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    • 1. 发明申请
    • CURRENT SWITCH CIRCUIT AND DA CONVERTER
    • 电流开关电路和DA转换器
    • US20120176263A1
    • 2012-07-12
    • US13237260
    • 2011-09-20
    • Shigeo ImaiIppei AkitaTetsuro Itakura
    • Shigeo ImaiIppei AkitaTetsuro Itakura
    • H03M1/66H03K17/16
    • H03K19/00384H03M1/0641H03M1/745
    • According to one embodiment, a first switch transistor and a second switch transistor convert an input current to a first current and a second current by performing a switching operation on the basis of differential input voltages, respectively. An input current source supplies the input current to the first and second switch transistors. A noise current generating circuit generates a dummy current to simulate a noise current flowing through the input current source. A third switch transistor and a fourth switch transistor convert the dummy current to a third current and a fourth current by performing a switching operation on the basis of differential input voltages and negatively superimposes the third current and the fourth current on the first and second currents, respectively.
    • 根据一个实施例,第一开关晶体管和第二开关晶体管分别通过基于差分输入电压执行开关操作将输入电流转换为第一电流和第二电流。 输入电流源将输入电流提供给第一和第二开关晶体管。 噪声电流产生电路产生虚拟电流以模拟流过输入电流源的噪声电流。 第三开关晶体管和第四开关晶体管通过基于差分输入电压执行开关操作将虚拟电流转换为第三电流和第四电流,并将第三电流和第四电流负向叠加在第一和第二电流上, 分别。
    • 2. 发明申请
    • VOLTAGE OUTPUT CIRCUIT, CONNECTOR MODULE, AND ACTIVE CABLE
    • 电压输出电路,连接器模块和有源电缆
    • US20120241599A1
    • 2012-09-27
    • US13308646
    • 2011-12-01
    • Hiroshi UemuraIppei AkitaTetsuro ItakuraHideto Furuyama
    • Hiroshi UemuraIppei AkitaTetsuro ItakuraHideto Furuyama
    • H01J40/12H03L5/00
    • H04B10/69H04B10/25
    • According to one embodiment, a circuit comprises a first resistor configured to have one end to which a first voltage is input and the other end which outputs a second voltage and a first amplifier configured to have an inverting input connected to the other end of the first resistor and a noninverting input to which a third voltage is input. The circuit further comprises a first capacitor configured to have one end to which an output of the first amplifier is input and the other end to which the other end of the first resistor is connected. An output of the first amplifier or an output of a second amplifier connected to the other end of the first resistor is a fourth voltage. In the circuit, the first resistor and a mirror capacitance composed of the first capacitor and the first amplifier constitute a low-pass filter.
    • 根据一个实施例,电路包括第一电阻器,其被配置为具有输入第一电压的一端和输出第二电压的另一端和配置成具有连接到第一电压的另一端的反相输入的第一放大器 电阻器和输入第三电压的同相输入端。 电路还包括第一电容器,其被配置为具有输入第一放大器的输出的一端和第一电阻器的另一端连接到的另一端。 连接到第一电阻器的另一端的第一放大器的输出或第二放大器的输出是第四电压。 在该电路中,由第一电容器和第一放大器组成的第一电阻器和反射镜电容器构成低通滤波器。
    • 3. 发明授权
    • Voltage output circuit, connector module, and active cable
    • 电压输出电路,连接器模块和有源电缆
    • US08835830B2
    • 2014-09-16
    • US13308646
    • 2011-12-01
    • Hiroshi UemuraIppei AkitaTetsuro ItakuraHideto Furuyama
    • Hiroshi UemuraIppei AkitaTetsuro ItakuraHideto Furuyama
    • H01J40/12H04B10/25H04B10/69
    • H04B10/69H04B10/25
    • According to one embodiment, a circuit comprises a first resistor configured to have one end to which a first voltage is input and the other end which outputs a second voltage and a first amplifier configured to have an inverting input connected to the other end of the first resistor and a noninverting input to which a third voltage is input. The circuit further comprises a first capacitor configured to have one end to which an output of the first amplifier is input and the other end to which the other end of the first resistor is connected. An output of the first amplifier or an output of a second amplifier connected to the other end of the first resistor is a fourth voltage. In the circuit, the first resistor and a mirror capacitance composed of the first capacitor and the first amplifier constitute a low-pass filter.
