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    • 1. 发明申请
    • MULTI-LAMP DRIVING CIRCUIT
    • 多灯驱动电路
    • US20100181928A1
    • 2010-07-22
    • US12603661
    • 2009-10-22
    • CHI-HSIUNG LEEYU-HSIAO CHAOHUNG-YI CHEN
    • CHI-HSIUNG LEEYU-HSIAO CHAOHUNG-YI CHEN
    • H05B41/36
    • H05B41/282Y02B20/183
    • A multi-lamp driving circuit for driving a plurality of lamp groups includes an inversion circuit configured to drive the plurality of lamp groups and a current balance circuit electrically connected between the inversion circuit and the plurality of lamp groups. The current balance circuit includes a plurality of transformers, each including a first magnetic loop composed of a first primary winding and a first secondary winding and a second magnetic loop composed of a second primary winding and a second secondary winding. Numbers of turns of the second primary winding and the second secondary winding of each of the plurality of transformers are equivalent, and numbers of turns of the first primary winding and the first secondary winding of each of the plurality of transformers are equivalent.
    • 用于驱动多个灯组的多灯驱动电路包括:被配置为驱动多个灯组的反相电路和电连接在反转电路和多个灯组之间的电流平衡电路。 电流平衡电路包括多个变压器,每个变压器包括由第一初级绕组和第一次级绕组组成的第一磁环和由第二初级绕组和第二次级绕组组成的第二磁路。 多个变压器中的每一个的第二初级绕组和第二次级绕组的匝数相等,并且多个变压器中的每一个的第一初级绕组和第一次级绕组的匝数相等。
    • 2. 发明申请
    • PROTECTION CIRCUIT AND DISCHARGE LAMP DRIVING DEVICE EMPLOYING THE SAME
    • 使用其的保护电路和放电灯驱动装置
    • US20100019694A1
    • 2010-01-28
    • US12277228
    • 2008-11-24
    • HUNG-YI CHENCHI-HSIUNG LEEYU-HSIAO CHAO
    • HUNG-YI CHENCHI-HSIUNG LEEYU-HSIAO CHAO
    • H05B41/36
    • H05B41/2828
    • A discharge lamp driving device includes a power stage circuit, a transformer circuit, a control circuit, a feedback circuit and a lamp protection circuit. The lamp protection circuit includes a current sensing circuit, a reference voltage selecting circuit, a comparing circuit and a protection signal generating circuit. The current sensing circuit senses current signals flowing through the lamps, and transforms the current signals to voltage signals. The reference voltage selecting circuit is connected to the current sensing circuit. The comparing circuit is connected to the current sensing circuit and the comparing circuit. The protection signal generating circuit is connected between the comparing circuit and the control circuit. The control circuit is connected to the comparing circuit.
    • 放电灯驱动装置包括功率级电路,变压器电路,控制电路,反馈电路和灯保护电路。 灯保护电路包括电流检测电路,参考电压选择电路,比较电路和保护信号发生电路。 电流感测电路感测流过灯的电流信号,并将电流信号转换成电压信号。 参考电压选择电路连接到电流检测电路。 比较电路连接到电流检测电路和比较电路。 保护信号发生电路连接在比较电路和控制电路之间。 控制电路连接到比较电路。
    • 3. 发明申请
    • IONIC THERMAL DISSIPATION DEVICE
    • 离子热释放装置
    • US20110308769A1
    • 2011-12-22
    • US12869776
    • 2010-08-27
    • WEI-CHI HUANGCHI-HSIUNG LEEYU-HSIAO CHAOTSUNG-LIANG HUNG
    • WEI-CHI HUANGCHI-HSIUNG LEEYU-HSIAO CHAOTSUNG-LIANG HUNG
    • F28F13/16H02M7/00F28D15/00
    • H02M3/33561H02M3/33569
    • An ionic thermal dissipation device includes an ionic wind generation system and a power system. The power system first converts external direct current (DC) power signals into first alternating current (AC) power signals, and boosts, increases voltage, and rectifies the first AC power signals to generate high voltage DC power signals to drive the ionic wind generation system. The power system also detects current signals generated by ion excitation of the ionic wind generation system and voltage signals of the high voltage DC power signals, and regulates the high voltage DC power signals and time of driving the ionic wind generation system according to a first PWM signal and a first analog signal from an electronic device and the detected current signals and voltage signals.
