Allicdata Part #: | IN24-10-ND |
Manufacturer Part#: |
IN24-10 |
Price: | $ 23.98 |
Product Category: | RF/IF and RFID |
Manufacturer: | Laird Technologies IAS |
Short Description: | ANT INWAVE WALL MT 10DBI 9" |
More Detail: | 2.4GHz WLAN Module RF Antenna 2.4GHz ~ 2.483GHz 10... |
DataSheet: | IN24-10 Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 21.79800 |
Return Loss: | -14dB |
Applications: | WLAN |
Height (Max): | 1.772" (45.00mm) |
Mounting Type: | Chassis Mount |
Ingress Protection: | -- |
Termination: | Connector, N Female |
Features: | -- |
Power - Max: | 100W |
Gain: | 10dBi |
Series: | InWave® |
VSWR: | 1.5 |
Number of Bands: | 1 |
Antenna Type: | Module |
Frequency Range: | 2.4GHz ~ 2.483GHz |
Frequency (Center/Band): | 2.4GHz |
Frequency Group: | UHF (2 GHz ~ 3 GHz) |
Part Status: | Active |
Packaging: | Bulk |
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RF antennas are indispensable aspects of any wireless communication system. Antennas provide the all-important link between a transmitter and its intended receiver. The most popular type of RF antenna is the IN24-10, which is a wide-band, UHF directional antenna.
In its simplest form, the IN24-10 is composed of two parallel elements, each measuring approximately 10 inches in length. It has insufficient gain to provide enough directivity on its own, but by adding a reflector to create a fixed beam in the desired direction, it can provide significant gain. This makes the IN24-10 an ideal choice for applications where reception must be directed towards a distant transmitter or receiver.
The IN24-10 is also well suited for point-to-point and point-to-multipoint RF communication systems. It is designed to be mounted on top of a tower, providing a relatively large surface area for transmission and reception. In addition, its large size makes it possible to capture signals from long distances. Its gain also makes it suitable to use for single-transmitter or single-receiver applications.
The main components of the IN24-10 are its radiating element, the reflector, and the mounting hardware. The radiating element is composed of two parallel rods or bars, which are the same length. This element is connected to the reflector, which is a metal surface which reflects any signals that it receives back towards the transmitter or receiver. The mounting hardware includes a bracket which is used to secure the antenna to the tower or other support structure.
The working principle of the IN24-10 is based upon the process of electromagnetic induction, which is the generation of an electromotive force (or voltage) by fluctuating electromagnetic fields. Electromagnetic radiation from the antenna is in the form of electric and magnetic fields which oscillate at an extremely high frequency.
The radiation generated by the IN24-10 causes current to be induced in any conductive object located in the antennas field of view. This current is the signal which is then transmitted or received by the antenna. Radiation from the antenna also interacts with the reflector, which in turn directs the signal in the desired direction.
Another principle of the working of the IN24-10 is the principle of superposition. This is the concept that the current induced in the conductive material, or dipole, is due to the superposition of all the individual radiating elements. This means that the direction of the radiation and reception will be the same as the least or most significant element (dipole). This is useful in RF antenna systems because it allows the antenna to focus on one specific point or direction, while still receiving signals from other sources.
The IN24-10 is a versatile and reliable antenna which is widely used in a variety of applications. It can be used for various point-to-point and point-to-multipoint systems, and its wide bandwidth allows for the transmission and reception of signals at a variety of frequencies. Its large size also allows it to capture signals from long distances, making it very suitable for single-channel or single-transmitter systems. Its gain also makes it suitable to use for single-transmitter or single-receiver applications.
The specific data is subject to PDF, and the above content is for reference
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