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    • 1. 发明申请
    • MIXER
    • US20190010911A1
    • 2019-01-10
    • US15750552
    • 2016-08-05
    • IMAGINEERING, Inc.
    • Yuji IkedaSeiji Kanbara
    • F02P23/04H05H1/46H02J50/70H01T13/40
    • To reduce a length in a longitudinal direction of a mixer, and to provide a mixer that is attachable even in a small space for mounting. The mixer comprises an electromagnetic wave input terminal 6 configured to receive the electromagnetic wave from the electromagnetic wave oscillator, a high voltage pulse input terminal 5 provided separately from the electromagnetic wave input terminal 6 and configured to receive the high voltage pulse from the high voltage pulse generator, a high voltage pulse output terminal 50 configured to output the electromagnetic wave and the high voltage pulse to the ignition device, an electromagnetic wave leakage prevention means 3 arranged between the high voltage pulse input terminal 5 and the high voltage pulse output terminal 50 and arranged in an axis similar with both the terminals, an insulator 4 surrounding the electromagnetic wave leakage prevention means 3 and the high voltage pulse output terminal 50, a cylindrical conductive member surrounding a part of the insulator 4, the cylindrical conductive member forming a resonator 2 connected to the electromagnetic wave input terminal 6, an inner conductor member 6a of the electromagnetic wave input terminal 6 is exposed toward an annular space 20 inside the resonator 2, and an impedance matching adjuster 7 is arranged inside the resonator 2.
    • 2. 发明授权
    • Ignition device
    • US10036361B2
    • 2018-07-31
    • US15503187
    • 2015-08-10
    • Imagineering, Inc.
    • Yuji IkedaHidekazu Ohtsubo
    • H05H1/52F02P3/01
    • F02P3/01H01T13/44H05H1/52
    • An ignition device is provided, the ignition device comprises a coaxial structural body comprising an inner conductor 2, an outer conductor 3, and an insulator 4 that insulates both the conductors 2 and 3, which are coaxially provided with one another along an axial direction. A connection terminal 5 is arranged at one axial end side of the coaxial structural body and connecting the inner conductor 2 and the outer conductor 3 to the electromagnetic wave oscillator MW. The inner conductor 2 has a linearly extended part protruding at another axial end side of the coaxial structural body extending outwards from the outer conductor 3 in the axial direction and a spirally extended part continuously extending from the linearly extended part in a reversed direction and in a spiral manner that winds around the linearly extended part of the inner conductor 2 in a predetermined number of turns around the linearly extended part such that the inner conductor 2 forms a resonance structure and the spirally extended part 20 with the resonance structure is obtained. A diameter and a length of the inner conductor 2 that is extended outwards from the outer conductor 3, and the number of turns of the spirally extended part of the inner conductor 2 are determined such that a capacitive reactance XC and an inductive reactance XL of the spirally extended part are substantially equal to each other.
    • 8. 发明申请
    • GAS CONCENTRATION ESTIMATION DEVICE
    • 气体浓度估算装置
    • US20150015881A1
    • 2015-01-15
    • US14369020
    • 2012-12-26
    • IMAGINEERING, Inc.
    • Yuji Ikeda
    • G01N21/68G01N33/00G01N21/67
    • G01N21/68G01N1/2252G01N21/67G01N33/004G01N33/0062G01N2021/8578G01N2201/067
    • The present invention aims at realizing a gas concentration estimation apparatus with versatility wherein the gas concentration estimation apparatus estimates concentration of a target component in an analyte gas by analyzing a light emitted from plasma of the analyte gas. The present invention is directed to a gas concentration estimation apparatus including: a plasma generation device that turns an analyte gas into a plasma state; and an analysis device that analyzes plasma light emitted from the plasma generated by the plasma generation device and estimates concentration of a target component in the analyte gas wherein the analysis device estimates the concentration of the target component based on luminescence intensity of a wavelength component corresponding to luminescence from a predetermined radical within the plasma light, and the predetermined radical is different in atomic structure from the target component and includes an atom or a molecule separated from the target component.
    • 本发明旨在实现具有多功能性的气体浓度估计装置,其中气体浓度估计装置通过分析从分析物气体的等离子体发射的光来估计分析物气体中的目标成分的浓度。 本发明涉及一种气体浓度估计装置,包括:将分析气体转换成等离子体状态的等离子体产生装置; 以及分析装置,其分析由等离子体产生装置产生的等离子体光发射的等离子体光,并估计分析装置中的目标成分的浓度,其中分析装置基于对应于对应于...的波长成分的发光强度来估计目标成分的浓度 在等离子体光中来自预定基团的发光,并且预定基团的原子结构与目标成分不同,并且包括与目标成分分离的原子或分子。
    • 9. 发明授权
    • Plasma device
    • 等离子体装置
    • US08820285B2
    • 2014-09-02
    • US14024976
    • 2013-09-12
    • Imagineering, Inc.
    • Masashi KanekoYuji Ikeda
    • F02P23/00F02B51/04
    • F02P23/04F02P3/01F02P3/02F02P9/007F02P15/10F02P23/045
    • In a plasma device 30 that emits an electromagnetic wave to a combustion chamber 10 of an engine 20 so as to generate electromagnetic wave plasma thereby igniting mixture gas, fuel efficiency for lean burn mixture combustion of an engine 20 is improved. During a flame propagation after the mixture gas is ignited in the combustion chamber, the electromagnetic wave is emitted to the combustion chamber 10 so that electrons in a propagating flame resonate with the electromagnetic wave. The resonance between the electrons in the propagating flame and the electromagnetic wave increases flame propagation speed.
    • 在发动机20的燃烧室10发射电磁波以产生电磁波等离子体等离子体等离子体的等离子体装置30中,能够提高发动机20的稀燃混合燃烧的燃料效率。 在混合气体在燃烧室中点燃之后的火焰传播期间,电磁波被发射到燃烧室10,使得传播的火焰中的电子与电磁波共振。 传播火焰中的电子与电磁波之间的共振增加了火焰的传播速度。