WR-340 (2.2 GHz to 3.3 GHz) 20dbi Waveguide Standard Horn N-Female Antenna, Flange: UDR

Model No: HS-340-UDR-20A-NF

Made in Taiwan
Model Number: HS-340-UDR-20A-NF
Frequency Range: 2.2 - 3.3 GHz
Nominal Gain: 20 dBi
Waveguide Type: WR-340 / UDR
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HS-340 Standard Gain Horn Antenna

Model: HS-340-UDR-20A-NF | 2.2 - 3.3 GHz | 20 dBi | N-Female
The HS-340-UDR-20A-NF is a high-performance Waveguide Horn Antenna specifically engineered for precision measurement and high-power operations within the 2.2 GHz to 3.3 GHz S-band. Precision-manufactured from high-grade aluminum and featuring a standard UDR Waveguide Flange, it ensures low VSWR and consistent 20 dBi gain. Its robust 180W power handling and highly directional 18° beamwidth make it an essential radiator for EMI/EMC testing, antenna calibration, and professional Signal Defense infrastructure.
Technical Specifications
Electrical & RF Performance
Waveguide Standard WR-340
Frequency Range 2.2 - 3.3 GHz
Standard Gain 20 dBi
Maximum Power Handling 180 Watts
3dB Beamwidth (H-Plane) 18°
3dB Beamwidth (E-Plane) 18°
Mechanical & Physical Specs
Dimensions (LxWxH) 410 x 486 x 956 mm
Net Weight 5.48 kg
Waveguide Flange UDR
Connector Type N-Female
Material Lightweight Aluminum
Key Tactical & Lab Features

High-Gain Directionality

Delivers a focused 20 dBi gain with symmetrical 18-degree H/E plane beamwidth, providing extreme boresight accuracy for antenna range calibration.

Broadband S-Band Efficiency

Optimized for 2.2-3.3 GHz operations, offering a critical low-loss link for tactical signal management and electronic protection systems.

Superior Signal Integrity

The precision-welded aluminum structure minimizes internal reflections and ensures unwavering link stability in high-demand tactical environments.

Professional N-Type Interface

Equipped with a high-durability N-Female connector for seamless integration with professional RF test equipment and coaxial infrastructures.

Get a Quote / Custom Antenna Solutions

Contact us for custom gain requirements, specialized mounting adapters, or alternative waveguide flange patterns.