Huawei technologies co., ltd. (20240128643). ANTENNA AND BASE STATION simplified abstract

From WikiPatents
Jump to navigation Jump to search

ANTENNA AND BASE STATION

Organization Name

huawei technologies co., ltd.

Inventor(s)

Biao Pu of Dongguan (CN)

Yong Luo of Dongguan (CN)

Jinliang He of Dongguan (CN)

He Cui of Dongguan (CN)

ANTENNA AND BASE STATION - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240128643 titled 'ANTENNA AND BASE STATION

Simplified Explanation

The patent application describes an antenna system with a reflection plate, radome, heat sink, radiating element, and transceiver for a base station.

  • The reflection plate has two surfaces, with the radome on one surface forming an enclosed space for the radiating element, while the heat sink on the other surface forms an electromagnetic shielding space for the transceiver.

Potential Applications

The technology can be used in various communication systems, such as cellular networks, satellite communication, and radar systems.

Problems Solved

1. Improved integration of components in the antenna system. 2. Enhanced electromagnetic shielding for the transceiver.

Benefits

1. Better performance and reliability of the antenna system. 2. Simplified installation and maintenance process. 3. Reduced interference and signal loss.

Potential Commercial Applications

"Enhanced Antenna System for Communication Networks"

Possible Prior Art

There may be prior art related to antenna systems with integrated components and electromagnetic shielding, but specific examples are not provided in the patent application.

Unanswered Questions

1. What specific materials are used for the reflection plate, radome, and heat sink in the antenna system? 2. Are there any limitations or drawbacks to the design of this antenna system in terms of size or compatibility with different base stations?


Original Abstract Submitted

an antenna and a base station, where the antenna includes: a reflection plate, a radome, a heat sink, a radiating element, and a transceiver. the reflection plate has a first surface and a second surface opposite to each other, the radome is disposed on the first surface of the reflection plate, and the radome and the first surface form an enclosed first accommodating space. the radiating element is disposed in the first accommodating space, so that the first surface of the reflection plate integrates a radome installation function. the heat sink is fastened to the second surface of the reflection plate, and the heat sink and the second surface form an enclosed electromagnetic shielding space. the transceiver is located in the electromagnetic shielding space, so that the second surface of the reflection plate has an electromagnetic shielding function.