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Circularly Polarized Horn Antenna 13dBi Typ. Gain, 0.9-2.25 GHz Frequency Range RM-CPHA09225-13

Short Description:

RF MISO’s Model RM-CPHA09225-13 is RHCP or LHCP circularly polarized horn antenna that operates from 0.9 to 2.25 GHz. The antenna offers a typical gain of 13 dBi and low VSWR 2:1 Typ.
The antenna is equipped with a circular polarizer, a circular waveguide to circular waveguide Converter and a conical horn antenna. The gain of the antenna is uniform in the entire frequency band, the pattern is symmetrical, and the working efficiency is high. Antennas are widely used in antenna far-field testing, radio frequency radiation testing and other scenarios.


Product Detail

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Product Tags

Features

● Low VSWR

● High Power handling

● Symmetrical Plane Beamwidth

● RHCP or LHCP

● Military Airborne Applications

 

Specifications

                            RM-CPHA09225-13

Parameters

Specification

Unit

Frequency Range

0.9-2.25

GHz

Gain

13 Typ. 

dBi

VSWR

2 Typ.

 

AR

2 Typ.

dB

Polarization

RHCP or LHCP

 

  Interface

N-Female

 

Material

Al

 

Finishing

Paint

 

Average Power

150

W

Peak Power

3000

W

Size (L*W*H)

1896.7*280.0*440.0 (±5)

mm

Weight

 75.8

kg


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  • The Circular Polarization Horn Antenna is a specialized microwave antenna that converts linearly polarized signals into circularly polarized waves through an integrated polarizer. This unique capability makes it particularly valuable in applications where signal polarization stability is critical.

    Key Technical Features:

    • Circular Polarization Generation: Utilizes dielectric or metallic polarizers to create RHCP/LHCP signals

    • Low Axial Ratio: Typically <3 dB, ensuring high polarization purity

    • Broadband Operation: Generally covers 1.5:1 frequency ratio bandwidths

    • Stable Phase Center: Maintains consistent radiation characteristics across frequency band

    • High Isolation: Between orthogonal polarization components (>20 dB)

    Primary Applications:

    1. Satellite communication systems (overcoming Faraday rotation effect)

    2. GPS and navigation receivers

    3. Radar systems for weather and military applications

    4. Radio astronomy and scientific research

    5. UAV and mobile communication links

    The antenna’s ability to maintain signal integrity regardless of orientation changes between transmitter and receiver makes it indispensable for satellite and mobile communications, where signal polarization mismatch can cause significant degradation.

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