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    • 1. 发明授权
    • Deflection yoke
    • 偏转轭
    • US5453658A
    • 1995-09-26
    • US193993
    • 1994-02-09
    • Hiroaki NishinoNobuaki MiyakeYuji NakaharaYutaka Ono
    • Hiroaki NishinoNobuaki MiyakeYuji NakaharaYutaka Ono
    • H01J29/76H01J29/70
    • H01J29/762H01J2209/2363H01J2229/7033
    • A deflection yoke includes a hollow funnel-shaped tapered piece, a first set of winding hooks provided on a small-aperture portion of the tapered piece, a second set of winding hooks provided on a large-aperture portion of the tapered piece, and a deflection coil including first through n-th winding bundles. The first winding bundle includes a bundle of conductor wound onto a center winding hook at the center of the first set of winding hooks and onto the second winding hooks. The second winding bundle includes a bundle of conductor wound onto the center winding hook, the winding hooks adjacent thereto on either side, and onto the second winding hooks. The third and subsequent winding bundles include bundles of conductors wound onto the center winding hook, a plurality of winding hooks adjacent thereto on either side, and onto the second winding hooks. The first through n-th winding bundles are wound onto the first set of winding hooks in a same direction, and aligned on the first set of winding hooks. The first through n-th winding bundles are arranged in an order such that the first winding bundle is closest to an end of the small-aperture portion of the tapered piece, and the n-th bundle is farthest from the end of the small-aperture portion of the tapered piece.
    • 偏转线圈包括中空的漏斗形锥形件,设置在锥形件的小孔部上的第一组绕线钩,设置在锥形件的大开口部上的第二组绕线钩, 包括第一至第n绕组的偏转线圈。 第一绕组束包括缠绕在第一组绕线钩的中心处的中心绕线钩上的导体束并且到第二绕线钩上。 第二绕组包括卷绕在中心卷绕钩上的导体束,在任一侧相邻的绕组钩和第二绕组钩。 第三和随后的绕组包括卷绕在中心绕线钩上的导体束,在任一侧相邻的多个绕线钩,并且到第二绕线钩上。 第一至第n绕组束以相同的方向卷绕到第一组绕线钩上,并在第一组绕线钩上对准。 第一至第n绕组束的排列顺序使得第一绕组束最靠近锥形件的小孔部分的端部,并且第n束从小型端部的端部离开, 锥形片的开口部分。
    • 2. 发明授权
    • Exhaust gas purifying apparatus for internal combustion engine
    • 内燃机用废气净化装置
    • US08333061B2
    • 2012-12-18
    • US12239171
    • 2008-09-26
    • Daisuke SatoHidetaka MakiJun IidaEisaku GoshoHiroaki Nishino
    • Daisuke SatoHidetaka MakiJun IidaEisaku GoshoHiroaki Nishino
    • F01N3/00F02B27/04
    • F01N11/002F01N2550/04F01N2560/08Y02T10/47
    • An exhaust gas purifying apparatus for an internal combustion engine, including a particulate filter provided in an exhaust passage of the engine; a pressure difference sensor for detecting a pressure difference between upstream and downstream side pressures of the particulate filter; an upstream side passage, which connects the pressure difference sensor and an upstream side with respect to the particulate filter of the exhaust passage; and a downstream side passage, which connects the pressure difference sensor and a downstream side with respect to the particulate filter of the exhaust passage. An exhaust gas flow rate is calculated according to an operating condition of the engine. A characteristic of change in the pressure difference, which is detected by the pressure difference detector and corresponds to a change in the exhaust gas flow rate, is detected. An abnormality of the downstream side passage is determined based on the characteristic of change in the pressure difference.
    • 一种用于内燃机的废气净化装置,包括设置在发动机的排气通道中的颗粒过滤器; 用于检测微粒过滤器的上游侧压力和下游侧压力之间的压力差的压力差传感器; 上游侧通道,其连接压力差传感器和相对于排气通道的微粒过滤器的上游侧; 以及将压差传感器和下游侧相对于排气通路的微粒过滤器连接的下游侧通路。 根据发动机的运转状况来计算废气流量。 检测由压差检测器检测出的并对应于废气流量变化的压力差变化的特征。 基于压力差的变化的特性确定下游侧通路的异常。
    • 5. 发明申请
    • EXHAUST GAS PURIFYING APPARATUS FOR INTERNAL COMBUSTION ENGINE
    • 用于内燃机的排气净化装置
    • US20090084097A1
    • 2009-04-02
    • US12239171
    • 2008-09-26
    • Daisuke SATOHidetaka MAKIJun IIDAEisaku GOSHOHiroaki NISHINO
    • Daisuke SATOHidetaka MAKIJun IIDAEisaku GOSHOHiroaki NISHINO
    • F01N3/021F01N11/00
    • F01N11/002F01N2550/04F01N2560/08Y02T10/47
    • An exhaust gas purifying apparatus for an internal combustion engine, including a particulate filter provided in an exhaust passage of the engine; a pressure difference sensor for detecting a pressure difference between upstream and downstream side pressures of the particulate filter; an upstream side passage, which connects the pressure difference sensor and an upstream side with respect to the particulate filter of the exhaust passage; and a downstream side passage, which connects the pressure difference sensor and a downstream side with respect to the particulate filter of the exhaust passage. An exhaust gas flow rate is calculated according to an operating condition of the engine. A characteristic of change in the pressure difference, which is detected by the pressure difference detector and corresponds to a change in the exhaust gas flow rate, is detected. An abnormality of the downstream side passage is determined based on the characteristic of change in the pressure difference.
