Allicdata Part #: | J23016H00-90N-ND |
Manufacturer Part#: |
J23016H00-90N |
Price: | $ 173.68 |
Product Category: | RF/IF and RFID |
Manufacturer: | Laird Technologies IAS |
Short Description: | ANT SECTOR 16.5DB HPOL NFEM |
More Detail: | 2.5GHz WiMax™ Sector RF Antenna 2.3GHz ~ 2.5GHz 16... |
DataSheet: | J23016H00-90N Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 157.89700 |
VSWR: | 1.8 |
Applications: | WiMax™ |
Height (Max): | 39.900" (101.35cm) |
Mounting Type: | Bracket Mount |
Ingress Protection: | -- |
Termination: | Connector, N Female |
Features: | -- |
Gain: | 16.5dBi |
Return Loss: | -- |
Series: | -- |
Number of Bands: | 1 |
Antenna Type: | Sector |
Frequency Range: | 2.3GHz ~ 2.5GHz |
Frequency (Center/Band): | 2.5GHz |
Frequency Group: | UHF (2 GHz ~ 3 GHz) |
Part Status: | Active |
Packaging: | Bulk |
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RF Antennas: J23016H00-90N Application Field and Working Principle
RF antennas, such as the J23016H00-90N, are essential components in modern communication systems. They are used to convert electromagnetic (EM) energy into radio waves, or vice versa, for the purpose of wireless communication. This article will discuss the application field and working principle of the J23016H00-90N RF antenna.
Application Field
The J23016H00-90N RF antenna is commonly used in short-range or long-range radio communication systems. In short-range systems, it is usually used in combination with other components, such as transceivers and receivers, to enable point-to-point communication. In long-range systems, it is usually used as a transmitter and receiver in various telecommunications applications, such as cellular phones, radio and television broadcasting, satellite communications, and point-to-multipoint communication. Additionally, it is also used in radar and navigation systems.
Working Principle
The basic working principle of the J23016H00-90N RF antenna is the same as that of any other antenna. It works by converting an electromagnetic wave into a radio wave, or vice versa. The wave is propagated through the antenna element, which consists of two metal plates or “patches”. When an EM wave is incident upon the element, it sets up an electric current in the element, which in turn causes the RF antenna to radiate an EM wave. Conversely, when an EM wave is detected by the antenna, it sets up an electric current in the element, which can then be amplified by an amplifier and processed by an associated electronic circuit. This process is used to convert the measured EM wave into a usable signal, such as audio or video.
In addition to this basic functionality, the J23016H00-90N RF antenna has a few distinctive features. For example, it is very small in size and can be integrated into a variety of form factors, such as card or stick. It also has a high gain, which means it is capable of transmitting or receiving signals over a wide range of frequencies. In addition, it offers excellent performance in environments with high levels of interference, such as urban areas. Lastly, the J23016H00-90N has a low cost and is easy to install, making it a popular choice for a variety of applications.
Conclusion
The J23016H00-90N RF antenna is a popular choice for many short-range and long-range radio communication systems. It works by converting an electromagnetic wave into a radio wave, or vice versa. It is very small in size and can be integrated into a variety of form factors. It also has a high gain and offers excellent performance in environments prone to high levels of interference. Lastly, it has a low cost and is easy to install, making it a cost-effective solution for many applications.
The specific data is subject to PDF, and the above content is for reference
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