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    • 1. 发明授权
    • Position detection system
    • 位置检测系统
    • US09530031B2
    • 2016-12-27
    • US14363571
    • 2011-12-09
    • Takahide TeradaHiroshi ShinodaKazunori Hara
    • Takahide TeradaHiroshi ShinodaKazunori Hara
    • G06K7/10H04W64/00H01Q13/22G01S11/06H01Q1/12H01Q1/24H01Q21/00
    • G06K7/10G01S11/06H01Q1/125H01Q1/246H01Q13/22H01Q21/0043
    • An electromagnetic wave propagation medium 1 extends in the propagation direction of an electromagnetic wave and has an electromagnetic wave propagation space sandwiched between conductors in the direction perpendicular to the electromagnetic wave propagation direction. A base unit 2 and multiple terminals 3 are placed on the electromagnetic wave propagation medium 1. When the position of a terminal 3 is detected, the base unit 2 transmits a position detection signal through the electromagnetic wave propagation medium 1 to the terminal 3. This position detection signal is attenuated more heavily during its propagation through the electromagnetic wave propagation medium 1 than a communication signal for use in normal communication is. The signal strength of the position detection signal drops as it moves away from the base unit 2. Hence the position of each terminal 3 can be detected based on the signal strength of the position detection signal received by each terminal 3.
    • 电磁波传播介质1在电磁波的传播方向上延伸,并且在垂直于电磁波传播方向的方向上具有夹在导体之间的电磁波传播空间。 基本单元2和多个端子3被放置在电磁波传播介质1上。当检测到端子3的位置时,基座单元2通过电磁波传播介质1将位置检测信号发送到端子3.这 位置检测信号在通过电磁波传播介质1的传播过程中比用于正常通信的通信信号衰减更多。 位置检测信号的信号强度随着离开基本单元2而下降。因此,可以基于每个终端3接收到的位置检测信号的信号强度来检测每个终端3的位置。
    • 2. 发明授权
    • Electromagnetic wave propagation path and electromagnetic wave propagation device
    • 电磁波传播路径和电磁波传播装置
    • US09362605B2
    • 2016-06-07
    • US14131543
    • 2011-07-11
    • Hiroshi ShinodaTakahide TeradaKazunori Hara
    • Hiroshi ShinodaTakahide TeradaKazunori Hara
    • H01P5/12H01P3/02H01P5/02
    • H01P3/023H01P5/028H01P5/12
    • An electromagnetic wave propagation device includes multiple planar propagation media each formed by laminating at least one planar conductor and at least one planar dielectric, multiple transceivers for transmitting and receiving information among electronic apparatuses, and a first interface for transmitting and receiving the electromagnetic wave between the transceivers and the planar propagation media. Planar dielectric spacers are provided for isolating the multiple planar propagation media from one another. The planar propagation medium is disposed to have an overlapped part with at least the other of the planar propagation media so that an obverse face of the medium and a reverse face of the other medium are at least partially overlapped with each other. The planar conductor is provided with an electromagnetic wave linking unit at the overlapped part that transmits and receives the electromagnetic wave between the planar propagation media.
    • 电磁波传播装置包括多个平面传播介质,每个平面传播介质通过层叠至少一个平面导体和至少一个平面介质,用于在电子设备之间发送和接收信息的多个收发器,以及用于在电子设备之间发送和接收电磁波的第一接口 收发器和平面传播介质。 提供平面电介质间隔物用于将多个平面传播介质彼此隔离。 平面传播介质设置成与平面传播介质中的至少另一个具有重叠部分,使得介质的正面和另一介质的反面至少部分地彼此重叠。 平面导体在重叠部分设置有电磁波连接单元,其在平面传播介质之间传送和接收电磁波。
    • 3. 发明申请
    • ELECTROMAGNETIC WAVE PROPAGATION MEDIUM
    • 电磁波传播介质
    • US20130229240A1
    • 2013-09-05
    • US13884605
    • 2011-03-14
    • Takahide TeradaHiroshi ShinodaKazunori Hara
    • Takahide TeradaHiroshi ShinodaKazunori Hara
    • H01P5/12
    • H01P3/12H01Q13/22
    • When a wavelength of an electromagnetic wave in an electromagnetic wave propagation space (4) is λ, and n is an integer, in a case where a first conductive layer (2) and a second conductive layer (3) are short-circuited in a first end surface (7b), the more distant an electromagnetic wave output interface (6) is from an electromagnetic wave input interface (5), the closer to a distance of λ/4+n·λ/2 from the first end surface (7b) which is short-circuited the electromagnetic wave output interface is installed, and, in a case where the first conductive layer (2) and the second conductive layer (3) are not short-circuited in the first end surface (7b), the more distant the electromagnetic wave output interface (6) is from the electromagnetic wave input interface (5), the closer to a distance of n·λ/2 from the first end surface (7b) which is not short-circuited the electromagnetic wave output interface is installed.