    • 根据一个实施例,电路包括第一电阻器,其被配置为具有输入第一电压的一端和输出第二电压的另一端和配置成具有连接到第一电压的另一端的反相输入的第一放大器 电阻器和输入第三电压的同相输入端。 电路还包括第一电容器,其被配置为具有输入第一放大器的输出的一端和第一电阻器的另一端连接到的另一端。 连接到第一电阻器的另一端的第一放大器的输出或第二放大器的输出是第四电压。 在该电路中,由第一电容器和第一放大器组成的第一电阻器和反射镜电容器构成低通滤波器。
    • 4. 发明授权
    • Assembled battery system
    • 组装电池系统
    • US08593111B2
    • 2013-11-26
    • US12559072
    • 2009-09-14
    • Yoshinao TatebayashiTetsuro ItakuraNobuo ShibuyaNorio Takami
    • Yoshinao TatebayashiTetsuro ItakuraNobuo ShibuyaNorio Takami
    • H02J7/00
    • H02J7/0021H01M10/42H02J7/0031
    • In an assembled battery system, parallel battery blocks are connected in series. Each of the battery blocks includes battery unit modules connected in parallel, and each of the modules includes a battery unit and a fuse connected in series. The battery block is provided with a common connection line connected to a fuse monitoring module, and MOS-FETs each having a gate, source and drain, wherein the fuse is connected between the gate and source, and the drain is connected to the connection line. The FET is turned on and a voltage is applied to the connection line through the FET from the battery unit, when the fuse is blown out. Thus, the fuse monitoring module can detects the blowout of the fuse, and a control module can turn off a control switch to stop charging/discharging of the assembled battery in accordance with the control signal from the fuse monitoring module.
    • 在组合电池系统中,并联电池块串联连接。 每个电池块包括并联连接的电池单元模块,并且每个模块包括串联连接的电池单元和熔丝。 电池块设有连接到保险丝监视模块的公共连接线,以及各自具有栅极,源极和漏极的MOS-FET,其中,熔丝连接在栅极和源极之间,漏极连接到连接线 。 当保险丝熔断时,FET被接通并且通过FET从电池单元向连接线施加电压。 因此,熔丝监视模块可以检测熔丝的喷出,并且控制模块可以根据来自熔丝监视模块的控制信号关闭控制开关以停止组电池的充电/放电。
    • 5. 发明授权
    • DC to DC converter
    • 直流到直流转换器
    • US08350547B2
    • 2013-01-08
    • US12878271
    • 2010-09-09
    • Takeshi UenoTetsuro Itakura
    • Takeshi UenoTetsuro Itakura
    • G05F1/00
    • H02M3/1563
    • A DC to DC converter includes an input terminal, an output terminal, first and second switches, an inductor, a smoothing unit, a first impedance element, a first resistor element, an operational amplifier and a control unit. The first switch is connected to the input terminal. The second switch is connected to the first switch and a ground terminal. The inductor is connected to the first switch and the output terminal. The smoothing unit is connected to the inductor and the ground terminal. The first impedance element is connected to the smoothing unit. The first resistor element is connected in series with the first impedance element. The operational amplifier is connected to the first impedance element. Reference voltage is added to the operational amplifier. The control unit controls the first and second switches according to a control signal outputted from the operational amplifier.
