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    • 1. 发明授权
    • V-type internal combustion engine
    • V型内燃机
    • US4697557A
    • 1987-10-06
    • US875213
    • 1986-06-17
    • Shinichi TambaNoriyuki Ueki
    • Shinichi TambaNoriyuki Ueki
    • F02B75/22F02D31/00F02F7/00
    • F02B75/22F02D31/00F02F7/006
    • A V-type internal combustion engine in which cylinders each including a cylinder skirt portion projecting into a crankcase are arranged in a V-shape, a governor device is disposed within the crankcase, central axes of the cylinders are offset from each other in an axial direction along a crankshaft supported in the crankcase, and a rotational speed transmission system for transmitting a rotational speed of a governor gear to a governor lever shaft is engages a rearward side of the cylinder skirt portion of a cylinder spaced forward from a rearward most cylinder as viewed among the crankshaft central axis. A single intake manifold is adapted to bridge cylinder heads in a V-bank defined between the cylinders. A carbureter is in fluid communication with the intake manifold. One end of the governor lever shaft is disposed in the V-bank. An intake control for controlling the carbureter in cooperation with one end of the lever shaft is disposed in the vicinity of the carbureter.
    • 一种V形内燃机,其中包括突出到曲轴箱中的气缸裙部的气缸以V形排列,调速器装置设置在曲轴箱内,气缸的中心轴线以轴向彼此偏移 沿着支撑在曲轴箱中的曲轴的方向,以及用于将调速器齿轮的转速传递到调速器杆轴的转速传动系统接合在与最后方气缸隔开的气缸的气缸裙部的后侧, 在曲轴中心轴线之间。 单个进气歧管适于将气缸盖桥接在限定在气缸之间的V形槽中。 化油器与进气歧管流体连通。 调速杠杆轴的一端设置在V形支架中。 用于与杠杆轴的一端配合控制化油器的进气控制器设置在化油器附近。
    • 6. 发明授权
    • Antenna device and wireless communication apparatus
    • 天线装置和无线通信装置
    • US08081128B2
    • 2011-12-20
    • US12614494
    • 2009-11-09
    • Noriyuki Ueki
    • Noriyuki Ueki
    • H01Q9/00
    • H01Q1/48H01Q1/243H01Q1/52H01Q9/0407H01Q9/30H01Q13/08H01Q13/10
    • A multi-resonant antenna device having good VSWR characteristics even in the UWB band, and a wireless communication apparatus including the antenna device are provided. The antenna device includes a substrate, an antenna main body surface-mounted at a corner of the substrate, and slits. The antenna device resonates at two different resonance frequencies. The slits are arranged to bring a VSWR value at a frequency between the two resonance frequencies closer to VSWR values at the two resonance frequencies. The slits include capacitive adjustment slit portions and inductive adjustment slit portions. The slits are provided in an area where the density of a current flowing on ground conductor surfaces is highest. The slits are arranged perpendicularly or substantially perpendicularly to a direction of this current. Specifically, the slits are provided near and parallel or substantially parallel to an open end of the radiating electrode portion. The lengths of the slits are set to one-eighth of a wavelength at a frequency corresponding to the highest VSWR value in the range between the two resonance frequencies.
    • 提供即使在UWB频带中具有良好VSWR特性的多谐振天线装置,也包括天线装置的无线通信装置。 天线装置包括基板,表面安装在基板的角部的天线主体和狭缝。 天线装置以两个不同的谐振频率谐振。 狭缝被布置成使VSWR值在两个谐振频率处的频率处更接近于两个谐振频率处的VSWR值。 狭缝包括电容调节狭缝部分和电感调节狭缝部分。 狭缝设置在流过接地导体表面的电流的密度最高的区域。 这些狭缝垂直于或大致垂直于该电流的方向排列。 具体地,狭缝设置在辐射电极部分的开口端附近并且平行或基本平行。 在两个谐振频率之间的范围内,狭缝的长度被设定为对应于最高VSWR值的频率的波长的八分之一。
    • 7. 发明授权
    • Master side communication apparatus and slave side communication apparatus
    • 主机通信装置和从机侧通信装置
    • US07822159B2
    • 2010-10-26
    • US11568705
    • 2006-03-01
    • Suguru FujitaMasahiro MimuraKazuaki TakahashiYoshinori KuniedaNoriyuki Ueki
    • Suguru FujitaMasahiro MimuraKazuaki TakahashiYoshinori KuniedaNoriyuki Ueki
    • H04L7/00
    • H04L7/0091H04B1/40H04B1/7183H04L25/4902
    • A master side communication apparatus and a slave side communication apparatus wherein the structure of a receiving part of the slave side communication apparatus is simplified to achieve a reduced size, a reduced power consumption and a reduced cost. The master side communication apparatus performs a communication in synchronism with the slave side communication apparatus having no synchronization timing adjusting function. A transport signal generating timing adjusting part of the master side communication apparatus acquires, from the slave side communication apparatus, synchronization signal generation timing information used when the slave side communication apparatus receives the transport signal from the master side communication apparatus. The transport signal generating timing adjusting part varies and adjusts, based on the acquired information, the transmission timing of the signal to be transmitted to the slave side communication apparatus. A transmitting part transmits the transport signal at the adjust transmission timing. The occurrence timing of the transport signal is varied and adjusted until the slave side communication apparatus becomes able to receive the transport signal from the master side communication apparatus.
