WO2014146310A1 - Led背光驱动电路、背光模组、液晶显示装置 - Google Patents

Led背光驱动电路、背光模组、液晶显示装置 Download PDF

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Publication number
WO2014146310A1
WO2014146310A1 PCT/CN2013/073340 CN2013073340W WO2014146310A1 WO 2014146310 A1 WO2014146310 A1 WO 2014146310A1 CN 2013073340 W CN2013073340 W CN 2013073340W WO 2014146310 A1 WO2014146310 A1 WO 2014146310A1
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Prior art keywords
module
constant current
led
voltage
power module
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PCT/CN2013/073340
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English (en)
French (fr)
Inventor
张华�
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深圳市华星光电技术有限公司
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Application filed by 深圳市华星光电技术有限公司 filed Critical 深圳市华星光电技术有限公司
Priority to US13/882,170 priority Critical patent/US9024528B2/en
Publication of WO2014146310A1 publication Critical patent/WO2014146310A1/zh

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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G3/00Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
    • G09G3/20Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters
    • G09G3/34Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters by control of light from an independent source
    • G09G3/3406Control of illumination source
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2330/00Aspects of power supply; Aspects of display protection and defect management
    • G09G2330/12Test circuits or failure detection circuits included in a display system, as permanent part thereof

Definitions

  • the present invention relates to liquid crystal display technology, and more particularly to an LED backlight driving circuit, a backlight module, and a liquid crystal display device.
  • the backlight driving circuit of the LED (Light Emitting Diode) provided by the prior art is shown in FIG. 1.
  • the MOS transistor metal metal-oxide oxide-semiconductor semiconductor, field effect transistor
  • the current in the inductor rises, storing energy;
  • the driving signal is low, the MOS transistor is turned off, the reverse induced electromotive force is generated on the inductor, and the voltage is connected in series with the input 24V voltage, and the discharge energy is converted to the LED.
  • the LED backlight driving circuit provided by the prior art has the following defects: The output voltage of the LED backlight driving circuit is high, and if a person touches the working state of the circuit, it may cause injury;
  • the technical problem to be solved by the present invention is to provide an LED backlight driving circuit, a backlight module, and a liquid crystal display device, which can have an excessive output voltage or malfunction in the LED backlight driving circuit. Timely, promptly alert and remind you of the fault.
  • the present invention provides an LED backlight driving circuit, which includes: a power module, a voltage conversion module, a constant current driving IC module, and a boosting module; and an output terminal of the power module is driven by a voltage conversion module and a constant current
  • the power terminal of the IC module is connected; the output end of the power module is connected to the anode of the LED string through the boosting module; and the boosting module is provided with a high voltage warning unit for warning that the voltage of the positive terminal of the LED string is at a high voltage.
  • the high voltage warning unit is further configured to indicate whether the boost module is faulty.
  • the method further includes: a power module fault alarm unit, configured to indicate whether the power module is faulty.
  • the method further includes: a constant current driving IC module fault alarming unit, configured to indicate whether the constant current driving IC module is faulty.
  • the boosting module includes a storage inductor, a rectifier diode, a MOS transistor, and an output electrolytic capacitor; the anode of the rectifier diode is connected to the power module through a storage inductor, and the cathode is connected to the anode of the LED string;
  • One end of the output electrolytic capacitor is connected to the cathode of the rectifier diode, and the other end is grounded;
  • the drain of the MOS transistor is connected to the anode of the rectifier diode, the source is grounded, and the gate and constant current drive
  • the MOS drive signal output end of the IC module is connected;
  • a high voltage warning unit is connected between the energy storage inductor and the anode of the rectifier diode.
  • the high voltage warning unit emits light to indicate that the positive voltage of the LED string is at a high voltage.
  • the power module fault alarm unit is connected in series between the output end of the power module and the energy storage inductor of the boost module.
  • the constant current driving IC module fault alarm unit is connected in series between the power terminal of the constant current driving IC module and the voltage conversion module.
  • the high voltage warning unit, the power module fault alarm unit, and the constant current driving IC module fault alarm unit are LED lights.
  • the LED backlight driving circuit comprises: a power module, a voltage conversion module, and a constant current driving IC module.
  • the boosting module; the output end of the power module is connected to the power terminal of the constant current driving IC module through a voltage conversion module; the output end of the power module is connected to the anode of the LED string through the boosting module; and the boosting module is provided with a warning
  • the high voltage warning unit of the positive voltage of the LED string is at a high voltage; the high voltage warning unit is also used to indicate whether the boost module is faulty.
  • the LED backlight driving circuit further includes:
  • the power module fault alarm unit is configured to indicate whether the power module is faulty.
  • the constant current drive IC module fault alarm unit is used to indicate whether the constant current drive IC module is faulty.
  • the boosting module of the LED backlight driving circuit comprises an energy storage inductor, a rectifier diode, a MOS transistor and an output electrolytic capacitor;
  • the anode of the rectifier diode is connected to the power module through a storage inductor, and the cathode thereof is connected to the anode of the LED string;
  • One end of the output electrolytic capacitor is connected to the cathode of the rectifier diode, and the other end is grounded;
  • the drain of the MOS transistor is connected to the anode of the rectifier diode, the source is grounded, and the gate and constant current drive
  • the MOS drive signal output end of the IC module is connected;
  • a high voltage warning unit is connected between the energy storage inductor and the anode of the rectifier diode.