    • 离子散热装置包括离子风生成系统和电力系统。 电力系统首先将外部直流(DC)功率信号转换为第一交流(AC)功率信号,并升压,增加电压,并对第一交流电源信号进行整流,产生高压直流电源信号,驱动离子风系统 。 电力系统还检测离子风发电系统的离子激发产生的电流信号和高压直流电力信号的电压信号,并根据第一个PWM调节高压直流电力信号和驱动离子风力发电系统的时间 信号和来自电子设备的第一模拟信号和检测到的电流信号和电压信号。
    • 4. 发明申请
    • BACKLIGHT MODULE
    • 背光模组
    • US20090315472A1
    • 2009-12-24
    • US12417600
    • 2009-04-02
    • CHI-HSIUNG LEEHUNG-CHANG LIANGYU-HSIAO CHAO
    • CHI-HSIUNG LEEHUNG-CHANG LIANGYU-HSIAO CHAO
    • H05B41/16
    • H05B41/282
    • A backlight module positioned on a printed circuit board (PCB) includes a power control circuit, a transformer, and a voltage detection component. The power control circuit outputs power signals. The transformer has a primary winding and at least one secondary winding. The primary winding is connected to the power control circuit and receives the power signals. The voltage detection component is positioned on a high voltage terminal of the secondary winding of the transformer, detecting voltage variations in the high voltage terminal of the secondary winding of the transformer, and outputting the detected voltage variation to the power control circuit. The power control circuit adjusts the output power signals according to the detected voltage variation.
    • 位于印刷电路板(PCB)上的背光模块包括功率控制电路,变压器和电压检测部件。 功率控制电路输出功率信号。 变压器具有初级绕组和至少一个次级绕组。 初级绕组连接到电源控制电路并接收电源信号。 电压检测部件位于变压器的次级绕组的高电压端子上,检测变压器的次级绕组的高电压端子的电压变化,并将检测到的电压变化输出到功率控制电路。 功率控制电路根据检测到的电压变化来调整输出功率信号。
    • 5. 发明申请
    • LIGHT EMITTING DIODE DRIVING SYSTEM
    • 发光二极管驱动系统
    • US20120139420A1
    • 2012-06-07
    • US13165774
    • 2011-06-21
    • CHI-HSIUNG LEEYU-HSIAO CHAO
    • CHI-HSIUNG LEEYU-HSIAO CHAO
    • H05B37/02
    • H05B33/089G09G3/3406H05B33/0815Y02B20/341
    • A light emitting diode (LED) driving system comprises a plurality of current limitation circuits and a plurality of over-voltage protection circuits to driving a plurality of LED strings. Each of the current limitation circuits comprises a first switch comprising a control pole receiving a reference voltage, a first pole correspondingly connected to a LED string, and a second pole connected to the ground via a first resistor and a second switch comprising a control pole connected to the second pole of the first switch via a second resistor, a first pole receiving the reference voltage, and a second pole grounded. Each of the over-voltage protection circuits comprises a zener diode, a third switch and a first capacitor.
    • 发光二极管(LED)驱动系统包括多个电流限制电路和多个过电压保护电路以驱动多个LED串。 每个电流限制电路包括第一开关,其包括接收参考电压的控制极,相应地连接到LED串的第一极和经由第一电阻连接到地的第二极和包括连接到控制极的控制极的第二开关 经由第二电阻到第一开关的第二极,接收参考电压的第一极和接地的第二极。 每个过电压保护电路包括齐纳二极管,第三开关和第一电容器。
    • 7. 发明申请
    • MULTI-STAGE ION AIRFLOW GENERATING DEVICE
    • 多阶段气流发生装置
    • US20120049083A1
    • 2012-03-01
    • US12906288
    • 2010-10-18
    • TSUNG-LIANG HUNGCHI-HSIUNG LEEYU-HSIAO CHAONAI-CHUN CHANG
    • TSUNG-LIANG HUNGCHI-HSIUNG LEEYU-HSIAO CHAONAI-CHUN CHANG
    • H01J27/00
    • H01T23/00H01T19/04
    • An ion airflow generating device includes a number of generator stages, each of which includes a number of generators. Each generator includes a needle-shaped emitter and a ring-shaped receiver. The receivers in the same stage are arranged in an array. Each receiver defines a groove in an outer circumferential surface thereof along a direction parallel to the central axis thereof. Each two adjacent receivers in a former generator stage connect with each other, and the grooves thereof cooperatively define a hole for holding an emitter in a next generator stage. The receivers in the next generator stage symmetrically offset from the receivers in the former generator stage such that each emitter aligns to the center of a corresponding receiver.
