Features
● WR-430 Rectangular Waveguide Interface
● Linear Polarization
● High Return Loss
● Precisely Machined
Specifications
|
RM-WPA430-7 |
|||
|
Item |
Specification |
Units |
|
|
Frequency Range |
1.75-2.6 |
GHz |
|
|
Gain |
7 Typ. |
dBi |
|
|
VSWR |
≤2 |
|
|
|
Polarization |
Linear |
|
|
|
Cross-polarization Isolation |
40 Typ. |
dB |
|
|
Waveguide Size |
WR-430 |
|
|
|
Interface |
FDP22(F Type) |
SMA-F(C Type) |
|
|
C Type Size(L*W*H) |
474.1*210*210(±5) |
mm |
|
|
Weight |
1.173(F Type) |
1.936(C Type) |
kg |
|
Body Material |
Al |
|
|
|
Surface Treatment |
Paint |
|
|
|
C Type Power Handling, CW |
50 |
w |
|
|
C Type Power Handling, Peak |
3000 |
w |
|
Standard Waveguide Probes are directional coupling or radiation devices used in microwave frequency bands, enabling efficient signal transmission through precisely engineered waveguide-to-coaxial transition structures. The core components consist of a waveguide interface (e.g., WR-90 / X-band), a coaxial connector (typically SMA or N-type), and an impedance-matching probe. Operating across a frequency range of 2.6–110 GHz (depending on the WR standard), these probes offer low insertion loss (<0.5 dB), high return loss (>15 dB), and high power handling capacity (with peak power reaching kilowatt levels). Widely employed in applications such as anechoic chamber calibration, antenna near-field testing, waveguide system fault diagnosis, and terahertz measurement systems, they serve as critical transitional components connecting waveguide and coaxial systems.
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