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Standard Gain Horn Antenna 17dBi Typ. Gain, 2.2-3.3GHz Frequency Range RM-SGHA340-15

Short Description:

RF MISO’s Model RM-SGHA340-15 is a linear polarized standard gain horn antenna that operates from 2.2 to 3.3 GHz. The antenna offers a typical gain of 17 dBi and low VSWR 1.3:1.  This antenna has flange input and coaxial input for customers to rotate. Antenna mounting brackets include ordinary L-type mounting bracket and rotating L-type bracket

 


Product Detail

ANTENNA KNOWLEDGE

Product Tags

Features

● Wave-guide and Connector Interface

● Low Side-lobe

● Linear Polarization

● High Return Loss

Specifications

Parameters

Specification

Unit

Frequency Range

2.2-3.3

GHz

Wave-guide

WR340

Gain

15 Typ.

dBi

VSWR

1.3 Typ.

 Interface

FDP22(F Type)

N-Female(C Type)

Material

Al

Finishing

Paint

Size,C Type (L*W*H)

442.38*342.81*238.56 (±5)

mm

Weight

1.453(F Type)

2.062(C Type)

Kg

C Type Average Power

150

w

C Type Peak Power

3000

w

Operating Temperature

-40°~+85°

°C


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  • The Standard Gain Horn Antenna is a precision-calibrated microwave device serving as the fundamental reference in antenna measurement systems. Its design follows classical electromagnetic theory, featuring a precisely flared rectangular or circular waveguide structure that ensures predictable and stable radiation characteristics.

    Key Technical Features:

    • Frequency Specificity: Each horn is optimized for a specific frequency band (e.g., 18-26.5 GHz)

    • High Calibration Accuracy: Typical gain tolerance of ±0.5 dB across operational band

    • Excellent Impedance Matching: VSWR typically <1.25:1

    • Well-Defined Pattern: Symmetric E- and H-plane radiation patterns with low sidelobes

    Primary Applications:

    1. Gain calibration standard for antenna test ranges

    2. Reference antenna for EMC/EMI testing

    3. Feed element for parabolic reflectors

    4. Educational tool in electromagnetic laboratories

    These antennas are manufactured under strict quality control, with their gain values traceable to national measurement standards. Their predictable performance makes them indispensable for verifying the performance of other antenna systems and measurement equipment.

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