IP Library Granted Patent US 10,395,604
Granted Patent B2
US 10,395,604 · App. 14/518,093 · Granted Aug 27, 2019

LED driving circuit, LED driving method, and liquid crystal display device

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Quick Facts
Patent No.
US 10,395,604
App. No.
14/518,093
Granted
Aug 27, 2019
Kind
B2
Abstract

An LED driving circuit, an LED driving method, and a liquid crystal display device, which prevent deterioration of display quality by effectively shortening the time required for starting the LED backlight and stabilizing the driving operations are provided. The LED driving circuit for controlling an LED circuit constituted with one LED or two or more LEDs includes: a duty ratio adjusting circuit unit which generates/outputs adjusting signals for adjusting drive of the LED based on a PWM dimming signal inputted from outside; and a booster circuit unit which applies driving voltages to the LED circuit according to the adjusting signal outputted from the duty ratio adjusting circuit unit. The duty ratio adjusting circuit unit sets the adjusting signal to have a larger duty ratio than that of the PWM dimming signal within an adjusting period set after the power is supplied until the LED circuit starts to connect electrically.

Claims (39)

1. An LED driving circuit for controlling an LED circuit constituted with one LED or two or more LEDS, the driving circuit comprising:

a duty ratio adjusting circuit unit which generates and outputs an adjusting signal for adjusting drive of the LED circuit based on a PWM dimming signal inputted from outside; and

a booster circuit unit which applies a driving voltage to the LED circuit according to the adjusting signal outputted from the duty ratio adjusting circuit unit, wherein

the duty ratio adjusting circuit unit generates the adjusting signal, the adjusting signal includes a first duty ratio larger than a duty ratio of the PWM dimming signal during a first period in which the booster circuit unit applies the voltage to the LED circuit but the LED circuits does not flow a current from the booster circuit unit and the LED circuit does not emit, the adjusting signal includes a second duty ratio smaller than the first duty ratio during a second period directly after the first period and in which the booster circuit unit applies the voltage to the LED circuit, the LED circuit flows a current from the booster circuit unit and the LED circuit emits, and

the booster circuit unit boosts a first voltage to a second voltage larger than the first voltage according to the adjusting signal during the first period and applies the second voltage to the LED circuit, and boosts a voltage according to the adjusting signal during the second period and applies the voltage to the LED circuit.

2. The LED driving circuit as claimed in claim 1 , further comprising a voltage monitoring circuit unit which monitors an anode voltage of the LED circuit and outputs a signal based on voltage monitoring to the duty ratio adjusting circuit unit, wherein

the adjusting period is a period until the anode voltage monitored by the voltage monitoring circuit unit reaches a threshold voltage that is provided in advance.

3. The LED driving circuit as claimed in claim 2 , wherein

the duty ratio adjusting circuit unit generated the adjusting signal by synchronizing the signal based on the voltage monitoring with the PWM dimming signal.

4. The LED driving circuit as claimed in claim 2 , wherein

the threshold voltage is set as a smaller value than a voltage required for lighting up all the LEDs constituting the LED circuit.

5. The LED driving circuit as claimed in claim 2 , wherein

the duty ratio adjusting circuit unit gradually decreases the duty ratio of the adjusting signal to be generated to bring it close to the duty ratio of the PWM dimming signal within a specific period after the anode voltage monitored by the voltage monitoring circuit unit reaches the threshold voltage.

6. The LED driving circuit as claimed in claim 1 , wherein

the duty ratio adjusting circuit unit calculated and sets the adjusting period based on the PWM dimming signal and operation characteristic information of the booster circuit unit.

7. The LED driving circuit as claimed in claim 1 , further comprising a current monitoring circuit unit which the monitors a forward electric current flown from a cathode side of the LED circuit and outputs a signal based on current monitoring to the duty ratio adjusting circuit unit, wherein

the duty ratio adjusting circuit unit adjusts the duty ratio of the adjusting signal according to the signal based on the current monitoring.

8. The LED driving circuit as claimed in claim 7 , wherein

the duty ratio adjusting circuit unit gradually decreased the duty ratio of the adjusting signal to be generated to bring it close to the duty ratio of the PWM dimming signal within a specific period after the forward electric current monitored by the current monitoring circuit unit starts to flow.