    • DC-DC转换器包括输入端子,输出端子,第一和第二开关,电感器,平滑单元,第一阻抗元件,第一电阻元件,运算放大器和控制单元。 第一个开关连接到输入端。 第二开关连接到第一开关和接地端子。 电感器连接到第一开关和输出端子。 平滑单元连接到电感器和接地端子。 第一阻抗元件连接到平滑单元。 第一电阻元件与第一阻抗元件串联连接。 运算放大器连接到第一阻抗元件。 参考电压加到运算放大器上。 控制单元根据从运算放大器输出的控制信号来控制第一和第二开关。
    • 6. 发明申请
    • Comparing Circuit and Parallel Analog-To-Digital Converter
    • 比较电路和并行模数转换器
    • US20120235844A1
    • 2012-09-20
    • US13207121
    • 2011-08-10
    • Tomohiko ItoTetsuro Itakura
    • Tomohiko ItoTetsuro Itakura
    • H03M1/12H03K5/153
    • H03M1/1023H03K5/2481H03M1/365
    • First and second resistor series divide a predetermined voltage range to generate first reference voltages and second reference voltages, respectively. First and second switch controlling circuits select respective ones of the first reference voltages and the second reference voltages. A comparing unit generates a logical signal representing a logical value by comparing a combined transistor current based on the selected first and second reference voltages with a transistor current based on an input signal. The first switch controlling circuit specifies two adjacent first reference voltages where the logical value is inverted by sequentially selecting the first reference voltages, and determines to select one of the adjacent reference voltages. Te second switch controlling circuit specifies two adjacent second reference voltages where the logical value is inverted by sequentially selecting the second reference voltages, and determines to select one of the adjacent reference voltages.
    • 第一和第二电阻器串分割预定电压范围以分别产生第一参考电压和第二参考电压。 第一和第二开关控制电路选择第一参考电压和第二参考电压中的相应的一个。 比较单元通过基于所选择的第一和第二参考电压与基于输入信号的晶体管电流比较组合的晶体管电流来产生表示逻辑值的逻辑信号。 第一开关控制电路通过顺序选择第一参考电压来指定逻辑值反相的两个相邻的第一参考电压,并且确定选择相邻参考电压之一。 Te第二开关控制电路指定两个相邻的第二参考电压,其中逻辑值通过顺序选择第二参考电压而被反相,并且确定选择相邻参考电压之一。
    • 9. 发明申请
    • ASSEMBLED BATTERY SYSTEM
    • 组装电池系统
    • US20100072950A1
    • 2010-03-25
    • US12559072
    • 2009-09-14
    • Yoshinao TATEBAYASHITetsuro ItakuraNobuo ShibuyaNorio Takami
    • Yoshinao TATEBAYASHITetsuro ItakuraNobuo ShibuyaNorio Takami
    • H02J7/00
    • H02J7/0021H01M10/42H02J7/0031
    • In an assembled battery system, parallel battery blocks are connected in series. Each of the battery blocks includes battery unit modules connected in parallel, and each of the modules includes a battery unit and a fuse connected in series. The battery block is provided with a common connection line connected to a fuse monitoring module, and MOS-FETs each having a gate, source and drain, wherein the fuse is connected between the gate and source, and the drain is connected to the connection line. The FET is turned on and a voltage is applied to the connection line through the FET from the battery unit, when the fuse is blown out. Thus, the fuse monitoring module can detects the blowout of the fuse, and a control module can turn off a control switch to stop charging/discharging of the assembled battery in accordance with the control signal from the fuse monitoring module.
    • 在组合电池系统中,并联电池块串联连接。 每个电池块包括并联连接的电池单元模块,并且每个模块包括串联连接的电池单元和熔丝。 电池块设有连接到保险丝监视模块的公共连接线,以及各自具有栅极,源极和漏极的MOS-FET,其中,熔丝连接在栅极和源极之间,漏极连接到连接线 。 当保险丝熔断时,FET被接通并且通过FET从电池单元向连接线施加电压。 因此,熔丝监视模块可以检测熔丝的喷出,并且控制模块可以根据来自熔丝监视模块的控制信号关闭控制开关以停止组电池的充电/放电。