  • the high voltage warning unit emits light to indicate that the positive voltage of the LED string is at a high voltage.
  • the power module fault alarm unit is connected in series between the output end of the power module and the energy storage inductor of the boost module; the constant current drive IC module fault alarm unit is connected in series between the power terminal of the constant current drive IC module and the voltage conversion module.
  • the high voltage warning unit, the power module fault alarm unit, and the constant current driving IC module fault alarm unit are LED lights.
  • a liquid crystal display device which includes a backlight module, the backlight module includes an LED backlight driving circuit, and the LED backlight driving circuit includes: a power module, a voltage The conversion module, the constant current driving IC module, and the boosting module; the output end of the power module is connected to the power end of the constant current driving IC module through a voltage conversion module; the output end of the power module is connected to the anode of the LED light string through the boosting module; A high-voltage warning unit for alerting that the positive terminal voltage of the LED string is at a high voltage is provided in the boosting module; the high-voltage warning unit is further configured to indicate whether the boosting module is faulty.
  • the LED backlight driving circuit further includes:
  • the power module fault alarm unit is configured to indicate whether the power module is faulty.
  • the constant current drive IC module fault alarm unit is used to indicate whether the constant current drive IC module is faulty.
  • the boosting module of the LED backlight driving circuit comprises an energy storage inductor, a rectifier diode, a MOS transistor and an output electrolytic capacitor;
  • the anode of the rectifier diode is connected to the power module through a storage inductor, and the cathode thereof is connected to the anode of the LED string;
  • One end of the output electrolytic capacitor is connected to the cathode of the rectifier diode, and the other end is grounded;
  • the drain of the MOS transistor is connected to the anode of the rectifier diode, the source is grounded, and the gate is connected to the output end of the MOS drive signal of the constant current drive IC module;
  • a high voltage warning unit is connected between the energy storage inductor and the anode of the rectifier diode.
  • a high-voltage warning unit or a fault alarm unit is added to the LED backlight driving circuit.
  • the LED backlight driving circuit works normally, if the high-voltage warning unit light is on, the positive voltage of the LED light string is at a high voltage, and is not touched; if the LED backlight driving circuit is abnormal
  • the fault alarm unit performs an alarm, it can quickly determine whether the constant current drive IC module is abnormal or the fuse (f se ) at the input end of the power module is damaged, etc., and the time during which the circuit board is abnormally working during the troubleshooting procedure is reduced. , increase security and improve work efficiency.
  • FIG. 1 is a schematic structural view of a prior art LED backlight driving circuit
  • FIG. 2 is a schematic structural view of a first embodiment of an LED backlight driving circuit according to the present invention
  • FIG. 3 is a schematic structural view of a second embodiment of an LED backlight driving circuit according to the present invention
  • FIG. 5 is a schematic structural view of a backlight module provided by the present invention
  • FIG. 6 is a schematic structural view of a liquid crystal display device provided by the present invention.
  • the invention provides an LED backlight driving circuit, which can promptly alert and remind a fault when the output voltage of the LED backlight driving circuit is too high or fails.
  • FIG. 2 is a schematic structural view of a first embodiment of an LED backlight driving circuit according to the present invention.
  • the LED backlight driving circuit provided by the invention comprises:
  • Power module 1 voltage conversion module 2, constant current drive IC module 3, boost module 4;
  • the output end of the power module 1 is connected to the power terminal of the constant current driving IC module 3 through the voltage conversion module 2;
  • the output end of the power module 1 is connected to the anode of the LED string 5 through the boosting module 4; the boosting module 4 is provided with a high-voltage warning unit 6 for alerting that the voltage of the positive terminal of the LED string 5 is at a high voltage.
  • the high voltage warning unit 6 emits light to indicate that the positive voltage of the LED string is at a high voltage. At this time, the operator should not touch the LED backlight drive circuit to avoid harm to the human body.
  • the high voltage warning unit 6 is further configured to indicate whether the boosting module 4 has failed. Specifically, when the high voltage warning unit 6 is off, it indicates that the boosting module 4 has failed.
  • Embodiment 2 is a schematic structural diagram of Embodiment 2 of an LED backlight driving circuit provided by the present invention.
  • the LED backlight driving circuit provided in the second embodiment includes: in addition to the modules and components in the first embodiment, the following:
  • the power module failure alarm unit 7 is configured to indicate whether the power module 1 is faulty.
  • the constant current driving IC module failure alarm unit 8 is configured to indicate whether the constant current driving IC module 3 is faulty.
  • the power module failure alarm unit 7 when the power module 1 of the LED backlight driving circuit is working normally, the power module failure alarm unit 7 is turned on, and when the power module failure alarm unit 7 is not lit, the power module 1 is instructed to be faulty;
  • the constant current driving IC module failure alarm unit 8 lights up, and when the constant current driving IC module failure alarm unit 8 is not lit, the constant is indicated.
  • the stream drive IC module 3 has failed.
  • FIG. 4 is a schematic structural view of a third embodiment of an LED backlight driving circuit according to the present invention.
  • the third embodiment will describe the specific circuit structure of the LED backlight driving circuit.
  • the power module 1 is specifically a 24V AC power supply, and a fuse is also connected thereto.
  • the voltage conversion module 2 converts the 24V AC supplied from the power module 1 into 12V AC.
  • the constant current driving IC module has a 3-terminal connected to the LED string 5, and a MOS driving signal output terminal outputs a MOS driving signal.
