CGGP.35.3.A.02 Allicdata Electronics
Allicdata Part #:

931-1153-ND

Manufacturer Part#:

CGGP.35.3.A.02

Price: $ 5.08
Product Category:

RF/IF and RFID

Manufacturer: Taoglas Limited
Short Description: RF ANTENNA
More Detail: 1.575GHz, 1.6GHz GLONASS, GPS Ceramic Patch RF Ant...
DataSheet: CGGP.35.3.A.02 datasheetCGGP.35.3.A.02 Datasheet/PDF
Quantity: 571
1 +: $ 4.61790
100 +: $ 4.56662
Stock 571Can Ship Immediately
$ 5.08
Specifications
VSWR: 1.5
Applications: GLONASS, GPS
Height (Max): 0.138" (3.50mm)
Mounting Type: Adhesive
Ingress Protection: --
Termination: Pin
Features: --
Gain: 2dBi
Return Loss: --
Series: --
Number of Bands: 2
Antenna Type: Ceramic Patch
Frequency Range: 1.564GHz ~ 1.586GHz, 1.591GHz ~ 1.613GHz
Frequency (Center/Band): 1.575GHz, 1.6GHz
Frequency Group: UHF (1 GHz ~ 2 GHz)
Part Status: Active
Packaging: Tray 
Description

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, is a type of antenna used for transmission of electromagnetic signals in the radio frequency (RF) range of the electromagnetic spectrum. In recent years, RF antennas, particularly CGGP.35.3.A.02 antennas, have been increasingly used in a variety of electronic devices and communications systems. As such, understanding the application field and working principle of this particular RF antenna will be beneficial for those involved in the design, installation, or maintenance of these devices.

CGGP.35.3.A.02 antennas are most commonly used in applications such as cellular networks, Wi-Fi networks, and satellite communications systems. In these systems, the antenna is responsible for receiving and transmitting signals within the RF range. The antenna typically consists of an array of individual elements arranged in a particular structure. The way in which the elements are arranged dictates the characteristics of the antenna, the directionality, the gain, and the antenna\'s ability to receive or transmit signals.

The working principle of CGGP.35.3.A.02 antennas is based on the propagation of electromagnetic waves. When an electrical current is applied to the antenna, it produces a corresponding electromagnetic field which propagates through the environment. When a signal is received, the antenna elements behave like a microphone, gathering, combining and concentrating the incoming electromagnetic waves and converting them into electrical current. Conversely, when transmitting a signal, the antenna elements act like a speaker, converting the electrical current into electromagnetic waves and sending them out into environment.

The design of CGGP.35.3.A.02 antennas differs depending on the intended application. The elements can be arranged in a variety of shapes, such as a monopole, dipole, or Yagi, in order to optimize the antenna for the desired frequency range and performance. For example, a Yagi antenna may be used to transmit signals in one specific direction, while a dipole antenna is best suited for omnidirectional transmission and reception. Additionally, various components such as impedance matching networks, antenna amplifiers, and antenna tuners can be used to further tune the antenna for the desired signal characteristics.

There are many other aspects of CGGP.35.3.A.02 antennas which can be discussed. However, given their widespread use in electronic devices and communications systems, a basic understanding of the application field and working principle of this particular RF antenna is beneficial for technicians, engineers, and hobbyists alike. From knowing how to properly size and mount the antenna for optimum performance to understanding the principles behind signal transmission, an understanding of RF antennas and this particular CGGP.35.3.A.02 antenna can be a great asset.

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

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