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    • 1. 发明授权
    • Charging circuit
    • 充电电路
    • US07821233B2
    • 2010-10-26
    • US11801305
    • 2007-05-09
    • Satoru NateIsao YamamotoSachito Horiuchi
    • Satoru NateIsao YamamotoSachito Horiuchi
    • H02J7/00
    • H02J7/06
    • In a charging circuit charging a battery based on a power supply voltage from an external power supply, a charging transistor is provided on a path from the external power supply to the battery. A charging control circuit is integrated on a semiconductor substrate, and adjusts an ON state of the charging transistor to control a charging current supplied to the battery. The voltage adjusting circuit provided on an electric power supply path from the external power supply to a power supply terminal of the charging control circuit generates a necessary voltage drop. The current adjusting circuit adjusts the ON state of the charging transistor such that a voltage of the battery is brought close to a predetermined voltage value. The clamp circuit clamps a voltage at the power supply terminal of the charging control circuit below a predetermined clamp voltage.
    • 在基于来自外部电源的电源电压对电池充电的充电电路中,在从外部电源到电池的路径上设置充电晶体管。 充电控制电路集成在半导体衬底上,并且调节充电晶体管的导通状态以控制提供给电池的充电电流。 设置在从外部电源到充电控制电路的电源端子的电力供给路径上的电压调节电路产生必要的电压降。 电流调节电路调节充电晶体管的导通状态,使得电池的电压接近预定的电压值。 钳位电路将充电控制电路的电源端子处的电压钳位在预定的钳位电压以下。
    • 2. 发明申请
    • Charging circuit
    • 充电电路
    • US20070263420A1
    • 2007-11-15
    • US11801305
    • 2007-05-09
    • Satoru NateIsao YamamotoSachito Horiuchi
    • Satoru NateIsao YamamotoSachito Horiuchi
    • H02M7/00
    • H02J7/06
    • In a charging circuit charging a battery based on a power supply voltage from an external power supply, a charging transistor is provided on a path from the external power supply to the battery. A charging control circuit is integrated on a semiconductor substrate, and adjusts an ON state of the charging transistor to control a charging current supplied to the battery. The voltage adjusting circuit provided on an electric power supply path from the external power supply to a power supply terminal of the charging control circuit generates a necessary voltage drop. The current adjusting circuit adjusts the ON state of the charging transistor such that a voltage of the battery is brought close to a predetermined voltage value. The clamp circuit clamps a voltage at the power supply terminal of the charging control circuit below a predetermined clamp voltage.
    • 在基于来自外部电源的电源电压对电池充电的充电电路中,在从外部电源到电池的路径上设置充电晶体管。 充电控制电路集成在半导体衬底上,并且调节充电晶体管的导通状态以控制提供给电池的充电电流。 设置在从外部电源到充电控制电路的电源端子的电力供给路径上的电压调节电路产生必要的电压降。 电流调节电路调节充电晶体管的导通状态,使得电池的电压接近预定的电压值。 钳位电路将充电控制电路的电源端子处的电压钳位在预定的钳位电压以下。
    • 3. 发明授权
    • Light emitting element drive device and electronic device having light emitting element
    • 发光元件驱动装置和具有发光元件的电子装置
    • US06822403B2
    • 2004-11-23
    • US10482430
    • 2003-12-29
    • Sachito HoriuchiKen HoshinoIsao Yamamoto
    • Sachito HoriuchiKen HoshinoIsao Yamamoto
    • H05B3700
    • H05B33/0815G09G3/30H05B33/0827H05B33/0851
    • An electronic apparatus is equipped with light emitting elements (21-26) such as LEDs. The light emitting elements are driven by a power supply circuit of the drive device (10) at a high step-up voltage (Vh). The drive device (10) has a multiplicity of constant-current drivers (12-14), a selection circuit (18), and a control circuit (11). The drivers are turned ON or OFF in accordance with respective instruction signals (S1-S3) supplied thereto to provide associated series with currents to activate the series for emission of light when associated drivers are turned ON. The selection circuit (18) selects the lowest one of the voltages impressed on the drivers and outputs the selected lowest voltage as a detection voltage. The control circuit (11) automatically controls the voltage Vh so as to equilibrate the detection voltage with a low reference voltage at which the drivers can perform required constant-current operations. Thus, the drive device can fully activate the light emitting elements for emission of light while suppressing energy loss in the drivers.
    • 电子设备配备有诸如LED的发光元件(21-26)。 发光元件由驱动装置(10)的电源电路以高升压电压(Vh)驱动。 驱动装置(10)具有多个恒流驱动器(12-14),选择电路(18)和控制电路(11)。 根据提供给其的相应指令信号(S1-S3),驱动器被接通或关闭,以提供相关联的串联电流,以在相关联的驱动器被接通时激活用于发光的串联。 选择电路(18)选择施加在驱动器上的最低电压,并输出所选择的最低电压作为检测电压。 控制电路(11)自动控制电压Vh,以使驱动器可执行所需恒流操作的低参考电压平衡检测电压。 因此,驱动装置可以在抑制驱动器中的能量损失的同时完全启动用于发光的发光元件。
    • 4. 发明授权
    • Light emitting element drive device and electronic device light emitting element
    • 发光元件驱动装置和电子装置发光元件
    • US06949892B2
    • 2005-09-27
    • US10482429
    • 2003-05-01
    • Sachito HoriuchiNoboru KagemotoIsao Yamamoto
    • Sachito HoriuchiNoboru KagemotoIsao Yamamoto
    • H05B37/02G09G3/34H01L33/00H05B33/08
    • G09G3/342G09G2310/0221G09G2330/02H05B33/0815H05B33/0827Y02B20/347
    • An electronic apparatus includes a display device (20) and a drive device (10) for driving the display (20). The display device (20) is equipped with light emitting elements (21-26) such as LEDs driven at high voltages. The display device (20) has a multiplicity of light emitting element series each supplied at one end thereof with a high voltage (Vh) higher than a given power supply voltage (Vdd). The drive device (10) has drivers (12-14) each having one end connected to a respective terminal to which a corresponding one of said multiple light emitting elements series is connected. The drivers are turned ON and OFF in accordance with instruction signals (S1-S3) such that, when turned ON, they provide currents to the series connected. The drive device (10) also has a multiplicity of bypass current source (15-17) for providing the light emitting element series with currents not sufficient to activate the series for emission of light when corresponding drivers are turned OFF. The drive device can be constructed using ICs that are designed to operate at low voltages, thereby facilitating reduction of electric power loss by the electronic apparatus.