9. A liquid crystal display device, comprising:

a liquid crystal display panel which displays a video towards outside;

a backlight which comprises the LED circuit constituted with one LED or two or more LEDs and illuminates the liquid crystal display panel from a back surface; and

the LED driving circuit claimed in claim 1 .

10. The LED driving circuit as claimed in claim 1 , wherein the larger duty ratio is 100%.

11. The LED driving circuit as claimed in claim 1 , wherein the booster circuit unit, before the LED circuit is started to light up, stops boosting the voltage according to the duty ratio larger than that of the PWM dimming signal and applies the boosted voltage to the LED circuit.

12. An LED driving method used with an LED driving circuit which comprises a booster circuit unit which applies a driving voltage to an LED circuit constituted with one LED or two or more LEDs and a duty ratio adjusting circuit unit which generates and outputs an adjusting signal for adjusting drive of the LED circuit, wherein:

the duty ratio adjusting circuit unit inputs a PWM dimming signal used for controlling operations of the LED circuit from outside;

the duty ratio adjusting circuit unit generates the adjusting signal having a first duty ratio larger than a duty ratio of the PWM dimming signal during a first period in which the booster circuit unit applies the voltage to the LED circuit but the LED circuits does not flow a current from the booster circuit unit and the LED circuit does not emit, the adjusting signal includes a second duty ratio smaller than the first duty ratio during a second period directly after the first period and in which the booster circuit unit applies the voltage to the LED circuit, the LED circuit flows a current from the booster circuit unit and the LED circuit emits;

the booster circuit unit applies a voltage to the LED circuit according to the adjusting signal outputted from the duty ratio adjusting circuit unit; and

the booster circuit unit boosts a first voltage to a second voltage larger than the first voltage according to the adjusting signal during the first period and applies the second voltage to the LED circuit, and boosts a voltage according to the adjusting signal during the second period and applies the voltage to the LED circuit.

13. The LED driving method as claimed in claim 12 , wherein:

a voltage monitoring circuit unit provided separately monitors an anode voltage of the LED circuit;

the voltage monitoring circuit unit generates and outputs a control signal having a larger duty ratio than that of the PWM dimming signal in the adjusting period that is a period until the anode voltage acquired by monitoring reaches a threshold voltage that is provided in advance; and

the duty ratio adjusting circuit unit generates the adjusting signal by synchronizing the control signal outputted from the voltage monitoring circuit unit with the PWM dimming signal.

14. An LED driving circuit for controlling an LED circuit constituted with one LED or two or more LEDs, the driving circuit comprising:

duty ratio adjusting circuit means for generating and outputting an adjusting signal for adjusting drive of the LED circuit based on a PWM dimming signal inputted from outside; and

booster circuit means for applying a driving voltage to the LED circuit according to the adjusting signal outputted from the duty ratio adjusting circuit means, wherein

the duty ratio adjusting circuit means generates the adjusting signal, the adjusting signal includes a first duty ratio larger than a duty ratio of the PWM dimming signal during a first period in which the booster circuit means applies the voltage to the LED circuit but the LED circuits does not flow a current from the booster circuit means and the LED circuit does not emit, the adjusting signal includes a second duty ratio smaller than the first duty ratio during a second period directly after the first period and in which the booster circuit means applies the voltage to the LED circuit, the LED circuit flows a current from the booster circuit means and the LED circuit emits, and

the booster circuit means boosts a first voltage to a second voltage larger than the first voltage according to the adjusting signal during the first period and applies the second voltage to the LED circuit, and boosts a voltage according to the adjusting signal during the second period and applies the voltage to the LED circuit.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2019
From: TIANMA JAPAN, LTD.
To: TIANMA MICROELECTRONICS CO., LTD.
Reel/Frame 050395/0931 →
CHANGE OF NAME Recorded Sep 12, 2019
From: NLT TECHNOLOGIES, LTD.
To: TIANMA JAPAN, LTD.
Reel/Frame 050359/0923 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 21, 2014
From: MIO, SETSUKO
To: NLT TECHNOLOGIES, LTD.
Reel/Frame 033990/0992 →