1. Field of the Invention
The invention relates to a display device and, more particularly, to a device and method thereof for controlling backlight timing of a display device.
2. Description of the Prior Art
A liquid crystal display (LCD) using light emitting diodes as a backlight module is usually applied to a notebook. Referring to
Referring to
However, if the LED backlight control signal 28 from external devices is abnormal, the panel will display images with noise while power is on or off. As shown in
When power is on and provided that the power of the LED backlight driving unit 16 has reached steady state, a transient voltage occurs in the enable signal 282 during time t0-t1 and the PWM signal 280 is high. At this time, the LED backlight driving unit 16 will output voltage to power on the LED backlight module 18 at time interval a. After the time interval a, the enable signal 282 is pulled low and then the LED backlight driving unit 16 stops to output voltage, such that the LED backlight module 18 is powered off. At time t1-t2 within time interval b, the enable signal 282 is pulled high again, so that the LED backlight module 18 is powered on again. It should be noted that, at time t2-t3 within the time interval b, the data signal 22 may not reach steady state yet, such that the panel 14 may display an image with noise. At this time, since the LED backlight module 18 has been powered on, the panel 14 will display the image with noise clearly. After time t3, the enable signal 282 is pulled low again, so that the LED backlight module 18 is powered off again.
When power is off (i.e. after time t4), the LED backlight module 18 should be powered off at the same time under normal condition. However, since the enable signal 282 and the PWM signal 280 are still pulled high, the LED backlight driving unit 16 will be on. Accordingly, the panel may display images with noise due to unstable data signal 22 during time t4-t5 and display white image during time t5-t6 (provided that the panel 14 will display white image while there is no data signal).
Therefore, one objective of the invention is to provide a display device and backlight control method thereof for controlling timing of the backlight control signal, such as enable signal and/or PWM signal, so as to solve the aforesaid problems.
According to one embodiment, a display device of the invention comprises a panel, a receiving interface, a timing control module, a backlight module and a backlight driving unit. The timing control module is electrically connected to the receiving interface and the panel. The backlight driving unit is electrically connected to the receiving interface, the timing control module and the backlight module. The receiving interface receives a first data signal and a first backlight control signal with a first timing. The timing control module converts the first data signal into a second data signal and then outputs the second data signal to the panel. Furthermore, based on the second data signal, the timing control module converts the first backlight control signal into a second backlight control signal with a second timing different from the first timing and then outputs the second backlight control signal. After receiving the second backlight control signal from the timing control module, the backlight driving unit is controlled by the second backlight control signal to output an output voltage signal to the backlight module.
According to another embodiment, a backlight control method of the invention comprises steps of: receiving a first data signal and a first backlight control signal with a first timing; converting the first data signal into a second data signal and then outputting the second data signal to a panel; based on the second data signal, converting the first backlight control signal into a second backlight control signal with a second timing different from the first timing and then outputting the second backlight control signal; and based on the second backlight control signal, outputting an output voltage signal to a backlight module.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
Referring to
The receiving interface 42 receives a first input voltage signal 50 and a second input voltage signal 52 from external devices. Afterward, the receiving interface 42 supplies the first input voltage signal 50 to the backlight driving unit 48 and supplies the second input voltage signal 52 to the timing control module 44. Furthermore, the receiving interface 42 also receives a first data signal 54 and a first backlight control signal 56 with a first timing from external devices. In this embodiment, the first backlight control signal 56 comprises a PWM signal 560 and an enable signal 562. The PWM signal 560 is used for controlling brightness of the backlight module 46 and the enable signal 562 is used for controlling on/off of the backlight module 46. The PWM signal 560 and the enable signal 562 both have the first timing.
The timing control module 44 is driven by the second input voltage signal 52 to convert the first data signal 54 into a second data signal 58 and output the second data signal 58 to the panel 40. Furthermore, based on the second data signal 58, the timing control module 44 converts the first backlight signal 56 into a second backlight control signal 60 with a second timing different from the aforesaid first timing and then outputs the second backlight control signal 60 to the backlight driving unit 48. As mentioned in the above, since the first backlight control signal 56 comprises the PWM signal 560 and the enable signal 562, the second backlight control signal 60 also comprises a PWM signal 600 and an enable signal 602 and the PWM signal 600 and the enable signal 602 both have the second timing.
After receiving the second backlight control signal 60 from the timing control module 44, the backlight driving unit 48 is controlled by the second backlight control signal 60 to output an output voltage signal 62 to the backlight module 46, so as to power on the backlight module 46. Moreover, the backlight module 46 will output a feedback current 64 to the backlight driving unit 48. The backlight driving unit 48 can unify brightness of the backlight module 46 based on the feedback current 64.
