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    • 2. 发明专利
    • Core for non-contact power supply
    • 核心为非接触式电源
    • JP2012151311A
    • 2012-08-09
    • JP2011009300
    • 2011-01-19
    • Aisin Aw Co LtdSaitama UnivTechnova:Kkアイシン・エィ・ダブリュ株式会社国立大学法人埼玉大学株式会社テクノバ
    • YASUDA TOMIOKISHI HIROYUKIABE SHIGERUSUZUKI AKIRA
    • H01F38/14B60L5/00B60L11/14B60L11/18B60M7/00H01F30/00H02J17/00
    • Y02T10/7005Y02T10/7077Y02T90/122
    • PROBLEM TO BE SOLVED: To provide a core for non-contact power supply capable of achieving high power supply efficiency, high mechanical strength, easy production, and cost reduction.SOLUTION: A core for non-contact power supply used for a power transmission coil or a power reception coil of a non-contact power supply device comprises: a winding core part 81 for winding an electric wire; and magnetic pole core parts 80 for forming magnetic pole parts at the both ends of the winding core part. Heights of the uppermost parts of the ferrite plates 80 disposed on a plane of the side facing a counterpart coil in the magnetic pole core parts are equivalent or higher than that of the outer periphery of the electric wire 50 wound around the winding core part 81, and heights of the ferrite plates disposed on a plane of the side not facing the counterpart coil are lower than that of the outer periphery of the electric wire 50 wound around the winding core part 81. Reduction of a magnetic gap length D2 while holding a mechanical gap length D1 between the coils can enhance a coupling coefficient between the coils, power supply efficiency, and a maximum supply power.
    • 要解决的问题:提供能够实现高电源效率,高机械强度,易于生产和降低成本的非接触电源的核心。 解决方案:用于非接触式电源装置的电力传输线圈或受电线圈的非接触电源用磁芯包括:用于缠绕电线的绕组芯部81; 以及用于在绕组芯部两端形成磁极部的磁极芯部80。 设置在与磁芯部件的对置线圈相对的一侧的平面上的铁氧体板80的最上部的高度等于或高于缠绕在卷绕芯部81上的电线50的外周的高度, 并且设置在不面对配对线圈的一侧的平面上的铁氧体板的高度低于缠绕在卷绕芯部81上的电线50的外周的高度。同时保持机械的磁隙长度D2 线圈之间的间隙长度D1可以增强线圈之间的耦合系数,电源效率和最大供电功率。 版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • Noncontact feeding transformer
    • 非接触式送料变压器
    • JP2013055229A
    • 2013-03-21
    • JP2011192590
    • 2011-09-05
    • Technova:Kk株式会社テクノバSaitama Univ国立大学法人埼玉大学Aisin Aw Co Ltdアイシン・エィ・ダブリュ株式会社
    • YASUDA TOMIOKISHI HIROYUKIABE SHIGERUSUZUKI AKIRA
    • H01F38/14B60L11/18B60M7/00H02J17/00
    • Y02T10/7005
    • PROBLEM TO BE SOLVED: To provide a noncontact feeding transformer which can be made compact and lightweight while ensuring excellent heat dissipation characteristics.SOLUTION: In the noncontact feeding transformer comprising a two-side winding coil where a winding is wound around a wound part between magnetic poles of a core 40, and a housing in which the two-side winding coil is housed, and the housing is attached so that the two-side winding coil thus housed faces other two-side winding coil, the housing includes a resin cover 31 having a space for housing the two-side winding coil, and a fixing plate 32 composed of a nonmagnetic conductive metal material and fixed to the resin cover 31 so as to close the opening thereof. In the noncontact feeding transformer, the fixing plate 32 composed of a nonmagnetic conductive metal material such as aluminum functions as the shield material of magnetic leakage flux, and as a heat dissipation material. Since the heat due to winding resistance loss is transmitted to the fixing plate 32 and dissipated therefrom, temperature rise of the noncontact feeding transformer is limited.
