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    • 11. 发明授权
    • Wiper device and liquid ejection apparatus
    • 刮水装置和液体喷射装置
    • US07758151B2
    • 2010-07-20
    • US11652601
    • 2007-01-12
    • Taisuke Yamamoto
    • Taisuke Yamamoto
    • B41J2/165
    • B41J2/16535
    • A wiper device wipes a nozzle surface of a liquid ejection head along a wiping direction. The nozzle surface has a plurality of nozzle openings for ejecting liquid and step. The steps are located outside of the area in which the nozzle openings are provided and extend along the wiping direction. The wiper device includes a wiper member that wipes the nozzle surface along the wiping direction. The wiper member has a first portion corresponding to the steps and a second portion corresponding to the area in which the nozzle openings are arranged. Wiping force for wiping the nozzle surface of the first portion is greater than that of the second portion.
    • 擦拭器装置沿擦拭方向擦拭液体喷射头的喷嘴表面。 喷嘴表面具有用于喷射液体和台阶的多个喷嘴开口。 这些台阶位于设置有喷嘴开口的区域的外侧,沿着擦拭方向延伸。 擦拭器装置包括沿着擦拭方向擦拭喷嘴表面的擦拭器部件。 擦拭器构件具有对应于台阶的第一部分和对应于其中布置喷嘴开口的区域的第二部分。 用于擦拭第一部分的喷嘴表面的擦拭力大于第二部分的喷嘴表面的擦拭力。
    • 12. 发明授权
    • Fuel cartridge for fuel cell, and fuel cell
    • 燃料电池用燃料箱和燃料电池
    • US07670706B2
    • 2010-03-02
    • US10597459
    • 2005-02-16
    • Taisuke YamamotoJunji NiikuraNobuhiko Hojo
    • Taisuke YamamotoJunji NiikuraNobuhiko Hojo
    • H01M2/00H01M2/02
    • H01M8/04208H01M8/04186
    • A fuel cartridge (1) includes a fuel storage container (2), and a fuel supply port (4) for taking out a fuel stored in the fuel storage container (2). The fuel supply port (4) is provided with a fuel supply port protecting mechanism. The fuel supply port protecting mechanism includes a door (10) for opening/closing an opening (11) provided between the fuel supply port (4) and an outside, and a lock mechanism (20) for locking the door (10) so that the door (10) does not open. This can prevent, with the fuel cartridge not installed on a fuel cell, the leakage of a fuel from the fuel cartridge caused by improper handling by a user, etc.
    • 燃料盒(1)包括燃料储存容器(2)和用于取出储存在燃料储存容器(2)中的燃料的燃料供给口(4)。 燃料供给口(4)设置有燃料供给口保护机构。 燃料供给口保护机构包括用于打开/关闭设置在燃料供给口(4)和外部之间的开口(11)的门(10)和用于锁定门(10)的锁定机构(20),使得 门(10)不打开。 这可以防止燃料盒未安装在燃料电池上,由于用户不当的处理等导致燃料从燃料盒中的泄漏
    • 13. 发明申请
    • Liquid ejection apparatus
    • 液体喷射装置
    • US20070171252A1
    • 2007-07-26
    • US11655210
    • 2007-01-19
    • Taisuke Yamamoto
    • Taisuke Yamamoto
    • B41J2/165
    • B41J2/16547
    • A liquid ejection apparatus including a liquid ejection head, a liquid receiver, a liquid receiver movement mechanism, and a lid body is provided. The liquid ejection head has a nozzle surface. The nozzle surface includes a nozzle opening. The liquid ejection head ejects a liquid from the nozzle surface. The liquid receiver has an opening provided in correspondence with the nozzle surface of the liquid ejection head. The liquid receiver is capable of receiving the liquid ejected as a waste liquid from the nozzle opening of the liquid ejection head through the opening of the liquid receiver. The liquid receiver movement mechanism moves the liquid receiver between a receiving position at which the opening of the liquid receiver opposes the nozzle surface of the liquid ejection head and a non-receiving position spaced from the receiving position. The lid body is arranged at the non-receiving position. The lid body contacts the liquid receiver in such a manner as to close the opening of the liquid receiver after the liquid receiver is moved to the non-receiving position by the liquid receiver movement mechanism.
