Boe technology group co., ltd. (20240221642). PIXEL CIRCUIT, DRIVING METHOD AND DISPLAY DEVICE simplified abstract

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PIXEL CIRCUIT, DRIVING METHOD AND DISPLAY DEVICE

Organization Name

boe technology group co., ltd.

Inventor(s)

Benlian Wang of Beijing (CN)

Chengjie Qin of Beijing (CN)

Cong Liu of Beijing (CN)

Yao Huang of Beijing (CN)

Yue Long of Beijing (CN)

Weiyun Huang of Beijing (CN)

PIXEL CIRCUIT, DRIVING METHOD AND DISPLAY DEVICE - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240221642 titled 'PIXEL CIRCUIT, DRIVING METHOD AND DISPLAY DEVICE

The present disclosure introduces a pixel circuit, a driving method, and a display device. The pixel circuit comprises various components such as a light-emitting element, a driving circuit, and control circuits for managing voltage levels and connections within the circuit.

  • The driving method involves controlling the flow of current and voltage within the pixel circuit using scan signals and light-emitting control signals.
  • The pixel circuit includes initialization circuits to set initial voltages and ensure proper functioning of the light-emitting element.
  • The innovative design of the pixel circuit allows for efficient control of power supply voltages and node connections, enhancing the overall performance of the display device.

Potential Applications: - This technology can be applied in various types of display devices such as OLED screens and LED panels. - It can also be used in electronic devices requiring high-resolution and energy-efficient displays.

Problems Solved: - The pixel circuit addresses issues related to power consumption, voltage control, and overall display quality in electronic devices.

Benefits: - Improved energy efficiency and performance in display devices. - Enhanced image quality and resolution due to precise voltage control.

Commercial Applications: Title: Advanced Pixel Circuit Technology for High-Performance Displays This technology can be utilized in smartphones, tablets, televisions, and other electronic devices with display screens. It can lead to more energy-efficient devices with superior image quality, appealing to consumers looking for high-performance displays.

Prior Art: Researchers can explore existing patents and publications related to pixel circuits, driving methods, and display devices to understand the evolution of this technology and identify areas for further innovation.

Frequently Updated Research: Researchers and developers in the field of display technology are constantly exploring new methods to enhance the performance and efficiency of pixel circuits. Stay updated on the latest advancements in this area to leverage cutting-edge solutions for display devices.

Questions about Pixel Circuit Technology: 1. How does the pixel circuit technology improve energy efficiency in display devices? - The pixel circuit technology optimizes voltage control and power supply management, leading to reduced energy consumption in display devices.

2. What sets this pixel circuit technology apart from traditional display circuit designs? - This pixel circuit technology offers enhanced control over voltage levels, node connections, and initialization processes, resulting in improved display performance and efficiency.


Original Abstract Submitted

the present disclosure provides a pixel circuit, a driving method and a display device. the pixel circuit includes a light-emitting element, a driving circuit, a first light-emitting control circuit, a first control circuit, a first initialization circuit and a second light-emitting control circuit. the first control circuit is configured to control to connect the first node and the control node under the control of a first scan signal; the first initialization circuit is configured to write a first initial voltage into the control node under the control of a second light-emitting control signal; the first light-emitting control circuit is configured to control to connect the power supply voltage terminal and the second node under the control of the second light-emitting control signal.