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    • 2. 发明授权
    • Control of water discharge system by reflected wave detection threshold(s)
    • 通过反射波检测阈值控制排水系统
    • US08612057B2
    • 2013-12-17
    • US12809251
    • 2008-12-17
    • Kensuke MurataMasayuki NagaishiKatsuhisa TsuchiyaShoichi TsuikiMasami TsujitaHiroshi Tsuboi
    • Kensuke MurataMasayuki NagaishiKatsuhisa TsuchiyaShoichi TsuikiMasami TsujitaHiroshi Tsuboi
    • G05D7/00E03C1/05F16K31/02
    • E03C1/05E03C1/057G01S7/415G01S13/50G01S13/88Y10T137/8158
    • A water discharge system capable of preventing a mistaken detection to surely perform the stop of water discharge or continue the start of water discharge is provided. The water discharge system includes: a water discharge unit; a sensor unit configured to obtain information about an object to be detected through a reflected wave of a radiated radio wave; a control unit configured to control the start of water discharge from the water discharge unit based on a detective signal from the sensor unit; and a storage mechanics. The sensor unit is installed so that at least part of a radiated radio wave comes into contact with a discharged water flow discharged from the water discharge unit and receives the reflected wave reflected by the discharged water flow, and the control unit determines a state of the discharged water flow by checking a relationship between a first threshold set larger than amplitude of oscillation around a reference value of the detective signal in a water flow state in which only the start of water discharge from the water discharge unit is performed and amplitude of the detective signal received by the sensor unit.
    • 提供了能够防止错误检测以确定地执行排水停止或继续开始排水的排水系统。 排水系统包括:排水单元; 传感器单元,被配置为通过辐射无线电波的反射波获得关于要检测的对象的信息; 控制单元,被配置为基于来自所述传感器单元的检测信号来控制从所述排水单元开始排水; 和存储机制。 传感器单元被安装成使得辐射无线电波的至少一部分与从排水单元排出的排出水流接触并接收由排出水流反射的反射波,并且控制单元确定 通过检查在仅执行来自排水单元的排水开始的水流状态下的检测信号的基准值周围的振荡振幅周围的第一阈值与检测器的振幅之间的关系, 信号由传感器单元接收。
    • 4. 发明申请
    • WATER DISCHARGE SYSTEM
    • 水排放系统
    • US20110000559A1
    • 2011-01-06
    • US12809251
    • 2008-12-17
    • Kensuke MurataMasayuki NagaishiKatsuhisa TsuchiyaShoichi TsuikiMasami TsujitaHiroshi Tsuboi
    • Kensuke MurataMasayuki NagaishiKatsuhisa TsuchiyaShoichi TsuikiMasami TsujitaHiroshi Tsuboi
    • F16K37/00
    • E03C1/05E03C1/057G01S7/415G01S13/50G01S13/88Y10T137/8158
    • A water discharge system capable of preventing a mistaken detection to surely perform the stop of water discharge or continue the start of water discharge is provided. The water discharge system includes: a water discharge unit; a sensor unit configured to obtain information about an object to be detected through a reflected wave of a radiated radio wave; a control unit configured to control the start of water discharge from the water discharge unit based on a detective signal from the sensor unit; and a storage mechanics. The sensor unit is installed so that at least part of a radiated radio wave comes into contact with a discharged water flow discharged from the water discharge unit and receives the reflected wave reflected by the discharged water flow, and the control unit determines a state of the discharged water flow by checking a relationship between a first threshold set larger than amplitude of oscillation around a reference value of the detective signal in a water flow state in which only the start of water discharge from the water discharge unit is performed and amplitude of the detective signal received by the sensor unit.
