WR510 1.45 to 2.2 GHz 10 dbi Waveguide Horn Input, UDR Flange

Model No: WI-510-UDR-10

Made in Taiwan
Frequency Range: 1.45 to 2.2 GHz
Standard Gain: 10 dBi
Waveguide Size: WR-510 (UDR)
Max Power (W): 1000 Watts
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1.45 GHz to 2.2 GHz WR-510 Standard Gain Waveguide Horn Antenna

Model: WI-510-UDR-10 | 10 dBi Gain | 1000W CW High Power Capacity
The WI-510-UDR-10 is a high-performance WR-510 Waveguide Horn Antenna professionally engineered for precision measurement and high-power operations within the 1.45 GHz to 2.2 GHz spectrum. Covering critical frequencies for cellular communications (GSM/LTE), telemetry, and L/S-Band radar, this antenna provides a consistent 10 dBi gain. Designed to manage power loads up to 1000 Watts, it ensures unwavering Signal Integrity and stability for mission-critical Signal Defense, EMI/EMC Testing, and advanced antenna calibration deployments.
Technical Specifications
Electrical & RF Performance
Waveguide Standard WR-510 / WG9A / R18
Frequency Range 1.45 GHz to 2.2 GHz
Nominal Gain 10 dBi
Maximum Power Handling 1000 Watts (CW)
-3dB Beamwidth (H/E Plane) 58° / 56°
Impedance 50 Ohm
Mechanical & Physical Specs
Dimensions (W x H x L) 185 x 256 x 427 mm
Net Weight 1850 g (1.85 kg)
Waveguide Flange UDR Style Flange
Material High-Grade Aerospace Aluminum
Design & Origin Taiwan Design / Made in Taiwan (FT-RF)
Key Tactical & Lab Features

1000W Power Handling

Robust aluminum construction supports high-power transmission, ideal for radar simulation and intensive immunity testing applications.

Superior Signal Integrity

Precision-manufactured to ensure low return loss and consistent gain profile across the entire 1.45-2.2 GHz operating band.

L/S-Band Spectrum Security

Optimized for mobile communications and telemetry frequencies, supporting advanced signal management and interference mitigation.

Lightweight Aluminum Build

At only 1.85 kg, this compact antenna ensures structural rigidity while remaining easy to deploy on tactical masts or laboratory positioners.

Request a Professional Quote

Contact our engineering team to obtain individual calibration data, mechanical drawings, or customized waveguide flange requirements.

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