Samsung electronics co., ltd. (20240329766). ELECTRONIC DEVICE INCLUDING FLEXIBLE DISPLAY, WINDOW, AND TOUCH ELECTRODE IN ELECTRODE LAYER BETWEEN WINDOW AND FLEXIBLE DISPLAY, AND TOUCH CONTROL METHOD THEREFOR simplified abstract

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ELECTRONIC DEVICE INCLUDING FLEXIBLE DISPLAY, WINDOW, AND TOUCH ELECTRODE IN ELECTRODE LAYER BETWEEN WINDOW AND FLEXIBLE DISPLAY, AND TOUCH CONTROL METHOD THEREFOR

Organization Name

samsung electronics co., ltd.

Inventor(s)

Hoyoung Jeong of Suwon-si (KR)

Myunghoon Kwak of Suwon-si (KR)

Moonsun Kim of Suwon-si (KR)

Hojin Jung of Suwon-si (KR)

Junhyuk Kim of Suwon-si (KR)

Soyoung Lee of Suwon-si (KR)

ELECTRONIC DEVICE INCLUDING FLEXIBLE DISPLAY, WINDOW, AND TOUCH ELECTRODE IN ELECTRODE LAYER BETWEEN WINDOW AND FLEXIBLE DISPLAY, AND TOUCH CONTROL METHOD THEREFOR - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240329766 titled 'ELECTRONIC DEVICE INCLUDING FLEXIBLE DISPLAY, WINDOW, AND TOUCH ELECTRODE IN ELECTRODE LAYER BETWEEN WINDOW AND FLEXIBLE DISPLAY, AND TOUCH CONTROL METHOD THEREFOR

Simplified Explanation:

This patent application describes an electronic device with a flexible display that can be slid in and out of the housing through a transparent window. The device includes touch electrodes that can be activated or deactivated for touch control.

  • The electronic device has a housing with a flexible display that can be moved in and out by sliding.
  • A transparent window in the housing allows a part of the flexible display to pass through.
  • A transparent electrode layer is placed between the window and the display.
  • At least one touch electrode is in the transparent electrode layer, which can be activated.
  • Touch electrodes on the flexible display can be deactivated.

Potential Applications:

This technology could be used in smartphones, tablets, and other electronic devices that require touch control interfaces. It could also be applied in wearable technology and smart home devices.

Problems Solved:

This technology provides a more seamless and intuitive touch control experience for users. It also allows for a larger display area in a compact device.

Benefits:

The benefits of this technology include improved user interaction, increased display size, and a sleek design. It enhances the functionality and aesthetics of electronic devices.

Commercial Applications:

Title: Innovative Touch Control Technology for Electronic Devices This technology could be commercially applied in the development of next-generation smartphones, tablets, smartwatches, and other consumer electronics. It could also be integrated into automotive displays and smart home devices, enhancing user experience and market competitiveness.

Prior Art:

Prior art related to this technology may include patents or research on flexible displays, transparent electrodes, and touch control methods in electronic devices. Researchers can explore databases like Google Patents, IEEE Xplore, and the USPTO for relevant information.

Frequently Updated Research:

Researchers and developers in the field of flexible displays, transparent electrodes, and touch control interfaces are continuously working on advancements in materials, manufacturing processes, and user experience. Stay updated on publications in journals like Advanced Materials and IEEE Transactions on Electron Devices for the latest research.

Questions about Touch Control Technology: 1. How does this touch control technology improve user interaction with electronic devices? 2. What are the potential challenges in implementing this technology in various devices?


Original Abstract Submitted

an electronic device and a touch control method therefor are provided. the electronic device includes a housing, a flexible display that is drawn into or out of the housing by a sliding operation, a transparent window disposed in the housing so that a partial region of the flexible display drawn into the housing passes therethrough, and a transparent electrode layer disposed between the transparent window and the flexible display. at least one first touch electrode may be disposed in the transparent electrode layer. the at least one first touch electrode disposed in the transparent electrode layer may be activated. at least one second touch electrode arranged in the partial region of the flexible display may be deactivated.