The present invention relates to a display technology field, and more particularly to a startup control method for liquid crystal display device and a liquid crystal display device.
The liquid crystal display has many advantages such as thin body, power saving, no radiation, and has been widely used. For example: LCD TV, mobile phone, personal digital assistant (PDA), digital camera, computer screens or laptop screens, etc. The liquid crystal display dominates the field of the flat panel display.
Most of the liquid crystal displays on the market are the backlight type liquid crystal displays, including a liquid crystal panel and a backlight module. The backlight module is one of the key components of the liquid crystal display. Since the liquid crystal panel itself cannot emit light, the function of the backlight module is to provide a sufficient light source and a uniformly distributed light source to enable the liquid crystal display to normally display an image. The existing backlight module is generally an LED backlight module using an LED (Light Emitting Diode) as a light source.
The GOA (Gate Driver on Array) technology is a TFT (Thin Film Transistor) liquid crystal display array process that forming a gate scan driving circuit on a thin film transistor array substrate to realize a progressive scan driving method, which has advantages of a low production cost and realizes a narrow bezel design liquid crystal panel so that the GOA (Gate Driver on Array) technology is adopted by multiple display devices.
The problem of low-temperature startup is a problem often encountered in the GOA (Gate Driver on Array) technology. Due to the characteristic drift of the thin-film transistor at low temperature, it is unable to be turned on at a low temperature or the startup is abnormal, and display problems are generated. The prior art uses the VGH voltage (gate turn-on voltage) for temperature compensation, and uses a higher gate-on voltage at a low temperature to enable the thin-film transistor to be normally turned on and displayed normally. However, this method only ensures that the thin-film transistor can be normally turned on, and the change in characteristics in the liquid crystal panel cannot be improved, and if the liquid crystal display device is turned on at a lower temperature, there is also a chance that the image is abnormal. When the liquid crystal display is in a low temperature environment, problems such as slow reaction, residual image, contrast drop, and uneven color are likely to occur due to low temperature, which greatly affects display quality.
Therefore, an object of the present invention is to provide a startup control method for liquid crystal display device. When startup, detecting an ambient temperature and performing a corresponding startup operations according to the temperature range.
Another object of the present invention is to provide a liquid crystal display device. When startup, detecting an ambient temperature and performing a corresponding startup operations according to the temperature range.
In order to realize the above purpose, the present invention provides a startup control method for liquid crystal display device, comprising:
a step 10, detecting an ambient temperature before turning on;
a step 20, determining whether the ambient temperature is higher than or equal to a first temperature;
a step 30, if the ambient temperature is higher than or equal to the first temperature, controlling the liquid crystal display device to be normally turned on;
otherwise, performing a step 40;
the step 40, determining whether the ambient temperature is higher than or equal to the second temperature, wherein the second temperature is lower than the first temperature; and
a step 50, if the ambient temperature is higher than or equal to the second temperature, controlling a backlight module to be fully turned on in order to heat a liquid crystal panel, and then returning to the step 10.
Wherein the method further comprises a step of: a step 60, if the ambient temperature is lower than the second temperature, controlling the liquid crystal display device not to be turned on.
Wherein the step 60 further comprises a step of: controlling the liquid crystal display device to generate an alarm message.
Wherein the first temperature is 0° C., the second temperature is minus 20° C.
Wherein in the step S50, the backlight module is fully turned on to heat the liquid crystal panel through PWM dimming, analog dimming, and/or backlight turning on signal.
Wherein in the step S10, through a temperature detection circuit to detect the ambient temperature.
Wherein the temperature detection circuit comprises a thermistor, and through detecting a divided voltage on the thermistor to represent the ambient temperature.
Wherein the first temperature and the second temperature are respectively represented as a first voltage and a second voltage, confirming the temperature range by comparing the first voltage and the second voltage with the divided voltage, respectively.
Wherein through comparators to compare the first voltage and the second voltage with the divided voltage.
The present invention also provides a liquid crystal display device, comprising: a detection module for detecting an ambient temperature before turning on; a first determination module for determining whether the ambient temperature is higher than or equal to a first temperature; a startup module for controlling the liquid crystal display device to be normally turned on if the ambient temperature is higher than or equal to the first temperature; a second determination module for determining whether the ambient temperature is higher than or equal to a second temperature when the ambient temperature is lower than the first temperature, wherein the second temperature is lower than the first temperature; and a heating module for controlling the backlight module to be fully turned on to heat the liquid crystal panel if the ambient temperature is higher than or equal to the second temperature.
In summary, the startup control method for liquid crystal display device and the liquid crystal display device of the present invention detect the ambient temperature before turning on the device, and if the ambient temperature is greater than the first temperature, the device is normally turned on; if the ambient temperature is lower than the first temperature but above the second temperature, the liquid crystal panel is heated by the backlight with high power, and then the liquid crystal display device is turned on after the ambient temperature is restored. The liquid crystal display device of the present invention is prevented from operating at a low temperature to protect the liquid crystal display device.
The technical solutions and other advantageous effects of the present invention will be apparent from the following detailed description of embodiments of the invention.
