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    • 12. 发明授权
    • Portable terminal equipment
    • 便携式终端设备
    • US06324397B1
    • 2001-11-27
    • US09155267
    • 1999-03-15
    • Naofumi AdachiTeru SaitouAkira OotakeYoshihito TakeshimaRyouji Terada
    • Naofumi AdachiTeru SaitouAkira OotakeYoshihito TakeshimaRyouji Terada
    • H04J306
    • H04M1/72508H04M1/72519H04W52/0229H04W52/0245Y02D70/00
    • This invention relates to a portable terminal equipment which receives intermittently a control channel transmitted from a cell station in a standby state. When the equipment shifts to the standby state, the equipment is brought into a receiving state to receive intermittently the control channel (PCH) for a set period of time W1 at every 1.2 seconds (ST22-ST25 and ST32). In addition, the equipment judges the receiving state from judging information of the receiving state such as the intensity of the electric field in receiving time and the presence/absence of an error in the received data (ST27 and ST33). In a power saving mode, when the equipment keeps on receiving the control channel in a good state for a set period of time while the equipment receives the control channel at every 1.2 seconds, the equipment is brought into a receiving state to receive the control channel at every 2.4 seconds (ST33-ST35). When the equipment does not receive the control channel in a good state while the equipment receives the control channel at every 2.4 seconds, the equipment shifts directly to the receiving state to receive the control channel at every 1.2 seconds (ST33 and ST32). In the standby state, when the equipment keeps on receiving the control channel in a good state, the interval between each reception of the control channel becomes longer and thus the power consumption of the equipment is saved.
    • 本发明涉及一种在备用状态下间歇地接收从小区发送的控制信道的便携式终端设备。 当设备转到待机状态时,设备进入接收状态,每隔1.2秒间歇地接收控制信道(PCH)一段时间W1(ST22-ST25和ST32)。 此外,设备通过判断接收状态的信息来判断接收状态,例如接收时间中的电场强度和接收数据中是否存在错误(ST27和ST33)。 在省电模式下,当设备在每1.2秒接收到控制信道时,在设定的时间段内继续接收到处于良好状态的控制信道时,设备进入接收状态以接收控制信道 每秒2.4秒(ST33-ST35)。 当设备在2.4秒内接收到控制通道时,设备没有接收到良好状态的控制通道,设备直接切换到接收状态,每隔1.2秒接收控制通道(ST33和ST32)。 在待机状态下,当设备继续接收到处于良好状态的控制信道时,控制信道的每次接收之间的间隔变长,从而节省设备的功耗。
    • 14. 发明授权
    • Fuel injection device
    • 燃油喷射装置
    • US09127629B2
    • 2015-09-08
    • US13318527
    • 2011-03-31
    • Masato YamadaYoichi KobaneNaofumi AdachiTsukasa Yamashita
    • Masato YamadaYoichi KobaneNaofumi AdachiTsukasa Yamashita
    • F02M61/10F02M61/00F02M47/02F02M61/16
    • F02M47/027F02M47/025F02M61/161F02M2547/008
    • A fuel injection device (100) includes a control body (40) provided with an injection hole (44), a nozzle needle (60) that opens or closes the injection hole (44), a pressure control chamber (53) controlling a movement of the nozzle needle (60), an inflow channel (52) through which high-pressure fuel is introduced to the pressure control chamber (53), an outflow channel (54) through which the fuel from the pressure control chamber (53) is discharged, and a floating plate (70) that opens or closes the inflow channel (52). In the fuel injection device (100), the control body (40) includes a cylinder (56) defining the pressure control chamber (53) in a radial direction thereof, and an inner wall portion (56a) of the cylinder (56) includes a communication groove (57a) which causes an inflow chamber (53a) that is provided within the pressure control chamber (53) at a side of the inflow channel (52) relative to the floating plate (70), to communicate with a back pressure chamber (53b) that is provided within the pressure control chamber (53) at a side of the nozzle needle (60) relative to the floating plate (70).
