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    • 2. 发明授权
    • Battery-driven electronic device and mobile communication apparatus
    • 电池驱动的电子设备和移动通信设备
    • US06882130B2
    • 2005-04-19
    • US10451508
    • 2002-04-17
    • Hiroyuki HandaTakuya IshiiYasufumi NakajimaYasuhiko BitoShinji KasamatsuYoshiaki Nitta
    • Hiroyuki HandaTakuya IshiiYasufumi NakajimaYasuhiko BitoShinji KasamatsuYoshiaki Nitta
    • H02J7/00H02M3/155H02M3/158H01M10/46
    • H02J7/0065H02M3/155H02M3/1582
    • The present invention provides a battery-driven electronic device for which a long time use of the battery can be achieved and mobile communications equipment such as a portable telephone. Even if the time at which the output voltage of a battery 201 becomes below the supply voltage required by a load 206 including a power amplifier for wireless communications comes earlier than a conventional lithium ion battery because of its discharge characteristics that the battery voltage change ratio is 0.25 or more, a step-up and -down converter 200 operates as follows. When the output voltage of the battery is higher than the supply voltage required by the load, the voltage is set to a predetermined supply voltage by the step-down operation mode. When the output voltage of the battery is decreased and becomes lower than the supply voltage required by the load, the voltage is set to a predetermined supply voltage by the step-up operation mode. Thus, even for a battery employing a new material having a high energy density, a long term use of the battery can be achieved.
    • 本发明提供了一种电池驱动的电子设备,其可以实现电池的长时间使用和诸如便携式电话的移动通信设备。 即使电池201的输出电压低于包括无线通信功率放大器的负载206所需的电源电压的时间比常规的锂离子电池要早,因为其放电特性使电池电压变化率为 升压和降压转换器200如下操作。 当电池的输出电压高于负载所需的电源电压时,通过降压操作模式将电压设定为预定的电源电压。 当电池的输出电压降低并且变得低于负载所需的电源电压时,通过升压操作模式将电压设置为预定的电源电压。 因此,即使对于采用具有高能量密度的新材料的电池,也可以长期使用电池。
    • 4. 发明授权
    • Engine start device
    • 发动机启动装置
    • US08210145B2
    • 2012-07-03
    • US11914014
    • 2006-05-17
    • Hiroyuki HandaKoji Yoshida
    • Hiroyuki HandaKoji Yoshida
    • G01N27/02G01N27/04F02N11/08
    • F02N11/0866F02N11/04F02N2011/0885F02N2011/0888F02N2200/063H02J7/345H02P1/18
    • An engine start device includes a generator, a battery charged by the generator, a starter, an electric double layer capacitor and a DC/DC converter. The electric double layer capacitor is connected between the starter and the battery. The DC/DC converter has an input terminal connected to the battery and the electric double layer capacitor. The DC/DC converter has an output terminal connected to the starter and the electric double layer capacitor. According to voltage of the battery, internal DC resistance of the battery or internal DC resistance of the electric double layer capacitor, the DC/DC converter effects control of charge voltage of the electric double layer capacitor so as to stabilize voltage applied to a starter motor and stabilize the engine start.
    • 发动机启动装置包括发电机,由发电机充电的电池,起动器,双电层电容器和DC / DC转换器。 电双层电容器连接在起动器和电池之间。 DC / DC转换器具有连接到电池和双电层电容器的输入端子。 DC / DC转换器具有连接到起动器和双电层电容器的输出端子。 根据电池的电压,电池的内部直流电阻或双电层电容器的内部直流电阻,DC / DC转换器对双电层电容器的充电电压进行控制,以稳定施加于起动电动机的电压 并稳定发动机启动。
    • 5. 发明申请
    • POWER SUPPLY DEVICE
    • 电源设备
    • US20100231178A1
    • 2010-09-16
    • US12305959
    • 2007-06-26
    • Hiroyuki HandaKoji Yoshida
    • Hiroyuki HandaKoji Yoshida
    • H02J7/34
    • H02J7/34H02J7/0065H02J7/0068H02M2001/007H02M2001/0093
    • The power supply device contains a first auxiliary device and a first rectifier connected to a DC voltage source; a second auxiliary device that receives electric power via the first rectifier; a first DC/DC converter that uses the DC voltage source as an input source; an electricity storage device connected to an output terminal of the first DC/DC converter; and second DC/DC having an output terminal connected to the first rectifier, which uses the electricity storage device as an input source. When the DC voltage source has output voltage higher than a predetermined value, electric power is fed from the DC voltage source to the second auxiliary device and the electricity storage device is put on charge by the first DC/DC converter. When the output voltage gets lower than the predetermined value, the second DC/DC converter starts to operate, preventing decrease in voltage to be applied to the second auxiliary device.
