18212205. SCREEN FLICKER DEBUGGING METHOD, APPARATUS AND SYSTEM OF DISPLAY PANEL simplified abstract (HKC CORPORATION LIMITED)

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SCREEN FLICKER DEBUGGING METHOD, APPARATUS AND SYSTEM OF DISPLAY PANEL

Organization Name

HKC CORPORATION LIMITED

Inventor(s)

Shixin Wei of Shenzhen (CN)

Haijiang Yuan of Shenzhen (CN)

SCREEN FLICKER DEBUGGING METHOD, APPARATUS AND SYSTEM OF DISPLAY PANEL - A simplified explanation of the abstract

This abstract first appeared for US patent application 18212205 titled 'SCREEN FLICKER DEBUGGING METHOD, APPARATUS AND SYSTEM OF DISPLAY PANEL

The present application introduces a method for debugging screen flicker on a display panel, along with an apparatus and system for implementation. The display panel features two common voltages, with the voltage difference between them serving as a reference for liquid-crystal molecule deflection. By adjusting this reference voltage, the flickering phenomenon at different refresh rates can be minimized.

  • Acquiring the refresh rate interval of the display panel and determining the minimum refresh rate.
  • Displaying a flickering picture with the minimum refresh rate.
  • Adjusting the reference voltage and recording flickering values at different reference voltages.
  • Identifying the optimal reference voltage based on the minimum flickering value.
  • Reducing flickering at high and low refresh rates on the display panel.

Potential Applications: - Consumer electronics - Display manufacturing industry - Quality control in display production

Problems Solved: - Screen flickering issues on display panels - Optimization of reference voltage for reduced flickering

Benefits: - Improved visual experience for users - Enhanced display panel performance - Cost-effective debugging method

Commercial Applications: Title: "Optimized Screen Flicker Debugging Method for Display Panels" This technology can be utilized in various commercial sectors such as consumer electronics, display manufacturing companies, and quality assurance departments to enhance the visual quality of display panels and ensure a seamless user experience.

Prior Art: Readers interested in exploring prior art related to screen flicker debugging methods for display panels can refer to patents in the field of display technologies, liquid-crystal displays, and screen optimization techniques.

Frequently Updated Research: Researchers in the field of display technology are constantly working on improving screen performance, reducing flickering issues, and enhancing the overall visual quality of display panels. Stay updated on the latest advancements in screen optimization techniques and debugging methods to ensure optimal display performance.

Questions about Screen Flicker Debugging Method for Display Panels:

1. How does adjusting the reference voltage help in reducing screen flickering on display panels? Adjusting the reference voltage allows for the optimization of liquid-crystal molecule deflection, minimizing flickering at different refresh rates.

2. What are the potential applications of this screen flicker debugging method in the consumer electronics industry? This technology can be applied in various consumer electronics devices such as smartphones, tablets, and televisions to improve display performance and user experience.


Original Abstract Submitted

The present application provides a screen flicker debugging method of a display panel, an apparatus and a system. The display panel includes a first common voltage and a second common voltage. The voltage difference between the second common voltage and the first common voltage is configured as a reference voltage for deflection of the liquid-crystal molecules. The screen flicker debugging method of the display panel includes: acquiring a refresh rate interval of the display panel, and determining a minimum refresh rate; controlling the display panel to display a flickering picture with the minimum refresh rate; adjusting the reference voltage and acquiring flickering values of the flickering picture at different reference voltages; and determining the minimum flickering value and setting the corresponding reference voltage as the optimal reference voltage for the display panel. The flickering phenomenon of the display panel at high and low refresh rates is reduced.