    • 当电磁波传播空间(4)中的电磁波的波长为λ,n为整数时,在第一导电层(2)和第二导电层(3)在 第一端面(7b),电磁波输出接口(6)离电磁波输入接口(5)越远,距离第一端面(λ)越接近λ/ 4 + n·λ/ 2的距离 7b),其安装有电磁波输出接口,并且在第一导电层(2)和第二导电层(3)在第一端面(7b)中不短路的情况下, 电磁波输出接口(6)距离电磁波输入接口(5)越远离距离不与电磁波短路的第一端面(7b)的距离n·λ/ 2 输出接口安装。
    • 4. 发明申请
    • ELECTROMAGNETIC WAVE PROPAGATION PATH AND ELECTROMAGNETIC WAVE PROPAGATION DEVICE
    • 电磁波传播路径和电磁波传播装置
    • US20140167882A1
    • 2014-06-19
    • US14131543
    • 2011-07-11
    • Hiroshi ShinodaTakahide TeradaKazunori Hara
    • Hiroshi ShinodaTakahide TeradaKazunori Hara
    • H01P5/12
    • H01P3/023H01P5/028H01P5/12
    • An electromagnetic wave propagation device includes multiple planar propagation media each formed by laminating at least one planar conductor and at least one planar dielectric, multiple transceivers for transmitting and receiving information among electronic apparatuses, and a first interface for transmitting and receiving the electromagnetic wave between the transceivers and the planar propagation media. Planar dielectric spacers are provided for isolating the multiple planar propagation media from one another. The planar propagation medium is disposed to have an overlapped part with at least the other of the planar propagation media so that an obverse face of the medium and a reverse face of the other medium are at least partially overlapped with each other. The planar conductor is provided with an electromagnetic wave linking unit at the overlapped part that transmits and receives the electromagnetic wave between the planar propagation media.
    • 电磁波传播装置包括多个平面传播介质,每个平面传播介质通过层叠至少一个平面导体和至少一个平面介质,用于在电子设备之间发送和接收信息的多个收发器,以及用于在电子设备之间发送和接收电磁波的第一接口 收发器和平面传播介质。 提供平面电介质间隔物用于将多个平面传播介质彼此隔离。 平面传播介质设置成与平面传播介质中的至少另一个具有重叠部分,使得介质的正面和另一介质的反面至少部分地彼此重叠。 平面导体在重叠部分设置有电磁波连接单元,其在平面传播介质之间传送和接收电磁波。
    • 5. 发明授权
    • Electromagnetic wave propagation medium
    • 电磁波传播介质
    • US09252473B2
    • 2016-02-02
    • US13884605
    • 2011-03-14
    • Takahide TeradaHiroshi ShinodaKazunori Hara
    • Takahide TeradaHiroshi ShinodaKazunori Hara
    • H01P5/12H01P3/12H01Q13/22
    • H01P3/12H01Q13/22
    • When a wavelength of an electromagnetic wave in an electromagnetic wave propagation space (4) is λ, and n is an integer, in a case where a first conductive layer (2) and a second conductive layer (3) are short-circuited in a first end surface (7b), the more distant an electromagnetic wave output interface (6) is from an electromagnetic wave input interface (5), the closer to a distance of λ/4+n·λ/2 from the first end surface (7b) which is short-circuited the electromagnetic wave output interface is installed, and, in a case where the first conductive layer (2) and the second conductive layer (3) are not short-circuited in the first end surface (7b), the more distant the electromagnetic wave output interface (6) is from the electromagnetic wave input interface (5), the closer to a distance of n·λ/2 from the first end surface (7b) which is not short-circuited the electromagnetic wave output interface is installed.
    • 当电磁波传播空间(4)中的电磁波的波长为λ,n为整数时,在第一导电层(2)和第二导电层(3)在 第一端面(7b),电磁波输出接口(6)离电磁波输入接口(5)越远,距离第一端面(λ)越接近λ/ 4 + n·λ/ 2的距离( 7b),其安装有电磁波输出接口,并且在第一导电层(2)和第二导电层(3)在第一端面(7b)中不短路的情况下, 电磁波输出接口(6)距离电磁波输入接口(5)越远,距离不与电磁波短路的第一端面(7b)的距离越远,n·λ/ 2 输出接口安装。
    • 6. 发明授权
    • Electromagnetic wave propagation apparatus and electromagnetic wave interface
    • 电磁波传播装置和电磁波接口
    • US09209519B2
    • 2015-12-08
    • US13548026
    • 2012-07-12
    • Hiroshi ShinodaTakahide TeradaKazunori Hara
    • Hiroshi ShinodaTakahide TeradaKazunori Hara
    • H01Q9/04H05K1/02
    • H01Q9/0435H05K1/0237
    • An electromagnetic wave propagation apparatus has a planar propagation medium including a planar conductor, a first planar dielectric, a planar mesh conductor, and a second planar dielectric being overlaid on each other in order; at least one electromagnetic wave input port for the planar propagation; a power supply station that supplies the planar propagation medium with an electromagnetic wave via at least one electromagnetic wave input port; and at least one power receiving apparatus for a second planar dielectric of the planar propagation medium that includes an electromagnetic wave interface and a power receiving circuit. A dielectric board has multiple conductor patterns as the electromagnetic wave interface. At least one connection means is between the conductor pattern and the power receiving circuit. At least one short-circuit means between the conductor patterns is at an end of the conductor pattern.