    • 离子气流产生装置包括多个发生器级,每个发电机级包括多个发电机。 每个发生器包括针形发射器和环形接收器。 相同阶段的接收器被排列成阵列。 每个接收器在其外圆周表面中沿着平行于其中心轴线的方向限定凹槽。 前一发电机级中的每两个相邻的接收器彼此连接,并且其凹槽协作地限定用于在下一发电机级中保持发射极的孔。 下一个发电机级中的接收器对称地偏离前一发电机级中的接收器,使得每个发射器对准相应接收器的中心。
    • 9. 发明申请
    • DISCHARGE LAMP DRIVING DEVICE
    • 放电灯驱动装置
    • US20070164690A1
    • 2007-07-19
    • US11552986
    • 2006-10-26
    • YU-HSIAO CHAOCHI-HSIUNG LEE
    • YU-HSIAO CHAOCHI-HSIUNG LEE
    • H05B39/00
    • H05B41/2828Y02B20/186
    • A discharge lamp driving device, for driving a plurality of lamp modules (23), includes a plurality of power stage circuits (22), a plurality of driving circuits (24), a multi-phase controller (21), and a controller (25). The power stage circuits, respectively corresponding to the lamp modules, converts received direct current (DC) signals to alternating current (AC) signals to drive the corresponding lamp modules. The driving circuits, respectively connected to corresponding power stage circuits, output driving signals to control outputs of the corresponding power stage circuits. The multi-phase controller, connected to the driving circuits, controls timing of the driving circuits outputting the driving signals. The controller, connected to the driving circuits, controls duty cycles of the driving signals.
    • 一种用于驱动多个灯模块(23)的放电灯驱动装置,包括多个功率级电路(22),多个驱动电路(24),多相控制器(21)和控制器 25)。 分别对应于灯模块的功率级电路将接收的直流(DC)信号转换为交流(AC)信号,以驱动相应的灯模块。 分别连接到相应的功率级电路的驱动电路输出驱动信号以控制对应的功率级电路的输出。 连接到驱动电路的多相控制器控制输出驱动信号的驱动电路的定时。 连接到驱动电路的控制器控制驱动信号的占空比。
    • 10. 发明申请
    • FLYBACK POWER SUPPLY SYSTEM
    • 飞扬电源系统
    • US20120188801A1
    • 2012-07-26
    • US13072764
    • 2011-03-27
    • CHI-HSIUNG LEECHIEN-CHIEH TAIHUNG-YI CHEN
    • CHI-HSIUNG LEECHIEN-CHIEH TAIHUNG-YI CHEN
    • H02M3/335
    • H02M3/33561
    • A flyback power system includes a rectifier and filter circuit, a pulse width modulation (PWM) controller, a feedback circuit, a master converter circuit, a slave converter circuit, and a slave converter control circuit. The master converter circuit continuously converts power signals from the rectifier and filter circuit into first direct current (DC) power signals to drive load according to PWM signals of the PWM controller when the flyback power system powered on. The slave converter circuit converts the power signals from the rectifier and filter circuit into second DC power signals according to the PWM signals, and superposes the second DC power signals to the first DC power signals to drive the load when the load is heavy. The slave converter control circuit detects whether the load is heavy, and controls the PWM signals whether to input into the slave converter circuit according to a state of the load.
    • 反激式电力系统包括整流器和滤波器电路,脉冲宽度调制(PWM)控制器,反馈电路,主转换器电路,从属转换器电路和从转换器控制电路。 当反激式电源系统通电时,主变流器电路将来自整流器和滤波电路的功率信号连续地转换为第一直流(DC)功率信号,以根据PWM控制器的PWM信号驱动负载。 从转换器电路根据PWM信号将来自整流器和滤波电路的功率信号转换为第二直流电源信号,并将第二直流电源信号叠加到第一直流电源信号,以在负载较重时驱动负载。 从变换器控制电路检测负载是否很重,并根据负载状态控制PWM信号是否输入到从变换器电路。