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    • 5. 发明申请
    • ENABLING SIGNINGS AND/OR DEDICATIONS ON A REMOTE PLOTTER
    • 在远程绘图仪上启用签名和/或约定
    • WO2006056063A3
    • 2006-07-13
    • PCT/CA2005001788
    • 2005-11-25
    • UNOTCHIT INCPOPOVIC MILOSWILTSHIRE JOHN H DGIBSON MATTHEW MANNDARLING ROBERT JAMESATWOOD MARGARET
    • POPOVIC MILOSWILTSHIRE JOHN H DGIBSON MATTHEW MANNDARLING ROBERT JAMESATWOOD MARGARET
    • G06F3/13G06Q50/10H04L12/16
    • G05B15/02B43L13/00G01D9/10G01D9/12G06F3/13H04L65/403H04L67/10
    • A system, method and computer program for enabling signings/dedications on a remote basis is provided. A first computer at a first location is associated with an individual from whom a signature or dedication is required. A second computer at a location where the signing or dedication is required is linked to the first computer so as to provide a two-way audiovisual communication system. The second computer is operate e to receive input from one or more individuals regarding their request for a signature and/or dedication, and to communicate the request to the first computer. The first computer is operable to permit the individual associated with the first computer to review the request, and based on such request provide a signature and/or personalized dedication as an input to an input device connected to the first computer. The first computer transmits the signature and/or personalized dedication from the first computer to the second computer. The second computer is >@5r0+5 to receiving the signature and/or personalized dedication, and provide the signature and/or personalized dedication to a plotting apparatus device connected to the second computer. The plotting apparatus device is >@5r0+5 to apply the signature and/or personalized dedication introduced to the plotting apparatus device to an article, substantially in the handwriting of the individual associated with the first computer, based on the operation of the plotting apparatus device. A computer program for enabling the functions described is also provided. A related method is also disclosed.
    • 提供了一种用于远程执行签名/奉献的系统,方法和计算机程序。 第一个位置的第一台计算机与需要签名或奉献的个人相关联。 在需要签名或奉献的位置处的第二台计算机被连接到第一台计算机,以便提供双向视听通信系统。 第二台计算机操作以从一个或多个个人接收关于其签名和/或奉献请求的输入,并将该请求传送给第一台计算机。 第一计算机可操作以允许与第一计算机相关联的个人审查请求,并且基于这样的请求,提供签名和/或个性化的奉献作为连接到第一计算机的输入设备的输入。 第一计算机将签名和/或个性化的奉献从第一计算机传送到第二计算机。 接收签名和/或个性化奉献的​​第二台计算机为> @ 5r0 + 5,并向连接到第二台计算机的绘图装置设备提供签名和/或个性化的奉献。 绘图装置装置为> @ 5r0 + 5,基于绘图装置的操作,基本上在与第一计算机相关联的个人的笔迹中,将引入到绘图装置装置的签名和/或个性化奉献应用于制品 设备。 还提供了一种用于启用所述功能的计算机程序。 还公开了相关方法。
    • 6. 发明申请
    • METHOD OF SETTING CONSTRUCTION PARAMETERS IN AN XY PLOTTER
    • 在XY平台上设置结构参数的方法
    • WO1990006551A1
    • 1990-06-14
    • PCT/JP1989001193
    • 1989-11-22
    • FANUC LTDSEKI, MasakiHOSONO, TakeshiHAYANAGI, ShizuakiSUZUKI, Koji
    • FANUC LTD
    • G06F03/13
    • G06K15/22G06F3/13
    • A method of setting construction parameters easily, quickly and suitably in an XY plotter. When two vertexes (P1, P2) of a region to be constructed including a figure (F1') that is transformed such as moved, enlarged or contracted, are designated on a CRT screen (5a), the processor calculates the moving amounts of the position of origin of figure before and after the transformation and the magnification of figure transformation, and further calculates coordinate positions (LDX, LDY), (RUX, RUY), (MX, MY) of the two vertexes and the center (P3) of the region to be constructed. When it is determined that the region to be constructed is not similar to the plotter paper (100) based on the calculated ratio of a vertical length to lateral length of the region to be constructed and based on the calculated ratio of the vertical length to the lateral length of the plotter paper, the processor calculates a maximum construction magnification by dividing the product of the transformation magnification and the vertical or lateral length of the paper by the vertical or lateral distance between the two vertexes, and automatically determines the coordinate positions (OX, OY) of the left lower vertex of a similar rectangle so as to include the region to be constructed and such that the left lower vertex (P4) of the similar rectangle is corresponded to the origin (PPO) in the block coordinate system. The figure is constructed at a maximum magnification on a suitable place of the plotter paper by taking into consideration the moving amount of origin of the figure and the coordinate positions of vertexes of the similar rectangle.