  • the boosting module 4 includes an energy storage inductor 41, a rectifier diode 42, a MOS transistor 43 and an output electrolytic capacitor 44;
  • An anode of the rectifier diode 42 is connected to the power module 1 through a storage inductor 41, and a cathode thereof is connected to an anode of the LED string 5;
  • the output electrolytic capacitor 44 has one end connected to the cathode of the rectifier diode 42 and the other end connected to the ground;
  • the drain of the MOS transistor 43 is connected to the anode of the rectifier diode 42, the source is grounded, and the gate is connected to the MOS drive signal output end of the constant current drive IC module 3;
  • the high voltage warning unit 6, the power module failure alarm unit 7, and the constant current driving IC module failure alarm unit 8 are LED lights.
  • the high voltage warning unit 6 is connected between the energy storage inductor 41 and the anode of the rectifier diode 42.
  • the power module fault alarm unit 7 is connected in series between the output end of the power module 1 and the energy storage inductor 41 of the boost module 4 .
  • the constant current driving IC module fault alarm unit 7 is connected in series between the power terminal of the constant current driving IC module 3 and the voltage conversion module 2.
  • the LED light when the circuit works normally, the LED light emits light due to the current flowing, and the red LED light at the output electrolytic capacitor 44 can be used to alert the high voltage danger here, and the red LED light in other lines indicates that the circuit is normal.
  • the red LED In operation, when the circuit is abnormal, the red LED is off, indicating that there is a problem with the line.
  • the present invention provides a backlight module 10, the specific structure of which is shown in FIG. 5.
  • the backlight module 100 includes an LED backlight driving circuit 1000.
  • the LED backlight driving circuit includes:
  • Power module 1 voltage conversion module 2, constant current drive IC module 3, boost module 4;
  • the output end of the power module 1 is connected to the power terminal of the constant current driving IC module 3 through the voltage conversion module 2;
  • the output of the power module 1 is connected to the anode of the LED string 5 through the boosting module 4; the boosting module 4 is provided with a high voltage warning unit 6 for alerting that the voltage of the positive terminal of the LED string 5 is at a high voltage;
  • the high voltage warning unit 6 is further configured to indicate whether the boost module 4 has failed.
  • the LED backlight driving circuit further includes:
  • the power module fault alarm unit 7 is configured to indicate whether the power module 1 is faulty.
  • the constant current driving IC module fault alarm unit 8 is configured to indicate whether the constant current driving IC module 3 is faulty.
  • the boosting module 4 of the LED backlight driving circuit includes a storage inductor 41, a rectifier diode 42, a MOS transistor 43, and an output electrolytic capacitor 44;
  • An anode of the rectifier diode 42 is connected to the power module 1 through a storage inductor 41, and a cathode thereof is connected to an anode of the LED string 5;
  • the output electrolytic capacitor 44 has one end connected to the cathode of the rectifier diode 42 and the other end connected to the ground;
  • the drain of the MOS transistor 43 is connected to the anode of the rectifier diode 42 and the source is grounded.
  • the gate is connected to the MOS drive signal output end of the constant current drive IC module 3; the high voltage warning unit 6 is connected between the energy storage inductor 41 and the anode of the rectifier diode 42.
  • the high-voltage warning unit 6 emits light to indicate that the positive voltage of the LED string is at a high voltage.
  • the power module failure alarm unit 7 is connected in series between the output end of the power module 1 and the energy storage inductor 41 of the boost module 4; the constant current drive IC module fault alarm unit 8 is connected in series The power supply terminal of the constant current drive IC module 3 is connected to the voltage conversion module 2.
  • the high voltage warning unit 6, the power module failure alarm unit 7, and the constant current driving IC module failure alarm unit 8 are LED lights.
  • the boost module 4 is instructed to be faulty
  • the present invention provides a liquid crystal display device 10 including a backlight module 100.
  • the backlight module 10 includes an LED backlight driving circuit 1000. The specific structure is shown in FIG. 6.
  • the LED backlight driving circuit includes:
  • Power module 1 voltage conversion module 2, constant current drive IC module 3, boost module 4;
  • the output end of the power module 1 is connected to the power terminal of the constant current driving IC module 3 through the voltage conversion module 2;
  • the output of the power module 1 is connected to the anode of the LED string 5 through the boosting module 4; the boosting module 4 is provided with a high voltage warning unit 6 for alerting that the voltage of the positive terminal of the LED string 5 is at a high voltage;
  • the high voltage warning unit 6 is further configured to indicate whether the boost module 4 has failed.
  • the LED backlight driving circuit further includes:
  • the power module failure alarm unit 7 is configured to indicate whether the power module 1 is faulty.
  • the constant current driving IC module fault alarm unit 8 is configured to indicate whether the constant current driving IC module 3 is faulty.
  • the boosting module 4 of the LED backlight driving circuit includes an energy storage inductor 41, a rectifier diode 42, a MOS transistor 43, and an output electrolytic capacitor 44;
  • An anode of the rectifier diode 42 is connected to the power module 1 through a storage inductor 41, and a cathode thereof is connected to an anode of the LED string 5;
  • the output electrolytic capacitor 44 has one end connected to the cathode of the rectifier diode 42 and the other end connected to the ground;
  • the drain of the MOS transistor 43 is connected to the anode of the rectifier diode 42, the source is grounded, and the gate is connected to the MOS drive signal output end of the constant current drive IC module 3;
  • the high voltage warning unit 6 is connected between the energy storage inductor 41 and the anode of the rectifier diode 42.
