Boe technology group co., ltd. (20240233652). SOURCE DRIVER AND DRIVING METHOD THEREFOR, SOURCE DRIVING CIRCUIT AND DRIVING METHOD THEREFOR, AND DISPLAY APPARATUSES simplified abstract

From WikiPatents
Jump to navigation Jump to search

SOURCE DRIVER AND DRIVING METHOD THEREFOR, SOURCE DRIVING CIRCUIT AND DRIVING METHOD THEREFOR, AND DISPLAY APPARATUSES

Organization Name

boe technology group co., ltd.

Inventor(s)

Fei Yang of Beijing (CN)

Yi Chen of Beijing (CN)

Tianji Li of Beijing (CN)

Mingi Chu of Beijing (CN)

Zhiqiang Dong of Beijing (CN)

Lirong Wang of Beijing (CN)

Jingbo Xu of Beijing (CN)

SOURCE DRIVER AND DRIVING METHOD THEREFOR, SOURCE DRIVING CIRCUIT AND DRIVING METHOD THEREFOR, AND DISPLAY APPARATUSES - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240233652 titled 'SOURCE DRIVER AND DRIVING METHOD THEREFOR, SOURCE DRIVING CIRCUIT AND DRIVING METHOD THEREFOR, AND DISPLAY APPARATUSES

The source driving circuit described in the patent application includes two source drivers: a first source driver and a second source driver. The first source driver converts latched first image data into multiple first data voltages in response to a first triggering moment of a first data transmission control signal, and outputs these voltages based on a second triggering moment of the signal. Similarly, the second source driver converts latched second image data into multiple second data voltages in response to a first triggering moment of a second data transmission control signal, and outputs these voltages based on a second triggering moment of the signal. Importantly, there is a time difference between the second triggering moments of the two data transmission control signals.

  • The first source driver converts latched first image data into multiple first data voltages.
  • The second source driver converts latched second image data into multiple second data voltages.
  • The first and second source drivers respond to different triggering moments of their respective data transmission control signals.
  • There is a time difference between the triggering moments of the two data transmission control signals.
  • This circuit design allows for efficient conversion and output of image data.

Potential Applications: - Display technologies - Image processing systems - Electronic devices with display screens

Problems Solved: - Efficient conversion of image data into data voltages - Synchronization of data transmission control signals

Benefits: - Improved performance in displaying images - Enhanced efficiency in data conversion processes

Commercial Applications: Title: Advanced Source Driving Circuit for Display Technologies This technology can be utilized in various electronic devices such as smartphones, tablets, and televisions to enhance image display quality and overall performance. It can also be integrated into image processing systems for applications in medical imaging, security systems, and more.

Questions about the technology: 1. How does the time difference between the triggering moments of the two data transmission control signals impact the overall performance of the source driving circuit? 2. What are the specific advantages of using multiple data voltages in image data conversion processes?


Original Abstract Submitted

a source driving circuit includes a first source driver and a second source driver. the first source driver is configured to convert latched first image data into a plurality of first data voltages in response to a first triggering moment of a first data transmission control signal, and output the plurality of first data voltages based on a second triggering moment of the first data transmission control signal. the second source driver is configured to convert latched second image data into a plurality of second data voltages in response to a first triggering moment of a second data transmission control signal, and output the plurality of second data voltages based on a second triggering moment of the second data transmission control signal. the second triggering moment of the first data transmission control signal and the second triggering moment of the second data transmission control signal have a time difference.