Factory Price Fiber Optic Slip Ring - Coaxial Rotary Joints – AOOD Detail:
Coaxial Rotary Joints
Coaxial Rotary joints are needed wherever high frequency signals have to be transmitted between a fixed platform and a second platform in continuous rotation. Typical applications include traditional radar technology for air traffic control or anti-missile defence, medical engineering, V-Sat and SatCom technology as well as TV camera systems or cable drums that allow sensitive cables to be wound up without twisting them, thus increasing their reliability.
AOOD coaxial rotary joints allow signal transmission in the frequency range from DC up to 20 GHz. Single channel , dual channel and multi-channel RF solutions are available. The special benefits of AOOD coaxial rotary joints include their compact design, excellent VSWR and low attenuation loss, low variation of transmission properties during rotation and high crosstalk attenuation between the individual channels over the whole frequency range.
Model | Number of Channel | Frequency Range | Peak Power | OD x L (mm) |
HFRJ-118 | 1 | 0 – 18 Ghz | 3.0 kW | 12.7 x 34.5 |
HFRJ-218 | 2 | 0 – 18 Ghz | 3.0 kW | 31.8 x 52.6 |
Product detail pictures:


Related Product Guide:
Cooperation
We always stick to the principle Quality First, Prestige Supreme. We are fully committed to providing our clients with competitively priced quality products, prompt delivery and professional service for Factory Price Fiber Optic Slip Ring - Coaxial Rotary Joints – AOOD, The product will supply to all over the world, such as: Canberra, Latvia, Georgia, To let customers be more confident in us and get the most comfortable service, we run our company with honesty, sincerity and best quality . We firmly believe that it is our pleasure to help customers to run their business more successfully, and that our experienced advice and service can lead to more suitable choice for the customers.

The factory technical staff gave us a lot of good advice in the cooperation process, this is very good, we are very grateful.
