FXP14.09.0100A Allicdata Electronics
Allicdata Part #:

931-1057-ND

Manufacturer Part#:

FXP14.09.0100A

Price: $ 9.35
Product Category:

RF/IF and RFID

Manufacturer: Taoglas Limited
Short Description: ANT 6-BAND FLEX PCB W/CABLE
More Detail: 850MHz, 900MHz, 1.7GHz, 1.8GHz, 1.9GHz, 2.1GHz CDM...
DataSheet: FXP14.09.0100A datasheetFXP14.09.0100A Datasheet/PDF
Quantity: 2780
1 +: $ 8.49240
100 +: $ 6.35040
500 +: $ 5.81460
1000 +: $ 5.37468
Stock 2780Can Ship Immediately
$ 9.35
Specifications
VSWR: 2.5
Applications: CDMA, GSM
Height (Max): 0.004" (0.10mm)
Mounting Type: Adhesive
Ingress Protection: --
Termination: Connector, MMCX Male
Features: --
Gain: 2dBi, 1.5dBi, 3dBi, 2.5dBi, 2dBi, 2.5dBi
Return Loss: -7dB, -12dB, -8dB, -9dB, -9dB, -8dB
Series: --
Number of Bands: 6
Antenna Type: Flat Patch
Frequency Range: --
Frequency (Center/Band): 850MHz, 900MHz, 1.7GHz, 1.8GHz, 1.9GHz, 2.1GHz
Frequency Group: Wide Band
Part Status: Active
Packaging: Bulk 
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

The FXP14.09.0100A is a type of RF antenna which executes operations in an RF-applications environment. This antenna can be used in various types of radio frequency applications, such as satellite communications, broadcast TV and radio, wireless networks and cellular communications. It is a full-decoupling RF antenna designed with advanced radiation patterns, high performance and one of the world’s tightest side lobes. Its primary purpose is to enhance signal reception and transmission of any radio-frequency-related operation.

The most common type of RF antenna used in radio frequency applications is the directional antenna, with its distinct radiation pattern size and shape. The FXP14.09.0100A has the unique ability to provide a bigger radiation pattern than standard directional antennas. The size and shape of its radiation pattern allows it to receive signals from a greater distance than a standard antenna. In addition, its gain characteristics provide extra RF power to the signals it transmits, giving it a longer effective range for specific radio frequency applications.

The FXP14.09.0100A is constructed from non-fibrous materials such as aluminum and stainless steel. It is shaped like a parabolic dish, which is designed to focus the RF signals in one direction, thus providing better reception and transmission back to the transmitter. Inside the antenna, there is a mesh which will absorb the signal, instead of the antenna itself, preventing damage to the antenna and preventing further interference from other radio sources.

The FXP14.09.0100A’s working principle involves capturing the electromagnetic waves from the transmitting source and amplifying them. Electromagnetic waves are created when electrical energy is converted to a magnetic field. The waves spread out in all directions forming a sphere of energy. The antenna is moved in the direction of the transmitter, thus the antenna captures the signal of the electromagnetic wave in a certain area and amplifies it. This process occurs while the antenna is transmitting the signal back to the transmitter, allowing it to cover a greater distance than a standard antenna.

The FXP14.09.0100A also offers multiple radiation patterns which provide the user with the ability to customize the antenna and the signals. Its multipolar pattern allows the user to customize the antenna for an application where multiple signals may be transmitting in different directions. Furthermore, the resultant radiation pattern from any given antenna will depend upon the antenna’s size and shape, as well as its environment, making its reception of signals from various directions possible.

In Radio Frequency applications, the FXP14.09.0100A is an ideal antenna for its higher power output, efficient radiation pattern and range. It allows for powerful and reliable communication and signal reception, and can be used with multiple antennas to increase its reach. With its unique capabilities, it is highly effective in meeting the communication needs of any radio-frequency application.

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

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