  • the high-voltage warning unit 6 emits light to indicate that the positive voltage of the LED string is at a high voltage.
  • the power module failure alarm unit 7 is connected in series between the output end of the power module 1 and the energy storage inductor 41 of the boost module 4; the constant current drive IC module fault alarm unit 8 is connected in series The power supply terminal of the constant current drive IC module 3 is connected to the voltage conversion module 2.
  • the high voltage warning unit 6, the power module failure alarm unit 7, and the constant current driving IC module failure alarm unit 8 are LED lights.
  • the boost module 4 is instructed to be faulty
  • a high-voltage warning unit or a fault alarm unit is added to the LED backlight driving circuit.
  • the LED backlight driving circuit works normally, if the high-voltage warning unit light is on, the positive voltage of the LED light string is at a high voltage, and is not touched; if the LED backlight driving circuit is abnormal
  • the fault alarm unit performs an alarm, it can quickly determine whether the constant current drive IC module is abnormal or the fuse (f se ) at the input end of the power module is damaged, etc., and the time during which the circuit board is abnormally working during the troubleshooting procedure is reduced. , increase security and improve work efficiency.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Computer Hardware Design (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

一种LED背光驱动电路、背光模组及液晶显示装置,其中LED背光驱动电路(1000)包括:电源模块(1)、电压转换模块(2)、恒流驱动IC模块(3)及升压模块(4);所述电源模块(1)的输出端通过电压转换模块(2)与恒流驱动IC模块(3)的电源端相连,电源模块(1)的输出端通过升压模块(4)与LED灯串(5)的阳极相连;所述升压模块(4)中设置有用于警示所述LED灯串(5)正端电压处于高压的高压警示单元(6)。所述LED背光驱动电路(1000)能在输出电压过高或发生故障时及时警示并提醒故障。

Description

LED背光驱动电路、 背光模组、 液晶显示装置
本申请要求于 2013 年 3 月 19 日提交中国专利局、 申请号为 201310087555.X, 发明名称为 "LED背光驱动电路、 背光模组、 液晶显示装 置" 的中国专利申请的优先权, 上述专利的全部内容通过引用结合在本申请 中。 技术领域
本发明涉及液晶显示技术, 尤其涉及一种 LED背光驱动电路、 背光模 组和液晶显示装置。
背景技术
现有技术提供的 LED ( Light Emitting Diode, 发光二极管) 的背光驱动 电路如图 1所示,当驱动信号为高电平时, MOS管(金属 metal-氧化物 oxide- 半导体 semiconductor, 场效应晶体管)导通, 电感中电流上升, 储存能量; 当驱动信号为低电平时, MOS 管关断, 电感上产生反向感应电动势, 实现 与输入 24V电压串联, 并向 LED串译放电能, 此时 LED串正端电压很高, 其值为 Vo=24/(l-D), D为驱动信号的占空比, 若每串 LED颗数为 10, 则 Vo一般在 60〜70 V , 该高电压超过人体安全电压 36 V。
由此可见, 现有技术提供的 LED背光驱动电路, 其存在如下缺陷: LED背光驱动电路的输出电压较高,人若在电路工作状态下触碰到,会 造成伤害;
