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    • 21. 发明授权
    • Vehicular lamp
    • 车灯
    • US07244036B2
    • 2007-07-17
    • US11057606
    • 2005-02-14
    • Kentaro MurakamiMasayasu Ito
    • Kentaro MurakamiMasayasu Ito
    • F21V19/04
    • H05B33/0815B60Q11/005H05B33/0827H05B33/089H05B37/04
    • A vehicular lamp has light source units connected in parallel, an output controlling switch operable to intermittently carry an electric current by repeating on and off, an output coil operable to output electric power according to current flowing into said output controlling switch in synchronization when said output switch switches, a selection controlling unit operable to select at least one said light source unit in synchronization when said output controlling switch switches and cause said at least one selected light source to receive the power output from said output coil, and a malfunction detecting unit operable to detect malfunction of each of said light source units, wherein said selection controlling unit selects at least one said light source unit among said light source units from which malfunction is not detected when said malfunction detecting unit detects malfunction of either of said light source units.
    • 一种车灯具有并联连接的光源单元,输出控制开关,其可操作以通过重复打开和关闭间歇地携带电流;输出线圈,用于当所述输出同步时,根据流入所述输出控制开关的电流输出电力 开关开关,当所述输出控制开关切换并且使所述至少一个所选择的光源从所述输出线圈输出的功率输出时,选择控制单元可操作以同步地选择至少一个所述光源单元;以及故障检测单元,其可操作 以检测每个所述光源单元的故障,其中所述选择控制单元在所述故障检测单元检测到所述光源单元中的任一个的故障时,从所述光源单元中选择未检测到故障的至少一个所述光源单元。
    • 22. 发明授权
    • Light source module and vehicular lamp
    • 光源模块和车灯
    • US07237935B2
    • 2007-07-03
    • US11076782
    • 2005-03-10
    • Masayasu ItoHitoshi Takeda
    • Masayasu ItoHitoshi Takeda
    • B60Q1/00
    • B60Q1/0088F21S41/147F21S41/192
    • A vehicular lamp has a plurality of light source modules for emitting light. Each of the light source modules has a semiconductor light-emitting element, a lighting circuit operable to control an electric current flowing into the semiconductor light-emitting element to turn the semiconductor light-emitting element on and off, a power cable operable to supply electric power from a power source located outside the vehicular lamp to the lighting circuit, a control cable operable to transmit a control signal that controls turning the semiconductor light-emitting element on and off to the lighting circuit, and a mounting substrate that mounts the semiconductor light-emitting element and the lighting circuit. One of the light source modules is connected to the power source by means of said power cable. The light source modules other than the one light source module are connected to the one light source module in parallel via the power cable.
    • 车灯具有用于发光的多个光源模块。 每个光源模块具有半导体发光元件,可操作以控制流入半导体发光元件的电流来打开和关闭半导体发光元件的点亮电路,可操作以供应电力的电力电缆 从位于车辆灯外部的电源向照明电路供电的控制电缆,可操作以传送控制信号的控制电缆,所述控制信号控制将半导体发光元件接通和断开到点亮电路;以及安装基板,其安装半导体光 发光元件和照明电路。 其中一个光源模块通过所述电力电缆连接到电源。 除了一个光源模块之外的光源模块经由电力电缆并联连接到一个光源模块。
    • 23. 发明申请
    • Discharge lamp lighting circuit
    • 放电灯点亮电路
    • US20060197467A1
    • 2006-09-07
    • US11367106
    • 2006-03-02
    • Shinji OhtaMasayasu Ito
    • Shinji OhtaMasayasu Ito
    • H05B41/36
    • H05B41/2882Y10S315/07
    • A DC/AC converter 3 performs AC conversion and a boosting function upon the reception of a DC voltage. A control unit 6 controls the DC/AC converter 3 to perform the lighting control of a discharge lamp. The DC/AC converter includes an AC conversion transformer 7, switching devices 5H, 5L and a resonance capacitor 8, and drives the switching devices to produce series resonance in the capacitor 8 and an inductance component for the transformer 7 or the inductance device 9. Before the discharge lamp 9 is turned on, the drive frequency for the switching devices gradually nears a resonance frequency f1 to increase an unloaded output, and a start signal is supplied to the discharge lamp. After the lighting of the discharge lamp has been initiated, the drive frequency is defined that is higher, by a predetermined frequency displacement value ΔF, than the drive frequency immediately before the discharge lamp is turned on. And the drive frequency for the switching device is shifted to a frequency area fb that is higher than a resonance frequency f2 when the discharge lamp is turned on.