In the figures,
Referring to
Step 10: detecting an ambient temperature before turning on; for a liquid crystal display device such as a liquid crystal television, which is mainly formed by a backlight module (BLU) and a liquid crystal panel, the backlight module is generally formed by multiple LEDs and a backlight driver; When the liquid crystal television turns on, using a system on chip (SOC) to detect the ambient temperature to determine the ambient temperature of the liquid crystal panel; two temperature protection points can be preset: a first temperature, that is, the low temperature set point, for example, 0° C., which can be set to a critical temperature that can be normally turned on; and a second temperature, that is, a severe temperature point, for example, −20° C., which can be set as a critical temperature required to be turned on after heating; wherein the second temperature is lower than the first temperature, That is, the severe temperature point is lower than the low temperature set point;
Step 20: determining whether the ambient temperature is higher than or equal to the first temperature; comparing the ambient temperature with the preset first temperature, determining a range of the ambient temperature;
Step 30: if the ambient temperature is higher than or equal to the first temperature, controlling the liquid crystal display device to be normally turned on; otherwise, performing a step 40; if the ambient temperature is higher than or equal to the first temperature, proving that the liquid crystal panel is operating under a normal ambient temperature so that the liquid crystal panel can turn on normally;
Step 40: determining whether the ambient temperature is higher than or equal to the second temperature, wherein the second temperature is lower than the first temperature; comparing the ambient temperature with the preset second temperature, determining the range of the ambient temperature;
Step 50: if the ambient temperature is higher than or equal to the second temperature, controlling the backlight module to be fully turned on in order to heat the liquid crystal panel, and then returning to the step 10; presetting a time that the backlight module heats the liquid crystal panel, and after heating for a certain period of time, returning to the step 10 to re-detecting the ambient temperature, and then perform the startup control according to the detected ambient temperature.
Applying the startup control method of the present invention, if the ambient temperature is lower than the first temperature but above the second temperature, the liquid crystal panel is heated by the backlight module with high power before being turned on, and then turned on after the temperature is restored. The present invention utilizes the backlight module to perform the heating without additional heating means so that the design is simple and the cost is effective. When using the backlight module for heating, the system on chip of the liquid crystal display device fully turns on the backlight module through PWM (pulse width modulation) dimming, analog dimming, and/or BLON (backlight turning on) signals. Furthermore, according to the current resistance of the LED, driving the LED by a current larger than a normal operation to heat the backplane and the liquid crystal panel. After the temperature is increased, turning on the liquid crystal panel normally. According to the current temperature of the LED backlight module, the temperature of the liquid crystal panel can be increased up to 20° C. If the driving current is increased, the temperature can be increased above the first temperature in a short time.
The method may further include: a step 60, if the ambient temperature is lower than the second temperature, controlling the liquid crystal display device not to be turned on. The method can further comprise a step of: controlling the liquid crystal display device to generate an alarm message. The present invention can be designed that if the ambient temperature before turning on is detected as being below the second temperature, the liquid crystal display device will not turn on to prevent the permanent damage of the liquid crystal panel caused by the bad TFT characteristics after turning on. If the ambient temperature is lower than the second temperature, the system on chip of the liquid crystal display device will not perform the startup operation, but the speaker can be selected to inform the user that the temperature is too low to be turned on. The method of the present invention can realize the detection of low temperature, ensure that the liquid crystal display device can work normally at a temperature lower than −20° C., and protects under a more severe low temperature condition to prevent the liquid crystal display device from being damaged.
After the first comparator OP1 and the second comparator OP2 compare the first voltage Vref1 and the second voltage Vref2 with the divided voltage V1, and generating the first comparison result EN1 and the second comparison result EN2, a truth table for the first comparison result EN1/the second comparison result EN2 is obtained as shown in Table 1 below, which is used to represent different startup operations, and can perform a next action through the system-on-chip according to the corresponding result. The system on chip can select a corresponding startup operation according to the preset truth table according to the obtained value of the first comparison result EN1/the second comparison result EN2.
It can be understood by those skilled in the art that the circuit structure shown in
Those skilled in the art can understand that all or part of the steps in the startup control method of the present invention can be completed by hardware, or can be controlled by a program to control related hardware. Accordingly, the present invention provides a liquid crystal display device. Referring to
In summary, the startup control method for liquid crystal display device and the liquid crystal display device of the present invention detect the ambient temperature before turning on the device, and if the ambient temperature is greater than the first temperature, the device is normally turned on; if the ambient temperature is lower than the first temperature but above the second temperature, the liquid crystal panel is heated by the backlight with high power, and then the liquid crystal display device is turned on after the ambient temperature is restored. The liquid crystal display device of the present invention is prevented from operating at a low temperature to protect the liquid crystal display device.
In the above, for those of ordinary skill in the art, various other changes and modifications can be made in accordance with the technical solutions and technical concept of the present invention, and all such changes and modifications are intended to be included within the scope of the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
201810747021.8 | Jul 2018 | CN | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/CN2018/106601 | 9/20/2018 | WO | 00 |