Key Specifications
Type Design:
Standard
Impedance (Ohm):
50
Frequency, Max (GHz):
1.0
VSWR, Max:
1.70
Power, Max (Watts):
2
Connector Series:
BNC
Connector Gender:
Jack (Female)
Connection Method:
Bayonet
Body Material:
Brass
Body Plating:
Copper-Tin Zinc Alloy
Description
BNC Plug (Male) to Jack (Female) Feedthru Termination | DC to 1 GHz | 2 W | Brass Body
The ROSNOL FTT-B1B25B-1G2W/H44-H4 BNC straight plug (male) to jack (female) feedthru termination is designed to provide reliable 50 ohm impedance matching for RF signal termination and panel feedthrough applications up to 1 GHz. Supporting a frequency range from DC to 1 GHz, this feedthru termination maintains a VSWR of ≤ 1.7, ensuring controlled signal absorption and reduced reflections at operating frequencies. With an average power handling capability of up to 2 watts at 25 °C, it is suitable for general RF testing, equipment integration, and termination of unused BNC ports.This feedthru termination features a standard BNC bayonet-lock coupling mechanism, providing secure and quick engagement with more than 500 mating cycles for repeated use. Both the plug and jack housings are manufactured from a brass copper-tin-zinc alloy to ensure mechanical robustness, while phosphor bronze center contacts with gold plating over a non-magnetic nickel-phosphorus underlayer deliver stable electrical contact. PTFE insulators and a silicone rubber gasket support reliable dielectric performance and environmental sealing across a wide operating temperature range from −60 °C to +165 °C.
ROSNOL feedthru termination solutions deliver stable performance and consistent quality at competitive pricing, offering a reliable alternative to products from leading European and American manufacturers. All ROSNOL RF components are produced under ISO 9001-certified manufacturing processes and fully comply with RoHS and REACH requirements. Customization services for impedance, mechanical dimensions, materials, and plating options are available to support specialized RF and microwave system requirements.