当 LED背光驱动电路不正常工作时, 需要用示波器逐个量测各个线路 的电压电流才可能找到出现问题的地方, 在此过程中电路板还处在输入 24V 供电中, 在排除程序故障 (debug ) 的过程中可能会出现不可预知的安全隐 患, 工作效率也会降低。
发明内容
本发明所要解决的技术问题在于, 提供一种 LED背光驱动电路、 背光 模组、 液晶显示装置, 可在 LED背光驱动电路的输出电压过高或发生故障 时, 及时警示并提醒故障。
为了解决上述技术问题, 本发明提供一种 LED背光驱动电路, 其中, 包括: 电源模块、 电压转换模块、 恒流驱动 IC模块、 升压模块; 电源模块 的输出端通过电压转换模块与恒流驱动 IC模块的电源端相连; 电源模块的 输出端通过升压模块与 LED灯串的阳极相连; 升压模块中设置有用于警示 LED灯串正端电压处于高压的高压警示单元。
其中, 高压警示单元还用于指示升压模块是否发生故障。
其中, 还包括: 电源模块故障告警单元, 用于指示电源模块是否发生故 障。
其中, 还包括: 恒流驱动 IC模块故障告警单元, 用于指示恒流驱动 IC 模块是否发生故障。
其中, 升压模块包括储能电感、 整流二极管、 MOS管和输出电解电容; 整流二极管的阳极通过储能电感与电源模块相连, 其阴极与 LED 串的 阳极相连;
输出电解电容一端与整流二极管的阴极相连, 另一端接地;
MOS 管的漏极与整流二极管的阳极相连, 源极接地, 栅极与恒流驱动
IC模块的 MOS驱动信号输出端连接;
高压警示单元连接在储能电感与整流二极管的阳极之间。
其中, 当 LED驱动电路正常工作时, 高压警示单元发光表示 LED灯串 正端电压处于高压。
其中, 电源模块故障告警单元串联在电源模块的输出端与升压模块的储 能电感之间。
其中, 恒流驱动 IC模块故障告警单元串联在恒流驱动 IC模块的电源端 与电压转换模块之间。
其中, 高压警示单元、 电源模块故障告警单元、 恒流驱动 IC模块故障 告警单元为 LED灯。
其中, 当高压警示单元停止闪烁时, 指示升压模块发生故障;
当电源模块故障告警单元不亮时, 指示电源模块发生故障;
当恒流驱动 IC模块故障告警单元不亮时,指示恒流驱动 IC模块发生故 障。
为解决上述技术问题, 本发明采用的另一个技术方案是: 提供一种背光 模组, 其中, 其包括 LED背光驱动电路, LED背光驱动电路包括: 电源模 块、 电压转换模块、 恒流驱动 IC模块、 升压模块; 电源模块的输出端通过 电压转换模块与恒流驱动 IC模块的电源端相连; 电源模块的输出端通过升 压模块与 LED灯串的阳极相连; 升压模块中设置有用于警示 LED灯串正端 电压处于高压的高压警示单元; 高压警示单元还用于指示升压模块是否发生 故障。
其中, LED背光驱动电路还包括:
电源模块故障告警单元, 用于指示电源模块是否发生故障;
恒流驱动 IC模块故障告警单元, 用于指示恒流驱动 IC模块是否发生故 障。
其中, LED背光驱动电路的升压模块包括储能电感、整流二极管、 MOS 管和输出电解电容;
整流二极管的阳极通过储能电感与电源模块相连, 其阴极与 LED 串的 阳极相连;
输出电解电容一端与整流二极管的阴极相连, 另一端接地;
MOS 管的漏极与整流二极管的阳极相连, 源极接地, 栅极与恒流驱动
IC模块的 MOS驱动信号输出端连接;
高压警示单元连接在储能电感与整流二极管的阳极之间。
其中, 当 LED驱动电路正常工作时, 高压警示单元发光表示 LED灯串 正端电压处于高压。
其中, 电源模块故障告警单元串联在电源模块的输出端与升压模块的储 能电感之间; 恒流驱动 IC模块故障告警单元串联在恒流驱动 IC模块的电源 端与电压转换模块之间。
其中, 高压警示单元、 电源模块故障告警单元、 恒流驱动 IC模块故障 告警单元为 LED灯。
其中, 当高压警示单元停止闪烁时, 指示升压模块发生故障;
当电源模块故障告警单元不亮时, 指示电源模块发生故障; 当恒流驱动 IC模块故障告警单元不亮时,指示恒流驱动 IC模块发生故 障。
为解决上述技术问题, 本发明采用的又一个技术方案是: 提供一种液晶 显示装置, 其中, 其包括背光模组, 背光模组包括 LED背光驱动电路, LED 背光驱动电路包括: 电源模块、 电压转换模块、 恒流驱动 IC模块、 升压模 块; 电源模块的输出端通过电压转换模块与恒流驱动 IC模块的电源端相连; 电源模块的输出端通过升压模块与 LED灯串的阳极相连; 升压模块中设置 有用于警示 LED灯串正端电压处于高压的高压警示单元; 高压警示单元还 用于指示升压模块是否发生故障。
其中, LED背光驱动电路还包括:
电源模块故障告警单元, 用于指示电源模块是否发生故障;
恒流驱动 IC模块故障告警单元, 用于指示恒流驱动 IC模块是否发生故 障。
其中, LED背光驱动电路的升压模块包括储能电感、整流二极管、 MOS 管和输出电解电容;
整流二极管的阳极通过储能电感与电源模块相连, 其阴极与 LED 串的 阳极相连;
输出电解电容一端与整流二极管的阴极相连, 另一端接地;
MOS 管的漏极与整流二极管的阳极相连, 源极接地, 栅极与恒流驱动 IC模块的 MOS驱动信号输出端连接;
高压警示单元连接在储能电感与整流二极管的阳极之间。
实施本发明, 具有如下有益效果:
在 LED背光驱动电路中加入高压警示单元或故障告警单元, 当 LED背 光驱动电路正常工作时, 若高压警示单元灯亮则警示 LED灯串正端电压处 于高压, 勿触碰; 若 LED背光驱动电路异常工作时, 故障告警单元进行告 警, 则可以快速判断出是恒流驱动 IC模块异常或者电源模块的输入端的保 险丝 (f se )损坏等情况, 减少排除故障程序的过程中电路板处于异常工作 的时间, 增加安全性, 提高工作效率。
附图说明 为了更清楚地说明本发明实施例或现有技术中的技术方案, 下面将对实 施例或现有技术描述中所需要使用的附图作简单地介绍, 显而易见地, 下面 描述中的附图仅仅是本发明的一些实施例, 对于本领域普通技术人员来讲, 在不付出创造性劳动的前提下, 还可以根据这些附图获得其他的附图。
图 1为现有技术的 LED背光驱动电路的结构示意图;
图 2为本发明提供的 LED背光驱动电路实施例一的结构示意图; 图 3为本发明提供的 LED背光驱动电路实施例二的结构示意图; 图 4为本发明提供的 LED背光驱动电路实施例三的结构示意图; 图 5为本发明提供的背光模组的结构示意图;
图 6为本发明提供的液晶显示装置的结构示意图。
具体实施方式
下面参考附图对本发明的优选实施例进行描述。
本发明提供一种 LED背光驱动电路, 可在 LED背光驱动电路的输出电 压过高或发生故障时, 及时警示并提醒故障。
参见图 2,为本发明提供的一种 LED背光驱动电路实施例一的结构示意 图。
本发明提供的 LED背光驱动电路, 包括:
电源模块 1、 电压转换模块 2、 恒流驱动 IC模块 3、 升压模块 4;
电源模块 1的输出端通过电压转换模块 2与恒流驱动 IC模块 3的电源 端相连;
电源模块 1的输出端通过升压模块 4与 LED灯串 5的阳极相连; 所述升压模块 4中设置有用于警示所述 LED灯串 5正端电压处于高压 的高压警示单元 6。 其中, 当所述 LED驱动电路正常工作时, 所述高压警示 单元 6发光表示所述 LED灯串正端电压处于高压。 此时, 操作人员不可触 碰该 LED背光驱动电路, 以免对人体造成伤害。
另一方面,该高压警示单元 6还用于指示所述升压模块 4是否发生故障。 具体的, 当高压警示单元 6灯灭时, 则表示升压模块 4已经出现故障。
参见图 3 ,为本发明提供的一种 LED背光驱动电路实施例二的结构示意 本实施例二提供的 LED背光驱动电路除了包括实施例一中的各个模块 和部件之外, 还包括:
电源模块故障告警单元 7, 用于指示所述电源模块 1是否发生故障。 恒流驱动 IC模块故障告警单元 8, 用于指示所述恒流驱动 IC模块 3是 否发生故障。
具体实现中, 当本 LED背光驱动电路的电源模块 1工作正常时, 所述 电源模块故障告警单元 7灯亮, 当所述电源模块故障告警单元 7不亮时, 指 示所述电源模块 1发生故障;
当本 LED背光驱动电路的恒流驱动 IC模块 3工作正常时, 所述恒流驱 动 IC模块故障告警单元 8灯亮, 当所述恒流驱动 IC模块故障告警单元 8不 亮时, 指示所述恒流驱动 IC模块 3发生故障。
参见图 4,为本发明提供的一种 LED背光驱动电路实施例三的结构示意 图。
本实施例三将描述 LED背光驱动电路具体的电路结构, 其中, 电源模 块 1具体为 24V交流电源,其上还连接有保险丝。 电压转换模块 2将电源模 块 1提供的 24V交流电转换为 12V交流电。恒流驱动 IC模块 3—端与 LED 灯串 5连接, 其 MOS驱动信号输出端输出 MOS驱动信号。
更为具体的, 升压模块 4包括储能电感 41、 整流二极管 42、 MOS管 43 和输出电解电容 44;
所述整流二极管 42的阳极通过储能电感 41与所述电源模块 1相连, 其 阴极与所述 LED串 5的阳极相连;
所述输出电解电容 44一端与所述整流二极管 42的阴极相连, 另一端接 地;
所述 MOS管 43的漏极与所述整流二极管 42的阳极相连, 源极接地, 栅极与所述恒流驱动 IC模块 3的 MOS驱动信号输出端连接;
本实施例中, 所述高压警示单元 6、 电源模块故障告警单元 7、 恒流驱 动 IC模块故障告警单元 8为 LED灯。
所述高压警示单元 6连接在所述储能电感 41与所述整流二极管 42的阳 极之间。 所述电源模块故障告警单元 7串联在所述电源模块 1的输出端与所述升 压模块 4的储能电感 41之间。
其中, 所述恒流驱动 IC模块故障告警单元 7串联在所述恒流驱动 IC模 块 3的电源端与所述电压转换模块 2之间。
具体的, 当电路正常工作时, LED灯因有电流流过而发光, 输出电解电 容 44处的红色 LED灯亮可以起到警示此处高压危险的作用, 其它线路中的 红色 LED灯亮则表示电路正常工作中, 当电路出现异常时,红色 LED灯灭, 表示线路出现问题。
本发明提供了一种背光模组 10, 其具体结构参见图 5, 该背光模组 100 包括 LED背光驱动电路 1000。
如前述图 2所示, 所述 LED背光驱动电路包括:
电源模块 1、 电压转换模块 2、 恒流驱动 IC模块 3、 升压模块 4;
电源模块 1的输出端通过电压转换模块 2与恒流驱动 IC模块 3的电源 端相连;
电源模块 1的输出端通过升压模块 4与 LED灯串 5的阳极相连; 所述升压模块 4中设置有用于警示所述 LED灯串 5正端电压处于高压 的高压警示单元 6;
所述高压警示单元 6还用于指示升压模块 4是否发生故障。
其中, 所述 LED背光驱动电路还包括:
电源模块故障告警单元 7, 用于指示所述电源模块 1是否发生故障; 恒流驱动 IC模块故障告警单元 8, 用于指示所述恒流驱动 IC模块 3是 否发生故障。
其中, 所述 LED背光驱动电路的升压模块 4包括储能电感 41、 整流二 极管 42、 MOS管 43和输出电解电容 44;
所述整流二极管 42的阳极通过储能电感 41与所述电源模块 1相连, 其 阴极与所述 LED串 5的阳极相连;
所述输出电解电容 44一端与所述整流二极管 42的阴极相连, 另一端接 地;
所述 MOS管 43的漏极与所述整流二极管 42的阳极相连, 源极接地, 栅极与所述恒流驱动 IC模块 3的 MOS驱动信号输出端连接; 所述高压警示单元 6连接在所述储能电感 41与所述整流二极管 42的阳 极之间。
其中, 当所述 LED驱动电路正常工作时, 所述高压警示单元 6发光表 示所述 LED灯串正端电压处于高压。
其中, 所述电源模块故障告警单元 7串联在所述电源模块 1的输出端与 所述升压模块 4的储能电感 41之间; 所述恒流驱动 IC模块故障告警单元 8 串联在所述恒流驱动 IC模块 3的电源端与所述电压转换模块 2之间。
其中, 所述高压警示单元 6、 电源模块故障告警单元 7、 恒流驱动 IC模 块故障告警单元 8为 LED灯。
其中, 当所述高压警示单元 6停止闪烁时, 指示所述升压模块 4发生故 障;
当所述电源模块故障告警单元 7不亮时,指示所述电源模块 1发生故障; 当所述恒流驱动 IC模块故障告警单元 8不亮时, 指示所述恒流驱动 IC 模块 3发生故障。
本发明提供了一种液晶显示装置 10, 其包括背光模组 100, 该背光模组 10包括 LED背光驱动电路 1000, 其具体结构参见图 6。
其中, 如前述图 2所示, 所述 LED背光驱动电路包括:
电源模块 1、 电压转换模块 2、 恒流驱动 IC模块 3、 升压模块 4;
电源模块 1的输出端通过电压转换模块 2与恒流驱动 IC模块 3的电源 端相连;
电源模块 1的输出端通过升压模块 4与 LED灯串 5的阳极相连; 所述升压模块 4中设置有用于警示所述 LED灯串 5正端电压处于高压 的高压警示单元 6;
所述高压警示单元 6还用于指示升压模块 4是否发生故障。
其中, 所述 LED背光驱动电路还包括:
电源模块故障告警单元 7, 用于指示所述电源模块 1是否发生故障; 恒流驱动 IC模块故障告警单元 8, 用于指示所述恒流驱动 IC模块 3是 否发生故障。 其中, 所述 LED背光驱动电路的升压模块 4包括储能电感 41、 整流二 极管 42、 MOS管 43和输出电解电容 44;
所述整流二极管 42的阳极通过储能电感 41与所述电源模块 1相连, 其 阴极与所述 LED串 5的阳极相连;
所述输出电解电容 44一端与所述整流二极管 42的阴极相连, 另一端接 地;
所述 MOS管 43的漏极与所述整流二极管 42的阳极相连, 源极接地, 栅极与所述恒流驱动 IC模块 3的 MOS驱动信号输出端连接;
所述高压警示单元 6连接在所述储能电感 41与所述整流二极管 42的阳 极之间。
其中, 当所述 LED驱动电路正常工作时, 所述高压警示单元 6发光表 示所述 LED灯串正端电压处于高压。
其中, 所述电源模块故障告警单元 7串联在所述电源模块 1的输出端与 所述升压模块 4的储能电感 41之间; 所述恒流驱动 IC模块故障告警单元 8 串联在所述恒流驱动 IC模块 3的电源端与所述电压转换模块 2之间。
其中, 所述高压警示单元 6、 电源模块故障告警单元 7、 恒流驱动 IC模 块故障告警单元 8为 LED灯。
其中, 当所述高压警示单元 6停止闪烁时, 指示所述升压模块 4发生故 障;
当所述电源模块故障告警单元 7不亮时,指示所述电源模块 1发生故障; 当所述恒流驱动 IC模块故障告警单元 8不亮时, 指示所述恒流驱动 IC 模块 3发生故障。
实施本发明, 具有如下有益效果:
在 LED背光驱动电路中加入高压警示单元或故障告警单元, 当 LED背 光驱动电路正常工作时, 若高压警示单元灯亮则警示 LED灯串正端电压处 于高压, 勿触碰; 若 LED背光驱动电路异常工作时, 故障告警单元进行告 警, 则可以快速判断出是恒流驱动 IC模块异常或者电源模块的输入端的保 险丝 (f se )损坏等情况, 减少排除故障程序的过程中电路板处于异常工作 的时间, 增加安全性, 提高工作效率。 以上所揭露的仅为本发明较佳实施例而已, 当然不能以此来限定本发明 之权利范围, 因此依本发明权利要求所作的等同变化, 仍属本发明所涵盖的 范围。

Claims

权 利 要 求
1、 一种 LED背光驱动电路, 其中, 包括:
电源模块、 电压转换模块、 恒流驱动 IC模块、 升压模块;
电源模块的输出端通过电压转换模块与恒流驱动 IC模块的电源端相连; 电源模块的输出端通过升压模块与 LED灯串的阳极相连;
所述升压模块中设置有用于警示所述 LED灯串正端电压处于高压的高 压警示单元。
2、 如权利要求 1所述的 LED背光驱动电路, 其中, 所述高压警示单元 还用于指示升压模块是否发生故障。
3、 如权利要求 1所述的 LED背光驱动电路, 其中, 还包括: 电源模块 故障告警单元, 用于指示所述电源模块是否发生故障。
4、 如权利要求 3所述的 LED背光驱动电路, 其中, 还包括: 恒流驱动 IC模块故障告警单元, 用于指示所述恒流驱动 IC模块是否发生故障。
