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    • 2. 发明授权
    • Printing system and cutting method where when cutting information is not detected, cutting occurs at a set length set in advance
    • 当没有检测到切割信息时的打印系统和切割方法,切割发生在预先设定的设定长度上
    • US07967517B2
    • 2011-06-28
    • US11878727
    • 2007-07-26
    • Yoshinori Wada
    • Yoshinori Wada
    • B41J11/00
    • B41J15/005B26D5/005B26D5/20B26D5/34B41J3/60B41J11/663B41J11/70G03G15/6523G03G2215/00814
    • A printing system comprising: a printing device having a printing portion and a printing control portion; and a cutting device having a cutting portion which cuts a continuous sheet, a conveying portion conveying the continuous sheet, a detecting portion detecting cutting information, and a cutting control portion which controls the cutting portion such that the continuous sheet is cut at a cutting position indicated by the cutting information, when the cutting information is detected at the continuous sheet within a predetermined range from a cutting position at an upstream side in a conveying direction of the conveying portion, and controls the cutting portion such that the continuous sheet is cut at a set length which is set in advance, when the cutting information is not detected at the continuous sheet within the predetermined range from the cutting position at the upstream side in the conveying direction, is provided.
    • 一种打印系统,包括:具有打印部分和打印控制部分的打印装置; 切割装置具有切割连续片材的切割部分,传送连续片材的传送部分,检测切割信息的检测部分和控制切割部分的切割控制部分,使得连续片材在切割位置被切割 由切割信息表示,当在距传送部的传送方向上的上游侧的切割位置在预定范围内在连续片材处检测到切割信息时,控制切割部分,使得连续片材被切割在 提供了当从输送方向上游侧的切割位置在预定范围内在连续片材处未检测到切割信息时预先设定的设定长度。
    • 3. 发明授权
    • Method of controlling post-processor connected with image-forming device
    • 控制与图像形成装置连接的后处理器的方法
    • US06385432B1
    • 2002-05-07
    • US09693895
    • 2000-10-23
    • Eiichi HanazatoTakashi InuiYoshinori Wada
    • Eiichi HanazatoTakashi InuiYoshinori Wada
    • G03G1500
    • G03G15/6517G03G15/6582G03G2215/00818G03G2215/00822
    • The present invention aims at providing a method of controlling a post-processor connected with an image-forming device that utilizes a conventional image-forming device and post-processing unit, and does not necessarily require to consistently form a sag in continuous paper. The inventive method of controlling the post-processor is carried out by the image-forming device that includes a transfer part and a fixing part, and conveys continuous paper. The image-forming device is connected with the post-processor that processed the continuous paper on which an image has been formed. The method comprises the steps of initiating an electrophotographic image-forming operation in the transfer part and the fixing part so that the image-forming device forms an image onto and conveys the continuous paper, initiating an operation of the post-processor so that the post-processor post-processes and conveys the continuous paper, stopping the operation of the post-processor on or before a completion of a transfer by the transfer part onto the continuous paper, conveying to the fixing part the continuous paper onto which the fixing part has finished transferring, and conveying to the transfer part the continuous paper onto which the fixing part finishes a fixation.
    • 本发明的目的在于提供一种控制与利用传统图像形成装置和后处理单元的图像形成装置连接的后处理器的方法,并且不一定需要在连续纸中一致地形成松弛。 控制后处理器的本发明的方法由包括转印部分和固定部分的图像形成装置进行,并且传送连续纸张。 图像形成装置与处理已经形成有图像的连续纸张的后处理器连接。 该方法包括以下步骤:在转印部分和固定部分中启动电子照相成像操作,使得图像形成装置在连续纸上形成图像并传送连续纸,开始后处理器的操作,使得柱 处理器后处理并传送连续纸,在转印部分转印到连续纸上之前或之前停止后处理器的操作,将固定部分具有的连续纸传送到固定部分 完成转印,并将固定部分完成固定的连续纸传送到转印部分。
    • 5. 发明授权
    • Image forming apparatus capable of controlling heating units under
optimum driving mode and a method for controlling the same
    • 能够在最佳驱动模式下控制加热单元的图像形成装置及其控制方法
    • US5640646A
    • 1997-06-17
    • US277431
    • 1994-07-18
    • Mie ToyoharaYoshinori Wada
    • Mie ToyoharaYoshinori Wada
    • G03G15/20G03G21/20
    • G03G15/2003G03G21/203
    • When a time mode is selected, after power to the apparatus as a whole is cut off, the time until the scheduled start of supply of power to the heating units is counted. When the scheduled time of the start of supply of power is reached, power starts to be supplied to the heating units. When the continuous mode is selected, instruction is given to continue supplying power to the heating units even when power to the apparatus as a whole is turned off. Also, when a service start time is input, the next build-up time is predicted or the amount of power previously supplied to the heating units is changed based on the changes along with time in the temperature, humidity, and other facets of the internal environment of the heating units measured up until then, a predetermined amount of power starts to be supplied to the heating units in advance of the service start time by the predicted build-up time, the changes along with time in the internal environment from the start of supply of power to the heating heats up until when the print ready region is reached are measured and stored, and power starts to be supplied to the apparatus as a whole when the service start time is reached.
