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    • 51. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US07410249B2
    • 2008-08-12
    • US11235175
    • 2005-09-27
    • Hiroshi Inoue
    • Hiroshi Inoue
    • B41J2/18B41J2/165
    • B41J2/18B41J2/16508
    • The image forming apparatus comprises: an ejection head which includes a plurality of nozzles to eject a liquid to deposit the liquid on a recording medium being conveyed relatively to the ejection head to form an image on the recording medium; a tank which stores the liquid to be supplied to the nozzles and has an adjustable internal pressure; a liquid supply path which connects the tank and the ejection head; a cap which faces a nozzle face on which the nozzles of the ejection head are formed; a liquid collection path which is capable of connecting the cap and the tank; and a liquid circulating device which is provided on the liquid collection path, collects the liquid in the ejection head through the cap, circulates the liquid to the tank along the liquid collection path, and adjusts the internal pressure of the tank to a desired value.
    • 图像形成装置包括:喷射头,其包括多个喷嘴以喷射液体以将液体沉积在相对于喷射头传送的记录介质上,以在记录介质上形成图像; 存储供给到喷嘴的液体并具有可调内压的罐; 液体供给路径,其连接所述罐和所述喷射头; 面对其上形成有喷射头的喷嘴的喷嘴面的盖; 能够连接盖和罐的液体收集路径; 以及液体循环装置,其设置在液体收集路径上,通过盖收集喷射头中的液体,并将液体沿着液体收集路径循环到罐中,并将罐的内部压力调节到期望值。
    • 52. 发明授权
    • Image recording apparatus
    • 图像记录装置
    • US07370948B2
    • 2008-05-13
    • US11373253
    • 2006-03-13
    • Hiroshi Inoue
    • Hiroshi Inoue
    • B41J2/17B41J2/165
    • B41J29/393B41J2/175B41J2/2114B41J2002/14459B41J2202/20
    • The image recording apparatus comprises: a liquid ejection head which ejects liquid onto a recording medium; a conveyance device which relatively conveys the recording medium with respect to the liquid ejection head, by moving at least one of the recording medium and the liquid ejection head; a liquid removal device which is provided after the liquid ejection head in terms of a conveyance direction of the recording medium and removes the liquid on the recording medium; a recording medium determination device which determines a type of the recording medium; a liquid volume determination device which determines a volume of the liquid on the recording medium; a liquid volume threshold value establishment device which establishes a liquid volume threshold value in accordance with the type of the recording medium determined by the recording medium determination device; and a liquid removal control device which controls the liquid removal device in accordance with a comparison between the volume of the liquid on the recording medium determined by the liquid volume determination device and the liquid volume threshold value established by the liquid volume threshold value establishment device.
    • 图像记录装置包括:将液体喷射到记录介质上的液体喷射头; 通过移动记录介质和液体喷射头中的至少一个,相对于液体喷射头相对地传送记录介质的输送装置; 液体移除装置,其在所述液体喷射头之后设置在所述记录介质的传送方向上并且去除所述记录介质上的液体; 记录介质确定装置,其确定记录介质的类型; 液体体积确定装置,其确定记录介质上的液体的体积; 液体体积阈值建立装置,其根据由记录介质确定装置确定的记录介质的类型建立液体体积阈值; 以及液体去除控制装置,其根据由液体容积确定装置确定的记录介质上的液体的体积与由液体体积阈值建立装置建立的液体体积阈值之间的比较来控制液体去除装置。
    • 56. 发明授权
    • Non-aqueous electrolyte battery and method of manufacturing the same
    • 非水电解质电池及其制造方法
    • US07261976B2
    • 2007-08-28
    • US10439807
    • 2003-05-16
    • Satoshi MizutaniHiroshi InoueTakatomo NishinoAtsuo Omaru
    • Satoshi MizutaniHiroshi InoueTakatomo NishinoAtsuo Omaru
    • H01M4/58H01M4/82
    • H01M4/133H01M4/0404H01M4/0452H01M4/134H01M4/1393H01M4/1395H01M4/364H01M10/052H01M10/0525H01M10/0585H01M2004/021Y10T29/49115
    • The battery comprises a positive electrode which has a positive electrode active material compound layer containing a positive electrode active material formed on a positive electrode current collector; a negative electrode which has at least one negative electrode thin film layer and at least one negative electrode active material compound layer, on a negative electrode current collector, and a non-aqueous electrolyte containing an electrolyte salt. The negative electrode thin film layer contains at least one Group 14 element, and is formed by a thin-film formation technology, and the negative electrode active material compound layer contains a binder and a negative electrode active material, which contains at least any one of Sn, Si, Sn compound, Si compound and carbonaceous material. With this negative electrode, the negative electrode thin film layer containing a high-capacity Group 14 element raises the battery capacity, and the negative electrode active material compound layer provides excellent charge/discharge cycle characteristics while suppressing degradation of the negative electrode even under repetitive charge/discharge.
    • 该电池包括正电极,该正极具有包含在正极集电体上形成的正极活性物质的正极活性物质化合物层; 在负极集电体上具有至少一个负极薄膜层和至少一个负极活性物质化合物层的负极和含有电解质盐的非水电解质。 负极薄膜层含有至少一个第14族元素,通过薄膜形成技术形成,负极活性物质化合物层含有粘合剂和负极活性物质,其含有至少任一种 Sn,Si,Sn化合物,Si化合物和碳质材料。 对于该负极,含有高容量组14元素的负极薄膜层提高了电池容量,负极活性物质化合物层即使在重复充电的同时也能够抑制负极的劣化的同时提供优异的充放电循环特性 /卸货。
    • 59. 发明授权
    • Fuel supply system of internal combustion engine
    • 内燃机燃油供应系统
    • US07198033B2
    • 2007-04-03
    • US11086580
    • 2005-03-23
    • Yoshitsugu InagumaHiroshi Inoue
    • Yoshitsugu InagumaHiroshi Inoue
    • F02M37/04
    • F02D41/3845F02M37/0047F02M59/102F02M59/366F02M59/447F02M63/0225F02M2200/09
    • A high-pressure pump is formed with a secondary suction passage, which branches from a fuel suction passage and communicates with a pump chamber. Check valves for preventing a backflow of fuel are disposed respectively in the secondary suction passage and a discharge passage. An electromagnetic valve for regulating a fuel discharge quantity is disposed in the fuel suction passage. Normal control for controlling the fuel discharge quantity by controlling opening timing and closing timing of the electromagnetic valve with respect to reciprocating movement of a plunger is performed when an engine rotation speed is higher than a predetermined value during operation of an engine. Valve closing control for holding the electromagnetic valve at a closed state is performed when the engine rotation speed is equal to or lower than the predetermined value.
    • 高压泵形成有二次抽吸通道,其从燃料吸入通道分支并与泵室连通。 用于防止燃料回流的止回阀分别设置在二次抽吸通道和排出通道中。 用于调节燃料排出量的电磁阀设置在燃料吸入通道中。 当在发动机运转期间发动机转速高于预定值时,执行通过控制电磁阀相对于柱塞的往复运动的打开正时和关闭正时来控制燃料排放量的正常控制。 当发动机转速等于或低于预定值时,执行用于将电磁阀保持在关闭状态的阀关闭控制。