US07968537

    申请日:1992-10-29

    IPC分类号: B41J205

    摘要: A liquid jet recording method using thermal energy to eject liquid from a liquid passage through an ejection outlet, the liquid passage being provided with a heat generating resistor, wherein the following conditions are satisfied: S1≧S2/3, and S2≧S3/3 where S1 is an area of the heat generating resistor, and S2 is a projected area, onto a surface having the heat generating resistor, of the liquid passage between the ejection outlet and the heat generating resistor; wherein a bubble created by the heat generating resistor communicates with ambience when the liquid is ejected.

    摘要翻译: 一种液体喷射记录方法,其使用热能从液体通过喷射出口喷射液体,液体通道设有发热电阻器,其中满足以下条件:S1> = S2 / 3,S2 = S3 / 3其中S1是发热电阻器的面积,S2是在喷射出口和发热电阻器之间的液体通道的具有发热电阻器的表面上的投影面积; 其中当所述液体被喷射时,由所述发热电阻产生的气泡与气氛相通。