Fixed Competitive Price Diy Electrical Slip Ring - Ingiant Radio Frequency High Speed Rotary Joint – Ingiant
Fixed Competitive Price Diy Electrical Slip Ring - Ingiant Radio Frequency High Speed Rotary Joint – Ingiant Detail:
Product Description
High frequency/microwave coaxial rotary joint is used in the 360°continuous rotation devices to transfer DC~56GHz high frequency signals. Apply for satellite antenna, vehicle, radar, microwave antenna test bench etc. It can be make to single-channel or multi-channels high frequency for transmission signal and datas, also support 1~2 channel DC~50GHz RF signals, communications, combine with power or other types of signal of slip ring is available, gas/liquid mixing transmission medium.
Feature
Specially designed for radio frequency signal transmission, the highest frequency can reach 40GHz
Coaxial contact design makes the connector have an ultra-wide bandwidth and no cut-off frequency
Multi-contact structure, effectively reducing relative jitter
The overall size is small, the connector is plugged and used, and it is easy to install
Can Be Customized Specifications
Rated current and voltage
Rated rotating speed
Operating temperature
Number of Channels
Housing material and color
Dimensions
Dedicated wire
Wire exit direction
Wire length
Terminal type
Typical Applications
Suitable for military and civilian vehicles, radar, microwave wireless rotating platforms
Main parameters |
|
Channels | Can be customized |
Working frequency | DC~can be customized |
Working temperature | -40°C~+70°C or others |
Maximum rotating speed | 0~200rpm or higher |
Insertion loss | <1dB (There will be gaps in data in different frequency bands) |
Insertion loss variation | <0.5dB (There will be gaps in data of different frequency bands) |
Standing wave ratio | 1.2 (There will be gaps in data of different frequency bands) |
Standing wave change | 0.2 (There will be gaps in data of different frequency bands) |
Structure material | Aluminum alloy |
HS-1RJ-001
Technical parameters |
|
Channels | Channel 1 |
Interface type | Type-N |
Frequency range | DC~8GHz |
Average power | 200W |
Maximum standing wave ratio | 1.3 |
Standing wave ratio fluctuation value | 0.05 |
Insertion loss | 0.4dB |
Insertion loss variation | 0.5dB |
Isolation | 50dB |
HS-1RJ-002
Technical parameters |
|
Channels | Channel 1 |
Interface type | SMA-f(50Ω) |
Frequency range | DC~18GHz |
Average power | 200W@1G 100W@8G 30W@18G |
Maximum standing wave ratio | 1.4 |
Standing wave ratio fluctuation value | 0.1 |
Insertion loss | 0.6dB |
Insertion loss variation | 0.1dB |
Isolation | 50dB |
Product detail pictures:
Related Product Guide:
Good quality comes to start with; service is foremost; organization is cooperation" is our enterprise philosophy which is regularly observed and pursued by our firm for Fixed Competitive Price Diy Electrical Slip Ring - Ingiant Radio Frequency High Speed Rotary Joint – Ingiant , The product will supply to all over the world, such as: Azerbaijan, Swaziland, Spain, So that you can utilize the resource from the expanding info in international trade, we welcome shoppers from everywhere on-line and offline. In spite of the good quality solutions we provide, effective and satisfying consultation service is supplied by our professional after-sale service team. Product lists and detailed parameters and any other info weil be sent to you timely for your inquiries. So you should make contact with us by sending us emails or call us if you have any questions about our corporation. ou may also get our address info from our web page and come to our company to get a field survey of our merchandise. We've been confident that we have been going to share mutual achievement and create strong co-operation relations with our companions in this marketplace. We're searching forward for your inquiries.
By Elma from Costa rica - 2018.09.21 11:44
This manufacturers not only respected our choice and requirements, but also gave us a lot of good suggestions, ultimately, we successfully completed the procurement tasks.
By Griselda from The Swiss - 2018.05.13 17:00