S2403BPV12NF Allicdata Electronics
Allicdata Part #:

S2403BPV12NF-ND

Manufacturer Part#:

S2403BPV12NF

Price: $ 24.76
Product Category:

RF/IF and RFID

Manufacturer: Laird Technologies IAS
Short Description: ANT OMNI STICK 5DBI N FEMALE
More Detail: 2.4GHz Whip, Straight RF Antenna 2.4GHz ~ 2.5GHz ...
DataSheet: S2403BPV12NF datasheetS2403BPV12NF Datasheet/PDF
Quantity: 1000
25 +: $ 22.50860
Stock 1000Can Ship Immediately
$ 24.76
Specifications
VSWR: 1.5
Applications: --
Height (Max): --
Mounting Type: Bracket Mount
Ingress Protection: --
Termination: Cable (305mm) - N Female
Features: --
Gain: 5.15dBi
Return Loss: --
Series: --
Number of Bands: 1
Antenna Type: Whip, Straight
Frequency Range: 2.4GHz ~ 2.5GHz
Frequency (Center/Band): 2.4GHz
Frequency Group: UHF (2 GHz ~ 3 GHz)
Part Status: Active
Packaging: Bulk 
Description

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RF antennas are one of the most important elements in wireless communication. The S2403BPV12NF is a kind of RF antenna, and it is widely used in different applications. This article will focus on the application field and operation principle of the S2403BPV12NF.

Application Field of the S2403BPV12NF

The S2403BPV12NF is a kind of RF antenna, and it is widely used in a variety of applications, such as wireless local area networks (WLAN), cellular communication, satellite communications, and various radio frequency identification (RFID) systems. It is also used as the main component of a number of different industrial, scientific, and medical (ISM) applications.

The S2403BPV12NF is used in many different WLAN applications. Specifically, it can be used in wireless local area networks with IEEE standards 802.11b/g/n. The antenna can also be used in various cellular communication systems, such as GSM, CDMA, and UMTS. It can also be used in a variety of satellite communication systems, including satellite digital multimedia broadcasting (DMB). Additionally, this antenna can be used in various RFID systems, such as active RFID tags and reader systems.

Moreover, the S2403BPV12NF can also be used in a variety of ISM applications, such as medical imaging, automatic meter reading, and RF heating. It is ideal for use in these ISM applications, as the antenna can provide a reliable connection in these complex and challenging wireless environments.

Working Principle of the S2403BPV12NF

The S2403BPV12NF is a type of dipole antenna. In a dipole antenna, the antenna elements are arranged in two halves (one connected to the transmitter and one connected to the receiver) and are often arranged in a cross pattern. When a signal is sent to the antenna, the current is distributed evenly between the two halves, and a field is generated around the antenna.

This field is then sent out in a pattern of concentric circles. The intensity of the field is greatest at the antenna, and it decreases with distance from the antenna. The pattern of the field is dependent on the size, shape, and orientation of the antenna, and this determines the antenna’s performance and efficiency.

The S2403BPV12NF antenna has a relatively low radiation pattern, and this is particularly beneficial for applications where directional properties are required. Additionally, the antenna has a stable frequency response and a good efficiency over a wide range of frequencies, which makes it suitable for a variety of radio communication tasks.

Conclusion

The S2403BPV12NF is a type of RF antenna that is widely used in a variety of applications, such as wireless local area networks, cellular communication, satellite communications, and various radio frequency identification systems. It is also used in a variety of industrial, scientific, and medical applications. This antenna operates on the principle of a dipole antenna, where the current is evenly distributed between two halves and a field is generated around the antenna. The antenna has a low radiation pattern and a good efficiency over a wide range of frequencies, making it ideal for a variety of radio communication tasks.

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

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