Referring to
The first receiving unit 440 receives the first data signal 54 from the receiving interface 42 and transmits the first data signal 54 to the processing unit 442. The processing unit 442 converts the first data signal 54 into the second data signal 58 in a specific format in compliance with the panel 40 and then transmits the second data signal 58 to the transmitting unit 444 and the control unit 446. The transmitting unit 444 outputs the second data signal 58 to the panel 40. Furthermore, based on the second data signal 58, the control unit 446 outputs control signals 66, such as start pulse (STH) signal, latch pulse (LP) signal, point of load (POL) signal, see through vision (STV) signal, output enable (OE) signal and so on, to the panel 40.
Moreover, after receiving the first backlight control signal 56 from the receiving interface 42, the second receiving unit 448 transmits the first backlight control signal 56 to the logic unit 450. At this time, the logic unit 450 determines whether the second data signal 58 has been transmitted to the panel 40 or terminated first. Once the second data signal 58 has been transmitted to the panel 40 or terminated, the signal regenerating unit 452 converts the first backlight control signal 56 into the second backlight control signal 60 and then outputs the second backlight control signal 60 to the backlight driving unit 48.
Referring to
In general, after supplying the second input voltage signal 52 to the panel 40, the timing control module 44 will reach steady state after time t0-t2 and the data signal 58 is then inputted. To avoid the aforesaid situation, the backlight driving unit 48 should output voltage to the backlight module 46 after time t2-t3 when the data signal 58 has reached steady state, so as to prevent the panel 40 from displaying undesired images while the backlight module 46 is powered on.
In one embodiment, after the transmitting unit 444 transmits the second data signal 58 to the panel 40, the logic unit 450 of the invention may determine that the second data signal 58 has been transmitted to the panel 40 after a first predetermined time. Then, the logic unit 450 outputs a control signal to control the signal regenerating unit 452 to adjust the timing of the PWM signal 560 and the enable signal 562 to be the timing after adjustment shown in
In another embodiment, after the timing control module 44 receives the second input voltage signal 52, the logic unit 450 of the invention may determine that the second data signal 58 has been transmitted to the panel 40 after a second predetermined time. Then, the logic unit 450 outputs a control signal to control the signal regenerating unit 452 to adjust the timing of the PWM signal 560 and the enable signal 562 to be the timing after adjustment shown in
In another embodiment, after the timing control module 44 receives the second input voltage signal 52 and reaches steady state, the logic unit 450 of the invention may determine that the second data signal 58 has been transmitted to the panel 40 after a third predetermined time. Then, the logic unit 450 outputs a control signal to control the signal regenerating unit 452 to adjust the timing of the PWM signal 560 and the enable signal 562 to be the timing after adjustment shown in
On the other hand, the backlight module 46 should be powered off before time t4, so as to avoid generating power-off noise. Since time t4-t5 when the second data signal 58 will be terminated cannot be obtained, the timing control module 44 of the invention may pull low the PWM signal 560 and the enable signal 562 at time t5 when the second data signal is terminated, so as to power off the backlight module 46. Accordingly, the power-off noise can be avoided.
Referring to
Referring to
Still further, when the timing control module 44 converts the first backlight control signal 56 into the second backlight control signal 60, the invention may change the output mode of the backlight control signal, such as frequency, amplitude and so on, at the same time.
It should be noted that the invention can adjust the timing of the PWM signal and the enable signal at the same time or just adjust one of the both signals, so as to avoid generating power-on or power-off noise. In other words, the power-on or power-off noise can be avoided as long as one of the PWM signal and the enable signal is pulled high at time t3 and pulled low at time t5. If we cannot know which of the PWM signal and the enable signal will be inputted to the timing control module 44 first, the timing control module 44 has to perform the aforesaid adjustment for the PWM signal and the enable signal at the same time.
Compared to the prior art, the invention utilizes the timing control module to adjust the PWM signal and/or the enable signal in advance rather than inputting both of them to the backlight driving unit directly. The logic unit of the timing control module determines an optimal time for powering on/off the backlight module and determines a duty ratio and frequency for the PWM signal. Furthermore, the signal regenerating unit regenerates the PWM signal and the enable signal and then outputs both of them to the backlight driving unit. Accordingly, the backlight module will be powered on after the data signal reaches steady state, so as to avoid generating power-on noise. Moreover, the backlight module will be powered off after the data signal has been terminated and the power-off process is going to be performed, so as to avoid generating power-off noise.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention.
Number | Date | Country | Kind |
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098129673 | Sep 2009 | TW | national |