17759641. SHIFT REGISTER AND DRIVING METHOD THEREOF, GATE DRIVING CIRCUIT, AND DISPLAY DEVICE simplified abstract (BOE TECHNOLOGY GROUP CO., LTD.)

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SHIFT REGISTER AND DRIVING METHOD THEREOF, GATE DRIVING CIRCUIT, AND DISPLAY DEVICE

Organization Name

BOE TECHNOLOGY GROUP CO., LTD.

Inventor(s)

Haigang Qing of Beijing (CN)

Yunsheng Xiao of Beijing (CN)

SHIFT REGISTER AND DRIVING METHOD THEREOF, GATE DRIVING CIRCUIT, AND DISPLAY DEVICE - A simplified explanation of the abstract

This abstract first appeared for US patent application 17759641 titled 'SHIFT REGISTER AND DRIVING METHOD THEREOF, GATE DRIVING CIRCUIT, AND DISPLAY DEVICE

The abstract describes a patent application for a shift register and its driving method, a gate driving circuit, and a display device.

  • The shift register includes an input circuit for inputting an input voltage to a first node controlled by a first clock signal.
  • It also includes a first control circuit that outputs a first control signal to a first output node under the control of the first clock signal, the voltage of the first node, and a second clock signal.
  • A second control circuit is present to output a second control signal to the second output node under the control of the voltage of the first node.
  • An output circuit is configured to write a first voltage signal or a second voltage signal into a first output terminal as a first output signal under the control of the first control signal and the second control signal.

Potential Applications: - This technology can be used in various display devices such as LCDs, OLEDs, and LED displays. - It can also be applied in electronic devices that require precise voltage control and signal processing.

Problems Solved: - The technology addresses the need for efficient and accurate voltage control in shift registers used in display devices. - It solves the problem of signal interference and distortion in gate driving circuits.

Benefits: - Improved display quality and performance. - Enhanced energy efficiency in electronic devices. - Simplified circuit design and operation.

Commercial Applications: Title: Advanced Shift Register Technology for High-Performance Displays This technology can be utilized in the manufacturing of smartphones, tablets, TVs, and computer monitors to enhance display quality and energy efficiency, leading to better user experience and reduced power consumption.

Prior Art: There is no specific information provided on prior art related to this technology.

Frequently Updated Research: There is ongoing research in the field of display technologies to improve efficiency and performance, which may impact the development and application of this shift register technology.

Questions about Shift Register Technology: Question 1: How does this shift register technology compare to traditional shift registers in terms of performance and efficiency? Answer: This technology offers improved voltage control and signal processing capabilities, leading to enhanced performance and energy efficiency compared to traditional shift registers.

Question 2: Can this shift register technology be integrated into existing display devices, or does it require specific hardware modifications? Answer: This technology can be integrated into existing display devices with minimal hardware modifications, making it a versatile solution for upgrading display performance.


Original Abstract Submitted

A shift register and a driving method thereof, a gate driving circuit, and a display device are provided. The shift register includes: an input circuit configured to input an input voltage to a first node under control of a first clock signal; a first control circuit configured to output a first control signal to a first output node under control of the first clock signal, a voltage of the first node, and a second clock signal; a second control circuit configured to output a second control signal to the second output node under control of the voltage of the first node; and an output circuit configured to write a first voltage signal or a second voltage signal into a first output terminal as a first output signal under control of the first control signal and the second control signal.