Allicdata Part #: | 994-1173-ND |
Manufacturer Part#: |
OP24516SX-91RSMM |
Price: | $ 101.97 |
Product Category: | RF/IF and RFID |
Manufacturer: | Laird Technologies IAS |
Short Description: | ANT IN/OUT 802.11N 6PORT 36" |
More Detail: | RF Antenna |
DataSheet: | OP24516SX-91RSMM Datasheet/PDF |
Quantity: | 8 |
1 +: | $ 92.69820 |
10 +: | $ 86.63970 |
25 +: | $ 83.61010 |
Specifications
Series: | * |
Part Status: | Active |
Description
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OP24516SX-91RSMM RF Antenna Application Field and Working Principle
Introduction
The OP24516SX-91RSMM antenna is an extremely high performance, low profile, dielectric loaded rhombic antenna. The antenna has an operating frequency range of 4.9 to 5.9 GHz and an impedance of 50 ohms. It is designed for use in a variety of high-performance mobile communication applications, such as Wi-Fi, Bluetooth, and other local area network communications. The antenna is designed to the highest standards of quality and reliability, and meets the stringent requirements of the industry. This antenna is extremely compact and lightweight, allowing for easy and quick installation.Design
The antenna features two elements with a dielectric core that is designed with rectangular cutouts in order to obtain a low reflection coefficient. Dielectric loading of the antenna elements helps to reduce the dimensions of the antenna and maintain the high radiation efficiency. The antenna offers excellent omnidirectional radiation characteristics, which make it well suited for applications in which broad coverage is desired. The antenna has a low profile which limits visual obstructions and allows for easy concealment. The antenna is also designed for easy assembly; all of the components are pre-cut and pre-drilled for ease of installation.Features
The OP24516SX-91RSMM antenna has a number of features which make it a superior choice for high-performance communication applications. The antenna includes a wide operating frequency range of 4.9 to 5.9 GHz and provides excellent signal strength and reception. The antenna also features low VSWR, high efficiency, low profile, and excellent directivity and radiation patterns. The antenna is also designed to allow for easy mounting and dismounting, making it ideal for mobile applications. The antenna is also compatible with a variety of connectors, including U.FL, SMA, RP-SMA, and N-type.Working Principle
The working principle of the OP24516SX-91RSMM antenna is based on the concept of radiation. Electromagnetic radiation is an energy wave that is propagated through a medium. In order to radiate effectively, the medium must be of a certain height and have a certain dielectric constant. This allows the wave to become self-propagating, which is the process by which the wave is transmitted without having to be continually created and maintained. The antenna is designed to work within a band in which the frequency is high enough that the air is a suitable medium for propagation.The antenna consists of two elements, each of which is dielectric loaded in order to reduce the antenna’s profile while still maintaining excellent radiation efficiency. These two elements work together to form a rhombic antenna. This type of antenna has the ability to direct the energy in a specific direction, allowing for greater directivity. The antenna is also designed to have an extremely low VSWR, which refers to the ratio between the forward and reflected power. A low VSWR indicates an antenna that has minimal distortion, allowing for stronger and more reliable signals.Conclusion
The OP24516SX-91RSMM antenna is a high performance, low profile, dielectric loaded rhombic antenna. The antenna provides excellent omnidirectional radiation characteristics and has a wide operating frequency range of 4.9 to 5.9 GHz. The antenna is designed to be easy to mount and dismount, and is compatible with a variety of connectors. The antenna also features low VSWR, high efficiency, and a low profile. The working principle behind the OP24516SX-91RSMM antenna is based on the concept of radiation, and the antenna is designed to efficiently convert energy into electromagnetic radiation over a given frequency range.The specific data is subject to PDF, and the above content is for reference
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