1. Field of the Invention
The invention relates to a display apparatus, particularly to a gate driver of a LCD display and a method of operating the gate driver.
2. Description of the Prior Art
In recent years, the image display related technology has continuously developed; the conventional CRT (Cathode Ray Tube) display has been gradually replaced by various new-type display apparatuses shown on the market. Among these display apparatuses, because the liquid crystal displayer has advantages of saving power and small size, therefore, the liquid crystal displayer is widely used by ordinary consumers and becomes the mainstream of the displayer market.
Please refer to
In general, after a signal is transmitted by scanning lines of the LCD apparatus, the waveform of the signal will be distorted due to the delay of parasitic resistance and parasitic capacitance, the waveform of the signal of the front and end gate driver 5 will be different from others, so that LCD display flicker will be caused. In order to improve this flicker condition, the high-level output power VGH outputted by the first charge pump 2 will not be directly provided to the gate driver 5; instead, the high-level output power VGH will be modulated by a modulated pulse generator 12 of the power source management chip 1 according to a level of pulse modulation control signal YVC to generate a pulse modulation output power signal VGHM, and then the pulse modulation output power signal VGHM will be outputted to the gate drivers 5.
Please refer to
Although the above-mentioned method can improve the flicker condition of the LCD display, other problems hard to overcome will be caused. Please refer to
Then, after the time enters into the second time interval t2, the switch P1 is switched from the off-state to the on-state, and the switch P2 is switched from on-state to the off-state. Because the ordinary switches P1 and P2 has a resistance of 15 Ohm or less, therefore, a pulse will be generated at the moment that the switch P1 is switched from the off-state to the on-state, and its peak value is (30V-10V)/15 Ohm=1.3 A.
It should be noticed that with the increasing of the size of the panel of the LCD apparatus, the number of the channels of the gate driver will be increased, so that the loading capacitance of the pulse modulation output power signal VGHM will become larger, and the maintaining time of the pulse current formed when the switch P1 is turned on will become longer. On the other hand, the high-level output power VGH of the gate driver will be raised with the increasing of the size of the panel. Under the condition that the voltage of modulated pulse bottom stays unchanged, the peak value of the pulse current will become larger, so that the gate driver and its package circuit will be damaged. In addition, in order to integrate the boost regulator 10 and the gate pulse modulation switch 12 made by processes of different voltages in the same conventional power source management chip 1, a lot of additional design cost will be spent and it is inconvenient for users.
Therefore, the invention provides a gate driver applied in a LCD apparatus and operating method thereof to solve the above-mentioned problems.
A first embodiment of the invention is a gate driver. The gate driver is applied in a LCD apparatus, and the gate driver includes a pulse modulation controlling module, an output buffering module, a first charge pump, and a second charge pump. The pulse modulation controlling module includes a pulse modulation controlling logic unit and an active switch. The first charge pump and the second charge pump are used to receive a low-voltage power source and generate a high-level power source signal and a low-level power source signal respectively. When a pulse modulation controlling signal received by the pulse modulation controlling logic unit changes from high-level to low-level, the pulse modulation controlling logic unit will perform a logic operation process according to a level shifting signal and the pulse modulation controlling signal to generate a first switch signal and a second switch signal respectively to turn off the active switch and the output buffering module, so that the high-level power source signal will start to discharge and have a modulated waveform.
A second embodiment of the invention is a gate driver. Different from the gate driver of the above-mentioned first embodiment, in the gate driver of the second embodiment, the duty cycle of the system clock signal will be probably designed to match the duty cycle of the pulse modulation controlling signal; therefore, the system clock signal can be directly used to replace the original pulse modulation controlling signal to further simplify the design of the panel system.
A third embodiment of the invention is a gate driver operating method. The gate driver is applied in a LCD apparatus, and the gate driver includes a pulse modulation controlling module, an output buffering module, a first charge pump, and a second charge pump. The pulse modulation controlling module includes a pulse modulation controlling logic unit and an active switch.
At first, the first charge pump and the second charge pump receive a low-voltage power source and generate a high-level power source signal and a low-level power source signal respectively. When a pulse modulation controlling signal received by the pulse modulation controlling logic unit changes from high-level to low-level, the pulse modulation controlling logic unit will perform a logic operation process according to a level shifting signal and the pulse modulation controlling signal to generate a first switch signal and a second switch signal respectively. Then, the active switch and the output buffering module are turned off according to the first switch signal and the second switch signal respectively to make the high-level power source signal start to discharge to form a modulated waveform.
The advantage and spirit of the invention may be understood by the following recitations together with the appended drawings.
The invention provides a gate driver applied in a LCD apparatus and operating method thereof. The gate driver of the invention can not only effectively prevent the damage to the gate driver caused by the pulse current formed when the conventional power source management chip generates a modulated pulse, but also have advantages of using single power source, reducing signal types, and simplifying the design of the power source management chip, therefore, the entire cost of the panel display system can be largely reduced to enhance its competitiveness on the market.
