W5095 Allicdata Electronics
Allicdata Part #:

553-3926-ND

Manufacturer Part#:

W5095

Price: $ 11.36
Product Category:

RF/IF and RFID

Manufacturer: PulseLarsen Antennas
Short Description: RF ANT BLADE 829MHZ 2.05GHZ TNC
More Detail: 829MHz, 2.05GHz LTE Blade RF Antenna 698MHz ~ 960M...
DataSheet: W5095 datasheetW5095 Datasheet/PDF
Quantity: 129
1 +: $ 10.32570
10 +: $ 9.38700
25 +: $ 8.68294
100 +: $ 7.97895
250 +: $ 7.27489
500 +: $ 6.80557
1000 +: $ 6.24236
Stock 129Can Ship Immediately
$ 11.36
Specifications
VSWR: 2.5
Applications: LTE
Mounting Type: Connector Mount
Ingress Protection: IP65
Termination: Connector, TNC Male
Features: --
Power - Max: 3W
Gain: 2.16dBi
Return Loss: --
Series: --
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

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RF Antennas | W5095 Application Field and Working Principle

Wireless frequency modulated transmitters (WFM) are widely used in portable, mobile, and base station applications. The W5095 is a type of RF antenna specifically designed for use in WFM systems. This versatile antenna offers excellent performance in terms of signal strength, efficiency, high gain, and robustness.

The W5095 is designed with a number of innovative features to provide exceptional radio frequency (RF) performance in WFM applications. It consists of two radiating elements that are symmetrically placed around a center pole. By creating this kind of symmetry, the antenna is able to provide improved performance compared to other types of WFM antennas. The two radiating elements can be adjusted to provide an optimized angle of radiation, allowing for more efficient signal transmission and reception. The W5095 also utilizes a top-loaded antenna design, which has the additional benefit of increased radiation gain.

In terms of its technical specifications, the W5095 is a very compact antenna with its physical dimensions measuring 44cm by 8.3cm. The antenna is constructed using a type of material called dielectric polymer material, which provides excellent radio frequency performance. In terms of its frequency range, the W5095 has a bandwidth of 8-115MHz, meaning that it is capable of providing a wide range of frequencies. The antenna is capable of transmitting and receiving signals at a maximum power of 250 watts.

As far as its application field in WFM systems is concerned, the W5095 antenna is ideal for providing coverage in large urban areas, where its directional and long-range capabilities ensure reliable signal transmission and reception. The W5095 has also been successfully used in various other applications, such as wireless video streaming and radio communication systems. Another application in which the W5095 has been proven to be highly effective is wireless sensor networks, where the antenna can be used to collect data over a large area.

In terms of its working principle, the W5095 is based on the concept of induction. This is a principle of electromagnetic induction, where a current is induced in a coil of wire when it is placed near a magnetic field. This current is then used to drive a receiver or a transmitter. The W5095 antenna employs this principle to produce a directional beam of radiation in order to enhance the signal transmission and reception. This beam of radiation is produced by the current passing through the two radiating elements and being focused on a single point in order to create a stronger and more efficient signal.

In conclusion, the W5095 is a highly versatile RF antenna specifically designed for use in WFM systems. It is constructed using dielectric polymer material, has a broadband frequency range, and is capable of transmitting and receiving signals at a maximum power of 250 watts. Furthermore, the W5095 is suitable for use in a variety of applications, including wireless video streaming, radio communication, and wireless sensor networks. Finally, the W5095 operates on the principle of induction, where a current is induced in a coil of wire when placed near a magnetic field and is then used to drive a receiver or a transmitter.

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

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