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    • 1. 发明授权
    • Frequency converter and radio communications system employing the same
    • 变频器和采用该无线电通信系统的通信系统
    • US07177591B2
    • 2007-02-13
    • US10741446
    • 2003-12-22
    • Koyo KegasaChitaka ManabeTakuya KusakaYuichiro GotoKoji Inoue
    • Koyo KegasaChitaka ManabeTakuya KusakaYuichiro GotoKoji Inoue
    • H04B7/14H04B3/36H04B1/40
    • H04B1/005H04B1/406H04B1/707
    • In a frequency converter, a phase-locked loop generates a local-oscillation signal having a low frequency, of a plurality of local-oscillation signals having different frequencies, based on an intermediate frequency beacon signal that results from mixing a predetermined beacon signal with the local-oscillation frequency signal. Even if the phase-locked loop is used to generate the low frequency local-oscillation signal only, a frequency offset and a phase noise taking place in remaining high frequency local-oscillation signals are compensated for or canceled out. The frequency converter thus results in a high frequency accuracy. This arrangement reduces the number of bulky, costly and power-consuming phase-locked oscillators, typically used in the quasi millimeter band or the millimeter band. A simplified, compact frequency converter is thus provided, reducing both installation and operating costs.
    • 在频率转换器中,锁相环基于由预定信标信号与所述频率信号混合产生的中频信标信号,产生具有不同频率的多个本地振荡信号的低频本地振荡信号 本机振荡频率信号。 即使仅使用锁相环来产生低频本地振荡信号,在剩余的高频本地振荡信号中发生的频率偏移和相位噪声被补偿或抵消。 因此,变频器导致高频精度。 这种布置减少了典型地在准毫米波段或毫米波段中使用的体积庞大,昂贵和耗电的锁相振荡器的数量。 因此,提供了一种简化的紧凑型变频器,降低了安装和运行成本。
    • 2. 发明授权
    • Frequency converter and radio communications system employing the same
    • 变频器和采用该无线电通信系统的通信系统
    • US06724804B1
    • 2004-04-20
    • US09350997
    • 1999-07-12
    • Koyo KegasaChitaka ManabeTakuya KusakaYuichiro GotoKoji Inoue
    • Koyo KegasaChitaka ManabeTakuya KusakaYuichiro GotoKoji Inoue
    • H04B169
    • H04B1/005H04B1/406H04B1/707
    • In a frequency converter, a phase-locked loop generates a local-oscillation signal having a low frequency, of a plurality of local-oscillation signals having different frequencies, based on an intermediate frequency beacon signal that results from mixing a predetermined beacon signal with the local-oscillation frequency signal. Even if the phase-locked loop is used to generate the low frequency local-oscillation signal only, a frequency offset and a phase noise taking place in remaining high frequency local-oscillation signals are compensated for or canceled out. The frequency converter thus results in a high frequency accuracy. This arrangement reduces the number of bulky, costly and power-consuming phase-locked oscillators, typically used in the quasi millimeter band or the millimeter band. A simplified, compact frequency converter is thus provided, reducing both installation and operating costs.
    • 在频率转换器中,锁相环基于由预定信标信号与所述频率信号混合产生的中频信标信号,产生具有不同频率的多个本地振荡信号的低频本地振荡信号 本机振荡频率信号。 即使仅使用锁相环来产生低频本地振荡信号,在剩余的高频本地振荡信号中发生的频率偏移和相位噪声被补偿或抵消。 因此,变频器导致高频精度。 这种布置减少了典型地在准毫米波段或毫米波段中使用的体积庞大,昂贵和耗电的锁相振荡器的数量。 因此,提供了一种简化的紧凑型变频器,降低了安装和运行成本。
    • 4. 发明申请
    • Information Synchronizing System
    • 信息同步系统
    • US20090009299A1
    • 2009-01-08
    • US12087901
    • 2007-02-20
    • Hideo IkedaTakuya KusakaNaoki TamuraChitaka ManabeHidenori SakaiYuichi Iwasa
    • Hideo IkedaTakuya KusakaNaoki TamuraChitaka ManabeHidenori SakaiYuichi Iwasa
    • H04Q5/22
    • H04L67/1095
    • An information synchronizing system includes a wireless communication terminal including a first information storage device having a first wireless communication range and a second information storage device having a second wireless communication range, the second wireless communication range being larger than the first wireless communication range; a read/write device that reads information from and writes information to the first information storage device; a wireless communication base station capable of performing wireless communication with the wireless communication terminal; and a synchronization controlling device that writes information stored in the first information storage device, the information being read using the read/write device, to the second information storage device via the wireless communication base station and the wireless communication terminal.
