WR51 Low Power Load, FDP180

Model No: WT-51-FDP-50

Made in Taiwan
Frequency Range: 15.0 - 22.0 GHz
Waveguide Size: WR51 (K-Band)
Flange Type: FAP180 (Round)
VSWR (Max): 1.05 : 1
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Ku/K-Band Precision Low Power Waveguide Termination

Precision Microwave Dummy Load | Square FDP180 Flange | 15.0 GHz – 22.0 GHz
The WT-51-FDP-50 is a laboratory-grade microwave Low Power Waveguide Termination Load professionally engineered by Fei Teng Wireless Technology Co., Ltd. (FT-RF) for absolute signal absorption and calibration isolation routines across the continuous 15.0 GHz to 22.0 GHz Ku and K-Band spectrum. Meticulously optimized to enforce strict impedance matching and prevent critical boundary reflections, this premium dummy load delivers an exceptionally flat and low maximum V.S.W.R profile of ≤ 1.05 : 1. Precision CNC machined from high-grade structural alloys in Taiwan, the interior architecture integrates a high-homogeneity absorbing element that effectively dampens microwave energy without field or path distortion. Equipped with a standardized precision FDP180 Square Flange interface layout, this lightweight 0.05 Kg component ensures flawless electromechanical concentricity and zero boundary RF leakage, safely managing continuous wave power loads up to 50 Watts (CW) with excellent thermal dissipation. Its optimized structural footprint makes it the definitive choice for general-purpose system-level applications, automated spectrum surveillance matrices, high-frequency radar development, system-level architecture integrations, and mission-critical Signal Integrity diagnostics inside professional laboratory test bench configurations.



Electrical Specifications
Frequency Range 15.0 GHz to 22.0 GHz (Continuous Ku/K-Band Optimization)
Waveguide Size Designation EIA WR51 (R180 / WG19 Rectangular Architecture Layout)
V.S.W.R Profile (Max) ≤ 1.05 : 1 (Precision Minimal Reflection Performance)
Power Handling (CW) 2 Watts to 50 Watts (Continuous Wave Power Safety Range)
Waveguide Load Category Low Power Precision Fixed Dummy Load Termination
Waveguide Geometry Type Rectangular Waveguide Format
Material & Mechanical Parameters
Waveguide Flange Style Square Precision Interface Layout Style
Flange Designation Standard FDP180 Square Flange Pattern Layout
Net Weight 0.05 Kg / 50 g (Precision Lightweight Geometry Layout)
Manufacturing Origin Taiwan Design & Made in Taiwan (Precision Finished Core)

 

Superior VSWR Stability

Maintains a rigorous maximum VSWR performance threshold of 1.05 across the continuous band, providing highly accurate signal absorption with minimal reflection loss to isolate and preserve high-value instrumentation paths.

Ku/K-Band Optimization

Specifically tailored for the continuous 15.0 GHz to 22.0 GHz frequency range, providing crucial low-loss load matching for advanced radar deployment, microwave links, and high-frequency communication architectures.

Taiwanese Engineering Excellence

Precision designed and manufactured in Taiwan under strict industrial quality control standards, ensuring absolute flange concentricity, micro internal throat smoothness, and reproducible calibration reference criteria.

Lightweight Mechanical Footprint

Precision-engineered footprint weighing a mere 0.05 Kg (50 g), highly optimized to reduce total structural weight strains on delicate automated laboratory multi-axis positioners and test benches.

FDP180 Square Flange Layout

Equipped with a certified square flat FDP180 cover flange format, securing standardized mechanical integration, precise alignment, and low-leakage connection boundaries inside professional waveguide networks.

50W CW Power Capacity

Robustly engineered structural core effortlessly handles continuous wave power levels up to 50W with excellent thermal dissipation and unwavering electrical integrity under moderate system duty cycles.

Contact Us / Technical Inquiries

Contact our technical engineering division today to request official quote sheets, individual certified VSWR plot data sheets, unique structural mechanical drawings, or alternative flange layout adaptations.

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