    • 电源装置包括连接到直流电压源的第一辅助装置和第一整流器; 经由所述第一整流器接收电力的第二辅助装置; 使用DC电压源作为输入源的第一DC / DC转换器; 连接到第一DC / DC转换器的输出端子的蓄电装置; 以及具有连接到第一整流器的输出端子的第二DC / DC,其使用蓄电装置作为输入源。 当直流电压源具有高于预定值的输出电压时,从直流电压源向第二辅助装置供电,由第一DC / DC转换器对蓄电装置进行充电。 当输出电压低于预定值时,第二DC / DC转换器开始工作,防止施加到第二辅助装置的电压降低。
    • 6. 发明申请
    • BIDIRECTIONAL DC-DC CONVERTER
    • 双向DC-DC转换器
    • US20100164446A1
    • 2010-07-01
    • US12280052
    • 2007-04-25
    • Mitsuhiro MatsuoKoji YoshidaHiroyuki Handa
    • Mitsuhiro MatsuoKoji YoshidaHiroyuki Handa
    • G05F1/10
    • H02M3/158H02M3/156
    • The object of the present invention is to provide a bi-directional DC-DC converter having a simplified circuit configuration. Each output of high voltage detection circuit (12) and low voltage detection circuit (15) is inputted to high-voltage side error amplifier circuit (50) and low-voltage side error amplifier circuit (51) independently disposed, which are configured so as to be inverse in polarity, and the output of high-voltage side error amplifier circuit (50) or the output of low-voltage side error amplifier circuit (51) is selected by converting direction switching circuit (22), and the output is inputted to control circuit (25) from PWM comparison circuit (21) being in common with respect to voltage step-up and decreasing operations, thereby driving the first switching element (5) and the second switching element (10). Thus, a inverting circuit conventionally used is not needed, and in addition, only one 3-terminal switch usually complicated in structure is used, and it possible to realize a bi-directional DC-DC converter having a simple configuration as a whole.
    • 本发明的目的是提供一种具有简化电路结构的双向DC-DC转换器。 高电压检测电路(12)和低电压检测电路(15)的每个输出被输入到高电压侧误差放大器电路(50)和低压侧误差放大器电路(51),其独立地配置为 通过转换方向切换电路(22)选择高电压侧误差放大电路(50)的输出或低压侧误差放大电路(51)的输出,输出被输入 从PWM比较电路(21)到控制电路(25),其相对于升压和降压操作是共同的,从而驱动第一开关元件(5)和第二开关元件(10)。 因此,不需要常规使用的反相电路,另外仅使用通常结构复杂的3端子开关,并且可以实现整体上具有简单结构的双向DC-DC转换器。
    • 7. 发明申请
    • Engine Start Device
    • 发动机起动装置
    • US20090050092A1
    • 2009-02-26
    • US11914014
    • 2006-05-17
    • Hiroyuki HandaKoji Yoshida
    • Hiroyuki HandaKoji Yoshida
    • F02N11/04
    • F02N11/0866F02N11/04F02N2011/0885F02N2011/0888F02N2200/063H02J7/345H02P1/18
    • An engine start device includes a generator, a battery charged by the generator, a starter, an electric double layer capacitor and a DC/DC converter. The electric double layer capacitor is connected between the starter and the battery. The DC/DC converter has an input terminal connected to the battery and the electric double layer capacitor. The DC/DC converter has an output terminal connected to the starter and the electric double layer capacitor. According to voltage of the battery, internal DC resistance of the battery or internal DC resistance of the electric double layer capacitor, the DC/DC converter effects control of charge voltage of the electric double layer capacitor so as to stabilize voltage applied to a starter motor and stabilize the engine start.
    • 发动机启动装置包括发电机,由发电机充电的电池,起动器,双电层电容器和DC / DC转换器。 电双层电容器连接在起动器和电池之间。 DC / DC转换器具有连接到电池和双电层电容器的输入端子。 DC / DC转换器具有连接到起动器和双电层电容器的输出端子。 根据电池的电压,电池的内部直流电阻或双电层电容器的内部直流电阻,DC / DC转换器对双电层电容器的充电电压进行控制,以稳定施加于起动电动机的电压 并稳定发动机启动。
    • 10. 发明申请
    • BIDIRECTIONAL POWER SUPPLY DEVICE
    • 双向电源设备
    • US20090051337A1
    • 2009-02-26
    • US12279220
    • 2007-04-27
    • Koji YoshidaHiroyuki HandaMitsuhiro Matsuo
    • Koji YoshidaHiroyuki HandaMitsuhiro Matsuo
    • H02M3/155
    • H02M3/158H02M3/156
    • In a bidirectional power supply device, a DC-DC converter is connected such that the longer an ON time of the first switch becomes, the higher a voltage of a second positive terminal and a second negative terminal becomes. When stopping the supply of power from a first positive terminal and a first negative terminal to a second positive terminal and a second negative terminal, a control circuit turns OFF a third switch, and then operates a switching signal generation circuit so that the ON time of the first switch becomes a maximum. The switching signal generation circuit is operated so that the ON time of the first switch becomes a maximum with the third switch turned OFF in start-up when supplying power from the second positive terminal and the second negative terminal to the first positive terminal and the first negative terminal.
    • 在双向电源装置中,连接DC-DC转换器使得第一开关的导通时间变长,第二正极端子和第二负极端子的电压变高。 当停止从第一正极端子和第一负极端子到第二正极端子和第二负极端子的供电时,控制电路将第三开关断开,然后操作开关信号产生电路,使得开关信号产生电路的接通时间 第一个开关变成最大。 切换信号生成电路的动作使得当从第二正极端子和第二负极端子向第一正极端子供电时第三开关在启动时断开,第一开关的接通时间变为最大,第一开关 负端子。