The MDL 2 X A10288G-1 MICRO WAVEGUIDE PLUS is a precision waveguide component engineered for microwave signal transmission with minimal loss and distortion. This component supports critical RF applications including radar systems, communication networks, and scientific instrumentation. Manufacturing per MIL-W-85 requirements and verified through 100% functional RF testing ensures reliable performance in demanding environments.
Technical Specifications
• Manufacturer: MDL (Microwave Development Labs)
• Model: 2 X A10288G-1 MICRO WAVEGUIDE PLUS
• Product Type: Waveguide Component
• Waveguide Standard: MIL-W-85 compliant
• Materials: Aluminum and copper alloy construction; custom tubing available in Silicon Bronze and Aluminum
• Dimensional Tolerances: Down to ±0.0005 inches for precision designs; wall thickness capability as thin as 0.010 inches
• Surface Finish: Inside finishes down to 10 micro-inches
• Flange Specification: MIL-F-3922 and AN U/G compliant; dual flanges available in aluminum and copper alloys with sleeve-type mounting
– Key Features
• Precision-engineered geometry minimizes signal degradation
• CNC-machined construction with multiple bend, twist, and offset capability
• 100% functional performance verification per ISO 9000 requirements
• Automated RF test validation for VSWR, loss, attenuation, delay, and phase matching
• Full data collection and product traceability documentation
• Advanced manufacturing processes including aluminum dip brazing, EDM, iridite treatment, and heat treating
• Terminal configurations support both UG-type choke and butt-type cover flanges
– Typical Applications
• Radar system signal distribution
• Microwave communication network infrastructure
• Scientific instrumentation and measurement systems
• High-frequency RF transmission requiring controlled loss characteristics
– Compatibility & Integration
Standardized flange interfaces enable direct integration into existing microwave systems utilizing MIL-F-3922 and AN U/G connector standards. The component accommodates multiple terminal configurations for flexible system design requirements.

















