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    • 31. 发明授权
    • Fuel control system for an internal combustion engine
    • 内燃机燃油控制系统
    • US4096838A
    • 1978-06-27
    • US752305
    • 1976-12-20
    • Eizi TanakaMichihiro OhashiHiroshi MochizukiAkira Nishimatsu
    • Eizi TanakaMichihiro OhashiHiroshi MochizukiAkira Nishimatsu
    • F02M69/22F02M69/40F02M17/00F02M19/00
    • F02M69/22F02M69/40
    • In a fuel control system for an internal combustion engine comprising a sensing vane swingably disposed in an intake pipe of the engine and adapted to be angularly displaced in proportion to the flow rate of the intake air and a fuel control device in response to the angular displacement of said sensing vane for controlling the rate of fuel to be supplied to the engine in proportion to the flow rate of the intake air, a plurality of pressure-responsive actuators are operatively connected to said sensing vane and adapted to actuate in response to vacuum or air-pressure signals representative of the conditions of the engine such as acceleration and deceleration, the temperature of the engine and the ambient air pressure, respectively, to control the angular displacement of said sensing vane so as to change the ratio of the rate of fuel to be supplied to the engine to the flow rate of the intake air, whereby the air-fuel ratio is optimized according to engine conditions.
    • 一种用于内燃机的燃料控制系统,包括可旋转地设置在发动机的进气管中的感测叶片,并且适于与进气的流量成比例地成角度地移位,以及响应于角位移的燃料控制装置 的所述传感叶片,用于控制与进气的流量成比例地供给到发动机的燃料的速率,多个压力响应致动器可操作地连接到所述检测叶片并适于响应于真空或 分别表示发动机的状况的空气压力信号,例如加速和减速,发动机的温度和环境空气压力,以控制所述感测叶片的角位移,从而改变燃料的比率 供给到发动机的进气量的流量,从而根据发动机状况优化空燃比。
    • 33. 发明授权
    • Printing apparatus
    • 印刷装置
    • US09221268B1
    • 2015-12-29
    • US14801131
    • 2015-07-16
    • Hiroshi Mochizuki
    • Hiroshi Mochizuki
    • B41J2/21B41J2/045
    • B41J2/2135B41J2/04593
    • To correct a color shift caused by printing data, a printing apparatus includes an image formation section that prints on a transfer film using color inks according to printing data, and a control section which stores or generates pattern data of a pattern having respective colors of the inks, and combines the printing data and the pattern data so that a printing image of the pattern data overlaps a part of a printing image of the printing data. The control section corrects a printing start position on the transfer film with the image formation section of at least one color ink among printing images to print respectively with the color inks, according to input first information concerning a shift in respective colors of the inks constituting the pattern occurring in forming an image on the transfer film in the image formation section according to combined printing data subjected to combining.
    • 为了校正由打印数据引起的颜色偏移,打印设备包括:图像形成部,其根据打印数据使用彩色油墨在转印膜上进行打印;以及控制部,其存储或生成具有各种颜色的图案的图案数据 油墨,并且组合打印数据和图案数据,使得图案数据的打印图像与打印数据的打印图像的一部分重叠。 控制部根据输入的第一信息,根据输入的第一信息,在打印图像中的至少一种彩色油墨的图像形成部分与彩色油墨分别对转印膜上的打印开始位置进行修正, 根据经过组合的组合打印数据在图像形成部分中的转印膜上形成图像时出现的图案。
    • 34. 发明申请
    • PRINTING DEVICE AND PRINTING METHOD
    • 打印设备和打印方法
    • US20120176460A1
    • 2012-07-12
    • US13497685
    • 2010-09-24
    • Hiroshi MochizukiYuichi AiharaTsuyoshi Kubota
    • Hiroshi MochizukiYuichi AiharaTsuyoshi Kubota
    • B41J2/325
    • B41J2/325B41J2/0057B41J17/02
    • The present invention provides a printing device which provides high printing quality. The printing device includes: an image forming section which has a thermal head 9 and a platen roller 12; a media conveyance section for conveying an intermediate transfer film F; a ribbon conveyance section for conveying an ink ribbon R; a sensor 10 for detecting a first mark formed on the film F; and a control section for controlling the image forming section, the media conveyance section, and the ribbon conveyance section in accordance with output information from the sensor 10. The control section presses the head 9 into contact with the roller 12 when the first mark is not detected, which is when the first mark is further upstream than the position of the sensor 10, while the film F and the ribbon R are being conveyed, and selectively heats a heating element formed in the head 9 when the film F is positioned in the printing start position, which is a state in which the first mark is detected when the first mark is further downstream than the position of the sensor 10.
