Key Specifications
Type Design:
Standard
Impedance (Ohm):
50
Frequency, Max (GHz):
3.0
VSWR, Max:
1.15
Power, Max (Watts):
100
Connector Series:
N
Connector Gender:
Jack (Female)
Connection Method:
Threaded (Screw-lock)
Body Material:
Brass
Body Plating:
Nickel
Description
N Type High Power Termination Load Jack (Female) | DC to 3 GHz | 50 Ω | 100 W
The ROSNOL T-N25-3G100WA/H3 is a high-power N Type termination load jack engineered to safely dissipate RF energy in systems operating up to 3 GHz. Featuring a nominal impedance of 50 Ω and a frequency range from DC to 3 GHz, it delivers a maximum VSWR of ≤ 1.15 (Return Loss ≥ 23.13 dB) for stable RF termination. Rated for 100 W average power handling at 25°C, this termination load is well suited for terminating high-power RF outputs, transmitters, and test systems in telecommunications infrastructure, broadcast equipment, and industrial RF applications. The screw-lock coupling mechanism ensures secure and reliable installation.The center contact is manufactured from phosphor bronze with gold plating to provide reliable conductivity under high current conditions. The connector body is constructed from brass with nickel plating for enhanced mechanical strength and corrosion resistance. A PTFE insulator maintains stable dielectric performance, while the integrated aluminum heat sink with black anodized finish supports effective thermal dissipation during continuous high-power operation. The mechanical design is optimized for long-term reliability in demanding RF environments.
ROSNOL high-power RF termination loads are produced under ISO 9001-certified quality management systems and fully comply with RoHS and REACH regulations. Designed to deliver robust power handling capability, dependable RF performance, and competitive cost efficiency, ROSNOL termination loads serve as reliable alternatives to leading European and American RF component manufacturers. Customization services for power rating, materials, plating, and mechanical design are available to support specialized RF and microwave system requirements.