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LB-CH-90-20-D16-C-TF Dual Circular Polarization Corrugated Conical Horn Antenna 8.9-11.7GHz 20dB Gain TNC Female

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LB-CH-90-20-D16-C-3.5F Dual Circular Polarization Corrugated Conical Horn Antenna 8.9-11.7GHz 20dB Gain 3.5mm Female

LB-CH-90-20-D16-C-7 Dual Circular Polarization Corrugated Conical Horn Antenna 8.9-11.7GHz 20dB Gain 7mm

Quick Overview

Dual Circular Polarization Corrugated Conical Horn Antenna Operating From 8.9GHz to 11.7GHz With a Nominal 20dB Gain With 7mm Connector

Availability:In stock

Description

Dual circular polarization corrugated conical horn antenna LB-CH-90-20-D16-C-7, operating from 8.9 to 11.7GHz with a nominal 20dB gain and low VSWR 1.50:1 with 7mm output connector. The model LB-CH-90-20-D16-C-7 has uniform gain through its frequency span, providing a nearly circularly symmetric copolar radiation pattern in a wide bandwidth and very low crosspolarisation. This horn antenna has dual circular polarization and ideally suited for antenna far field testing, reflector feed, CATR, RCS measurement and other applications.

Technical Specification

Model LB-CH-90-20-D16-C-7
Frequency, Min (GHz) 8.9
Frequency, Max (GHz) 11.7
Waveguide Type Rectangular
Waveguide Size EIA WR WR90
Gain, Typ (dBi) 20
Polarization Dual Circular
3dB Beamwidth, E-Plane, Typ (Deg.) 17
3dB Beamwidth, H-Plane, Typ (Deg.) 17
Side Lobe Level, E-Plane, Min (dB) 30
Side Lobe Level, H-Plane, Min (dB) 35
Port to Port Isolation, Min (dB) 20
Port to Port Isolation, Typ (dB) 25
Axial Ratio , Typ (dB) 2
Axial Ratio , Max (dB) 4
VSWR, Typ 1.50:1
Impedance, (Ohm) 50
Output Type Coaxial
Connector 7mm
Connector Gender N/A
Power Handling, CW, (W) 150
Power Handling, Peak, (W) 3000
Body Material Al
Finish Silver Plated and Chemical Conversion Coating, Gray Paint
Figure C Type
Size, W (mm) 149.6
Size, H (mm) 149.6
Size, L (mm) 539.7
Weight, (kg) 2.05
Application General Purpose Indoor & Outdoor, Fixed
Solution for Gain Reference, Antenna Measurement, Reflector Feed, Chamber Evaluation, Far-field Measurement, CATR, RCS Measurement, System Intergration, Material Measurement