会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • DC-DC CONVERTER CIRCUIT
    • DC-DC转换器电路
    • US20120126777A1
    • 2012-05-24
    • US13387187
    • 2010-07-16
    • Shinichi Motegi
    • Shinichi Motegi
    • G05F3/08
    • H02M3/1582H02M2001/0048H02M2003/1566Y02B70/1491
    • A DC-DC converter circuit includes first to sixth semiconductor switches and an inductor. The first to third semiconductor switches are connected to one end of the inductor. The fourth to sixth semiconductor switches are connected to the other end of the inductor. A first voltage supply is connected to opposite ends of the first and fourth semiconductor switches from the ends of the first and fourth semiconductor switches connected to the inductor. A second voltage supply is connected to opposite ends of the second and fifth semiconductor switches from the ends of the second and fifth semiconductor switches connected to the inductor. The first voltage supply and the second voltage supply are both connected to opposite ends of the third and sixth semiconductor switches from the ends of the third and sixth semiconductor switches connected to the inductor.
    • DC-DC转换器电路包括第一至第六半导体开关和电感器。 第一至第三半导体开关连接到电感器的一端。 第四至第六半导体开关连接到电感器的另一端。 第一电压源从连接到电感器的第一和第四半导体开关的端部连接到第一和第四半导体开关的相对端。 第二电压源从连接到电感器的第二和第五半导体开关的端部连接到第二和第五半导体开关的相对端。 第一电压源和第二电压源都从连接到电感器的第三和第六半导体开关的端部连接到第三和第六半导体开关的相对端。
    • 2. 发明授权
    • DC-DC converter circuit
    • DC-DC转换器电路
    • US08736239B2
    • 2014-05-27
    • US13386716
    • 2010-07-16
    • Shinichi Motegi
    • Shinichi Motegi
    • H02M3/158
    • H02M3/158H02M3/1582Y10T307/50
    • There is provided a DC-DC converter circuit with which conduction loss between switching elements is lower than in the conventional art, which affords an increase in power conversion efficiency. A DC-DC converter circuit includes a first switching element including a first semiconductor switch and a first diode, a second switching element including a second semiconductor switch and a second diode, an inductor connected between the cathodes of the first and second diodes, and a third switching element and a fourth switching element provided so as to face in mutually opposite directions on the anode sides of the first and second diodes, wherein a first voltage supply is connected between the cathode side of the first diode and the anode side of the second diode, and a second voltage supply is connected between the anode side of the first diode and the cathode side of the second diode.
    • 提供了一种DC-DC转换器电路,其在开关元件之间的传导损耗比传统技术中低,这提供了功率转换效率的提高。 DC-DC转换器电路包括第一开关元件,其包括第一半导体开关和第一二极管,第二开关元件包括第二半导体开关和第二二极管,连接在第一和第二二极管的阴极之间的电感器,以及 第三开关元件和第四开关元件,其设置成在第一和第二二极管的阳极侧面相互相反的方向,其中第一电压源连接在第一二极管的阴极侧和第二二极管的阳极侧之间 二极管,第二电压源连接在第一二极管的阳极侧和第二二极管的阴极侧之间。
    • 5. 发明申请
    • PULSE PATTERN GENERATING CONFIGURATION FOR THREE-PHASE CURRENT SOURCE ELECTRIC POWER CONVERTER
    • 用于三相电流源电力转换器的脉冲模式生成配置
    • US20130003418A1
    • 2013-01-03
    • US13497301
    • 2010-09-08
    • Shinichi Motegi
    • Shinichi Motegi
    • H02M7/44
    • H02M7/53875
    • A pulse pattern generating configuration for a three-phase current source electric power converter is provided that ensures a minimal switching loss regardless of the level of power factor, and thus improves the electric power conversion efficiency.When an inter-line voltage non-maximum phase (U-phase) and a line current command value maximum phase (U-phase) match one another, in one modulation period T, a separation time T1 is established to separate, in time, switching pulses of two phases (V-phase, and W-phase) other than the line current command value maximum phase, and a short-circuit pulse SP is disposed in the line current command value maximum phase (U-phase). When the inter-line voltage non-maximum phase (V-phase or W-phase) and the line current command value maximum phase (U-phase) do not match one another, in the one modulation period T, the switching pulses of the two phases (V-phase and W-phase) other than the line current command value maximum phase are disposed next to one another in time, and the short-circuit pulse SP is disposed in the inter-line voltage non-maximum phase (V-phase or W-phase) or in the line current command value maximum phase (U-phase).
