20240079785.Electronic Device Having Antenna with Vent Structures simplified abstract (apple inc.)

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Electronic Device Having Antenna with Vent Structures

Organization Name

apple inc.

Inventor(s)

Yiren Wang of Cupertino CA (US)

Yuan Tao of Santa Clara CA (US)

Hao Xu of Cupertino CA (US)

Yuancheng Xu of San Jose CA (US)

Enrique Ayala Vazquez of Watsonville CA (US)

Nikolaj P. Kammersgaard of Copenhagen (DK)

Eric W. Bates of San Jose CA (US)

Peter A. Dvorak of Menlo Park CA (US)

Victor C. Lee of Santa Clara CA (US)

Han Wang of Campbell CA (US)

Electronic Device Having Antenna with Vent Structures - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240079785 titled 'Electronic Device Having Antenna with Vent Structures

Simplified Explanation

The patent application describes an electronic device with an antenna formed from a segment of conductive housing structures, a speaker, a vent, a connector, a trace combiner, and tuners controlled through the speaker.

  • The antenna of the electronic device is formed from a segment of peripheral conductive housing structures.
  • The speaker is aligned with first openings in the segment, while a vent is aligned with second openings in the segment.
  • A connector protrudes through the segment, and a trace combiner for the antenna is patterned onto the speaker and coupled to the segment.
  • Tuners for the antenna are disposed on flexible printed circuits that extend along opposing sides of the connector and are controlled through the speaker.
  • The second flexible printed circuit extends along the vent, which has a vent cowling with a cut-out region next to the tuner on the second flexible printed circuit.

Potential Applications

The technology described in the patent application could be applied in various electronic devices such as smartphones, tablets, laptops, and IoT devices.

Problems Solved

This technology solves the problem of optimizing antenna performance in electronic devices while also integrating other components such as speakers and vents efficiently.

Benefits

The benefits of this technology include improved antenna performance, space-saving design, and enhanced overall functionality of electronic devices.

Potential Commercial Applications

The technology could be commercially applied in the telecommunications industry, consumer electronics market, and IoT device manufacturing sector.

Possible Prior Art

One possible prior art for this technology could be the integration of antennas with other components in electronic devices, but the specific design and implementation described in the patent application may be novel.

Unanswered Questions

How does the technology impact the overall size and weight of the electronic device?

The article does not provide information on how the technology affects the size and weight of the electronic device. This could be important for consumers looking for lightweight and compact devices.

What materials are used in the construction of the antenna and other components?

The article does not specify the materials used in the construction of the antenna, speaker, vent, and other components. Understanding the materials used could provide insights into the durability and performance of the device.


Original Abstract Submitted

an electronic device may be provided with an antenna having a resonating element formed from a segment of peripheral conductive housing structures. a speaker may be aligned with first openings in the segment. a vent may be aligned with second openings in the segment. a connector may protrude through the segment. a trace combiner for the antenna may be patterned onto the speaker and may be coupled to the segment. tuners for the antenna may be disposed on first and second flexible printed circuits that extend along opposing sides of the connector. the tuners may be controlled through the speaker. the second flexible printed circuit may extend along the vent. the vent may have a vent cowling with a cut-out region next to the tuner on the second flexible printed circuit.