    • 当选择时间模式时,在整个装置的电源被切断之后,直到向加热装置供电的计划开始计时的时间被计数。 当达到开始供电的预定时间时,开始向加热单元供电。 当选择连续模式时,即使关闭整个设备的电源,也给予继续向加热单元供电的指令。 此外,当输入服务开始时间时,预测下一个建立时间,或者预先提供给加热单元的功率量根据内部温度,湿度和其他方面随时间的变化而改变 测量的加热单元的环境直到那时,在服务开始时间之前,预先建立的时间开始向加热单元提供预定量的功率,从一开始就随着内部环境中的时间随时间而变化 测量并存储到达到打印就绪区域时的加热供热加热直到达到服务开始时间为止,开始向设备供电。
    • 6. 发明授权
    • Semiconductor substrate and device with a surface layer structure
    • 具有表面层结构的半导体衬底和器件
    • US5396082A
    • 1995-03-07
    • US205771
    • 1994-03-04
    • Yoshinori WadaKazumi WadaTakahisa Ohno
    • Yoshinori WadaKazumi WadaTakahisa Ohno
    • H01L29/205H01L29/161
    • H01L29/205
    • The semiconductor device has a semiconductor substrate composed essentially of a III-V compound semiconductor containing Ga and As, and a surface layer structure provided on the semiconductor substrate and this layer has a composition different from that of the semiconductor substrate. The surface layer structure includes a strained layer epitaxially grown on the surface of the semiconductor substrate and composed essentially of at least one-element selected from the group consisting of indium, gallium, aluminum and boron, and at least one element selected from the group consisting of arsenic and phosphorus. The strained layer has a composition different from that of the semiconductor substrate The strained layer has a valence band maximum lower in energy than that of the valence band maximum of the semiconductor substrate.
    • 半导体器件具有基本上由包含Ga和As的III-V族化合物半导体构成的半导体衬底以及设置在半导体衬底上的表面层结构,该层具有不同于半导体衬底的组成。 表面层结构包括外延生长在半导体衬底的表面上并且基本上由选自铟,镓,铝和硼的至少一种元素组成的应变层,以及至少一种选自以下的元素: 的砷和磷。 应变层具有与半导体衬底的组成不同的组成。应变层具有与半导体衬底的价带最大值的能量最低的价带。
    • 7. 发明授权
    • Image processing system
    • 图像处理系统
    • US5175815A
    • 1992-12-29
    • US793297
    • 1991-11-14
    • Yoshinori Wada
    • Yoshinori Wada
    • H04N1/387
    • H04N1/3871
    • An image processing system capable of combining two or more image data having different pixel densities into one page of image data. The system includes a parallel/serial converter and a serial/parallel converter. A first clock is input into the parallel/serial converter and a second clock is input into the serial/parallel converter. Image data is converted into serial image data by the parallel/serial converter in synchronism with the first clock and then the serial image data is converted into parallel image data by the serial/parallel converter in synchronism with the second clock. By varying the number of clock pulses per unit time between the first and second clocks, the input image data having a first pixel density may be converted into output image data having second pixel density.
    • 能够将具有不同像素密度的两个或多个图像数据组合成一页图像数据的图像处理系统。 该系统包括并行/串行转换器和串行/并行转换器。 第一个时钟输入到并行/串行转换器,第二个时钟输入到串行/并行转换器。 图像数据与第一时钟同步地由并行/串行转换器转换为串行图像数据,然后串行图像数据与第二时钟同步地由串行/并行转换器转换成并行图像数据。 通过改变在第一和第二时钟之间的每单位时间的时钟脉冲的数量,具有第一像素密度的输入图像数据可被转换成具有第二像素密度的输出图像数据。