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    • 91. 发明授权
    • Magnet cover caulking method of electric motor
    • 电动机磁铁盖填缝方法
    • US07765674B2
    • 2010-08-03
    • US12074984
    • 2008-03-07
    • Masami NakanoTakayuki Kobayashi
    • Masami NakanoTakayuki Kobayashi
    • H02K15/00
    • H02K15/03Y10T29/49009Y10T29/49012
    • In a magnet cover caulking method of an electric motor, the method achieves caulking and fixation by forming a taper-shaped outer peripheral portion, a diameter of which is reduced toward an outer side in an axial direction, in an outer periphery of a magnet holder, arranging an annular caulking jig in an outer periphery of a rotating shaft, pressing a taper-shaped forming portion a diameter of which is increased toward an outer side in an axial direction, provided in one end side of an inner periphery of the caulking jig to a straight end portion of a magnet cover installed to the outer periphery of the magnet and the magnet holder from the axial direction, and forming the end portion of the magnet cover according to the taper-shaped outer peripheral portion of the magnet holder.
    • 在电动机的磁体覆盖铆接方法中,该方法通过在磁体保持器的外周形成直径减小到轴向外侧的锥形外周部来实现铆接和固定 在旋转轴的外周配置环状的铆接夹具,将形成在所述铆接夹具的内周侧的直径增大的锥形形成部朝向轴向外侧推压 到安装在磁体外周和磁体保持器的磁体盖的直立端部,并且根据磁体保持器的锥形外周部形成磁体盖的端部。
    • 92. 发明申请
    • FAN MOTOR
    • 风扇电动机
    • US20100158713A1
    • 2010-06-24
    • US12304349
    • 2008-09-17
    • Atsushi SuzukiTakayuki KobayashiKazuyuki KamiyaYuuko EnyaTakayuki Hirano
    • Atsushi SuzukiTakayuki KobayashiKazuyuki KamiyaYuuko EnyaTakayuki Hirano
    • F04D29/58
    • F04D25/082F04D29/384F04D29/5853F05D2240/304
    • The present invention provides a fan motor capable of achieving both an improvement in a self cooling function of the fan motor and a reduction in fan noise, and of preventing the occurrence of heat damage, problems, and the like caused by external radiation heat and by self-heating, fan noise, and deterioration in fan performance and in fan efficiency. The fan motor (1) includes: a shroud (2); a motor (3) secured to and supported at the shroud (2); an axial-flow fan (4) connected to a rotation shaft part of the motor (3); and a heat shield panel (5) mounted at the rear side of the motor (3) with a gap being provided therebetween, in which the heat shield panel (5) has a spatula-shaped air guiding part (52) projecting outward in a radial direction at at least one location on an outer circumference portion; and the air guiding part (52) has a width gradually reducing toward an outer side and a fan-rotational-direction leading edge part (53) having an arc shape.
    • 本发明提供一种风扇电动机,其能够实现风扇电动机的自冷却功能的提高和风扇噪音的降低,并且防止由外部辐射热引起的热损坏,问题等的发生,以及由外部辐射热 自热,风扇噪音以及风扇性能和风扇效率的恶化。 风扇马达(1)包括:护罩(2); 固定到所述护罩(2)并支撑在所述护罩(2)上的马达(3); 连接到电机(3)的旋转轴部分的轴流风扇(4); 以及安装在所述电动机(3)的后侧的隔热板(5),其间设置有间隙,所述隔热板(5)具有在其中向外突出的刮铲形空气引导部(52) 在外周部的至少一个位置处的径向方向; 并且空气引导部52具有向外侧逐渐减小的宽度和具有弧形的风扇旋转方向前缘部53。
    • 96. 发明授权
    • Driving method of plasma display panel and plasma display device
    • 等离子显示面板和等离子体显示装置的驱动方法
    • US07573440B2
    • 2009-08-11
    • US11327501
    • 2006-01-09
    • Takashi SasakiTakayuki KobayashiNaoki Itokawa
    • Takashi SasakiTakayuki KobayashiNaoki Itokawa
    • G09G3/28
    • G09G3/2986G09G3/2022G09G2310/0218H01J11/12H01J11/32H01J2211/323
    • In a plasma display device comprising: plural first, second, and third electrodes disposed adjacently and extending in a first direction, the third electrodes being provided between the first and second electrodes for repeating discharges; a dielectric layer covering the electrodes; a first electrode driving circuit for driving the first electrodes; a second electrode driving circuit for driving the second electrodes; and a third electrode driving circuit for driving the third electrodes, grayscale display is performed by a sub-field method, and the third electrodes are set to have a potential approximately the same as that of the first or second electrode at the discharge in the repetitive discharges. In this plasma display device, the third electrode driving circuit makes the third electrode operate as an anode at least once at least in one sub-field from minimum luminance and makes it operate as a cathode in the rest thereof.
    • 一种等离子体显示装置,包括:多个第一,第二和第三电极,其相邻设置并沿第一方向延伸,所述第三电极设置在所述第一和第二电极之间用于重复放电; 覆盖电极的电介质层; 用于驱动第一电极的第一电极驱动电路; 用于驱动第二电极的第二电极驱动电路; 以及用于驱动第三电极的第三电极驱动电路,通过子场方法进行灰度显示,并且将第三电极设置为具有与重复的放电时的第一或第二电极大致相同的电位 放电。 在该等离子体显示装置中,第三电极驱动电路使第三电极作为阳极至少在最小亮度的一个子场中至少起作用一次,并使其在其余部分中作为阴极工作。
    • 99. 发明授权
    • Monitoring system
    • 监视系统
    • US07295109B2
    • 2007-11-13
    • US11134423
    • 2005-05-23
    • Takayuki Kobayashi
    • Takayuki Kobayashi
    • G08B13/00
    • G08B13/1966G08B13/19695G08B13/2491G08B25/007H04B17/318
    • The monitoring system has a monitoring apparatus and an access point that wirelessly communicates with the monitoring apparatus. The monitoring apparatus sends a wireless signal to the access point. The access point generates a Received Signal Strength Indicator of the received wireless signal. The access point checks for an entrance of an intruder between the monitoring apparatus and the access point based on the Received Signal Strength Indicator generated by the access point. The monitoring systems enables accurate detection of an entrance of an intruder using wireless communication technology.
    • 监视系统具有与监视装置无线通信的监视装置和接入点。 监控装置向接入点发送无线信号。 接入点产生接收到的无线信号的接收信号强度指示符。 接入点根据接入点产生的接收信号强度指示,检查监控设备和接入点之间入侵者的入口。 监控系统能够使用无线通信技术对入侵者的入口进行准确的检测。