A first embodiment of the invention is a gate driver. In this embodiment, the gate driver can be applied in the LCD apparatus, but not limited to this case. The same with the prior art, the LCD apparatus also includes a power source management chip and a gate driver. However, it should be noticed that since the pulse modulation output power source outputted to the gates is generated by the gate driver in the invention, when the power source management chip is designed, only the manufacturing process suitable for the boost regulator (e.g., the manufacturing process of 20V voltage) should be considered, so that the chip design cost will be largely reduced and the flexibility of selecting manufacturing processes can be also increased.
Please refer to
It should be noticed that since the shift register module 41, the output enable controlling module 42, the level shifting module 43, and the output buffering module 44 are well-known modules of the gate driver 4, there is no further related description. Next, the pulse modulation controlling module 45, the first charge pump 46, and the second charge pump 47 will be introduced in detail.
Please refer to
In this embodiment, after the pulse modulation controlling logic unit 450 receives a level shifting signal from the level shifting module 43 and performs a logic operation process according to the level shifting signal and a pulse modulation controlling signal YVC, a first switch signal SW1 and a second switch signal SW2 will be generated respectively to control the active switch 452 and the output buffering module 44 turned on or off respectively.
Please refer to
When the active switch 452 is turned off, the corresponding first gate output will start to discharge through the discharging path of the discharging node RE and the ground discharging resistor R to obtain a first output power source signal G1 with a modulated waveform. Until an output enable signal OE changes from high-level to low-level, the first output power source signal G1 will start to stay at the low voltage level VGL. Similarly, other gate outputs will also discharge during the third time interval t3 and obtain the output power source signal with the modulated waveform, for example, the second output power source G2 and the third output power source G3, and so on.
It should be noticed that according to the driving theorem of the LCD apparatus, there will be only one channel of the gate driver 4 open at the same time, the high-voltage level VGH and the low-voltage level VGL outputted by the gate driver 4 do not pump too much current, so that the gate driver 4 can effectively prevent the damage to the gate driver caused by the pulse current formed when the conventional power source management chip generates the modulated pulse.
In addition, as shown in
A second embodiment of the invention is also a gate driver. Please refer to
It should be noticed that in order to further simplify the design of panel system and reduce signal types, the pulse modulation controlling signal YVC of the first embodiment will be replaced by the system clock signal CLK. In fact, if the duty cycle of the system clock signal CLK is suitably designed to be the same with that of the pulse modulation controlling signal YVC, the system clock signal CLK can be directly used as the pulse modulation controlling signal.
Please refer to
In this embodiment, after the pulse modulation controlling logic unit 750 receives a level shifting signal from the level shifting module 73 and performs a logic operation process according to the level shifting signal and a system clock signal CLK, a first switch signal SW1 and a second switch signal SW2 will be generated respectively to control the active switch 752 and the output buffering module 74 turned on or off respectively.
Please refer to
When the active switch 752 is turned off, the corresponding first gate output will start to discharge to obtain a first output power source signal G1 with a modulated waveform. Until an output enable signal OE changes from high-level to low-level, the first output power source signal G1 will start to stay at the low voltage level VGL. Similarly, other gate outputs will also discharge during the fourth time interval t4 and obtain the output power source signal with the modulated waveform, for example, the second output power source G2 and the third output power source G3, and so on.
Above all, the gate driver 7 of this embodiment not only has advantages of preventing pulse current damage and single power source chip design, but also can use the original system clock signal CLK to replace the pulse modulation controlling signal YVC, so that the design of the panel system can be further simplified to enhance the competitiveness of the LCD apparatus including the gate driver 7 on the market.
A third embodiment of the invention is a gate driver operating method. In this embodiment, the gate driver is applied in a LCD apparatus. The gate driver includes a pulse modulation controlling module, an output buffering module, a first charge pump, and a second charge pump. The pulse modulation controlling module includes a pulse modulation controlling logic unit and an active switch, but not limited to this case. The same with the prior art, the LCD apparatus also includes a power source management chip and a gate driver.
It should be noticed that since the pulse modulation output power source outputted to the gates is generated by the gate driver in the invention, when the power source management chip is designed, only the manufacturing process suitable for the boost regulator (e.g., the manufacturing process of 20V voltage) should be considered, so that the chip design cost will be largely reduced and the flexibility of selecting manufacturing processes can be also increased.
Please refer to
In practical applications, if the duty cycle of the system clock signal CLK is suitably designed to be the same with that of the pulse modulation controlling signal YVC, the system clock signal CLK can be directly used to replace the original pulse modulation controlling signal YVC. Then, the step S14 is performed that the active switch and the output buffering module are turned off according to the first switch signal SW1 and the second switch signal SW2 respectively to make the high-level power source signal VGH start to discharge to form a modulated waveform.
Compared to the prior arts, the gate driver of the invention can not only effectively prevent the damage to the gate driver caused by the pulse current formed when the conventional power source management chip generates a modulated pulse, but also have advantages of using single power source, reducing signal types, and simplifying the design of the power source management chip, therefore, the entire cost of the panel display system can be largely reduced to enhance its competitiveness on the market.
With the example and explanations above, the features and spirits of the invention will be hopefully well described. Those skilled in the art will readily observe that numerous modifications and alterations of the device may be made while retaining the teaching of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
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098137547 | Nov 2009 | TW | national |