    • DC / AC转换器3在接收到DC电压时执行AC转换和升压功能。 控制单元6控制DC / AC转换器3执行放电灯的点亮控制。 DC / AC转换器包括AC转换变压器7,开关器件5H,5L和谐振电容器8,并且驱动开关器件以在电容器8中产生串联谐振和用于变压器7或电感器件的电感元件 9。 在放电灯9接通之前,开关器件的驱动频率逐渐接近谐振频率f 1,以增加无负载输出,并且向放电灯提供启动信号。 在放电灯的点亮已经开始之后,驱动频率被定义为比放电灯开启之前的驱动频率高出预定的频率位移值ΔF。 并且当放电灯导通时,开关器件的驱动频率被移动到高于谐振频率f 2的频率区域fb。
    • 24. 发明申请
    • Lighting control circuit for vehicle lamps
    • 汽车灯具照明控制电路
    • US20060082332A1
    • 2006-04-20
    • US11242756
    • 2005-10-04
    • Masayasu ItoHitoshi Takeda
    • Masayasu ItoHitoshi Takeda
    • B60Q1/14
    • H05B33/0815H05B33/0827H05B33/089Y02B20/341
    • The supply of a predetermined current to LEDs is controlled by using series regulators. In accordance with the controlled states of the series regulators, a switching regulator adjusts an output voltage relative to the LEDs to the maximum voltage. When a ground fault occurs at the anode of one of the LEDs, and when a short circuit occurs at the output terminal of the switching regulator and the output voltage drops abnormally, the operation of the switching regulator is halted. When the gate voltage of an NMOS transistor is raised due to the disconnection of one of the LEDs, or when the drain voltage of the transistor is raised due to a short circuit at one of the LEDs, a Zener diode becomes conductive and an NPN transistor and a PNP transistor are rendered on. Then, a current flows through a diode, and as the gate voltage has been lowered, the operation of the NMOS transistor is halted, so that the remaining, normal LEDs are protected when an abnormality occurs.
    • 通过使用串联调节器来控制向LED提供预定电流。 根据串联稳压器的受控状态,开关稳压器将相对于LED的输出电压调整到最大电压。 在一个LED的阳极发生接地故障时,在开关稳压器的输出端发生短路,输出电压异常下降时,停止开关调节器的动作。 当NMOS晶体管的栅极电压由于其中一个LED的断开而升高时,或者当晶体管的漏极电压由于其中一个LED处的短路而升高时,齐纳二极管变为导通状态,而NPN晶体管 并且形成PNP晶体管。 然后,电流流过二极管,并且随着栅极电压降低,NMOS晶体管的操作停止,使得当发生异常时保留正常的LED。
    • 25. 发明申请
    • Lighting control circuit for vehicle lighting equipment
    • 汽车照明设备照明控制电路
    • US20060061303A1
    • 2006-03-23
    • US11225730
    • 2005-09-13
    • Hitoshi TakedaMasayasu Ito
    • Hitoshi TakedaMasayasu Ito
    • H05B39/04H05B37/02
    • H05B33/0893
    • An LED is connected to a power supply circuit, and a Zener diode is reverse-connected to the LED and then packaged in an LED package. When a load of the power supply circuit is lightened due to disconnection in the LED package, an output voltage of the power supply circuit shows a rising tendency. However, the power supply circuit limits the maximum voltage applied to the LED within a specified range between a forward voltage of the LED and a forward voltage+a Zener voltage of the Zener diode to prevent that a current flows through the Zener diode. As a result, no current flows through a resistor R1, then an NPN transistor is turned on, and then the LED acting as a disconnection sensing indicator lamp is turned on.