    • 要解决的问题:提供一种非接触式馈电变压器,其可以制造得紧凑和重量轻,同时确保优异的散热特性。 解决方案:在包括绕线缠绕在芯体40的磁极之间的绕组部分和其中容纳有两侧绕组线圈的壳体的双侧绕组线圈的非接触馈电变压器中,并且 壳体被安装成使得这样容纳的两侧绕组线圈面向另外的两侧绕组线圈,壳体包括具有用于容纳两侧绕组线圈的空间的树脂盖31和由非磁性导电构成的固定板32 金属材料,并且固定到树脂盖31上以封闭其开口。 在非接触馈电变压器中,由诸如铝之类的非磁性导电金属材料构成的固定板32用作漏磁通的屏蔽材料,并用作散热材料。 由于由于绕组电阻损耗引起的热量传递到固定板32并从其散发,所以非接触式馈电变压器的温度上升受到限制。 版权所有(C)2013,JPO&INPIT
    • 5. 发明专利
    • Contactless current feeding coil device
    • 无接触电流馈线线圈器件
    • JP2012204469A
    • 2012-10-22
    • JP2011065899
    • 2011-03-24
    • Technova:KkSaitama UnivAisin Aw Co Ltdアイシン・エィ・ダブリュ株式会社国立大学法人埼玉大学株式会社テクノバ
    • YASUDA TOMIOKISHI HIROYUKIABE SHIGERUSUZUKI AKIRA
    • H01F38/14H02J17/00
    • Y02T10/7005Y02T10/7077
    • PROBLEM TO BE SOLVED: To provide a contactless current feeding coil device in which a lead out distance of a lead wire of a coil winding can be shortened without impairing magnetic shielding effect of a magnetic shielding plate.SOLUTION: The contactless current feeding coil device includes a coil body having an H-shaped core 301, a resin case body 101 for accommodating the coil body, and a non-magnetic conductive plate 200 for magnetic shielding and to which the case body is fixed. The case body 101 has a case through hole 103 arranged adjacent to a central line bisecting a gap between parallel magnetic pole sections 302 and 303 of the coil body. The non-magnetic conductive plate 200 has a communication through hole 201 overlapping the case through hole 103. A lead wire of wiring wound around the coil body is lead out while being inserted and passed through the case through hole 103 and communication through hole 201. Leakage magnetic flux distribution of the coil having the H-shaped core is lower at an intermediate portion between both the magnetic poles. Consequently, even though through holes for passing the lead wire are formed in this intermediate portion, the magnetic shielding property of the non-magnetic conductive plate is not impaired.
    • 解决的问题:提供一种非接触电流馈送线圈装置,其中可以缩短线圈绕组的引线的引出距离,而不会损害磁屏蔽板的磁屏蔽效果。 解决方案:非接触电流馈送线圈装置包括具有H形芯301的线圈体,用于容纳线圈体的树脂壳体101和用于磁屏蔽的非磁性导电板200,壳体 身体固定。 壳体101具有与将线圈体的平行磁极部302,303之间的间隔平分的中心线相邻配置的壳体贯通孔103。 非磁性导电板200具有与壳体通孔103重叠的连通通孔201.缠绕在线圈体上的布线的引线被插入并通过壳体通孔103和连通孔201。 具有H形芯的线圈的漏磁通分布在两个磁极之间的中间部分处较低。 因此,即使在该中间部形成有通过导线的通孔,也不会妨碍非磁性导电板的磁屏蔽性。 版权所有(C)2013,JPO&INPIT
    • 8. 发明专利
    • Power supply device
    • 电源设备
    • JP2012130173A
    • 2012-07-05
    • JP2010280117
    • 2010-12-16
    • Aisin Aw Co LtdTechnova:Kkアイシン・エィ・ダブリュ株式会社株式会社テクノバ
    • SUZUKI AKIRAOSHIMA ATSUYAYAMANOUCHI RYOICHIYASUDA TOMIOIDA KAZUHIKO
    • H02J17/00B60L5/00B60L11/18B60M7/00H01M10/44H02J7/00
    • Y02T10/7011Y02T10/7241Y02T90/122
    • PROBLEM TO BE SOLVED: To provide a resonance type power supply device for non-contact charge which can suppress decline in charge efficiency without increasing the size, when a relative position between a primary coil and a secondary coil is deviated from an appropriate position.SOLUTION: A resonance type power supply device for non-contact charge includes: a primary side resonance circuit including a primary coil to which AC power is supplied to generate a magnetic field; current detection means detecting a primary side current of the primary side resonance circuit; voltage detection means detecting a primary side voltage of the primary side resonance circuit; power factor calculation means calculating a power factor based on the primary side current and primary side voltage; and characteristic adjusting means comparing the power factor with a threshold value corresponding to target efficiency and adjusting characteristics of the primary resonance circuit to increase the power factor when the power factor is below the threshold value.