    • 电磁波传播装置具有包括平面导体,第一平面电介质,平面网状导体和第二平面电介质的平面传播介质,它们依次叠置在一起; 用于平面传播的至少一个电磁波输入端口; 电源站,经由至少一个电磁波输入端口向平面传播介质提供电磁波; 以及包括电磁波接口和电力接收电路的平面传播介质的第二平面电介质的至少一个电力接收装置。 电介质板具有作为电磁波接口的多个导体图案。 至少一个连接装置在导体图案和电力接收电路之间。 导体图案之间的至少一个短路装置位于导体图案的末端。
    • 7. 发明申请
    • INSULATED TRANSMISSION MEDIUM AND INSULATED TRANSMISSION APPARATUS
    • 绝缘传输介质和绝缘传输装置
    • US20150008767A1
    • 2015-01-08
    • US14381674
    • 2012-03-30
    • Hiroshi ShinodaTakahide TeradaKazunori Hara
    • Hiroshi ShinodaTakahide TeradaKazunori Hara
    • H02J5/00H02N2/18
    • H02J50/12H01F17/0013H01F38/14H02J17/00H02J50/40H02J50/70
    • Provided is an insulated transmission medium which transmits electromagnetic energy between circuits having different reference potentials and has high insulation reliability. In order to realize the insulated transmission medium with a low loss, a small size, and a low cost, the insulated transmission medium according to the present invention is an insulated transmission medium which transmits the electromagnetic energy between a first circuit having a first reference potential and a second circuit having a second reference potential. The insulated transmission medium includes a first resonator and a second resonator connected to the first circuit and the second circuit, respectively, the first resonator and the second resonator are respectively configured as a first conductor group and a second conductor group using conductors in a dielectric material multilayer substrate including a plurality of dielectric material layers, and the first conductor group and the second conductor group are coated with the dielectric material and are isolated from each other.
    • 提供了一种在具有不同参考电位的电路之间传输电磁能并具有高绝缘可靠性的绝缘传输介质。 为了实现具有低损耗,小尺寸和低成本的绝缘传输介质,根据本发明的绝缘传输介质是绝缘传输介质,其在具有第一参考电位的第一电路之间传输电磁能 以及具有第二参考电位的第二电路。 绝缘传输介质包括分别连接到第一电路和第二电路的第一谐振器和第二谐振器,第一谐振器和第二谐振器分别被配置为第一导体组和使用电介质材料中的导体的第二导体组 包括多个介电材料层的多层基板,并且第一导体组和第二导体组被电介质材料涂覆并彼此隔离。
    • 8. 发明申请
    • Position Detection System
    • 位置检测系统
    • US20140354417A1
    • 2014-12-04
    • US14363571
    • 2011-12-09
    • Takahide TeradaHiroshi ShinodaKazunori Hara
    • Takahide TeradaHiroshi ShinodaKazunori Hara
    • G06K7/10
    • G06K7/10G01S11/06H01Q1/125H01Q1/246H01Q13/22H01Q21/0043
    • An electromagnetic wave propagation medium 1 extends in the propagation direction of an electromagnetic wave and has an electromagnetic wave propagation space sandwiched between conductors in the direction perpendicular to the electromagnetic wave propagation direction. A base unit 2 and multiple terminals 3 are placed on the electromagnetic wave propagation medium 1. When the position of a terminal 3 is detected, the base unit 2 transmits a position detection signal through the electromagnetic wave propagation medium 1 to the terminal 3. This position detection signal is attenuated more heavily during its propagation through the electromagnetic wave propagation medium 1 than a communication signal for use in normal communication is. The signal strength of the position detection signal drops as it moves away from the base unit 2. Hence the position of each terminal 3 can be detected based on the signal strength of the position detection signal received by each terminal 3.
    • 电磁波传播介质1在电磁波的传播方向上延伸,并且在垂直于电磁波传播方向的方向上具有夹在导体之间的电磁波传播空间。 基本单元2和多个端子3被放置在电磁波传播介质1上。当检测到端子3的位置时,基座单元2通过电磁波传播介质1将位置检测信号发送到端子3.这 位置检测信号在通过电磁波传播介质1的传播过程中比用于正常通信的通信信号衰减更多。 位置检测信号的信号强度随着离开基本单元2而下降。因此,可以基于每个终端3接收到的位置检测信号的信号强度来检测每个终端3的位置。