    • 信息同步系统包括:无线通信终端,包括具有第一无线通信范围的第一信息存储装置和具有第二无线通信范围的第二信息存储装置,所述第二无线通信范围大于所述第一无线通信范围; 读/写设备,用于从第一信息存储设备读取信息并向其写入信息; 能够与无线通信终端进行无线通信的无线通信基站; 以及同步控制装置,其通过无线通信基站和无线通信终端,将存储在第一信息存储装置中的信息,使用读/写装置读取的信息写入第二信息存储装置。
    • 5. 发明授权
    • Straddle-type rough-road running vehicle
    • 跨骑式粗跑道车
    • US08074756B2
    • 2011-12-13
    • US11830269
    • 2007-07-30
    • Takuya KusakaYuzo Hioki
    • Takuya KusakaYuzo Hioki
    • B60K13/02
    • B62K5/01
    • A straddle-type rough-road running vehicle includes a vehicle body frame supporting front and rear wheels, an engine unit mounted to the vehicle body frame and including an engine body and a power transmission case, a straddle type driver's seat, an intake control unit for controlling an air/fuel ratio, and an air-cleaner case for supplying a clean air to the intake control unit. The intake control unit and the air-cleaner case are connected to each other, and the air-cleaner case is disposed above the power transmission case. An engine mounting portion is formed in a frame shape opened such that the engine unit is surrounded from a vertical direction and a longitudinal direction. The engine body, the power transmission case, the intake control unit, and the air-cleaner case are disposed in an arrangement offset from the engine mounting portion in a side view.
    • 一种跨骑式粗跑道车包括支撑前后轮的车身框架,安装在车体框架上的发动机单元,包括发动机主体和动力传动箱,跨骑式驾驶员座椅,进气控制单元 用于控制空燃比;以及空气滤清器壳体,用于向进气控制单元提供清洁空气。 进气控制单元和空气滤清器壳体彼此连接,并且空气滤清器壳体设置在动力传动箱的上方。 发动机安装部形成为使得发动机单元从垂直方向和纵向方向包围的框架形状。 发动机主体,动力传动箱,进气控制单元和空气滤清器壳体在侧视图中设置成偏离发动机安装部分的布置。
    • 8. 发明申请
    • Front structure of all terrain vehicle
    • 所有地形车辆的前部结构
    • US20060006010A1
    • 2006-01-12
    • US11175190
    • 2005-07-07
    • Eiichi NakamuraTakuya Kusaka
    • Eiichi NakamuraTakuya Kusaka
    • B60K11/00
    • F16H57/0415B60K11/08B60Y2200/124B62K5/01F16H9/16F16H57/0489
    • An all terrain vehicle for smoothly introducing an exhaust air from a radiator rearward and improving cooling performance for cooling respective members of the vehicle is provided with a front structure, in which a cooling fan is provided on a rear surface of the radiator so that a central portion of the cooling fan is offset from a center of the radiator toward a side opposite to a side on which the belt transmission is arranged, an exhaust pipe connected to a front portion of the cylinder assembly is provided to extend toward the side on which the belt transmission is arranged so that the exhaust pipe extends downward at a portion above the belt transmission, and the inlet duct is provided on the side on which the exhaust pipe is provided so as to vertically extend along the vehicle body frame provided vertically through a portion below the exhaust pipe.
    • 一种用于从后方平稳地将散热器引入散热器的全地形车辆,并且改善了用于冷却车辆各部件的冷却性能的前部结构,其中在散热器的后表面上设置有冷却风扇, 冷却风扇的一部分偏离散热器的中心朝向与传动带配置的一侧相反的一侧,连接到气缸组件的前部的排气管设置成朝向 带式传送装置被布置成使得排气管在带传动装置上方的部分向下延伸,并且入口管道设置在其上设置有排气管的一侧,以沿垂直方向设置的车身框架垂直延伸穿过部分 排气管下方。
    • 10. 发明授权
    • Breather device of vehicle engine
    • 汽车发动机通气装置
    • US06830041B2
    • 2004-12-14
    • US10625656
    • 2003-07-24
    • Takuya Kusaka
    • Takuya Kusaka
    • F01L1300
    • F02B25/06
    • A breather device of a vehicle engine is arranged so as to shut off an engine intake system from heat of an engine exhaust system and to make effective use of dead space for location. The breather device includes a breather tank arranged independently between the engine intake system and the engine exhaust system on the rear side of a cylinder assembly of the engine above a crankcase thereof; and a plurality of breather pipes connecting the breather tank to the engine and the engine intake system.
    • 车辆发动机的通气装置被布置成关闭发动机进气系统免受发动机排气系统的热量的影响,并有效地利用死区进行定位。 所述通气装置包括在所述发动机进气系统和所述发动机排气系统之间独立地布置的所述发动机舱,所述发动机排气系统在所述发动机的气缸组件在其曲轴箱上方的后侧; 以及将通气罐连接到发动机和发动机进气系统的多个通气管。