    • 要解决的问题:为了提供一种用于非接触电荷的谐振型电源装置,其可以在不增加尺寸的情况下抑制充电效率的下降,当初级线圈和次级线圈之间的相对位置偏离适当的 位置。 解决方案:用于非接触电荷的谐振型电源装置包括:初级侧谐振电路,包括提供AC电力以产生磁场的初级线圈; 电流检测装置,检测一次侧谐振电路的初级侧电流; 电压检测装置,用于检测初级侧谐振电路的初级侧电压; 功率因数计算意味着基于初级侧电流和初级侧电压来计算功率因数; 以及特性调整装置,其将功率因数与对应于目标效率的阈值进行比较,并调整主谐振电路的特性,以在功率因数低于阈值时增加功率因数。 版权所有(C)2012,JPO&INPIT
    • 10. 发明专利
    • Control device for transmission for vehicle
    • 用于车辆变速器的控制装置
    • JP2004270891A
    • 2004-09-30
    • JP2003065718
    • 2003-03-11
    • Aisin Aw Co Ltdアイシン・エィ・ダブリュ株式会社
    • YAMASHITA MITSUGISUZUKI AKIRAIKEYAMA TOMOAKI
    • F16H3/089F16H3/44F16H61/02
    • PROBLEM TO BE SOLVED: To secure durability in a synchronizing mechanism in a transmission mechanism.
      SOLUTION: A transmission for a vehicle is provided with a transmission mechanism M provided with a first shaft 1, a second shaft 2, and an output shaft 3 having gears 14, 18; 12, 16 forming pairs with gears 13 and 17 on the first shaft and gears 11 and 15 on the second shaft, so that one side gears of the pairs are constantly connected to the shafts, while the other side gears are selectively connectable to the shafts through a first and a second dog clutches 31 and 32, and a C1 clutch and a C2 clutch to input power to the first shaft and the second shaft. The control device comprises a tie-up synchronizing means to keep the dog clutch 31 stand-by at a neutral position while engaging the C2 clutch for little time only in transmitting power by engagement of the C1 clutch and connection of one pair of gears by the dog clutch 32 to the shaft while connecting the other pair of gears to the dog clutch 31 to the shaft. Rotation difference between the other pair of gears and the second shaft when the dog clutch 31 is engaged can thus be eliminated in short time, thereby durability of the synchronizing mechanism is secured.
      COPYRIGHT: (C)2004,JPO&NCIPI
    • 要解决的问题:为了确保传动机构中的同步机构的耐久性。 解决方案:一种用于车辆的变速器设置有具有第一轴1,第二轴2和具有齿轮14,18的输出轴3的变速机构M. 12,16在第一轴上形成有齿轮13和17以及第二轴上的齿轮11和15,使得成对的一个侧齿轮恒定地连接到轴,而其它侧齿轮可选择性地连接到轴 通过第一和第二爪离合器31和32,以及C1离合器和C2离合器,以向第一轴和第二轴输入动力。 控制装置包括一个联合同步装置,用于将爪式离合器31保持在中立位置,同时仅通过C1离合器的接合和一对齿轮的连接而接合C2离合器几小时才能传递动力 将离合器32连接到轴上,同时将另一对齿轮与狗离合器31连接到轴。 因此可以在短时间内消除另一对齿轮与第二轴之间的旋转差,从而确保同步机构的耐久性。 版权所有(C)2004,JPO&NCIPI