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    • 5. 发明授权
    • Radio wave lens antenna apparatus
    • 无线电波透镜天线装置
    • US07667667B2
    • 2010-02-23
    • US11921414
    • 2005-06-02
    • Koichi KimuraMasatoshi Kuroda
    • Koichi KimuraMasatoshi Kuroda
    • H01Q15/08
    • H01Q15/23H01Q15/08H01Q19/062
    • In a radio wave lens antenna, a lens cover for covering the surface of the lens is stably fixed to the reflector. The antenna has a semispherical Luneberg lens, a semispherical shell-shaped lens cover for covering the surface of the lens, a radio wave reflector, a ring-shaped plate placed along the outer circumference of the lens, a primary feed placed at the focal point of the lens, and a holding part for the primary feed. A flange provided at the opening edge of the lens cover is clamped by the reflector and the plate to fix the lens cover to the reflector, and more preferably, the lens cover is caused to be in contact with the lens, and the lens is pressed also in the radial direction by the plate via the lens cover.
    • 在无线电波透镜天线中,用于覆盖透镜表面的透镜盖稳定地固定到反射器。 天线具有半球形Luneberg透镜,用于覆盖透镜表面的半球形壳形透镜盖,无线电波反射器,沿着透镜的外圆周放置的环形板,放置在焦点处的主馈电 的透镜,以及用于主要进给的保持部件。 设置在透镜盖的开口边缘处的凸缘被反射器和板夹住以将透镜盖固定到反射器,更优选地,透镜盖与透镜接触,并且透镜被按压 也通过透镜盖在板的径向方向上。
    • 6. 发明申请
    • Radio Wave Lens Antenna Apparatus
    • 无线电波透镜天线装置
    • US20090207095A1
    • 2009-08-20
    • US11921414
    • 2005-06-02
    • Koichi KimuraMasatoshi Kuroda
    • Koichi KimuraMasatoshi Kuroda
    • H01Q15/08H01Q19/10H01Q19/06
    • H01Q15/23H01Q15/08H01Q19/062
    • In a radio wave lens antenna, a lens cover for covering the surface of the lens is stably fixed to the reflector. The antenna has a semispherical Luneberg lens, a semispherical shell-shaped lens cover for covering the surface of the lens, a radio wave reflector, a ring-shaped plate placed along the outer circumference of the lens, a primary feed placed at the focal point of the lens, and a holding part for the primary feed. A flange provided at the opening edge of the lens cover is clamped by the reflector and the plate to fix the lens cover to the reflector, and more preferably, the lens cover is caused to be in contact with the lens, and the lens is pressed also in the radial direction by the plate via the lens cover.
    • 在无线电波透镜天线中,用于覆盖透镜表面的透镜盖稳定地固定到反射器。 天线具有半球形Luneberg透镜,用于覆盖透镜表面的半球形壳形透镜盖,无线电波反射器,沿着透镜的外圆周放置的环形板,放置在焦点处的主馈电 的透镜,以及用于主要进给的保持部件。 设置在透镜盖的开口边缘处的凸缘被反射器和板夹住以将透镜盖固定到反射器,更优选地,透镜盖与透镜接触,并且透镜被按压 也通过透镜盖在板的径向方向上。
    • 7. 发明申请
    • Luneberg lens and antenna apparatus using the same
    • Luneberg镜头和使用相同的天线设备
    • US20070035468A1
    • 2007-02-15
    • US10566631
    • 2004-07-29
    • Masatoshi KurodaKoichi Kimura
    • Masatoshi KurodaKoichi Kimura
    • H01Q19/06
    • H01Q15/08H01Q19/104
    • A luneberg lens, which is configured by combining a plurality of lens parts, has a problem on keeping of a combined condition of lens parts and securement of good moisture prevention, and displacement of lens parts not only becomes a cause of cost-up but also has a bad influence on an electric performance, and furthermore, intrusion of moisture and humidity deteriorates an electric performance, and therefore, these problems are solved by a simple and inexpensive method. A lens portion 2, which is configured by combining lens parts of spherical core and spherical shell-like resin foams, is configured by a luneberg lens which is sealed by a synthetic resin film 3 which is formed along a surface of that lens portion 2 and in which a thickness is 100 μm or less and of which own relative dielectric constant is higher than a relative dielectric constant of the outermost layer of the above-mentioned lens portion.
    • 通过组合多个透镜部件构成的Luneberg透镜在保持透镜部件的组合状态并确保良好的防潮性方面存在问题,并且透镜部件的位移不仅成为成本的原因,而且 对电气性能的影响也不良,此外,水分和湿度的侵入使电气性能恶化,因此通过简单且廉价的方法解决了这些问题。 通过组合球形芯和球形壳状树脂泡沫的透镜部分构成的透镜部分2由通过沿着该透镜部分2的表面形成的合成树脂膜3密封的通孔透镜构成, 其厚度为100μm以下,其相对介电常数高于上述透镜部的最外层的相对介电常数。
    • 8. 发明授权
    • Air-fuel ratio control device for internal combustion engine
    • 内燃机空燃比控制装置
    • US09212583B2
    • 2015-12-15
    • US14117440
    • 2011-05-16
    • Takahiko FujiwaraKoichi KimuraMakoto TomimatsuJunichi Suzuki
    • Takahiko FujiwaraKoichi KimuraMakoto TomimatsuJunichi Suzuki
    • F01N3/00F01N3/10F02D41/02F02D41/14F02D41/18
    • F01N3/10F01N3/101F02D41/0295F02D41/10F02D41/1441F02D41/1454F02D41/1456F02D41/18F02D41/187F02D2041/1412F02D2200/501Y02A50/2324Y02T10/22
    • An air-fuel ratio control apparatus for an internal combustion engine according to an embodiment of the invention (the present control apparatus) sets a target air-fuel ratio to a target rich air-fuel ratio when it is determined on the basis of the output value Voxs of a downstream air-fuel ratio sensor 67 that the oxygen adsorption amount of a catalyst 43 tends to be excessive, and sets the target air-fuel ratio to a target lean air-fuel ratio when it is determined on the basis of the output value Voxs that the oxygen adsorption amount of the catalyst 43 tends to be insufficient. Further, the present control apparatus determines whether or not an operation state in which a large amount of nitrogen oxide flows into the catalyst 43 is reached on the basis of “whether a predetermined condition is fulfilled”, and makes the target rich air-fuel ratio obtained when the predetermined condition is fulfilled less than the target rich air-fuel ratio obtained when the predetermined condition is not fulfilled. As a result, the concentration of a reducing agent inside the catalyst 43 can be increased before a large amount of NOx flows into the catalyst 43. Therefore, when a large amount of NOx flows into the catalyst 43, most of the NOx can be eliminated.
    • 根据本发明的实施例的内燃机的空燃比控制装置(本控制装置)在基于输出确定目标空燃比时,将目标空燃比设定为目标浓空燃比 下游空燃比传感器67的值Voxs,催化剂43的氧吸附量倾向于过大,并且当基于该催化剂43确定目标空燃比时,将目标空燃比设定为目标稀燃比 输出值Vox,催化剂43的氧吸附量趋于不足。 此外,本控制装置基于“是否满足预定条件”来确定是否达到大量氮氧化物流入催化剂43的操作状态,并且使目标浓空燃比 当预定条件满足小于当不满足预定条件时获得的目标浓空燃比时获得的。 结果,在大量的NOx流入催化剂43之前,可以增加催化剂43内的还原剂的浓度。因此,当大量的NO x流入催化剂43时,可以消除大部分的NOx 。