    • 7. 发明申请
    • ペンカートリッジ
    • 笔盒
    • WO2017013944A1
    • 2017-01-26
    • PCT/JP2016/066162
    • 2016-06-01
    • ブラザー工業株式会社
    • 道面 充雄河本 直紀
    • B43L13/00G06F3/13B26D5/00B26D7/26
    • B43L13/024B26D5/00B26D5/005B26D7/26B43L13/00G06F3/13
    • ペンを保持した状態でプロッタに着脱可能に装着されるものにあって、ペンを安定して保持する。ペンカートリッジ21は、ペンが貫通状態に挿通される筒状中空部22aを有する筐体22と、筺体22に対しペンの挿通方向を中心軸として第1位置と第2位置との間で回動操作可能に設けられた操作部材26と、筐体22に設けられ、筐体22内に挿通されたペンの外周を中心軸の延びる方向である軸方向の複数箇所で把持するための複数の把持部37、38を有し、操作部材26が第1位置から第2位置に回動されたときに、複数の把持部37、38を、該ペンを把持しない解放状態から該ペンを把持する把持状態に遷移させる把持部材23とを備えている。
    • 该笔筒在保持笔时可拆卸地连接到绘图仪,笔筒稳定地保持笔。 笔筒21设置有:具有圆柱形中空部分22a的外壳22,笔在其中以穿透状态插入; 操作构件26以能够在第一位置和第二位置之间旋转的方式设置,笔的相对于壳体22的插入方向作为中心轴线; 以及夹持构件23,其设置在壳体22中,并且具有多个用于夹持插入壳体22的笔的外周的夹持部37,38,其中心轴延伸的轴向方向上的多个位置 ,当操作构件26从第一位置旋转到第一位置时,使得多个夹持部37,38从未被夹持的笔的释放状态转移到夹持笔的夹持状态的把持构件23向 第二个位置。
    • 8. 发明申请
    • 디스플레이 장치를 이용한 이미지 인화 장치 및 방법
    • 图像打印装置和使用显示装置的方法
    • WO2015065056A1
    • 2015-05-07
    • PCT/KR2014/010281
    • 2014-10-30
    • 채규열
    • 채규열
    • G06F3/12G06F3/14G06F1/16G06F13/00
    • H04N1/00169G06F1/1632G06F3/13H04N1/00161H04N1/12H04N1/50
    • 본 발명의 일 실시예에 따른 디스플레이 장치를 이용한 이미지 인화 장치는,디스플레이 장치로부터 출력되는 빛을 상기 디스플레이 장치의 화면에 실질적으로 수직한 방향으로 포커싱하는 집광 장치, 및 상기 집광 장치 상에 위치하며, 상기 디스플레이 장치로부터 상기 집광 장치를 통하여 제공되는 빛에 감광됨으로써 상기 디스플레이 장치 상에 표시된 이미지가 형성되는 인화지를 포함하며, 상기 디스플레이 장치에 표시된 이미지가 상기 이미지 인화지 장치 내에 구비된 상기 인화지에 형성될 수 있도록, 상기 디스플레이 장치가 장착된 외부 제어 장치에 의해 상기 이미지 인화 장치 내에 구비된 상기 인화지의 이동이 제어된다.
