18533093. ELECTRONIC DEVICE COMPRISING FRONTEND MODULE FOR COMMUNICATING THROUGH WIRELESS LAN simplified abstract (Samsung Electronics Co., Ltd.)

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ELECTRONIC DEVICE COMPRISING FRONTEND MODULE FOR COMMUNICATING THROUGH WIRELESS LAN

Organization Name

Samsung Electronics Co., Ltd.

Inventor(s)

Janghyun Nam of Suwon-si (KR)

Hyoseok Na of Suwon-si (KR)

ELECTRONIC DEVICE COMPRISING FRONTEND MODULE FOR COMMUNICATING THROUGH WIRELESS LAN - A simplified explanation of the abstract

This abstract first appeared for US patent application 18533093 titled 'ELECTRONIC DEVICE COMPRISING FRONTEND MODULE FOR COMMUNICATING THROUGH WIRELESS LAN

Simplified Explanation

The patent application describes an electronic device with multiple antennas and frontend modules for wireless LAN communication in the 5 GHz or 6 GHz bands.

  • The device includes a wireless communication circuit for a wireless LAN.
  • It has a first frontend module connected to the wireless communication circuit.
  • A second frontend module is also connected to the wireless communication circuit.
  • The device features a first antenna connected to the first frontend module.
  • A second antenna is connected to the second frontend module.
  • Additionally, a third antenna is connected to the second frontend module.
  • The processor provides a first signal in the 5 GHz or 6 GHz band to the first frontend module.
  • The processor sets a first operation mode for transmitting a signal related to wireless LAN and a second operation mode.
  • While the first signal is provided to the first frontend module, the processor provides a second signal in the 5 GHz or 6 GHz band to the second frontend module.

Potential Applications

The technology described in this patent application could be applied in various wireless communication devices, such as routers, access points, and IoT devices.

Problems Solved

This technology solves the problem of optimizing wireless LAN communication in the 5 GHz or 6 GHz bands by utilizing multiple antennas and frontend modules.

Benefits

The benefits of this technology include improved signal transmission, increased data transfer speeds, and enhanced overall performance of wireless LAN devices.

Potential Commercial Applications

The potential commercial applications of this technology include the development of high-speed wireless routers, advanced access points for large networks, and efficient IoT devices for smart homes and businesses.

Possible Prior Art

One possible prior art for this technology could be the use of multiple antennas and frontend modules in wireless communication devices to improve signal quality and data transfer speeds.

Unanswered Questions

How does this technology compare to existing wireless LAN technologies in terms of performance and efficiency?

This article does not provide a direct comparison between this technology and existing wireless LAN technologies. Further research and testing would be needed to determine the specific performance and efficiency differences.

What are the potential limitations or challenges of implementing this technology in practical applications?

The article does not address any potential limitations or challenges that may arise when implementing this technology in real-world scenarios. Additional studies and experiments would be necessary to identify and overcome any such obstacles.


Original Abstract Submitted

An electronic device includes a wireless communication circuit for a wireless LAN, a first frontend module connected to the wireless communication circuit, a second frontend module connected to the wireless communication circuit, a first antenna connected to the first frontend module, a second antenna connected to the second frontend module, a third antenna connected to the second frontend module, and a processor. The processor is configured to provide a first signal in 5 GHz band or 6 GHz band to the first frontend module. The processor is configured to set a first operation mode of the first operation mode for transmitting a signal related to wireless LAN, and a second operation mode, and the processor is configured to set to provide a second signal in the 5 GHz band or the 6 GHz band to the second frontend module while the first signal is provided to the first frontend module.