    • 一种用于内燃机的废气净化装置,包括设置在发动机的排气通道中的颗粒过滤器; 用于检测微粒过滤器的上游侧压力和下游侧压力之间的压力差的压力差传感器; 上游侧通道,其连接压力差传感器和相对于排气通道的微粒过滤器的上游侧; 以及将压差传感器和下游侧相对于排气通路的微粒过滤器连接的下游侧通路。 根据发动机的运转状况来计算废气流量。 检测由压差检测器检测出的并对应于废气流量变化的压力差变化的特征。 基于压力差的变化的特性确定下游侧通路的异常。
    • 8. 发明授权
    • Image distortion correcting device
    • 图像失真校正装置
    • US06373360B1
    • 2002-04-16
    • US09702853
    • 2000-11-01
    • Yoshinori MiyamotoHironobu YasuiAkinori HeishiAkira IshimoriHiroaki Nishino
    • Yoshinori MiyamotoHironobu YasuiAkinori HeishiAkira IshimoriHiroaki Nishino
    • G06G104
    • H01J29/705H01J2229/5687
    • An image distortion correcting device with reduced cost and reduced consumption power is provided. Horizontal correction coils (L1) and (L2) are wound around partial cores (4a) and (4b). The two horizontal correction coils (L1) and (L2) are wound in such winding directions that they produce magnetic fields in opposite directions. A bobbin (5) having an insulating property covers the partial cores (4a) and (4b) and magnets (2) and (3) in the winding direction of the horizontal correction coils (L1) and (L2), and a vertical correction coil (L3) is wound on the bobbin (5) around the partial cores (4a) and (4b) along the windings of the horizontal correction coils (L1) and (L2). That is to say, the vertical correction coil (L3) is wound over the horizontal correction coils (L1) and (L2) along the periphery of their windings with the bobbin (5) interposed therebetween. This vertical correction coil (L3) is wound in such a direction that it produces a magnetic field directed to cancel the bias magnetic field produced by the magnets (2) and (3).
    • 提供了一种降低成本和降低功耗的图像失真校正装置。 水平校正线圈(L1)和(L2)缠绕在部分芯(4a)和(4b)上。 两个水平校正线圈(L1)和(L2)以这样的缠绕方向缠绕,使得它们产生相反方向的磁场。 具有绝缘性的线轴(5)在水平校正线圈(L1)和(L2)的卷绕方向上覆盖部分铁心(4a)和(4b)以及磁体(2)和(3) 绕线圈(L3)沿着水平校正线圈(L1)和(L2)的绕组围绕部分磁芯(4a)和(4b)卷绕在绕线筒(5)上。 也就是说,垂直校正线圈(L3)绕线圈(5)插入其绕组的周围,沿水平校正线圈(L1)和(L2)缠绕。 该垂直校正线圈(L3)以这样的方向缠绕,以产生用于抵消由磁体(2)和(3)产生的偏置磁场的磁场。
    • 9. 发明授权
    • Image distortion correction circuit
    • 图像失真校正电路
    • US06291948B1
    • 2001-09-18
    • US09694810
    • 2000-10-24
    • Hironobu YasuiAkinori HeishiYoshinori MiyamotoAkira IshimoriHiroaki Nishino
    • Hironobu YasuiAkinori HeishiYoshinori MiyamotoAkira IshimoriHiroaki Nishino
    • G09G128
    • H04N3/237H01J29/705H01J2229/5687
    • An image distortion correction circuit is provided in which a horizontal deflection current (IH) flows through horizontal correction coils (L1, L2) and a vertical deflection current (IV) flows through either of vertical correction coils (L3, L4). The vertical correction coils (L3, L4) and the horizontal correction coils (L1, L2) are wound on the same core (4). A pair of magnets (2, 3) on opposite ends of the core (4) apply a biased magnetic field from the north pole toward the south pole. The anode of a diode (D1), the cathode of a diode (D2) and a first end of a resistor (R1) are connected to an intermediate terminal (P11) through which the vertical deflection current (IV) flows. A first end of the vertical correction coil (L3) is connected to the cathode of the diode (D1). A second end of the resistor (R1) and a terminal (P4) are connected to a second end of the vertical correction coil (L3). A first end of the vertical correction coil (L4) is connected to the terminal (P4), and a second end of the vertical correction coil (L4) is connected to the anode of the diode (D2). The image distortion correction circuit minimizes the degradation of vertical deflection sensitivity to perform an intermediate pin distortion correction.
    • 提供一种图像失真校正电路,其中水平偏转电流(IH)流过水平校正线圈(L1,L2),垂直偏转电流(IV)流过垂直校正线圈(L3,L4)。 垂直校正线圈(L3,L4)和水平校正线圈(L1,L2)缠绕在相同的芯(4)上。 在核心(4)的相对端上的一对磁体(2,3)从北极向南极施加偏置的磁场。 二极管(D1)的阳极,二极管(D2)的阴极和电阻器(R1)的第一端连接到垂直偏转电流(IV)流过的中间端子(P11)。 垂直校正线圈(L3)的第一端连接到二极管(D1)的阴极。 电阻器(R1)的第二端和端子(P4)连接到垂直校正线圈(L3)的第二端。 垂直校正线圈(L4)的第一端连接到端子(P4),垂直校正线圈(L4)的第二端连接到二极管(D2)的阳极。 图像失真校正电路使垂直偏转灵敏度的劣化最小化,从而执行中间针失真校正。