    • 使用根据本发明的实施例的显示装置的图像打印装置包括:聚光装置,用于在垂直方向上将从显示装置输出的光聚焦到显示装置的屏幕上; 以及照相纸,其位于集光装置上,并且通过所述聚光装置从所述显示装置提供的光照光,从而形成在所述显示装置上显示的图像,其中,所述图像打印中提供的所述相纸的移动 装置由安装显示装置的外部控制装置控制,使得可以在设置在图像打印装置中的相纸中形成显示在显示装置上的图像。
    • 9. 发明申请
    • COLOR CONVERSION USING BARYCENTRIC PROJECTIONS
    • 使用BARYCENTRIC投影的彩色转换
    • WO2006081253A3
    • 2009-04-16
    • PCT/US2006002507
    • 2006-01-26
    • CANON KKTIN SIU-KEINEWMAN TODD D
    • TIN SIU-KEINEWMAN TODD D
    • G06K1/00
    • G06F3/13G09G5/04G09G5/06H04N1/6019
    • A color conversion for color devices having a large number of input channels is performed using a collection (Sl-Si) of look-up tables that stratify an n-dimensional color space into sets of lower dimensional subspaces. A color management module (600) using the collection for colo conversion may determine if a color conversion is for a color value that falls within a gap. In one interpolation process, a hypercube (1200) enclosing the input value is generated. An initial barycentric projection performs the interpolation from a selected vertex of the hypercube through the input value onto a boundary of the unit hypercube. If the projection satisfies one of the boundary conditions, an interpolated value is calculated. If the initial projection does not satisfy a boundary condition, an intermediate value is generated and successive barycentric projections are performed until a projection satisfies one of the boundary conditions. A final interpolated value is then generated.
    • 使用将n维颜色空间分层成为较低维子空间的集合的查找表的集合(S1-Si)来执行具有大量输入通道的彩色设备的颜色转换。 使用用于colo转换的集合的颜色管理模块(600)可以确定颜色转换是否适用于落在间隙内的颜色值。 在一个内插处理中,生成包围输入值的超立方体(1200)。 初始重心投影通过输入值从超立方体的选定顶点执行内插到单位超立方体的边界上。 如果投影满足边界条件之一,则计算内插值。 如果初始投影不满足边界条件,则产生中间值,并且执行连续的重心投影,直到投影满足边界条件之一为止。 然后生成最终内插值。
    • 10. 发明申请
    • ROBOTIC PLOTTER SYSTEM
    • 机器人绘图仪系统
    • WO9931466A3
    • 1999-08-12
    • PCT/US9821007
    • 1998-10-01
    • ELECTRONICS FOR IMAGING INC
    • AVIDA DAN
    • B43L13/00B43L13/02G01D9/40G06F3/13
    • G06F3/13B43L13/024G01D9/40
    • A robotic plotting system (10) is provided, in which a robotic plotter (18) having a printhead (18) is placed on a substantially flat horizontal surface (24) upon a recording medium (22), and is directed across the medium (22) by ranging signals (16) transmitted to the printhead (18) from the periphery of the recording medium (22). In one embodiment, the robotic printhead (18) includes a motorized drive mechanism (26, 28) that propels it across the surface of the recording medium (22) in a controlled manner, for example using microwave control signals (16). Thus, a user can place a piece of paper (22) of any size on a flat surface (23) such as a table or floor, and the printhead (18) is propelled across the surface (23) and is directed by signals (16) beamed between the printhead (18) and a control mechanism (14). In this manner, a large-surface-area plotting system (10) is provided in the form of a small hand-held device.
    • 提供了一种机器人绘图系统(10),其中具有打印头(18)的机器人绘图机(18)被放置在记录介质(22)上的基本平坦的水平表面(24)上,并被引导穿过介质 通过从记录介质(22)的周边传送到打印头(18)的测距信号(16)22。 在一个实施例中,机器人打印头(18)包括电动驱动机构(26,28),其以受控的方式(例如使用微波控制信号(16))推动其跨越记录介质的表面。 因此,使用者可将任何尺寸的纸张(22)放置在诸如桌子或地板的平坦表面(23)上,并且打印头(18)被推进穿过表面(23)并由信号( 16)在打印头(18)和控制机构(14)之间传播。 以这种方式,以小型手持装置的形式提供大面积绘制系统(10)。