18205932. ELECTRONIC DEVICE AND METHOD FOR TRANSMITTING BEAMFORMING SIGNAL BY USING LIQUID CRYSTAL LAYER simplified abstract (SAMSUNG ELECTRONICS CO., LTD.)

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ELECTRONIC DEVICE AND METHOD FOR TRANSMITTING BEAMFORMING SIGNAL BY USING LIQUID CRYSTAL LAYER

Organization Name

SAMSUNG ELECTRONICS CO., LTD.

Inventor(s)

Seungtae Ko of Suwon-si (KR)

Daehyeon Kim of Pohang-si (KR)

Jungyub Lee of Suwon-si (KR)

Wonbin Hong of Pohang-si (KR)

ELECTRONIC DEVICE AND METHOD FOR TRANSMITTING BEAMFORMING SIGNAL BY USING LIQUID CRYSTAL LAYER - A simplified explanation of the abstract

This abstract first appeared for US patent application 18205932 titled 'ELECTRONIC DEVICE AND METHOD FOR TRANSMITTING BEAMFORMING SIGNAL BY USING LIQUID CRYSTAL LAYER

Simplified Explanation

The abstract describes an electronic device with a frequency selective surface (FSS) that includes liquid crystal layers in each cell. The device can receive signals from other electronic devices, determine refraction information for each cell based on pattern information, reconfigure the FSS, and obtain a reconstruction signal from the other device.

  • The electronic device includes a memory, FSS with liquid crystal layers, and at least one processor.
  • The processor receives signals from other devices based on the FSS.
  • It determines refraction information for each cell based on pattern information.
  • The processor reconfigures the FSS based on the refraction information.
  • It obtains a reconstruction signal from the other device.
      1. Potential Applications
  • Wireless communication systems
  • Radar systems
  • Antenna systems
      1. Problems Solved
  • Improved signal reception and transmission
  • Enhanced communication between electronic devices
  • Better performance in radar and antenna systems
      1. Benefits
  • Increased signal quality
  • Enhanced data transmission speeds
  • Improved overall performance of electronic devices


Original Abstract Submitted

An electronic device includes a memory, a frequency selective surface (FSS) including a plurality of cells, and at least one processor. Each cell of the plurality of cells includes a liquid crystal layer. The at least one processor is configured to receive a signal from another electronic device based on the FSS. The at least one processor is configured to determine refraction information for each cell of the plurality of cells of the FSS based on a difference between first pattern information for the other electronic device and second pattern information for the received signal. The at least one processor is configured to perform a reconfiguration for the FSS based on refraction information for each cell of the plurality of cells of the FSS. The at least one processor is configured to obtain a reconstruction signal from the other electronic device based on the reconfigured FSS.