Allicdata Part #: | PLC1426N-ND |
Manufacturer Part#: |
PLC1426N |
Price: | $ 153.72 |
Product Category: | RF/IF and RFID |
Manufacturer: | Laird Technologies IAS |
Short Description: | ANT YAGI VHF 142-150MHZ 70" |
More Detail: | 146MHz Yagi, 6-Element RF Antenna 142MHz ~ 150MHz... |
DataSheet: | PLC1426N Datasheet/PDF |
Quantity: | 1000 |
10 +: | $ 139.74700 |
Return Loss: | -- |
Applications: | -- |
Height (Max): | 70.000" (177.80cm) |
Mounting Type: | Bracket Mount |
Ingress Protection: | -- |
Termination: | Connector, N Female |
Features: | -- |
Power - Max: | 400W |
Gain: | 7.1dBi |
Series: | PLC |
VSWR: | -- |
Number of Bands: | 1 |
Antenna Type: | Yagi, 6-Element |
Frequency Range: | 142MHz ~ 150MHz |
Frequency (Center/Band): | 146MHz |
Frequency Group: | VHF (f |
Part Status: | Active |
Packaging: | Bulk |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
RF antennas play an important and ever-growing role in modern life. With the emergence of wireless communication systems, the use of antennas for communication is becoming increasingly prevalent. Antennas enable us to receive and transmit signals, thus allowing us to engage in communication without the need for costly cabling or wires. In this article, we will examine the application field and working principle of the PLC1426N RF antenna.
The PLC1426N is an RF antenna specifically designed for adjacent channel power interferences. It is a highly reliable, lightweight, and hand-portable antenna. The antenna is built to be durable and resistant to outdoor conditions. It enables it to be used even in remote or extreme environments. The PLC1426N is a lightweight and efficient antenna, allowing it to be quickly and easily deployed.
The application field of the PLC1426N antenna is vast due to its portability and reliability. It is commonly used in communication systems such as cellular networks, wireless internet, and satellite television systems. Additionally, the antenna is also used in the military and aerospace industries. This is due to its ability to withstand extreme climates and conditions. The PLC1426N antenna is also becoming increasingly popular for local area networks and short-range mobile data systems.
The working principle of the PLC1426N antenna is based on the principle of resonance. This implies that the antenna is able to absorb a signal at a specific frequency and to radiate it at the same frequency. To achieve this, the antenna is designed to be capable of absorbing and radiating power in a certain direction, known as its half power beamwidth. By choosing the appropriate operating frequency and design, the antenna can be tuned to the desired channel range and radiation pattern.
The radiation pattern of the PLC1426N HF antenna determines its directivity and directional gain. This is usually achieved through the use of copper radiators. The radiators are used to redirect or focus the antennas energy in a desired direction. The degree of power transfer is determined by the proximity of the radiators to one another, as well as the size of the antenna itself. The radiators are also designed with impedance matching in mind in order to prevent reflections, which can adversely affect transmission quality.
In addition to the radiators, the PLC1426N RF antenna also includes specialized electronic components. These components are designed to ensure optimum power transfer. For example, a low noise amplifier (LNA) is used to amplify the electrical signal and reduce the noise floor. Additionally, a power divider is used to evenly distribute the signal to the telescope\'s radiators. Finally, additional components such as a bandpass filter can also be used to reduce interference.
The PLC1426N is an RF antenna designed specifically for adjacent channel power interferences. It has numerous applications, from communication systems such as cellular networks, wireless internet, and satellite television systems to the military and aerospace dindustries. Its working principle is based on the resonant principle and is designed with radiators and specialized components such as a low noise amplifier and power divider to ensure optimum power transfer and effective signal management.
The specific data is subject to PDF, and the above content is for reference
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