17946681. ELECTRONIC DEVICE INCLUDING ANTENNA INCLUDING COUPLING-FEEDING STRUCTURE simplified abstract (SAMSUNG ELECTRONICS CO.,LTD.)

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ELECTRONIC DEVICE INCLUDING ANTENNA INCLUDING COUPLING-FEEDING STRUCTURE

Organization Name

SAMSUNG ELECTRONICS CO.,LTD.

Inventor(s)

Jaehyung Kim of Suwon-si (KR)

Hakjin Kim of Suwon-si (KR)

ELECTRONIC DEVICE INCLUDING ANTENNA INCLUDING COUPLING-FEEDING STRUCTURE - A simplified explanation of the abstract

This abstract first appeared for US patent application 17946681 titled 'ELECTRONIC DEVICE INCLUDING ANTENNA INCLUDING COUPLING-FEEDING STRUCTURE

Simplified Explanation

The patent application describes an electronic device that includes a housing, conductive members, a printed circuit board, and a wireless communication circuit. The conductive connection member is a key component that allows the device to receive signals in different frequency bands.

  • The electronic device includes a housing, conductive members, a printed circuit board, and a wireless communication circuit.
  • The conductive connection member is made of a conductive material and is electrically connected to the wireless communication circuit.
  • The conductive connection member has an elastic portion and multiple surfaces.
  • The elastic portion of the conductive connection member is in contact with one of the conductive members, while the surfaces are spaced apart from another conductive member by a gap.
  • The wireless communication circuit can receive signals in different frequency bands by directly feeding power to one conductive member or coupling-feeding power to the other conductive member via the conductive connection member.

Potential applications of this technology:

  • Mobile phones and other wireless communication devices can benefit from this technology to receive signals in different frequency bands.
  • Internet of Things (IoT) devices that require wireless communication can use this technology to enhance their signal reception capabilities.

Problems solved by this technology:

  • The conductive connection member allows the electronic device to receive signals in different frequency bands, improving its overall wireless communication performance.
  • The elastic portion of the conductive connection member ensures a reliable and consistent electrical connection between the wireless communication circuit and the conductive members.

Benefits of this technology:

  • Simplified design and construction of electronic devices, as the conductive connection member enables signal reception in multiple frequency bands.
  • Improved signal reception and communication performance, as the device can receive signals in both low and high frequency bands.
  • Enhanced reliability and durability, thanks to the elastic portion of the conductive connection member ensuring a secure electrical connection.


Original Abstract Submitted

According to various embodiments, an electronic device includes: a housing; a first conductive member comprising a conductive material corresponding to a portion of the housing; a second conductive member comprising a conductive material arranged inside the housing; a printed circuit board arranged inside the housing; a wireless communication circuit arranged on the printed circuit board; and a conductive connection member comprising a conductive material electrically connected to the wireless communication circuit. The conductive connection member includes an elastic portion and at least one of a firs surface, a second surface, a third surface, and a fourth surface. The elastic portion of the conductive connection member is in contact with the first conductive member, and the at least one of the first surface, the second surface, the third surface, and the fourth surface of the conductive connection member is spaced apart, by a gap, from a portion of the second conductive member. The wireless communication circuit may be configured to: receive a signal in a first frequency band by directly feeding power to the first conductive member via the conductive connection member, and receive a signal in a second frequency band higher than the first frequency band by coupling-feeding power to the second conductive member via the conductive connection member.