EXD470SMI Allicdata Electronics
Allicdata Part #:

EXD470SMI-ND

Manufacturer Part#:

EXD470SMI

Price: $ 10.34
Product Category:

RF/IF and RFID

Manufacturer: Laird Technologies IAS
Short Description: ANT TWO-WAY 470-490MHZ 1/4W SMI
More Detail: 491MHz Whip, Straight RF Antenna 470MHz ~ 512MHz ...
DataSheet: EXD470SMI datasheetEXD470SMI Datasheet/PDF
Quantity: 1000
10 +: $ 9.39960
Stock 1000Can Ship Immediately
$ 10.34
Specifications
VSWR: 1.5
Applications: --
Height (Max): 3.600" (91.44mm)
Mounting Type: Connector Mount
Ingress Protection: --
Termination: Connector, SMI
Features: --
Gain: --
Return Loss: --
Series: EXD
Number of Bands: 1
Antenna Type: Whip, Straight
Frequency Range: 470MHz ~ 512MHz
Frequency (Center/Band): 491MHz
Frequency Group: UHF (300 MHz ~ 1 GHz)
Part Status: Active
Packaging: Bulk 
Description

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RF (Radio Frequency) antennas are important components in a variety of communication systems. As the name suggests, they transmit and receive electromagnetic waves at specific frequencies, usually in the range of three gigahertz (GHz) to 300 GHz. In order for these signals to travel to and from the antenna, they must traverse the air, which presents several challenges. In particular, antennas must be designed to have high gain (the ratio of signal power at the antenna to source power) and a wide bandwidth, be durable, and be low profile.

The EXD470SMI is an innovative RF antenna that is designed to meet and exceed these challenges. This antenna is equipped with an array of electronic components, including two rectangular microstrip patch antennas connected to a ground plane backer and an active power amplifier. These components work together to allow the antenna to have higher gain, a wide operational bandwidth, extreme durability, and a low profile. As a result, the EXD470SMI is has been very successful and is now used in a variety of applications, including cellular networks, Wi-Fi systems, and wide area networks.

The key to the effectiveness of the EXD470SMI is its working principle. This antenna operates using the principles of microstrip antennas, which are also known as printed circuit board (PCB) antennas. The antenna is constructed with a PCB substrate and a metal ground plane substrate. On the PCB and ground plane are two rectangular patch antennas that are connected together. One or more active power amplifiers are connected between the patches and to the ground plane. The amplifiers amplify the power coming from the antenna.

As the electric current generated by the patch antennas propagates through the amplifiers, it creates a magnetic field. This magnetic field is then propagated through the air, and the signal is received by the antenna at the other end. This process allows the EXD470SMI to have an extremely high gain, wide bandwidth, and low profile. Additionally, the active power amplifiers help to ensure that the signal does not suffer from attenuation, making the antenna extremely durable.

The EXD470SMI has been popular in a range of applications due to its impressive performance. These include cellular networks, Wi-Fi systems, line-of-sight communication for networks, vehicle-to-vehicle communication, IoT solutions, and out-of-home communication networks. Each of these applications uses the antenna to leverage its high gain, wide operational bandwidth, and low profile. Additionally, the antenna’s durability allows it to withstand extreme weather conditions and physical impacts.

In conclusion, the EXD470SMI is a powerful RF antenna which performs impressively well in many different applications. This is due in part to its working principle, which utilizes two rectangular microstrip patch antennas, a ground plan backer, and active power amplifiers. This system provides the EXD470SMI with high gain, a wide bandwidth, and a low profile. Furthermore, the antenna is exceptionally durable. As a result, the EXD470SMI has been popular in a wide range of applications, from cellular networks to vehicle-to-vehicle communication.

The specific data is subject to PDF, and the above content is for reference

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