RN-SMA-S-RP Allicdata Electronics
Allicdata Part #:

740-1039-ND

Manufacturer Part#:

RN-SMA-S-RP

Price: $ 3.55
Product Category:

RF/IF and RFID

Manufacturer: Microchip Technology
Short Description: ANTENNA 2.4GHZ RPSMA
More Detail: 2.4GHz Whip, Straight RF Antenna 0.56dB Connecto...
DataSheet: RN-SMA-S-RP datasheetRN-SMA-S-RP Datasheet/PDF
Quantity: 1972
1 +: $ 3.22560
25 +: $ 2.72538
Stock 1972Can Ship Immediately
$ 3.55
Specifications
VSWR: --
Applications: --
Height (Max): 1.118" (28.40mm)
Mounting Type: Connector Mount
Ingress Protection: --
Termination: Connector, RP-SMA Male
Features: --
Gain: 0.56dB
Return Loss: --
Series: --
Number of Bands: 1
Antenna Type: Whip, Straight
Frequency Range: --
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 a form of wireless communication, which use radio waves as their medium of communication. The RF antenna, also referred to as a radio antenna, is an electrical device designed to create a directional pattern of received or transmitted radio frequency energy. The physical shape of an RF antenna can vary significantly, depending on the purpose and application. Many different types of RF antennas exist, however one of the most popular types is the RN-SMA-S-RP antenna. This type of antenna is most often used in cellular and radio applications, due to its ability to receive and transmit radio signals in a wide range of frequencies. Thus, this article will discuss the application field and working principle of the RN-SMA-S-RP antenna.

The RN-SMA-S-RP antennais typically used for radio transmitting and receiving applications. This type of antenna offers high frequency accuracy, wide signal coverage and low-latency performance. The antenna utilizes a dipole design and is typically composed of two identical metal rods, which are perpendicularly arranged. One rod is the main radiator, while the other is a reflector which reflects the energy from the main radiator to improve the gain of the antenna.

A RN-SMA-S-RP antenna has many advantages over other types of antennas. One of the most significant advantages is its high directivity, which is a measure of how accurately the antenna is aimed. The higher the directivity, the more accurately the antenna can target a particular frequency range. Additionally, the antenna has a wide band frequency response, making it suitable for use in a wide range of radio frequencies. This means that the antenna can receive and transmit signals from a range of different frequencies, making it suitable for use in multiple applications. Finally, the antenna also offers low-latency performance, which means that signals sent and received via the antenna will travel quickly. This makes the RN-SMA-S-RP antenna an ideal choice for a variety of radio communications applications, including cellular communication, point-to-point and point-to-multi-point communications.

The working principle of the RN-SMA-S-RP antenna is based on the principles of electromagnetic radiation. Basically, the two metal rods of the antenna act as an electrical charge and create an electric field. When this electric field encounters an electromagnetic wave, it begins to resonate and eventually radiates energy in the form of radio waves. This radio wave can then be received or transmitted, depending on the purpose of the antenna. Additionally, the two metal rods of the antenna act as a reflector, which helps to increase the gain of the antenna.

In conclusion, the RN-SMA-S-RP antenna is a popular type of antenna that is often used in cellular and radio applications due to its ability to receive and transmit radio signals from a wide range of frequencies. Additionally, the antenna also has the advantages of high directivity, wide band response and low-latency performance, making it suitable for a variety of different applications. The working principle of the RN-SMA-S-RP antenna is based on the principles of electromagnetic radiation, which involves the use of two metal rods which create an electric field when they encounter an electromagnetic wave. This electric field then resonates and radiates energy, enabling the antenna to transmit or receive signals.

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

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