CFD69383P-30D43F Allicdata Electronics
Allicdata Part #:

994-1196-ND

Manufacturer Part#:

CFD69383P-30D43F

Price: $ 46.98
Product Category:

RF/IF and RFID

Manufacturer: Laird Technologies IAS
Short Description: OMNIDBAND AT&T 698-960 1690-3800
More Detail: LTE, WiMax™ Flat Panel RF Antenna 6dBi Cable (300...
DataSheet: CFD69383P-30D43F datasheetCFD69383P-30D43F Datasheet/PDF
Quantity: 8
1 +: $ 42.71400
10 +: $ 40.19900
25 +: $ 37.68660
100 +: $ 35.92790
Stock 8Can Ship Immediately
$ 46.98
Specifications
Series: --
Part Status: Active
Frequency Group: Wide Band
Antenna Type: Flat Panel
Number of Bands: 3
VSWR: 2
Return Loss: --
Gain: 6dBi
Power - Max: 50W
Features: --
Termination: Cable (300mm) 4.3-10 - Female
Ingress Protection: --
Mounting Type: Panel Mount
Height (Max): 0.299" (7.60mm)
Applications: LTE, WiMax™
Description

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RF antennas are devices used to help transform electrical energy into electromagnetic radiowaves. They vary in design and come in many shapes and sizes, depending on the application. The CFD69383P-30D43F antenna is an example of a high-efficiency device used in many industries. This article will discuss the application field and the working principle of this antenna.

Application Field

The CFD69383P-30D43F antenna is an embedded type antenna with a frequency range of 693-918 MHz. It has a robust design that is suitable for mobile and stationary applications in the wireless telecommunications industry. This antenna can also be used in smart home systems, internet-of-things (IOT) devices, and IoT hubs. It is widely used in wireless routers, access points, and is suitable for integrating with most communication modules used in WiFi and Bluetooth networks.

Working Principle

The CFD69383P-30D43F antenna follows the electromagnetic wave theory. An electromagnetic wave is created when an oscillating electrical current is passed through a conductor. This results in the production of a magnetic field, as well as a radiative electric field. The electric field radiates outward from the conductor in straight lines, resulting in an electromagnetic wave. In order for an antenna to achieve maximum efficiency, the electric field must be perpendicular to the antenna. This is accomplished by either a half-wave dipole antenna or an end-fire antenna. In the former, the electric field is perpendicular to the antenna at the center of the dipole, while in the latter, the electric field is perpendicular to the antenna at the ends of the antenna. The CFD69383P-30D43F antenna uses an endfire design to achieve maximum efficiency.

The CFD69383P-30D43F antenna also utilizes a high-efficiency, low-profile design. The antenna is made of high-grade, corrosion-resistant brass and is designed to meet the stringent requirements of the wireless communication industry. The antenna is able to achieve an efficiency of up to 85%, due to its narrow bandwidth, low profile, and low-power consumption. The antenna also has a wide operating temperature range, from -40 to 85 degrees Celsius, making it suitable for use in a variety of applications.

Conclusion

The CFD69383P-30D43F antenna is a robust and efficient device used in many types of communication systems. It has a wide frequency range and is designed to meet the stringent requirements of the wireless communication industry. The antenna follows the electromagnetic wave theory and utilizes an endfire design to achieve maximum efficiency. The antenna is also made of high-grade, corrosion-resistant brass and is able to achieve up to 85% efficiency due to its narrow bandwidth and low power consumption. This makes it suitable for a variety of demanding communication applications.

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

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