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    • 1. 发明授权
    • Reduced printing width printer, printer control method, and operation control method
    • 打印宽度打印机减少,打印机控制方法和操作控制方法
    • US08659788B2
    • 2014-02-25
    • US12486651
    • 2009-06-17
    • Kei WatanabeAkihiro Ikeda
    • Kei WatanabeAkihiro Ikeda
    • G06F15/00
    • G06F3/1208G06F3/1219G06F3/1245G06F3/125
    • A printer can print to paper with a narrow width while maintaining a print format with good legibility without changing the application program and printer driver installed on the host computer. The control method of a printer that prints based on print data 5 sent from a host computer 3 has a step S105 of extracting data attributes contained in the print data 5 and assigning the print data 5 to data segment areas for each data attribute; a step of setting the data segment areas to specific printing areas based on the data attribute; an actual print data generating step (steps S122, S107, S133, S134, S111) of converting the print data 5 assigned to the data segment areas to actual print data according to the data attributes; and a printing step S113 of printing the actual print data in the printing areas.
    • 打印机可以打印宽度窄的纸张,同时保持打印格式的良好可读性,而无需更改主机上安装的应用程序和打印机驱动程序。 基于从主计算机3发送的打印数据5打印的打印机的控制方法具有提取包含在打印数据5中的数据属性并将打印数据5分配给每个数据属性的数据段区域的步骤S105; 基于数据属性将数据段区域设置为特定打印区域的步骤; 根据数据属性将分配给数据段区域的打印数据5转换为实际打印数据的实际打印数据生成步骤(步骤S122,S107,S133,S134,S111) 以及在打印区域中打印实际打印数据的打印步骤S113。
    • 2. 发明申请
    • PRINTER, PRINTER CONTROL METHOD, AND OPERATION CONTROL PROGRAM
    • 打印机,打印机控制方法和操作控制程序
    • US20090316162A1
    • 2009-12-24
    • US12486651
    • 2009-06-17
    • Kei WatanabeAkihiro Ikeda
    • Kei WatanabeAkihiro Ikeda
    • G06K15/02G06F15/00G06F3/12
    • G06F3/1208G06F3/1219G06F3/1245G06F3/125
    • A printer can print to paper with a narrow width while maintaining a print format with good legibility without changing the application program and printer driver installed on the host computer. The control method of a printer that prints based on print data 5 sent from a host computer 3 has a step S105 of extracting data attributes contained in the print data 5 and assigning the print data 5 to data segment areas for each data attribute; a step of setting the data segment areas to specific printing areas based on the data attribute; an actual print data generating step (steps S122, S107, S133, S134, S111) of converting the print data 5 assigned to the data segment areas to actual print data according to the data attributes; and a printing step S113 of printing the actual print data in the printing areas.
    • 打印机可以打印宽度窄的纸张,同时保持打印格式的良好可读性,而无需更改主机上安装的应用程序和打印机驱动程序。 基于从主计算机3发送的打印数据5打印的打印机的控制方法具有提取包含在打印数据5中的数据属性并将打印数据5分配给每个数据属性的数据段区域的步骤S105; 基于数据属性将数据段区域设置为特定打印区域的步骤; 根据数据属性将分配给数据段区域的打印数据5转换为实际打印数据的实际打印数据生成步骤(步骤S122,S107,S133,S134,S111) 以及在打印区域中打印实际打印数据的打印步骤S113。
    • 5. 发明申请
    • Transmission and communication apparatus including the same
    • 包括其的传输和通信设备
    • US20080074709A1
    • 2008-03-27
    • US11902153
    • 2007-09-19
    • Akihiro Ikeda
    • Akihiro Ikeda
    • H04N1/31F16H37/06
    • H04N1/0461H04N1/00567H04N1/0062H04N1/00628H04N1/00631H04N1/00655H04N1/121H04N1/1215H04N1/193H04N2201/0093
    • A transmission including: a sun gear forwardly and reversely rotatable by a driving force; a rotary member being forwardly and reversely rotatable, and having a projecting portion; a clutch causing the rotary member to be forwardly rotated and reversely rotated, and not causing the rotary member to be reversely rotated when a predetermined torque is applied; a planetary gear rotatably supported by the rotary member, meshed with and revolved around the sun gear, and rotated by a rotation of the sun gear; a transmission gear meshed with the planetary gear and rotated when the planetary gear is positioned at a predetermined revolution position; a stopper inhibiting the rotary member from being reversely rotated at a rotation position; a switch including a switch lever which the projecting portion contacts when the rotary member is rotated, and detecting a rotational position of the rotary member, the switch permitting the swinging of the switch lever caused by the projecting portion when the rotary member is forwardly rotated and restricting the swinging of the switch lever caused by the projecting portion when the rotary member is reversely rotated; and a saving mechanism saving the switch lever from being forcedly swung when the rotary member is reversely rotated.
