Features
● Wave-guide and Connector Interface
● Low Side-lobe
● Linear Polarization
● High Return Loss
Specifications
|
Parameters |
Specification |
Unit |
||
|
Frequency Range |
2.60-3.95 |
GHz |
||
|
Wave-guide |
WR284 |
|
||
|
Gain |
15 Typ. |
dBi |
||
|
VSWR |
1.3 Typ. |
|
||
|
Polarization |
Linear |
|
||
|
3 dB Beamwidth, E-Plane |
32°Typ. |
|
||
|
3 dB Beamwidth, H-Plane |
31°Typ. |
|
||
|
Interface |
FDP32(F Type) |
N-Female(C Type) |
|
|
|
Finishing |
Paint |
|
||
|
Material
|
Al | |||
|
Size,C Type (L*W*H) |
326.6*199.7*144.8 (±5) |
mm |
||
|
Weight |
0.697(F Type) |
1.168(C Type) |
kg |
|
|
C Type Average Power |
150 |
w |
||
|
C Type Peak Power |
3000 |
w |
||
|
Operating Temperature |
-40°~+85° |
°C |
||
Standard Gain Horn Antennas are precision-calibrated reference antennas widely used for antenna gain measurement, EMC testing, and radar system calibration. Their key advantages include:
Stable gain values (typically ±0.5dB accuracy) across designated frequency bands
Low VSWR (<1.5) and high polarization purity for reliable measurements
Repeatable radiation patterns with minimal sidelobes (<-20dB)
Rugged metal construction for long-term durability in lab/field environments
Ideal for verifying antenna performance, OTA testing, and as a gain standard in microwave applications.
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