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Waveguide Probe Antenna 7 dBi Typ.Gain, 5.8GHz-8.2GHz Frequency Range RM-WPA137-7

Short Description:

The RM-WPA137-7 is a probe antenna that operates from 5.8 GHz to 8.2 GHz. The antenna offers 7 dBi typical gain. The antenna is linear polarized. The input of this antenna is a WR-137 waveguide with a CPR-137G flange.


Product Detail

ANTENNA KNOWLEDGE

Product Tags

Features

● WR-137 Rectangular Waveguide Interface

● Linear Polarization

 

● High Return Loss

● Precisely Machined

 

Specifications

                    RM-WPA137-7

Item

Specification

Units

Frequency Range

5.8-8.2

GHz

Gain

7 Typ.

dBi

VSWR

1.8 Typ.

 

Polarization

Linear

 

Cross-polarization Isolation

45 Typ.

dB

Waveguide Size

WR-137

 

Interface

CPR-137G(F Type)

SMA-F(C Type)

 

C Type, Size(L*W*H)

254.63*100*100(±5)

mm

Weight

0.151(FBP100)

0.380(C Type)

kg

Body Material

Al

 

Surface Treatment

Paint

 

C Type Power Handling, CW

50

W

C Type Power Handling, Pulse

3000

W


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  • A Waveguide Probe Antenna is a common type of internal feed antenna, primarily used within metallic rectangular or circular waveguides at microwave frequencies. Its fundamental structure consists of a small metal probe (often cylindrical) inserted into the waveguide, oriented parallel to the electric field of the excited mode.

    Its operating principle is based on electromagnetic induction: when the probe is excited by the inner conductor of a coaxial line, it generates electromagnetic waves within the waveguide. These waves propagate along the guide and are eventually radiated from an open end or slot. The probe’s position, length, and depth can be adjusted to control its impedance matching with the waveguide, thereby optimizing performance.

    The key advantages of this antenna are its compact structure, ease of manufacture, and suitability as an efficient feed for parabolic reflector antennas. However, its operational bandwidth is relatively narrow. Waveguide probe antennas are widely used in radar, communication systems, and as feed elements for more complex antenna structures.

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