    • 提供了一种用于三相电流源电力变换器的脉冲模式产生配置,其确保了与功率因数水平无关的最小开关损耗,从而提高了电力转换效率。 当线间电压非最大相位(U相)和线电流指令值最大相位(U相)彼此匹配时,在一个调制周期T中,建立分离时间T1以分离时间, 在线电流指令值最大相位(U相)中设置短路脉冲SP,其中除了线电流指令值最大相位以外的两相(V相,W相)的切换脉冲。 当线间电压非最大相位(V相或W相)和线电流指令值最大相位(U相)彼此不一致时,在一个调制周期T中,切换脉冲 在线电流指令值最大相位以外的两相(V相,W相)在时间上彼此相邻配置,短路脉冲SP配置在线间电压非最大相(V 相或W相)或线电流指令值最大相位(U相)。
    • 6. 发明申请
    • DC-DC CONVERTER CIRCUIT
    • DC-DC转换器电路
    • US20120126618A1
    • 2012-05-24
    • US13386716
    • 2010-07-16
    • Shinichi Motegi
    • Shinichi Motegi
    • H02J1/10
    • H02M3/158H02M3/1582Y10T307/50
    • There is provided a DC-DC converter circuit with which conduction loss between switching elements is lower than in the conventional art, which affords an increase in power conversion efficiency. A DC-DC converter circuit includes a first switching element including a first semiconductor switch and a first diode, a second switching element including a second semiconductor switch and a second diode, an inductor connected between the cathodes of the first and second diodes, and a third switching element and a fourth switching element provided so as to face in mutually opposite directions on the anode sides of the first and second, wherein a first voltage supply is connected between the cathode side of the first diode and the anode side of the second diode, and a second voltage supply is connected between the anode side of the first diode and the cathode side of the second diode.
    • 提供了一种DC-DC转换器电路,其在开关元件之间的传导损耗比传统技术中低,这提供了功率转换效率的提高。 DC-DC转换器电路包括第一开关元件,其包括第一半导体开关和第一二极管,第二开关元件包括第二半导体开关和第二二极管,连接在第一和第二二极管的阴极之间的电感器,以及 第三开关元件和第四开关元件,其设置成在第一和第二阳极的相反方向上面对,其中第一电压源连接在第一二极管的阴极侧和第二二极管的阳极侧之间 并且第二电压源连接在第一二极管的阳极侧和第二二极管的阴极侧之间。
    • 7. 发明申请
    • POWER GENERATION SYSTEM
    • 发电系统
    • US20120099352A1
    • 2012-04-26
    • US13380698
    • 2010-06-03
    • Shinichi Motegi
    • Shinichi Motegi
    • H02M7/00
    • H02J3/383H02J3/32H02J3/386Y02E10/563Y02E10/566Y02E10/763
    • A power generation system is provided that implements an efficient, labor-saving system interconnection in which an engine generator system, an external power supply system, and a capacitor are connected in parallel to each other, without the conventional practice to change the configuration of the engine generator system or provide an additional circuit. A power generation system implements a system interconnection in which an engine generator system, an external power supply system, and a capacitor are connected in parallel to each other. The power generation system includes discontinuing means for discontinuing direct-current voltage control by which a direct current voltage of the capacitor is controlled when electric power from a generator is supplied to the capacitor while direct current electric power that an external power supply supplies is lower than demand power that a power generation system is supposed to supply.
    • 提供了一种发电系统,其实现了发动机发电机系统,外部电源系统和电容器彼此并联连接的有效且省力的系统互连,而没有常规的做法来改变 发动机发电机系统或提供附加电路。 发电系统实现了其中发动机发电机系统,外部电源系统和电容器彼此并联连接的系统互连。 发电系统包括停止直流电压控制的不连续装置,当外部电源供给的直流电力低于正常电力时,来自发电机的电力被供给电容器时,电容器的直流电压被控制。 发电系统应提供的电力需求。