W5084K Allicdata Electronics
Allicdata Part #:

553-3925-ND

Manufacturer Part#:

W5084K

Price: $ 11.66
Product Category:

RF/IF and RFID

Manufacturer: PulseLarsen Antennas
Short Description: RF ANT BLADE 829MHZ 2.05GHZ SMA
More Detail: 829MHz, 2.05GHz LTE Blade RF Antenna 698MHz ~ 960M...
DataSheet: W5084K datasheetW5084K Datasheet/PDF
Quantity: 208
1 +: $ 10.60290
10 +: $ 9.63900
25 +: $ 8.91604
100 +: $ 8.19315
250 +: $ 7.47026
500 +: $ 6.98827
Stock 208Can Ship Immediately
$ 11.66
Specifications
Return Loss: --
Applications: LTE
Height (Max): 9.009" (228.84mm)
Mounting Type: Connector Mount
Ingress Protection: IP65
Termination: Connector, SMA Male
Features: --
Power - Max: 5W
Gain: 4dBi
Series: --
VSWR: 2.5
Number of Bands: 2
Antenna Type: Blade
Frequency Range: 698MHz ~ 960MHz, 1.4GHz ~ 2.69GHz
Frequency (Center/Band): 829MHz, 2.05GHz
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

RF antennas have become increasingly popular in recent years due to their greater power and superior reception quality. The W5084K is one such antenna, offering superior gain and high directivity. The W5084K is a single-arm, circularly polarized (CP) active antenna array that can be operated in both horizontal and vertical polarizations. The W5084K applies a unique optimization technique for its active radiation source that improves gain, directivity, and bandwidth.

The W5084K is a high-performance, broad-band antenna that is capable of operating over a broad frequency range. It has a wide frequency range, from 0.7 to 8 GHz, and is designed with a high gain of up to 9 dB. The antenna is capable of covering the entire UHF and L-band frequencies with one unit. It is also capable of providing coverage for the most commonly used GSM/GPRS, CDMA, PCS, and UMTS bands.

The W5084K has several applications in the wireless communication field. It can be used for point-to-point communications, such as broadcasting, or WiFi. It can also be used for point-to-multipoint communications, such as cellular base stations. It is ideal for applications that require either strong signal propagation or coverage in multiple directions. Additionally, the W5084K can be used in radar and remote sensing applications.

The W5084K is a highly efficient antenna with a low back radiation level. It is designed to provide maximum gain in a small form factor. The antenna aluminum reflector is triple-riveted for superior mechanical strength and is finished with a dark-gray surface. The feed structure of the W5084K is designed for CP operation, making it suitable for applications that require maximum gain and directivity.

The working principle of the W5084K is based on the use of a circular directional array. The antenna utilizes a circular polarization pattern, which is created by wrapping the antenna elements in a counter-clockwise fashion around the antenna hub. This directional pattern ensures that the antenna emits and receives RF energy in one direction. This directional pattern, combined with the antenna’s high gain and directivity, ensures that the W5084K offers superior range, signal strength, and interference rejection.

The antenna employs an advanced optimization technique, called aghyh-slope optimization, which is based on the circular-polarized antenna design. This technique helps to increase gain, directivity, and bandwidth, while ensuring that the antenna operates with a minimum of distortion. The optimization technique applied to the W5084K also helps to reduce back radiation while increasing the antenna’s overall efficiency.

In conclusion, the W5084K is a highly efficient and capable antenna that is suitable for a wide variety of applications in the wireless communication field. It is capable of operating over a wide frequency range and provides superior signal propagation for both point-to-point and point-to-multipoint communication applications. The W5084K also employs a unique optimization technique that helps to reduce back radiation and increase gain, directivity, and bandwidth.

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

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