    • 电子设备包括用于驱动显示器(20)的显示设备(20)和驱动设备(10)。 显示装置(20)配备有以高电压驱动的LED的发光元件(21-26)。 显示装置(20)具有多个发光元件系列,每个发光元件串的一端以比给定电源电压(Vdd)高的高电压(Vh)提供。 驱动装置(10)具有驱动器(12-14),每个驱动器的一端连接到相应的端子,所述多个发光元件系列中的相应一个串联连接到该端子。 驱动器根据指令信号(S 1- S 3)打开和关闭,使得当接通时,它们为连接的串联提供电流。 驱动装置(10)还具有多个旁路电流源(15-17),用于在相应的驱动器关闭时向发光元件系列提供不足以激活用于发光的串联的电流。 可以使用被设计为在低电压下操作的IC来构造驱动装置,从而有助于减少电子设备的电力损失。
    • 5. 发明授权
    • DC/DC converter
    • DC / DC转换器
    • US06400211B1
    • 2002-06-04
    • US09954036
    • 2001-09-18
    • Ichiro YokomizoSachito HoriuchiMayuka Matsumae
    • Ichiro YokomizoSachito HoriuchiMayuka Matsumae
    • G05F110
    • H02M3/07H02M2003/072
    • A DC/DC converter is provided with a DC power source; a reference voltage generating circuit; an amplifier which receives an electric power from the DC power source and outputs an electric power of which voltage is controlled so as to assume a target voltage value by stepping down the voltage of the electric power from the DC power source depending on a difference between the reference voltage and a detection voltage; an oscillation circuit which generates signals having a specific frequency; a voltage boosting circuit which receives the output of the amplifier and the output of the oscillation circuit, causes switching of the output of the amplifier at the specific frequency to charge a first capacitor, and performs voltage boosting by transferring the electric charges-charged in the first capacitor through complementary ON/OFF switching with respect to the former switching into a second capacitor after raising substantially upto n/m time voltage (wherein n>m and n and m are integers equal to or more than 2) and charging the same therewith; and an output voltage detection circuit which generates the detection voltage depending on the output voltage of the boosting circuit, whereby a voltage of substantially n/m times of the target voltage value is generated from the voltage boosting circuit.
    • DC / DC转换器配备有直流电源; 参考电压发生电路; 放大器,其从直流电源接收电力,并且通过根据所述直流电源的差异来降低来自所述直流电源的电力的电压来输出控制所述电压的电力,以便呈现目标电压值 参考电压和检测电压; 产生具有特定频率的信号的振荡电路; 接收放大器的输出和振荡电路的输出的升压电路使放大器的输出以特定频率切换,对第一电容器充电,并且通过在第 第一电容器通过互补的ON / OFF切换相对于前者在升高到大约n / m时间电压之后切换成第二电容器(其中n> m且n和m是等于或大于2的整数)并且与其充电 ; 以及输出电压检测电路,其根据升压电路的输出电压产生检测电压,由此从升压电路产生大致n / m倍的目标电压值的电压。
    • 10. 发明授权
    • Regulated power supply circuit
    • 稳压电源电路
    • US5808458A
    • 1998-09-15
    • US942609
    • 1997-10-02
    • Masanori FujisawaSachito HoriuchiKengo Adachi
    • Masanori FujisawaSachito HoriuchiKengo Adachi
    • G05F3/22G05F3/24G05F3/16
    • G05F3/247G05F3/227
    • In a regulated power supply circuit which includes a differential amplifier circuit and a current output circuit which receives the output from the differential amplifier circuit, wherein the current output circuit comprises a drive stage transistor which operates upon receipt of an output from the differential amplifier circuit at an input terminal thereof, a current output stage of a MOSFET which is driven by the drive stage transistor and a load resistor for the drive stage transistor connected to the output side thereof, and the load resistor and the drive stage transistor are provided between a power source line and a ground line and the MOSFET is driven by an output taken out via the load resistor.
    • 在包括差分放大器电路和接收来自差分放大器电路的输出的电流输出电路的稳压电源电路中,其中电流输出电路包括驱动级晶体管,其在接收到差分放大器电路的输出时工作, 其输入端子,由驱动级晶体管驱动的MOSFET的电流输出级和连接到其输出侧的驱动级晶体管的负载电阻器,负载电阻器和驱动级晶体管设置在功率 源极线和接地线,MOSFET由通过负载电阻取出的输出驱动。