1001388 Allicdata Electronics

1001388 RF/IF and RFID

Allicdata Part #:

939-1050-2-ND

Manufacturer Part#:

1001388

Price: $ 0.58
Product Category:

RF/IF and RFID

Manufacturer: Ethertronics/AVX
Short Description: ANT STAMP WLAN 802.11A 5GHA SMT
More Detail: 5GHz Wi-Fi, WLAN Stamped Metal RF Antenna 4.9GHz ~...
DataSheet: 1001388 datasheet1001388 Datasheet/PDF
Quantity: 1000
6000 +: $ 0.52813
Stock 1000Can Ship Immediately
$ 0.58
Specifications
Return Loss: --
Applications: Wi-Fi, WLAN
Height (Max): 0.087" (2.20mm)
Mounting Type: Surface Mount
Ingress Protection: --
Termination: Solder
Features: --
Power - Max: 2W
Gain: 5dBi
Series: --
VSWR: --
Number of Bands: 2
Antenna Type: Stamped Metal
Frequency Range: 4.9GHz ~ 5.9GHz
Frequency (Center/Band): 5GHz
Frequency Group: SHF (f > 4 GHz)
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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RF Antennas, 1001388 Application Field and Working Principle

Radio Frequency (RF) antennas, also known as “transceivers”, are a type of antenna designed to transmit and receive electromagnetic radiation in the radio frequency (RF) spectrum. They are increasingly used in the communication of information, such as radio broadcasts, television signals, cellular phones, Wi-Fi networks, and more. This article will discuss the application fields and working principle of 1001388 RF antennas.

Application Fields of 1001388 RF Antennas

1001388 RF antennas can be used in a variety of applications, including mobile communications, satellite communications, military communications, and unmanned aerial vehicles (UAVs). In particular, 1001388 antennas are often used to provide high-gain, low-loss communication in the most demanding environments. For example, they may be used in remote locations, or locations with severe weather or terrain conditions.

1001388 RF antennas are also used in medical applications such as MRI, CT scanners, medical imaging systems, and wireless patient monitoring devices. They are also used for radar systems and in entertainment and sports broadcasting.

Working Principle of 1001388 RF Antennas

The working principle of 1001388 RF antennas is based on the transmission and reception of radio waves. To achieve this, the antenna must be able to absorb and transmit electromagnetic energy. The antenna converts the electrical signal into electromagnetic radiation in the radio frequency spectrum, and then transmits it to a receiver.

When an antenna receives a signal, the electromagnetic radiation is converted back to an electrical signal. This is done by the antenna\'s receiver, which translates the signal to a usable form. The antenna then uses the signal to transmit data, sound, video or other information.

1001388 RF antennas work best when they are placed in a correctly designed antenna array. This is a combination of several antennas arranged in a specific array to maximize the transmission and reception of electromagnetic radiation. By using this configuration, the antennas can transmit and receive signals over greater distances, with greater accuracy and less interference.

In addition to their use in communication, 1001388 RF antennas have also found use in other fields, such as industrial, scientific and medical applications. By accurately aligning the antennas and configuring the array, the antenna can be used to detect signals from non-radiofrequency sources, such as X-rays, gamma rays and microwaves.

Conclusion

In this article, we discussed the application field and working principle of 1001388 RF antennas. They are a type of antenna designed for radio frequency communication, and are increasingly used in the communication of data, sound, video, and other information. 1001388 RF antennas can be used in many different applications, including mobile communication, medical applications, radar, and entertainment and sports broadcasting. The working principle of these antennas relies on the transmission and reception of electromagnetic radiation in the form of radio waves, which are converted to and from electrical signals. 1001388 antennas are most effective when placed in a correctly designed antenna array, which increases both the transmission and reception capabilities of the antenna. The antennas can also be used to detect non-radiofrequency signals, such as gamma rays and X-rays.

The specific data is subject to PDF, and the above content is for reference

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