HCR6927M3PBN-001 Allicdata Electronics
Allicdata Part #:

HCR6927M3PBN-001-ND

Manufacturer Part#:

HCR6927M3PBN-001

Price: $ 26.32
Product Category:

RF/IF and RFID

Manufacturer: Laird Technologies IAS
Short Description: ANT ONMIDIR 2.3DB BLACK P-MNT
More Detail: 829MHz, 2.2GHz LTE Whip, Straight RF Antenna 698MH...
DataSheet: HCR6927M3PBN-001 datasheetHCR6927M3PBN-001 Datasheet/PDF
Quantity: 1000
1 +: $ 23.92740
Stock 1000Can Ship Immediately
$ 26.32
Specifications
Return Loss: --
Applications: LTE
Height (Max): 3.280" (83.30mm)
Mounting Type: Panel Mount
Ingress Protection: IP67
Termination: Connector, N Female
Features: --
Power - Max: 10W
Gain: 2.8dBi
Series: --
VSWR: 2
Number of Bands: 1
Antenna Type: Whip, Straight
Frequency Range: 698MHz ~ 960MHz, 1.71GHz ~ 2.7GHz
Frequency (Center/Band): 829MHz, 2.2GHz
Frequency Group: Wide Band
Part Status: Active
Packaging: Bulk 
Description

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RF antennas are an essential component of any radio communication system. Without them, the transmitted signal would be too weak or not usable at all. The HCR6927M3PBN-001 is a type of RF antenna designed for commercial and industrial applications. It features a gain of 8dBi, a peak gain of 10dBi, a wide bandwidth of 690-2700MHz, a wide impedance bandwidth of 10:7, and a half-power beamwidth of 43 degrees. In addition, the HCR6927M3PBN-001 has a low axial ratio of 0.65 and a high front-to-back ratio of 25dB.

The primary application of the HCR6927M3PBN-001 is in cellular and wireless networking communications, as it is designed to handle a wide variety of applications with its wide bandwidth and high gain. It can be used in a number of different systems, such as point-to-point systems, base stations, cellular transmitters and receivers, Wi-Fi 802.11b/g/n, and WiMax systems. The HCR6927M3PBN-001 is ideal for systems requiring high data transmission rates, such as streaming audio or HD video. It can also be used in remote wireless systems that require high quality signals over long distances.

The working principle of the HCR6927M3PBN-001 is based on the principle of electromagnetic radiation. The antenna is a small metallic structure filled with a type of electrically conductive material, such as copper or aluminum. This material is charged with a current, which creates a magnetic field that radiates outward in a cone-like shape. When the magnetic field interacts with an electric charge, it induces an electric field, which radiates outward in a wave form. The wave form travels through air and resonates with any electric signals in the area, amplifying and transmitting them to the receiving device.

The HCR6927M3PBN-001 is relatively easy to install and configure, and is designed for use with a variety of mounting systems. It is also suitable for both indoor and outdoor environments and is rated to function in temperatures ranging from -40°C to +60°C. It is also waterproof and shock resistant, making it an ideal choice for use in harsh environments. The antenna is also relatively lightweight and portable, making it suitable for use in mobile applications. Furthermore, the HCR6927M3PBN-001 is designed to be low maintenance, so the cost of replacement and repair is minimal.

In conclusion, the HCR6927M3PBN-001 is an excellent choice for anyone who requires a wide bandwidth, high gain RF antenna for commercial and industrial applications. Its wide bandwidth, high gain, low power consumption, and low maintenance requirements make it an excellent choice for applications such as point-to-point communications, base stations, Wi-Fi 802.11b/g/n, and WiMax systems. Its low axial ratio, high front-to-back ratio, and high bandwidth make it suitable for use in a wide variety of environments. The antenna’s waterproof and shock resistant qualities also make it ideal for outdoor use. Lastly, its portability and low maintenance requirements make it suitable for use in mobile applications. Therefore, the HCR6927M3PBN-001 is an ideal choice for a wide variety of RF antenna applications.

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

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