    • 提供一种液体喷射装置,包括液体喷射头,液体接收器,液体接收器运动机构和盖体。 液体喷射头具有喷嘴表面。 喷嘴表面包括喷嘴开口。 液体喷射头从喷嘴表面喷出液体。 液体接收器具有与液体喷射头的喷嘴表面相对应的开口。 液体接收器能够通过液体接收器的开口接收从液体喷射头的喷嘴开口作为废液喷射的液体。 液体接收器移动机构使液体接收器在液体接收器的开口与液体喷射头的喷嘴表面相对的接收位置和与接收位置间隔开的非接收位置之间移动。 盖体设置在非接收位置。 盖体在液体接收器被液体接收器移动机构移动到非接收位置之后,以接近液体接收器的开口的方式与液体接收器接触。
    • 16. 发明授权
    • Waste liquid container and liquid consumption apparatus
    • 废液容器和液体消耗装置
    • US08602522B2
    • 2013-12-10
    • US13422893
    • 2012-03-16
    • Shuhei HaradaMasanori NakataTaisuke Yamamoto
    • Shuhei HaradaMasanori NakataTaisuke Yamamoto
    • B41J2/165B41J2/185
    • B41J2/1721B41J2002/1728
    • In a waste liquid container which is detachably mounted on a waste liquid container mounting portion including a device side connection terminal and a plate spring, the waste liquid container includes a waste liquid storing chamber which stores waste liquid, a first wall portion and a second wall portion which are disposed so as to face each other with the waste liquid storing chamber interposed therebetween, a container side connection terminal which is provided on an outer surface of the second wall portion and contacts the device side connection terminal at the time of being mounted on the waste liquid container mounting portion, and a positioning protrusion of the plate spring which is provided on the first wall portion so as to receive a biasing force which is applied from the first wall portion side toward the second wall portion side.
    • 在可拆卸地安装在包括装置侧连接端子和板簧的废液容器安装部分上的废液容器中,废液容器包括储存废液的废液储存室,第一壁部分和第二壁 所述第二壁部分设置在所述第二壁部分的外表面上并且在安装在所述第二壁部分的外表面上并与所述装置侧连接端子接触时,所述容器侧连接端子 废液容器安装部,以及设置在第一壁部上的板簧的定位突起,以便承受从第一壁部侧向第二壁部侧施加的作用力。
    • 17. 发明授权
    • Charging method and charger for non-aqueous electrolyte secondary battery
    • 非水电解质二次电池充电方法及充电器
    • US08541986B2
    • 2013-09-24
    • US13122096
    • 2010-06-15
    • Tatsuki HiraokaMasaya UgajiTaisuke YamamotoKatsumi Kashiwagi
    • Tatsuki HiraokaMasaya UgajiTaisuke YamamotoKatsumi Kashiwagi
    • H02J7/00
    • H02J7/0086H01M10/0525H01M10/441H02J7/0013
    • In a charging method for a non-aqueous electrolyte secondary battery which includes a positive electrode including a lithium-containing composite oxide as an active material, a negative electrode including an alloy-formable negative electrode active material, and a non-aqueous electrolyte, a voltage of the secondary battery is detected. When the detected value is smaller than a predetermined voltage x, charging is performed at a comparatively small current value B. When the detected value is equal to or greater than the predetermined voltage x and smaller than a predetermined voltage z, charging is performed at a comparatively great current value A. When the detected value is equal to or greater than the predetermined voltage z and smaller than a predetermined voltage y, charging is performed at a comparatively small current value C. When the detected value is greater than the predetermined voltage y, constant-voltage charging is performed or charging is terminated. Here, x
    • 在包括含有作为活性物质的含锂复合氧化物的正极的非水电解质二次电池的充电方法中,包含合金成形性负极活性物质的负极和非水电解质, 检测到二次电池的电压。 当检测值小于预定电压x时,以比较小的电流值B进行充电。当检测值等于或大于预定电压x并小于预定电压z时,在 相对较大的电流值A.当检测值等于或大于预定电压z且小于预定电压y时,以相对较小的电流值C进行充电。当检测值大于预定电压y ,执行恒压充电或终止充电。 这里,x
    • 18. 发明授权
    • Liquid ejecting apparatus
    • 液体喷射装置
    • US08454121B2
    • 2013-06-04
    • US12190793
    • 2008-08-13
    • Taisuke YamamotoKentaro Tatsumi
    • Taisuke YamamotoKentaro Tatsumi
    • B41J2/185B41J2/165
    • B41J2/16523
    • A liquid ejecting apparatus including a liquid ejecting head which ejects liquid through nozzles, a liquid container with a sloped bottom surface which receives the liquid ejected from the nozzles, an absorber disposed in the liquid container which absorbs and stores the liquid ejected from the nozzles, and a suction unit which sucks the liquid held by the absorber and discharges the liquid from the liquid container. The liquid container includes a restriction portion which restricts the flow of the liquid in the absorber due to gravity, forming collection portions in the absorber where the liquid may be collected at a plurality of positions with different elevations when the liquid container is rotated so that the bottom surface is sloped away from the horizontal plane.
    • 一种液体喷射装置,包括通过喷嘴喷射液体的液体喷射头,具有倾斜的底面的液体容器,其接收从喷嘴喷射的液体;吸收器,其设置在吸收并储存从喷嘴喷出的液体的液体容器中; 以及抽吸单元,其吸收由吸收器保持的液体并从液体容器排出液体。 液体容器包括限制部分,其限制由于重力而在吸收器中的液体的流动,在吸收器中形成收集部分,其中液体可以在液体容器旋转时在多个不同高度的位置被收集, 底面从水平面倾斜。