Qualcomm incorporated (20240106480). RADIO FREQUENCY EXPOSURE COMPLIANCE simplified abstract

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RADIO FREQUENCY EXPOSURE COMPLIANCE

Organization Name

qualcomm incorporated

Inventor(s)

Jagadish Nadakuduti of Bermuda Dunes CA (US)

Lin Lu of San Diego CA (US)

Paul Guckian of La Jolla CA (US)

RADIO FREQUENCY EXPOSURE COMPLIANCE - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240106480 titled 'RADIO FREQUENCY EXPOSURE COMPLIANCE

Simplified Explanation

The abstract of the patent application describes a method for wireless communication that involves transmitting a first transmission using a first transmitter operating on a first radio technology, followed by transmitting a second transmission using a second transmitter operating on a second radio technology. The method may also include delaying the transmission of the second transmission by a predetermined wait time if the first radio technology is a time-averaged RF exposure technology and the second radio technology is a non-time-averaged RF exposure technology. Additionally, the method may involve transmitting the second transmission with limited peak power for a predetermined time period if the first radio technology is a non-time-averaged RF exposure technology and the second radio technology is a time-averaged RF exposure technology.

  • Explanation of the patent/innovation:

- Transmitting two transmissions using different radio technologies consecutively. - Delaying the second transmission if switching between time-averaged and non-time-averaged RF exposure technologies. - Limiting peak power during the second transmission when switching between non-time-averaged and time-averaged RF exposure technologies.

Potential Applications

This technology could be applied in: - Wireless communication systems requiring the use of multiple radio technologies. - IoT devices that need to switch between different RF exposure technologies.

Problems Solved

- Minimizing RF exposure in wireless communication. - Efficiently managing power consumption in devices using different radio technologies.

Benefits

- Enhanced safety by controlling RF exposure levels. - Optimal power usage for improved device performance.

Potential Commercial Applications

Optimizing RF exposure in: - Smartphones and other mobile devices. - IoT devices in smart homes and industries.

Possible Prior Art

One possible prior art could be the use of dual-mode radios in wireless communication devices to switch between different radio technologies.

Unanswered Questions

How does this method impact the overall efficiency of wireless communication systems?

This method could potentially improve the efficiency of wireless communication systems by optimizing power usage and minimizing RF exposure. However, the specific impact on efficiency metrics such as data transmission speed or network coverage is not explicitly addressed in the abstract.

What are the potential challenges in implementing this method in practical wireless communication devices?

While the abstract outlines the method for switching between different radio technologies, it does not discuss the technical challenges or limitations that may arise during the implementation process. Understanding these challenges could provide valuable insights into the feasibility and scalability of this technology in real-world applications.


Original Abstract Submitted

in certain aspects, a method for wireless communication includes transmitting a first transmission with a first transmitter operable according to a first radio technology, and transmitting a second transmission with a second transmitter after completion of the first transmission, the second transmitter operable according to a second radio technology. the method may also include delaying transmission of the second transmission by a predetermined wait time after completion of the first transmission if the first radio technology is a radio frequency (rf) exposure time-averaged technology and the second radio technology is a non-time-averaged rf exposure technology. the method may also include transmitting the second transmission with a limited peak power for a predetermined time period for at least a portion of the second transmission if the first radio technology is a non-time-averaged rf exposure technology and the second radio technology is a time-averaged rf exposure technology.