    • 提供了能够防止错误检测以确定地执行排水停止或继续开始排水的排水系统。 排水系统包括:排水单元; 传感器单元,被配置为通过辐射无线电波的反射波获得关于要检测的对象的信息; 控制单元,被配置为基于来自所述传感器单元的检测信号来控制从所述排水单元开始排水; 和存储机制。 传感器单元被安装成使得辐射无线电波的至少一部分与从排水单元排出的排出水流接触并接收由排出水流反射的反射波,并且控制单元确定 通过检查在仅执行来自排水单元的排水开始的水流状态下的检测信号的基准值周围的振荡振幅周围的第一阈值与检测器的振幅之间的关系, 信号由传感器单元接收。
    • 5. 发明授权
    • Urinal
    • 小便池
    • US08250680B2
    • 2012-08-28
    • US12172176
    • 2008-07-11
    • Kensuke MurataMasayuki NagaishiTomoyuki AbeHiroshi Tsuboi
    • Kensuke MurataMasayuki NagaishiTomoyuki AbeHiroshi Tsuboi
    • E03D13/00
    • G01V3/12E03D5/105E03D13/00
    • A urinal includes: a urinal body; a high-frequency sensor which radiates a radio beam obliquely passing through an upper surface of the urinal body toward a bowl and receives a reflected wave from an object so as to generate a detection signal; and a valve which discharges or stops flushing water to the urinal body in response to the detection signal. An angle formed between a first plane including the upper surface of the urinal body and a second plane including a radiation surface of an antenna of the high-frequency sensor is in a range of more than 0 degree to less than 90 degree. A cross line where the first plane and the second plane intersect with each other is substantially parallel to a horizontal direction of the urinal body. The radio beam is a linearly-polarized wave. An excitation direction of the radio beam intersects with the cross line. An intensity of the radio beam passing through the urinal body is larger than that of the radio beam reflected by the upper surface.
    • 小便池包括:小便器; 高频传感器,其将倾斜地通过小便器的上表面的无线电束朝向碗体辐射,并从物体接收反射波,以产生检测信号; 以及响应于检测信号而将冲洗水排出或停止到小便器体的阀。 在包括小便器的上表面的第一平面和包括高频传感器的天线的辐射表面的第二平面之间形成的角度在大于0度至小于90度的范围内。 第一平面和第二平面彼此交叉的交叉线基本上平行于小便器的水平方向。 无线电波束是线性偏振波。 无线电波束的激发方向与交叉线相交。 通过小便器的无线电波的强度大于由上表面反射的无线电波束的强度。
    • 6. 发明申请
    • AUTOMATIC FAUCET
    • 自动龙头
    • US20130160202A1
    • 2013-06-27
    • US13820946
    • 2011-09-08
    • Kensuke MurataHiroshi TsuboiShoichi TsuikiYuya Masahira
    • Kensuke MurataHiroshi TsuboiShoichi TsuikiYuya Masahira
    • E03C1/05
    • E03C1/057
    • Provided is an automatic faucet using a radio wave sensor, which is capable of preventing erroneous stop of water spouting, with a simple configuration. The automatic faucet (1) has a radio wave propagation space, a radio wave emitting port (27), and directivity setting device. The directivity setting device is configured to direct a radio wave being emitted from the radio wave emitting port (27), in such a manner that, during a water stopping state, the emitted radio wave lies along a spouting direction (A) along which washing water is to be spouted from a spout port (26), and, during a water spouting state, a part of the radio wave emitted disposed offset in a direction C, with respect to the spout port (26) interferes with a region of a peripheral surface of a stream (W) facing in the direction C.
    • 提供一种使用无线电波传感器的自动水龙头,其能够以简单的结构防止喷水错误停止。 自动水龙头(1)具有无线电波传播空间,无线电波发射端口(27)和指向性设定装置。 指向性设定装置被配置为引导从无线电波发射端口(27)发射的无线电波,使得在停水状态期间,发射的无线电波沿着喷射方向(A)沿着喷射方向(A)沿着喷射方向 水将从喷口(26)喷出,并且在喷水状态期间,相对于喷口(26)偏移设置在方向C上的无线电波的一部分干扰了 流(W)的周向表面朝向方向C.
    • 7. 发明授权
    • Automatic faucet
    • 自动水龙头
    • US08997270B2
    • 2015-04-07
    • US13820946
    • 2011-09-08
    • Kensuke MurataHiroshi TsuboiShoichi TsuikiYuya Masahira
    • Kensuke MurataHiroshi TsuboiShoichi TsuikiYuya Masahira
    • E03C1/05
    • E03C1/057
    • Provided is an automatic faucet using a radio wave sensor, which is capable of preventing erroneous stop of water spouting, with a simple configuration. The automatic faucet (1) has a radio wave propagation space, a radio wave emitting port (27), and directivity setting device. The directivity setting device is configured to direct a radio wave being emitted from the radio wave emitting port (27), in such a manner that, during a water stopping state, the emitted radio wave lies along a spouting direction (A) along which washing water is to be spouted from a spout port (26), and, during a water spouting state, a part of the radio wave emitted disposed offset in a direction C, with respect to the spout port (26) interferes with a region of a peripheral surface of a stream (W) facing in the direction C.