    • 主侧通信装置和从侧通信装置,其中简化从侧通信装置的接收部分的结构以实现减小的尺寸,降低的功耗和降低的成本。 主机侧通信装置与没有同步定时调整功能的从侧通信装置同步进行通信。 主方通信装置的传输信号产生定时调整部分从从机通信装置获取当从侧通信装置从主机侧通信装置接收传输信号时使用的同步信号产生定时信息。 传输信号产生定时调整部分根据所获取的信息改变和调整要传送到从属通信设备的信号的发送定时。 发送部在调整发送定时发送发送信号。 传输信号的发生定时被改变和调整直到从属通信装置变得能够从主机侧通信装置接收传输信号。
    • 8. 发明申请
    • ANTENNA DEVICE AND WIRELESS COMMUNICATION APPARATUS
    • 天线设备和无线通信设备
    • US20100045552A1
    • 2010-02-25
    • US12614494
    • 2009-11-09
    • Noriyuki Ueki
    • Noriyuki Ueki
    • H01Q5/00H01Q1/38H01Q9/00
    • H01Q1/48H01Q1/243H01Q1/52H01Q9/0407H01Q9/30H01Q13/08H01Q13/10
    • A multi-resonant antenna device having good VSWR characteristics even in the UWB band, and a wireless communication apparatus including the antenna device are provided. The antenna device includes a substrate, an antenna main body surface-mounted at a corner of the substrate, and slits. The antenna device resonates at two different resonance frequencies. The slits are arranged to bring a VSWR value at a frequency between the two resonance frequencies closer to VSWR values at the two resonance frequencies. The slits include capacitive adjustment slit portions and inductive adjustment slit portions. The slits are provided in an area where the density of a current flowing on ground conductor surfaces is highest. The slits are arranged perpendicularly or substantially perpendicularly to a direction of this current. Specifically, the slits are provided near and parallel or substantially parallel to an open end of the radiating electrode portion. The lengths of the slits are set to one-eighth of a wavelength at a frequency corresponding to the highest VSWR value in the range between the two resonance frequencies.
    • 提供即使在UWB频带中具有良好VSWR特性的多谐振天线装置,也包括天线装置的无线通信装置。 天线装置包括基板,表面安装在基板的角部的天线主体和狭缝。 天线装置以两个不同的谐振频率谐振。 狭缝被布置成使VSWR值在两个谐振频率处的频率处更接近于两个谐振频率处的VSWR值。 狭缝包括电容调节狭缝部分和电感调节狭缝部分。 狭缝设置在流过接地导体表面的电流的密度最高的区域。 这些狭缝垂直于或大致垂直于该电流的方向排列。 具体地,狭缝设置在辐射电极部分的开口端附近并且平行或基本平行。 在两个谐振频率之间的范围内,狭缝的长度被设定为对应于最高VSWR值的频率的波长的八分之一。
    • 9. 发明申请
    • ANTENNA AND COMMUNICATION DEVICE HAVING THE SAME
    • 具有该天线和通信设备的天线和通信设备
    • US20090303133A1
    • 2009-12-10
    • US12482742
    • 2009-06-11
    • Noriyuki Ueki
    • Noriyuki Ueki
    • H01Q1/38H01Q9/04
    • H01Q9/0421H01Q1/243H01Q1/38H01Q5/357
    • A plate-like radiation element is arranged above a ground plane with a space from the ground plane. The radiation element 2 resonates at a predetermined low-frequency wavelength λ1 and a predetermined high-frequency wavelength λ2. A feeding portion for being connected to a feed circuit and a pair of short-circuit portions are provided on peripheral edge portions of the radiation element. The feeding portion is provided on one end of the radiation element. The pair of short-circuit portions for being connected to a ground plane are arranged in areas positioned at opposite sides, on both sides of the feeding portion along peripheral edge directions of the radiation element, where the voltages of high-frequency resonance supplied from the feeding portion to the individual short-circuit portions are zero. The short-circuit portions extend toward the ground plane for being connected to the ground plane. At the other end opposite to the feeding portion of the radiation element is an open end. An electrical length from the one end side to the open end of the radiation element is set to one-half of the high-frequency resonant wavelength λ2 of the radiation element.
    • 板状辐射元件布置在接地平面上方,具有距接地平面的空间。 辐射元件2以预定的低频波长λ1和预定的高频波长λ2谐振。 在辐射元件的周边部分上设置有用于连接到馈电电路和一对短路部分的馈电部分。 馈送部分设置在辐射元件的一端。 用于连接到接地平面的一对短路部分布置在沿着辐射元件的周边方向的馈电部分的两侧的相对侧的区域中,其中从该辐射元件提供的高频谐振电压 单个短路部分的馈电部分为零。 短路部分向接地平面延伸以连接到接地平面。 在与辐射元件的馈电部分相对的另一端是开口端。 从辐射元件的一端到开口端的电长度被设定为辐射元件的高频谐振波长λ2的一半。