
Allicdata Part #: | 0600-00060-ND |
Manufacturer Part#: |
0600-00060 |
Price: | $ 3.54 |
Product Category: | RF/IF and RFID |
Manufacturer: | Laird - Wireless & Thermal Systems |
Short Description: | ANTENNA DIPOLE 863-928MHZ |
More Detail: | 896MHz Whip, Tilt RF Antenna 863MHz ~ 928MHz 0.9d... |
DataSheet: | ![]() |
Quantity: | 112 |
1 +: | $ 3.21930 |
VSWR: | 2 |
Applications: | -- |
Height (Max): | 5.315" (135.00mm) |
Mounting Type: | Connector Mount |
Ingress Protection: | -- |
Termination: | Cable (150mm) - U.FL |
Features: | -- |
Gain: | 0.9dBi |
Return Loss: | -10dB |
Series: | -- |
Number of Bands: | 1 |
Antenna Type: | Whip, Tilt |
Frequency Range: | 863MHz ~ 928MHz |
Frequency (Center/Band): | 896MHz |
Frequency Group: | UHF (300 MHz ~ 1 GHz) |
Part Status: | Active |
Packaging: | Bulk |
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0600-00060 Application Field and Working Principle
RF antennas are a very popular technology today, and they are increasingly being used in various application fields. Essentially, RF antennas are devices that convert radio frequency (RF) energy into electrical energy and vice versa. They are often used to send and receive signals, but they can also be used to reflect signals, create a reflective surface, or act as a transceiver. RF antennas can also be used in various types of radiation measurements, such as radiation sensors, monitors, and even satellite systems.
Application Field
RF antennas are more often used in the fields of communication, medicine and law. In the field of communication, RF antennas can be used to capture and process RF signals from various sources such as cell phones, radio and television broadcasts. In medical applications, RF antennas can be used to detect RF emissions from various sources such as MRI, CT, and other medical imaging equipment. RF antennas can also be used in law, where they can be used to detect and track wireless signals used in illegal activities or to locate and trace mobile phones.
Working Principle
The working principle of RF antennas is based on the principles of electromagnetic fields. Electromagnetic waves are generated by the antenna when high-frequency electric energy is passed through it. This energy is then converted into radiation, which can be transmitted or received by the antenna. This radiation is then converted back to electrical signals, which can then be used in various applications.
RF antennas usually consist of an array of conductors such as wires, dipoles, or horns that act like an antenna. These components ensure that the antenna can transmit and receive signals with minimal loss. The array of conductors also allows the antenna to perform different tasks such as beamforming, omnidirectional reception, and gain control.
RF antennas are usually constructed from special materials that are optimized to perform specific tasks. For example, high-frequency antennas are usually made from materials that have high conductivity such as copper or aluminum. This allows them to capture signals that are within a certain frequency range and also to allow them to transmit signals with greater efficiency.
RF antennas also have different shapes and designs depending on the type of signal being transmitted. For instance, dipole antennas have two straight sides that are perpendicular to each other, while helical antennas have two or more spiral-shaped conductive elements. The shape and design of the antenna determines its ability to capture and transmit different types of signals.
Conclusion
RF antennas are an important piece of technology today that are used in a variety of fields. They have a variety of uses, such as sending and receiving signals, reflect signals, and even act as a transceiver. RF antennas are usually constructed from materials that are optimized to capture and transmit signals at certain frequencies and they come in an array of shapes and designs depending on the type of signal being transmitted. Ultimately, RF antennas are an integral part of today\'s communication systems and are used for a variety of purposes.
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