    • LED连接到电源电路,并且齐纳二极管与LED反向连接,然后封装在LED封装中。 当由于LED封装中的断开而使电源电路的负载变轻时,电源电路的输出电压呈上升趋势。 然而,电源电路将施加到LED的最大电压限制在LED的正向电压和齐纳二极管的正向电压+齐纳电压之间的特定范围内,以防止电流流过齐纳二极管。 结果,没有电流流过电阻器R 1,则NPN晶体管导通,然后用作断路检测指示灯的LED导通。
    • 27. 发明申请
    • Lighting control circuit for vehicle lighting equipment
    • 汽车照明设备照明控制电路
    • US20060055245A1
    • 2006-03-16
    • US11217883
    • 2005-09-01
    • Masayasu ItoHitoshi Takeda
    • Masayasu ItoHitoshi Takeda
    • B60L1/14B60Q1/26
    • H05B33/0812H05B33/0845
    • A PMOS transistor is inserted in a circuit connecting a power supply terminal of a power supply circuit and a battery terminal. When a control signal input terminal goes to a low level, it is decided that a PWM signal or an H control signal is input into the control signal input terminal. Then, transistors are turned on, and then the PMOS transistor is turned on to apply a battery voltage to the power supply circuit via a power supply terminal, whereby a supply of current to an LED is controlled by the control signal. When the control signal input terminal goes to a high level, it is decided that an L control signal is input as the control signal. Then, the transistors are turned off, and then the PMOS transistor is turned off to cut off a power supply to the power supply circuit from a battery, whereby a dark current can be prevented from flowing through the power supply circuit when the LED is turned off.
    • PMOS晶体管插入连接电源电路的电源端子和电池端子的电路中。 当控制信号输入端子变为低电平时,决定将PWM信号或H控制信号输入到控制信号输入端子。 然后,晶体管导通,然后PMOS晶体管导通,经由电源端子向电源电路施加电池电压,由此通过控制信号控制向LED供电的电流。 当控制信号输入端子变为高电平时,决定输入L控制信号作为控制信号。 然后,晶体管截止,然后关断PMOS晶体管,以从电池切断对电源电路的电源,由此当LED转向时,可以防止暗电流流过电源电路 关闭
    • 29. 发明申请
    • Vehicular lamp, cold cathode fluorescent lamp lighting apparatus, and cold cathode fluorescent lamp lighting method
    • 汽车灯,冷阴极荧光灯照明装置和冷阴极荧光灯照明方法
    • US20050248282A1
    • 2005-11-10
    • US11124023
    • 2005-05-06
    • Masayasu ItoHitoshi Takeda
    • Masayasu ItoHitoshi Takeda
    • B60Q1/04B60Q1/00H05B41/24H05B41/282H05B41/38
    • H05B41/382
    • There is provided a vehicular lamp that can prevent excess current from flowing between an anode and a cathode at the lighting-up start to prevent a damage and life shortening of a cold cathode fluorescent lamp at low cost. The vehicular lamp includes: a cold cathode fluorescent lamp having a cathode, a gate, and an anode; and a lighting controlling unit operable to pre-discharge electricity from the cathode to the gate prior to lighting of the cold cathode fluorescent lamp, in which the lighting controlling unit applies a voltage between the cathode and the anode after once lowering a voltage between the cathode and the gate and then again applies an extraction voltage between the cathode and the gate in order to begin to discharge electricity from the cathode to the anode. The lighting controlling unit may pre-discharge electricity from the cathode to the gate until the temperature of the cathode is substantially equal to that of lighting-up time.
    • 提供了一种车灯,其可以防止过多的电流在点亮开始时在阳极和阴极之间流动,以便以低成本防止冷阴极荧光灯的损坏和寿命缩短。 车灯包括:具有阴极,栅极和阳极的冷阴极荧光灯; 以及照明控制单元,其可操作以在点亮冷阴极荧光灯之前从阴极向栅极预放电,其中点亮控制单元在阴极和阳极之间施加电压,一次降低阴极之间的电压 并且然后在阴极和栅极之间再次施加提取电压,以便开始从阴极向阳极放电。 照明控制单元可以从阴极向栅极预放电,直到阴极的温度基本上等于点亮时间。