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    • 1. 发明申请
    • Switching circuit
    • 开关电路
    • US20060049810A1
    • 2006-03-09
    • US10541385
    • 2004-01-07
    • Kenichi KubotaMasaki OhshimaYukihiro NozakiHiroyuki Haga
    • Kenichi KubotaMasaki OhshimaYukihiro NozakiHiroyuki Haga
    • G05F1/10
    • H03K17/0822
    • The present invention provides a switching circuit comprising a current detecting circuit that detects current waveform of a main switch in real time waveform and outputs it in low impedance. The switching circuit comprises the current detecting circuit having the main switch (11), of which on-voltage shows resistance characteristics, wherein a gate terminal is connected to a driving circuit (4) and further either terminal of drain or source thereof is connected to a fixed potential (3) and the other terminal thereof is connected to a load circuit (2) respectively, a first resistance element (21), of which resistance value is higher than on-resistance of the main switch connected to the fixed potential (3), a subsidiary switch (12), a source terminal thereof is connected to the first resistance element (21), an amplifier (6) that amplifies comparatively voltage generated in the first resistance element (21) and outputs to a gate terminal of the subsidiary switch (12) and the second resistance element (22) that generates voltage by amplifying on-current of the main switch (11) by connecting to the drain terminal of the subsidiary switch (11).
    • 本发明提供了一种开关电路,其包括检测电流波形的电流检测电路,并以低阻抗输出。 开关电路包括具有主开关(11)的电流检测电路,其中导通电压显示电阻特性,其中栅极端子连接到驱动电路(4),并且其漏极或源极的任一端子连接到 固定电位(3),其另一端分别连接到负载电路(2),电阻值高于与固定电位相连的主开关的导通电阻的第一电阻元件(21) 3),辅助开关(12),其源极端子连接到第一电阻元件(21),放大器(6),其放大在第一电阻元件(21)中产生的相对电压,并输出到栅极端子 辅助开关(12)和第二电阻元件(22),通过连接到副开关(11)的漏极端子,通过放大主开关(11)的导通电流来产生电压。
    • 2. 发明授权
    • Switching circuit
    • 开关电路
    • US07221208B2
    • 2007-05-22
    • US10541385
    • 2004-01-07
    • Kenichi KubotaMasaki OhshimaYukihiro NozakiHiroyuki HagaMasanori Hayashi
    • Kenichi KubotaMasaki OhshimaYukihiro NozakiHiroyuki HagaMasanori Hayashi
    • H03K17/687
    • H03K17/0822
    • The present invention provides a switching circuit comprising a current detecting circuit that detects current waveform of a main switch in real time waveform and outputs it in low impedance. The switching circuit comprises the current detecting circuit having the main switch (11), of which on-voltage shows resistance characteristics, wherein a gate terminal is connected to a driving circuit (4) and further either terminal of drain or source thereof is connected to a fixed potential (3) and the other terminal thereof is connected to a load circuit (2) respectively, a first resistance element (21), of which resistance value is higher than on-resistance of the main switch connected to the fixed potential (3), a subsidiary switch (12), a source terminal thereof is connected to the first resistance element (21), an amplifier (6) that amplifies comparatively voltage generated in the first resistance element (21) and outputs to a gate terminal of the subsidiary switch (12) and the second resistance element (22) that generates voltage by amplifying on-current of the main switch (11) by connecting to the drain terminal of the subsidiary switch (11).
    • 本发明提供了一种开关电路,其包括检测电流波形的电流检测电路,并以低阻抗输出。 开关电路包括具有主开关(11)的电流检测电路,其中导通电压显示电阻特性,其中栅极端子连接到驱动电路(4),并且其漏极或源极的任一端子连接到 固定电位(3),其另一端分别连接到负载电路(2),电阻值高于与固定电位相连的主开关的导通电阻的第一电阻元件(21) 3),辅助开关(12),其源极端子连接到第一电阻元件(21),放大器(6),其放大在第一电阻元件(21)中产生的相对电压,并输出到栅极端子 辅助开关(12)和第二电阻元件(22),通过连接到副开关(11)的漏极端子,通过放大主开关(11)的导通电流来产生电压。
    • 3. 发明申请
    • METHOD OF MANUFACTURING MAGENTIC BODY
    • 制造磁性体的方法
    • US20100158743A1
    • 2010-06-24
    • US12665659
    • 2008-06-27
    • Shichio FunakoshiMasaki OhshimaKatsuya IkedaMan Ho Song
    • Shichio FunakoshiMasaki OhshimaKatsuya IkedaMan Ho Song
    • B22F7/04B22F3/02
    • H01F41/0246H01F17/04H01F27/255H01F2017/048H05K1/0373H05K1/165H05K3/103H05K3/20H05K2201/0215H05K2201/083H05K2201/09118H05K2201/10265H05K2201/10287
    • A method of manufacturing a magnetic body in which insulating magnetic powder particles are stacked and press-molded in a molding space, and wiring is formed on a surface of the insulating magnetic powder particles solidified by press molding is provided according to the present invention. The method includes: a first step S10 of preparing a wiring plate which includes a sheet-shaped base plate and the wiring which is formed on the base plate and is removable from the base plate; a second step S20 of stacking the insulating magnetic powder particles in the molding space, arranging the wiring plate on a surface of the insulating magnetic powder particles in a state that the wiring faces the surface of the insulating magnetic powder particles in an opposed manner, and press-molding the insulating magnetic powder particles and the wiring plate; and a third step S30 of removing the base plate from the surface of the solidified insulating magnetic powder particles while leaving the wiring on the insulating magnetic powder particles in this order. According to the method of manufacturing a magnetic body of the present invention, it is possible to prevent the corrosion of the insulating magnetic powder particles thus realizing the manufacture of a highly reliable magnetic body.
    • 根据本发明,提供一种制造磁性体的方法,其中绝缘磁性粉末颗粒在模制空间中堆叠并压模,并且通过压制成型固化的绝缘磁性粉末颗粒的表面上形成布线。 该方法包括:制备布线板的第一步骤S10,其包括片状基板和形成在基板上并且可从基板移除的布线; 将绝缘磁性粉末颗粒堆积在成形空间中的第二步骤S20,将布线板布置在绝缘磁性粉末颗粒的表面上,使布线以相反的方式面对绝缘磁性粉末颗粒的表面;以及 压制绝缘磁粉颗粒和布线板; 以及在将绝缘磁性粉末颗粒上的布线依次留下的同时从凝固的绝缘磁性粉末颗粒的表面除去基板的第三步骤S30。 根据本发明的磁体的制造方法,可以防止绝缘磁性粉末颗粒的腐蚀,从而实现高度可靠的磁性体的制造。