FXP14.24.0100B Allicdata Electronics
Allicdata Part #:

931-1130-ND

Manufacturer Part#:

FXP14.24.0100B

Price: $ 11.45
Product Category:

RF/IF and RFID

Manufacturer: Taoglas Limited
Short Description: CELLULAR HEPTA-BAND PCB GSC
More Detail: 850MHz, 900MHz, 1.7GHz, 1.8GHz, 1.9GHz, 2.1GHz 3G,...
DataSheet: FXP14.24.0100B datasheetFXP14.24.0100B Datasheet/PDF
Quantity: 242
1 +: $ 10.40760
10 +: $ 9.45945
25 +: $ 8.74993
100 +: $ 8.04055
250 +: $ 7.33103
500 +: $ 6.85812
1000 +: $ 6.29054
Stock 242Can Ship Immediately
$ 11.45
Specifications
Return Loss: -7dB, -12dB, -8dB, -9dB, -9dB, -8dB
Applications: 3G, CDMA, DCS, EDGE, GPRS, GSM, HSPA, PCS, UMTS, WCDMA
Height (Max): 0.004" (0.10mm)
Mounting Type: Adhesive
Ingress Protection: --
Termination: Cable (100mm) - MHF4
Features: --
Power - Max: 5W
Gain: 2dBi, 1.5dBi, 3dBi, 2.5dBi, 2dBi, 2.5dBi
Series: --
VSWR: 2.5
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

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RF antennas are devices used to transmit and receive radio frequency (RF) signals in the electromagnetic field between two sources. A wide range of RF antennas are available, each designed to meet particular needs, and each having its own unique characteristics. The FXP14.24.0100B is one example of a specialized RF antenna. This article explores the application field and working principle of this antenna.

The FXP14.24.0100B is a broadband planar inverted-F antenna (PIFA) designed for ISM band applications including Zigbee, Bluetooth, and Wi-Fi. The PIFA design allows for a narrow bandwidth while maintaining high efficiency in a relatively small form factor, making this antenna ideal for applications with limited space. The antenna has an expanding radiation pattern with a 3 dB axial ratio of less than 3.0 dB within most of its operating bandwidth. The antenna also features a low voltage standing wave ratio (VSWR) of less than 2.0, indicating good impedance matching.

The FXP14.24.0100B is constructed from an FR4 substrate and utilizes a four-layer printed circuit design. The antenna comprises two radiating elements and a ground plane. The two radiators are inclined at a 90-degree angle to each other and are crossed at the center of the antenna. This design, along with the four-layer construction, helps to ensure high radiation efficiency and low VSWR at the operating frequency.

In operation, the FXP14.24.0100B works by converting energy from the electromagnetic field (EMF) into electrical signals. The antenna receives EMF from its surroundings and transmits electrical signals through the radiators. The incoming EMF induces an alternating electric field, which the antenna converts to an alternating current (AC). The radiators then convert this AC current into an electromagnetic field, which can then be transmitted to other antennas. This process continues in a cyclic manner, allowing the antenna to receive and transmit EMF signals across various frequencies.

The dual-band radiation capability of the FXP14.24.0100B makes it suitable for use in a wide range of applications. This includes wireless devices such as smartphones, tablets, and laptops, which all need reliable antennas to communicate with other devices. The antenna is also well suited for industrial automation and home automation systems, which need robust communication networks for effective control. In addition, the FXP14.24.0100B can be used in various medical and laboratory equipment, where accurate wireless communication is required.

The FXP14.24.0100B is a reliable, cost-effective antenna solution for ISM band applications. Its four-layer PCB design helps to reduce size and weight while offering excellent performance, making it ideal for space-constrained applications. The antenna also features a wide bandwidth and a low VSWR, enabling reliable communication in a variety of environments. The FXP14.24.0100B thus provides an excellent choice for any application requiring an efficient RF antenna.

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

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