
Allicdata Part #: | S49014WP12NF-ND |
Manufacturer Part#: |
S49014WP12NF |
Price: | $ 50.92 |
Product Category: | RF/IF and RFID |
Manufacturer: | Laird Technologies IAS |
Short Description: | ANT PNL WIDE 14DBI 12" N-FEM |
More Detail: | 5GHz WLAN Panel RF Antenna 4.9GHz ~ 5.99GHz 14dBi ... |
DataSheet: | ![]() |
Quantity: | 1000 |
25 +: | $ 46.28830 |
Specifications
Return Loss: | -- |
Applications: | WLAN |
Height (Max): | 1.378" (35.00mm) |
Mounting Type: | Bracket Mount |
Ingress Protection: | -- |
Termination: | Cable (305mm) - N Female |
Features: | -- |
Power - Max: | 10W |
Gain: | 14dBi |
Series: | -- |
VSWR: | 2 |
Number of Bands: | 1 |
Antenna Type: | Panel |
Frequency Range: | 4.9GHz ~ 5.99GHz |
Frequency (Center/Band): | 5GHz |
Frequency Group: | SHF (f > 4 GHz) |
Part Status: | Active |
Packaging: | Bulk |
Description
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RF Antennas – S49014WP12NF Application Field and Working Principle
In the field of RF antennas, S49014WP12NF refers to a high-performance dipole antenna. This antenna is designed to radiate power of up to 50W in a wide bandwidth of operation. It is well suited for data center, local area networks, industrial, telecom and broadband applications. The performance of an antenna largely depends on its working principle. This article will discuss the working principle and application fields of S49014WP12NF.Working Principle
The S49014WP12NF dipole antenna operates on the principle of electric current flowing through two conducting wires that are perpendicular to one another. As shown in figure 1, the antenna has a single radiating element, which is the horizontal cross section of the antenna. The current flowing through this element creates an electric field which propagates outwards in the form of an electromagnetic wave. These waves are picked up by the antenna and converted into a signal which is then transmitted away from the antenna.
Figure 1: S49014WP12NF Dipole Antenna
Application Field
The S49014WP12NF antenna is primarily used in data center, local area networks, industrial, telecom and broadband applications. It has been designed to provide a reliable and efficient connection to multiple customer networks and communication systems. The antenna also provides a high-speed connection for up to 50 watts of power, making it suitable for use in high traffic environments.In data center applications, the S49014WP12NF antenna is used to provide an uninterrupted connection between the data center and the customer\'s network. Its excellent performance over a wide bandwidth of operation ensures reliable operation in data centers, providing consistent performance with minimal network downtime.In local area network applications, the S49014WP12NF antenna is used to extend the range of the network, as well as providing efficient and secure connection without the need for additional equipment or cabling. Its directional radiation pattern also ensures that no interference is present between the network and any nearby networking device.In industrial applications, the S49014WP12NF antenna can be used to connect machines, such as factory robots and other automation systems, to the network. It can also be used to provide efficient communication between remote components in industrial sectors, such as farming, power distribution and mining.In telecom and broadband applications, the S49014WP12NF antenna is used to extend the range of broadband signals, allowing users to connect to the web from a further distance. Its reliable operations over a wide bandwidth ensures that users can enjoy high-speed connections without any lags.Conclusion
The S49014WP12NF antenna is a reliable dipole antenna designed to provide high-performance for multiple applications. It has a wide operating bandwidth and two radiation patterns, the omnidirectional and the directional radiation pattern. The antenna is primarily used in data center, local area network, industrial, telecom and broadband applications, providing users with an efficient and reliable connection to multiple customer networks and communication systems.The specific data is subject to PDF, and the above content is for reference
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