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    • 12. 发明授权
    • Battery charging system and information processing apparatus with
reduced power consumption at charges
    • 电池充电系统和信息处理设备在收费时降低功耗
    • US6104163A
    • 2000-08-15
    • US342248
    • 1999-06-29
    • Masayuki KomatsuSatoshi Kizawa
    • Masayuki KomatsuSatoshi Kizawa
    • G06F1/26G06F1/28H02J7/00H02J7/02H02J7/14
    • H02J7/0004H02J7/0024H02J7/0036
    • The battery charging system allows a power consumption of an information processing apparatus to be maximally reduced when the system is off. When a charge request signal is output from a microprocessor of one battery, a connection control circuit puts one switch circuit into a open state and the other switch circuit into a closed state. As a result, a Smart Selector operates to start charging the battery whose connection has been detected. When the battery is fully charged and a full charge signal which is an inverted version of a charge request signal is output from the microprocessor, the connection control circuit operate to open the closed switch circuit and to close the opened switch circuit. The Smart Selector is made to recognize that the battery is no longer connected and detects only the other battery, thereby beginning charging to the other battery.
    • 电池充电系统允许当系统关闭时信息处理设备的功耗最大程度地降低。 当从一个电池的微处理器输出充电请求信号时,连接控制电路将一个开关电路置于打开状态,另一个开关电路进入关闭状态。 因此,智能选择器可以对已经检测到连接的电池开始充电。 当电池完全充电并且从微处理器输出作为充电请求信号的反相形式的完全充电信号时,连接控制电路操作以打开闭合开关电路并关闭打开的开关电路。 智能选择器用于识别电池不再连接,仅检测到其他电池,从而开始向其他电池充电。
    • 15. 发明申请
    • RESIN COATED MEMBER AND METHOD OF RESIN COATING
    • 树脂涂层成员和树脂涂层方法
    • US20100183842A1
    • 2010-07-22
    • US12452611
    • 2008-07-14
    • Jin KawakitaSeiji KurodaMasayuki Komatsu
    • Jin KawakitaSeiji KurodaMasayuki Komatsu
    • B32B3/10C23C4/12B32B27/32
    • C09D123/06B05B7/205B05D1/10C23C4/04Y10T428/24355Y10T428/24364
    • Provided is a resin coated member produced according to a coating method through HVOF spraying that comprises generating a combustion jet in a combustion chamber connected to one end of a barrel while controlling the temperature of the combustion jet by supply of an inert gas to the jet, feeding resin coating materials into the temperature-controlled combustion jet and leading them to pass through the barrel, and spouting the coating particles through a spout port along with the combustion jet therethrough to thereby coat the substrate surface; wherein the length of the barrel, the temperature of the combustion jet and the physical properties of the coating particles are defined so as to satisfy both the following formulae (1) and (2), and wherein the interface between the coating material and the substrate surface has a structure of such that the two break in each other with at least micron-pitch irregularities. Numerical   Formula   1 α × t r > 0.5 ( 1 ) Numerical   Formula   2 2.5
    • 本发明提供一种根据通过HVOF喷涂的涂布方法制造的树脂涂覆部件,其包括在连接到筒的一端的燃烧室中产生燃烧射流,同时通过向喷射器供应惰性气体来控制燃烧射流的温度, 将树脂涂层材料输送到温度控制的燃烧射流中并引导它们通过筒体,并且通过喷嘴端口喷射涂层颗粒以及燃烧射流,从而涂覆基底表面; 其中筒的长度,燃烧射流的温度和涂层颗粒的物理性质被定义为满足下列公式(1)和(2),并且其中涂层材料和衬底之间的界面 表面具有这样的结构,使得两者彼此以至少微米间距的凹凸不平。 数学公式1α×t r> 0.5(1)数学公式2 2 5
    • 17. 发明授权
    • Resin coated member and method of resin coating
    • 树脂涂层部件和树脂涂层方法
    • US08637121B2
    • 2014-01-28
    • US12452611
    • 2008-07-14
    • Jin KawakitaSeiji KurodaMasayuki Komatsu
    • Jin KawakitaSeiji KurodaMasayuki Komatsu
    • B05D1/10B05D1/02
    • C09D123/06B05B7/205B05D1/10C23C4/04Y10T428/24355Y10T428/24364
    • A coating method through HVOF spraying that comprises generating a combustion jet in a combustion chamber connected to one end of a barrel while controlling the temperature of the combustion jet by supply of an inert gas to the jet, feeding resin coating materials into the temperature-controlled combustion jet and leading them to pass through the barrel, and spouting the coating particles through a spout port along with the combustion jet therethrough to thereby coat the substrate surface; wherein the length of the barrel, the temperature of the combustion jet and the physical properties of the coating particles are defined so as to satisfy both the following formulae (1) and (2). Numerical ⁢ ⁢ Formula ⁢ ⁢ 1 α × t r > 0.5 ( 1 ) Numerical ⁢ ⁢ Formula ⁢ ⁢ 2 2.5
    • 一种通过HVOF喷涂的涂覆方法,包括在连接到筒的一端的燃烧室中产生燃烧射流,同时通过向喷射器供应惰性气体来控制燃烧射流的温度,将树脂涂料输送到温度控制 燃烧喷射并引导它们通过筒体,并且通过喷嘴口喷射涂层颗粒以及燃烧射流,从而涂覆基底表面; 其中筒的长度,燃烧射流的温度和涂层颗粒的物理性能被定义为满足下列公式(1)和(2)。 数学式公式1阿尔法×t r> 0.5(1)数值公式式2 2.5