    • 提供一种使用无线电波传感器的自动水龙头,其能够以简单的配置防止喷水错误停止。 自动水龙头(1)具有无线电波传播空间,无线电波发射端口(27)和指向性设定装置。 指向性设定装置被配置为引导从无线电波发射端口(27)发射的无线电波,使得在停水状态期间,发射的无线电波沿着喷射方向(A)沿着喷射方向(A)沿着喷射方向 水将从喷口(26)喷出,并且在喷水状态期间,相对于喷口(26)偏移设置在方向C上的无线电波的一部分干扰了 流(W)的周向表面朝向方向C.
    • 9. 发明授权
    • Microstrip antenna and high frequency sensor using microstrip antenna
    • 微带天线和使用微带天线的高频传感器
    • US07773035B2
    • 2010-08-10
    • US11664292
    • 2005-09-29
    • Kensuke MurataHiroshi TsuboiKengo IwataTomoyuki Abe
    • Kensuke MurataHiroshi TsuboiKengo IwataTomoyuki Abe
    • H01Q1/38
    • H01Q3/24H01Q9/0407H01Q9/0442H01Q19/005H01Q19/28
    • A microstrip antenna has feed element 102 and parasitic elements 104, 106 on the front surface of substrate 1. Microwave electrical power is applied to feed element 102. Parasitic elements 104, 106 are connected via through hole type leads passing through substrate 1, to switches upon the rear surface of substrate 1, respectively. By actuating the switches individually, parasitic elements 104, 106 are individually switched between a grounded state and a float state. The direction of the radio beam emitted from the microstrip antenna is varied by selecting which of parasitic elements 104, 106 is grounded and floated. A microwave signal source connects to feed element 102 via an feed line 108 very much shorter than the wavelength, accordingly the transmission losses being low and the efficiency being excellent.
    • 微带天线在基板1的前表面上具有馈电元件102和寄生元件104,106。微波电力被施加到馈电元件102.寄生元件104,106通过穿过衬底1的通孔型引线连接到开关 分别在基板1的后表面上。 通过单独地驱动开关,寄生元件104,106在接地状态和浮置状态之间单独切换。 通过选择寄生元件104,106中的哪一个接地并漂浮来改变从微带天线发射的无线电波束的方向。 微波信号源通过比波长短得多的馈线108连接到馈电元件102,因此传输损耗低,效率优异。
    • 10. 发明申请
    • Microstrip Antenna
    • 微带天线
    • US20080036662A1
    • 2008-02-14
    • US10593392
    • 2005-03-23
    • Kengo IwataHiroshi TsuboiKensuke MurataToshio KoguroYouichi Murase
    • Kengo IwataHiroshi TsuboiKensuke MurataToshio KoguroYouichi Murase
    • H01Q1/38
    • H01Q9/0407H01Q9/0421H01Q9/0442H01Q21/065
    • A plurality of antenna electrodes 11, 12, 13, 14 on a substrate 1 can be connected to a ground electrode on the substrate 1 via connectors at spots 11A-11C, 12A-12C, 13A-13C, and 14A-14C. Each connector can be opened/closed by a switch; or provided with a impedance varying device. Any one of the antenna electrodes may be connected to the ground electrode by the switch or the impedance varying device. The radio wave beam outputted from this antenna electrode shifts in phase from the radio wave beams outputted from the other antenna electrodes, whereby the direction of the integrated radio wave beam is inclined. Connecting one or another of the spots 11A-11C, 12A-12C, 13A-13C, and 14A-14C to the ground electrode changes the direction and the magnitude of the integrated radio wave beam.
    • 基板1上的多个天线电极11,12,13,14可以通过11-11C,12A-12C,13A-13C的连接器连接到基板1上的接地电极,并且 14 A- 14 C.每个连接器都可以由开关打开/关闭; 或设置有阻抗变化装置。 天线电极中的任何一个可以通过开关或阻抗变化装置连接到接地电极。 从该天线电极输出的无线电波从与其他天线电极输出的无线电波相位移位,由此集成无线电波束的方向倾斜。 将一个或另一个点11A-11C,12A-12C,13A-13C和14A-14C连接到接地电极改变了集成无线电波束的方向和大小。