5、 如权利要求 1所述的 LED背光驱动电路, 其中, 所述升压模块包括 储能电感、 整流二极管、 MOS管和输出电解电容;
所述整流二极管的阳极通过储能电感与所述电源模块相连, 其阴极与所 述 LED串的阳极相连;
所述输出电解电容一端与所述整流二极管的阴极相连, 另一端接地; 所述 MOS管的漏极与所述整流二极管的阳极相连, 源极接地, 栅极与 所述恒流驱动 IC模块的 MOS驱动信号输出端连接;
所述高压警示单元连接在所述储能电感与所述整流二极管的阳极之间。
6、 如权利要求 3所述的 LED背光驱动电路, 其中, 当所述 LED驱动 电路正常工作时, 所述高压警示单元发光表示所述 LED灯串正端电压处于 高压。
7、 如权利要求 3所述的 LED背光驱动电路, 其中, 所述电源模块故障 告警单元串联在所述电源模块的输出端与所述升压模块的储能电感之间。
8、 如权利要求 4所述的 LED背光驱动电路, 其中, 所述恒流驱动 IC 模块故障告警单元串联在所述恒流驱动 IC模块的电源端与所述电压转换模 块之间。
9、如权利要求 4所述的 LED背光驱动电路,其中, 所述高压警示单元、 电源模块故障告警单元、 恒流驱动 IC模块故障告警单元为 LED灯。
10、 如权利要求 9所述的 LED背光驱动电路, 其中, 当所述高压警示 单元停止闪烁时, 指示所述升压模块发生故障;
当所述电源模块故障告警单元不亮时, 指示所述电源模块发生故障; 当所述恒流驱动 IC模块故障告警单元不亮时,指示所述恒流驱动 IC模 块发生故障。
11、 一种背光模组, 其中, 其包括 LED背光驱动电路, 所述 LED背光 驱动电路包括:
电源模块、 电压转换模块、 恒流驱动 IC模块、 升压模块;
电源模块的输出端通过电压转换模块与恒流驱动 IC模块的电源端相连; 电源模块的输出端通过升压模块与 LED灯串的阳极相连;
所述升压模块中设置有用于警示所述 LED灯串正端电压处于高压的高 压警示单元;
所述高压警示单元还用于指示升压模块是否发生故障。
12、 如权利要求 11所述的背光模组, 其中, 所述 LED背光驱动电路还 包括:
电源模块故障告警单元, 用于指示所述电源模块是否发生故障; 恒流驱动 IC模块故障告警单元, 用于指示所述恒流驱动 IC模块是否发 生故障。
13、 如权利要求 12所述的背光模组, 其中, 所述 LED背光驱动电路的 升压模块包括储能电感、 整流二极管、 MOS管和输出电解电容;
所述整流二极管的阳极通过储能电感与所述电源模块相连, 其阴极与所 述 LED串的阳极相连;
所述输出电解电容一端与所述整流二极管的阴极相连, 另一端接地; 所述 MOS管的漏极与所述整流二极管的阳极相连, 源极接地, 栅极与 所述恒流驱动 IC模块的 MOS驱动信号输出端连接;
所述高压警示单元连接在所述储能电感与所述整流二极管的阳极之间。
14、 如权利要求 13所述的背光模组, 其中, 当所述 LED驱动电路正常 工作时, 所述高压警示单元发光表示所述 LED灯串正端电压处于高压。
15、 如权利要求 14所述的背光模组, 其中, 所述电源模块故障告警单 元串联在所述电源模块的输出端与所述升压模块的储能电感之间; 所述恒流 驱动 IC模块故障告警单元串联在所述恒流驱动 IC模块的电源端与所述电压 转换模块之间。
16、 如权利要求 15所述的背光模组, 其中, 所述高压警示单元、 电源 模块故障告警单元、 恒流驱动 IC模块故障告警单元为 LED灯。
17、 如权利要求 16所述的背光模组, 其中, 当所述高压警示单元停止 闪烁时, 指示所述升压模块发生故障;
当所述电源模块故障告警单元不亮时, 指示所述电源模块发生故障; 当所述恒流驱动 IC模块故障告警单元不亮时,指示所述恒流驱动 IC模 块发生故障。
18、 一种液晶显示装置, 其中, 其包括背光模组, 所述背光模组包括 LED背光驱动电路, 所述 LED背光驱动电路包括:
电源模块、 电压转换模块、 恒流驱动 IC模块、 升压模块;
电源模块的输出端通过电压转换模块与恒流驱动 IC模块的电源端相连; 电源模块的输出端通过升压模块与 LED灯串的阳极相连;
所述升压模块中设置有用于警示所述 LED灯串正端电压处于高压的高 压警示单元;
所述高压警示单元还用于指示升压模块是否发生故障。
19、 如权利要求 18所述的液晶显示装置, 其中, 所述 LED背光驱动电 路还包括:
电源模块故障告警单元, 用于指示所述电源模块是否发生故障; 恒流驱动 IC模块故障告警单元, 用于指示所述恒流驱动 IC模块是否发 生故障。
20、 如权利要求 19所述的液晶显示装置, 其中, 所述 LED背光驱动电 路的升压模块包括储能电感、 整流二极管、 MOS管和输出电解电容;
所述整流二极管的阳极通过储能电感与所述电源模块相连, 其阴极与所 述 LED串的阳极相连; 所述输出电解电容一端与所述整流二极管的阴极相连, 另一端接地; 所述 MOS管的漏极与所述整流二极管的阳极相连, 源极接地, 栅极与 所述恒流驱动 IC模块的 MOS驱动信号输出端连接;
所述高压警示单元连接在所述储能电感与所述整流二极管的阳极之间。
PCT/CN2013/073340 2013-03-19 2013-03-28 Led背光驱动电路、背光模组、液晶显示装置 WO2014146310A1 (zh)

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