    • 燃料喷射装置(100)包括设置有喷射孔(44)的控制体(40),打开或关闭喷射孔(44)的喷嘴针(60),控制运动的压力控制室 所述喷嘴针(60)的流入通道(52),将高压燃料引入所述压力控制室(53)的流入通道(52),来自所述压力控制室(53)的燃料通过所述流出通道 以及打开或关闭流入通道(52)的浮板(70)。 在燃料喷射装置(100)中,控制体(40)包括在径向上限定压力控制室(53)的气缸(56),气缸(56)的内壁部(56a) 连通槽(57a),其使得在所述压力控制室(53)内设置在所述流入通道(52)的相对于所述浮板(70)的一侧的流入室(53a)与背压 在所述压力控制室(53)内设置在所述喷嘴针(60)的相对于所述浮板(70)的一侧的室(53b)。
    • 15. 发明授权
    • Fuel injection device
    • 燃油喷射装置
    • US08544767B2
    • 2013-10-01
    • US13179764
    • 2011-07-11
    • Naofumi AdachiTsukasa Yamashita
    • Naofumi AdachiTsukasa Yamashita
    • B05B9/00
    • F02M55/008F02M47/027F02M55/002F02M2200/16
    • A fuel injection device has therein a recovery channel provided in a first valve body, and a fuel channel provided in the first valve body and a second valve body. The fuel channel is opened by openings at a first end surface of the first valve body and a second end surface of the second valve body. One of the first end surface and the second end surface is provided with an end surface groove connected to the recovery channel. In the fuel injection device, the end surface groove is provided to enclose at least a part of the opening and is separated from the opening by a clearance, and one of the first valve body and the second valve body has a side surface groove extending in a circumferential direction at an outer periphery of the one of the first valve body and the second valve body.
    • 燃料喷射装置在其中具有设置在第一阀体中的回收通道和设置在第一阀体中的燃料通道和第二阀体。 燃料通道在第一阀体的第一端面处的开口和第二阀体的第二端表面打开。 第一端面和第二端面中的一个设置有连接到恢复通道的端面槽。 在燃料喷射装置中,端面槽被设置成包围开口的至少一部分,并且与开口隔开间隙,并且第一阀体和第二阀体中的一个具有在 在第一阀体和第二阀体中的一个的外周的周向。
    • 17. 发明申请
    • FUEL INJECTION DEVICE
    • 燃油喷射装置
    • US20120042852A1
    • 2012-02-23
    • US13318527
    • 2011-03-31
    • Masato YamadaYoichi KobaneNaofumi AdachiTukasa Yamashita
    • Masato YamadaYoichi KobaneNaofumi AdachiTukasa Yamashita
    • F02M69/04
    • F02M47/027F02M47/025F02M61/161F02M2547/008
    • A fuel injection device (100) includes a control body (40) provided with an injection hole (44), a nozzle needle (60) that opens or closes the injection hole (44), a pressure control chamber (53) controlling a movement of the nozzle needle (60), an inflow channel (52) through which high-pressure fuel is introduced to the pressure control chamber (53), an outflow channel (54) through which the fuel from the pressure control chamber (53) is discharged, and a floating plate (70) that opens or closes the inflow channel (52). In the fuel injection device (100), the control body (40) includes a cylinder (56) defining the pressure control chamber (53) in a radial direction thereof, and an inner wall portion (56a) of the cylinder (56) includes a communication groove (57a) which causes an inflow chamber (53a) that is provided within the pressure control chamber (53) at a side of the inflow channel (52) relative to the floating plate (70), to communicate with a back pressure chamber (53b) that is provided within the pressure control chamber (53) at a side of the nozzle needle (60) relative to the floating plate (70).
    • 燃料喷射装置(100)包括设置有喷射孔(44)的控制体(40),打开或关闭喷射孔(44)的喷嘴针(60),控制运动的压力控制室 所述喷嘴针(60)的流入通道(52),将高压燃料引入所述压力控制室(53)的流入通道(52),来自所述压力控制室(53)的燃料通过所述流出通道 以及打开或关闭流入通道(52)的浮板(70)。 在燃料喷射装置(100)中,控制体(40)包括在径向上限定压力控制室(53)的气缸(56),气缸(56)的内壁部(56a) 连通槽(57a),其使得在所述压力控制室(53)内设置在所述流入通道(52)的相对于所述浮板(70)的一侧的流入室(53a)与背压 在所述压力控制室(53)内设置在所述喷嘴针(60)的相对于所述浮板(70)的一侧的室(53b)。