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    • 73. 发明授权
    • Magnetic read head having a non-magnetic electrode layer and a magnetic read write system
    • 具有非磁性电极层和磁读写系统的磁读头
    • US08139324B2
    • 2012-03-20
    • US11984377
    • 2007-11-16
    • Hiromasa TakahashiMasaki Yamada
    • Hiromasa TakahashiMasaki Yamada
    • G11B5/39
    • G11B5/3903G11B5/398Y10T428/11
    • To provide a magnetic head that is suited for high recording density magnetic read and write, and has little noise. A magnetic pinned layer is formed on a non-magnetic electrode layer via a first insulating layer, and a magnetic free layer is formed on a medium-side plane of the non-magnetic electrode layer via a second insulating layer. A circuit for flowing current between the non-magnetic electrode layer and the magnetic pinned layer via the first insulating layer, and a circuit for measuring voltage between the non-magnetic electrode layer and the magnetic free layer are connected to the magnetic free layer. The medium-side plane on which the magnetic free layer is formed may be a plane substantially parallel to the surface of the medium, or may be a plane tilted from the surface of the medium.
    • 提供适合高记录密度磁读写的磁头,噪音小。 经由第一绝缘层在非磁性电极层上形成磁性被钉扎层,经由第二绝缘层在非磁性电极层的中间侧平面上形成无磁性层。 用于经由第一绝缘层在非磁性电极层和磁性被钉扎层之间流动电流的电路和用于测量非磁性电极层和无磁性层之间的电压的电路连接到无磁性层。 形成有磁性层的中间平面可以是基本上平行于介质表面的平面,也可以是从介质表面倾斜的平面。
    • 78. 发明授权
    • Semiconductor device and fabrication method for the same
    • 半导体器件及其制造方法相同
    • US07671472B2
    • 2010-03-02
    • US11274477
    • 2005-11-16
    • Masaki Yamada
    • Masaki Yamada
    • H01L29/40
    • H01L24/02H01L23/5258H01L23/53238H01L2924/01004H01L2924/01005H01L2924/01006H01L2924/01013H01L2924/01014H01L2924/01015H01L2924/01019H01L2924/01022H01L2924/01029H01L2924/01033H01L2924/01073H01L2924/01074H01L2924/01078H01L2924/04941H01L2924/04953
    • A semiconductor device includes a first interlayer insulating film formed on a semiconductor substrate; a second interlayer insulating film formed on the first interlayer film and including a plurality of grooves; a first barrier metal formed on inner surfaces of the grooves; a first interconnect part and a first bonding electrode part including a copper film formed on the first barrier metal; a second barrier metal formed on the first interconnect part and the first bonding electrode part; a second interconnect part including a metal film formed on the first interconnect part via the second barrier metal; a second bonding electrode part including a metal film formed on the first bonding electrode part via the second barrier metal; and a third interlayer insulating film formed on the second interlayer insulating film, the second interconnect part, and the second bonding electrode part, and including an opening that allows exposure of the surface of the second bonding electrode part.
    • 半导体器件包括形成在半导体衬底上的第一层间绝缘膜; 形成在所述第一层间膜上并且包括多个槽的第二层间绝缘膜; 形成在所述槽的内表面上的第一阻挡金属; 第一互连部分和包括形成在第一阻挡金属上的铜膜的第一接合电极部分; 形成在所述第一互连部分和所述第一接合电极部分上的第二阻挡金属; 第二互连部件,包括经由所述第二阻挡金属形成在所述第一互连部件上的金属膜; 第二接合电极部分,包括通过第二阻挡金属形成在第一接合电极部分上的金属膜; 以及形成在所述第二层间绝缘膜,所述第二互连部和所述第二接合电极部上的第三层间绝缘膜,并且包括允许所述第二接合电极部的表面露出的开口。
    • 80. 发明授权
    • Power conversion apparatus
    • 电力转换装置
    • US07602626B2
    • 2009-10-13
    • US11816029
    • 2006-02-21
    • Akihiko IwataMakoto SetoMasaki YamadaShigeki Harada
    • Akihiko IwataMakoto SetoMasaki YamadaShigeki Harada
    • H02M7/00
    • H02M7/53871H02M7/49H02M2001/0077Y10T307/685
    • In a power conversion apparatus that boosts a solar light voltage, converts it to AC and supplies AC power to a load or system, a second inverter is connected in series to one of two terminals on the AC side of a first inverter that uses, as its DC source, a DC voltage boosted from a solar light voltage by a chopper circuit. A third inverter is connected in series to the other terminal. Then, output voltages of the second and third inverters are controlled to be equal, and an output voltage is provided by using the sum of the generated voltages of the first, second, and third inverters. Thus, a mid-point potential of the DC power source is made equivalent to an intermediate potential of the output voltage of the power conversion apparatus, that is, the mid-point potential (ground potential) of a system.
    • 在升压太阳光电压的电力转换装置中,将其转换为交流电并向负载或系统提供AC电力,第二逆变器串联连接到第一逆变器的AC侧的两个端子中的一个, 其直流电源,通过斩波电路从太阳光电压提升的直流电压。 第三个逆变器串联连接到另一个端子。 然后,将第二和第三变换器的输出电压控制为相等,并且通过使用第一,第二和第三逆变器的发电电压之和来提供输出电压。 因此,直流电源的中点电位等于电力转换装置的输出电压的中间电位,即系统的中点电位(地电位)。