    • 本发明提供一种提供高打印质量的打印装置。 打印装置包括:具有热敏头9和压纸辊12的图像形成部分; 用于输送中间转印膜F的介质输送部; 用于输送墨带R的色带传送部; 用于检测形成在胶片F上的第一标记的传感器10; 以及根据来自传感器10的输出信息来控制图像形成部分,介质传送部分和色带传送部分的控制部分。当第一标记不是时,控制部分将头部9按压与辊12接触 当胶片F和色带R被输送时,当第一标记比传感器10的位置更上游时,检测到该位置,并且当胶片F位于该位置时,选择性地加热形成在头部9中的加热元件 打印开始位置,其是当第一标记比传感器10的位置更下游时检测到第一标记的状态。
    • 37. 发明授权
    • Printing apparatus
    • 印刷装置
    • US06762780B2
    • 2004-07-13
    • US10160287
    • 2002-06-04
    • Wataru TsurutaHiroshi MochizukiMasao Watanabe
    • Wataru TsurutaHiroshi MochizukiMasao Watanabe
    • B41J2325
    • B41J13/12B41J2/0057B41J3/60
    • A printing apparatus includes an image forming portion for selectively forming images to a card and to an intermediate transfer sheet, and a transfer portion for transferring images formed onto an intermediate transfer medium to a card. The image forming portion and transfer portion are opposingly arranged to a card transport path and are arranged offset along the card transport path. This allows the shared use of members for direct transfer and indirect transfer to enable smooth printing. The apparatus switches between the direct transfer method and the indirect transfer method to print to the card and enables lower costs and improved printing speed.
    • 打印装置包括用于向卡片和中间转印片材选择性地形成图像的图像形成部分和用于将形成在中间转印介质上的图像转印到卡上的转印部分。 图像形成部分和传送部分相对地布置到卡传送路径并且沿着卡传送路径偏移地布置。 这允许共享使用成员进行直接传输和间接传输,以实现平滑打印。 该设备在直接传送方式和间接传送方式之间切换,可打印到卡片上,降低成本,提高打印速度。
    • 38. 发明授权
    • Lateral hall element
    • 横向厅元素
    • US5679973A
    • 1997-10-21
    • US624103
    • 1996-03-29
    • Hiroshi MochizukiKanae FujiiHideyuki Funaki
    • Hiroshi MochizukiKanae FujiiHideyuki Funaki
    • G01R15/20G01R19/00H01L43/06H01L29/82H01L43/00
    • H01L43/06Y10S73/03
    • A lateral Hall element includes a substrate, a first-conductivity type active layer formed on the substrate, a first second-conductivity type semiconductor layer formed to surround the first-conductivity type active layer and formed to a depth to reach the substrate, a pair of first first-conductivity type semiconductor layers of high impurity concentration selectively formed with a preset distance apart from each other on the surface of the first-conductivity type active layer, current supply electrodes respectively formed on the pair of first first-conductivity type semiconductor layers, a pair of second first-conductivity type semiconductor layers of high impurity concentration formed with a preset distance apart from each other on the surface of the first-conductivity type active layer in position different from the first first-conductivity type semiconductor layers, sensor electrodes respectively formed on the pair of second first-conductivity type semiconductor layers, and a plurality of second second-conductivity type semiconductor layers formed on the surface of the first-conductivity type active layer in position different from the first and second first-conductivity type semiconductor layers.
    • 横向霍尔元件包括衬底,形成在衬底上的第一导电型有源层,形成为围绕第一导电类型有源层并形成为深度到达衬底的第一第二导电类型半导体层,一对 在所述第一导电型有源层的表面上选择性地形成为彼此相隔预定距离的高杂质浓度的第一第一导电型半导体层,分别形成在所述一对第一第一导电类型半导体层 在与第一第一导电类型半导体层不同的位置处的第一导电类型有源层的表面上彼此隔开预定距离形成有高杂质浓度的一对第二第一导电型半导体层,传感器电极 分别形成在所述一对第二第一导电型半导体层和多个第一导电型半导体层上 形成在与第一和第二第一导电类型半导体层不同的位置的第一导电类型有源层的表面上的第二第二导电类型半导体层的等离子体。