    • 一种变速器,包括:通过驱动力向前和向后可旋转的太阳齿轮; 旋转构件向前和向后可旋转,并具有突出部分; 离合器使得旋转构件向前旋转和反向旋转,并且当施加预定扭矩时不使旋转构件反转; 由旋转构件可旋转地支撑的行星齿轮,与太阳齿轮啮合并旋转,并通过太阳齿轮的旋转而旋转; 传动齿轮与行星齿轮啮合并且当行星齿轮位于预定的旋转位置时旋转; 禁止旋转构件在旋转位置反向旋转的止动件; 开关,其包括当旋转构件旋转时突出部接触的开关杆,并且检测旋转构件的旋转位置,当旋转构件向前旋转时,开关允许由突出部分引起的开关杆的摆动; 当旋转构件反向旋转时,限制由突出部分引起的开关杆的摆动; 以及节省机构,当旋转构件反向旋转时,使开关杆免于被强制摆动。
    • 6. 发明授权
    • Electronic device with AC plug
    • 带AC插头的电子设备
    • US06273734B1
    • 2001-08-14
    • US09329166
    • 1999-06-09
    • Akihiro IkedaHidetoshi Hamai
    • Akihiro IkedaHidetoshi Hamai
    • H01R1344
    • H01R31/00H01R13/62933
    • An AC adapter (electronic device) comprises a coil spring (elastic member), an engagement member, and an AC plug in which a guide groove is formed in a holding portion thereof. One end portion of the coil spring is fixed in the holding portion, and the other end portion of the coil spring is fixed in a case. One end portion of the engagement member is engaged with the guide groove of the holding portion. The engagement place of the one end portion of the engagement member and the fixation place of the one end portion of the coil spring sandwich a central axis of a rotary shaft and are symmetric with respect to the central axis. The other end portion of the engagement member is engaged with a hole portion formed in the case. The guide groove engaged with the one end portion of the engagement member is shaped like a heart so as to rotate the AC plug. A heart-shaped concave portion of the guide groove functions as a fixing groove portion for temporarily fixing the AC plug in a position where the AC plug is rotated nearly 90 degrees.
    • AC适配器(电子设备)包括在其保持部分中形成有引导槽的螺旋弹簧(弹性构件),接合构件和AC插头。 螺旋弹簧的一端固定在保持部分中,螺旋弹簧的另一端固定在壳体中。 接合构件的一个端部与保持部的引导槽接合。 接合构件的一个端部的接合位置和螺旋弹簧的一个端部的固定位置夹着旋转轴的中心轴线,并且相对于中心轴线对称。 接合构件的另一端部与形成在壳体中的孔部接合。 与接合构件的一个端部接合的引导槽成形为心脏以使AC插头旋转。 引导槽的心形凹部作为用于将AC插头临时固定在AC插头旋转近90度的位置的固定槽部。
    • 8. 发明授权
    • Printer and printer control method
    • 打印机和打印机控制方法
    • US08253961B2
    • 2012-08-28
    • US12363602
    • 2009-01-30
    • Hironobu InadaAkihiro IkedaMasanori Zama
    • Hironobu InadaAkihiro IkedaMasanori Zama
    • G06F3/12
    • G06K15/028G06F3/1297G06K15/1856
    • A thermal printer and a control method for a thermal printer enable increasing throughput before a printing process starts by starting a duplex printing process without waiting to convert all print data into the front print buffer and back print buffer, enable executing a duplex printing process on a print medium without using a front print buffer and a separate back print buffer, and enable switching between simplex printing and duplex printing according to a specific command. The control method includes a step S11 of receiving a printing process selection command specifying execution of a simplex printing process on a front side 301 of the print medium, a simplex printing process on a back side 302 of the print medium, a duplex printing process that prints on the front side 301 and the back side 302, and an identical front/back printing process that prints the same print data on the front side 301 and back side 302, a step S14 of converting and buffering the print data, and a step S19 of executing the printing process specified by the printing process selection command.
    • 热敏打印机和用于热敏打印机的控制方法通过启动双面打印处理而在打印过程开始之前提高生产量,而不用等待将所有打印数据转换成前打印缓冲器和后打印缓冲器,使得能够执行双面打印处理 打印介质,而不使用前打印缓冲器和单独的背面打印缓冲器,并且可以根据特定命令启用单面打印和双面打印之间的切换。 控制方法包括步骤S11,其在打印介质的正面301上接收指定执行单面打印处理的打印处理选择命令,在打印介质的背面302上进行单面打印处理,双面打印处理, 在正面301和背面302上进行打印,以及在前侧301和背面302上打印相同打印数据的相同的前/后打印处理,转换和缓冲打印数据的步骤S14,以及步骤 S19执行由打印处理选择命令指定的打印处理。
    • 10. 发明申请
    • Oil pan structure and internal combustion engine
    • 油锅结构和内燃机
    • US20090057064A1
    • 2009-03-05
    • US12230370
    • 2008-08-28
    • Akihiro Ikeda
    • Akihiro Ikeda
    • F16N31/00
    • F01M11/0004F01M2011/0041
    • An oil pan structure for an internal combustion engine includes: a small-depth portion having a bottom that is positioned at a high level; a large-depth portion formed adjacent to the small-depth portion and having a bottom that is positioned at a lower level than that of the small-depth portion, said large-depth portion defining an interior space in which an oil suction member is housed; and a ridge portion that connects a vertical wall that forms the large-depth portion with a bottom wall that forms the small-depth portion. The ridge portion includes a first connecting portion that connects the vertical wall of the large-depth portion with the bottom wall of the small-depth portion via a curved surface, and a second connecting portion that connects the vertical wall of the large-depth portion with the bottom wall of the small-depth portion at a position lower than that of the first connecting portion.
    • 用于内燃机的油盘结构包括:具有位于高位的底部的小深度部分; 形成在与所述小深度部分相邻并且具有位于低于所述小深度部分的底部的底部的大深部分,所述大深部分限定内部空间,在所述内部空间中容纳吸油部件 ; 以及将形成大深部的垂直壁与形成小深度部的底壁连接的脊部。 脊部包括通过弯曲表面连接大深度部分的垂直壁与小深度部分的底壁的第一连接部分,以及连接大深部分的垂直壁的第二连接部分 小深度部分的底壁处于比第一连接部分低的位置。