Shenzhen Panlink Electronic Technology Co.,Ltd.
                                                                                                           
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Hybrid RF Rotary Joint with Multiple Signal Transmission Up to 200A Current and RS422/485/232 Interfaces for Radar Systems

Price Negotiable
Price: Negotiable
MOQ: 1
Delivery Time: 4 Weeks
Brand: Panlink
Product Description

Hybrid RF Rotary Joint With Multiple Signal Transmission Capabilities For Radar Systems, Wind Turbines, And Aerospace Applications

 

RF Rotary Joint

 

    RF rotary joints are electromechanical devices designed to transmit RF signals between a fixed platform and a rotating platform. They are essential components in various high-performance systems, including high-definition camera systems, defense radar systems, and satellite communications (SATCOM).

    Panlink RF rotary joints are engineered with a compact design, ensuring low insertion loss, excellent voltage standing wave ratio (VSWR), minimal fluctuation of electrical characteristics, and high crosstalk attenuation across all channels and frequencies.

    Our product range includes a variety of RF rotary joints to meet diverse application needs:

 • Coaxial rotary joints
 • Waveguide rotary joints
 • Hybrid RF rotary joints

 

 Hybrid (Slip Ring+ RF Joint + Waveguide Joint+ FORJ)

 

Key Feature

 
• Power up to 200A • RS422/485/232 interfaces
• Up to 200 channels • Up to 10 medium frequency channels at 300MHz
• HD SDI video signals • RF Joint supports up to 8 channels at 18G
• G-bit Ethernet • Waveguide rotary joint combination
• 1553B signals • FORJ (Fiber Optic Rotary Joint)
• Encoder combination • 2-4 media channels at 35Mpa for cooling

 

Example1

 

Example 2

 

 

Example 3

 

Get in Touch

Have questions about our products or want to discuss a custom order? Our team is ready to help you.

Company Shenzhen Panlink Electronic Technology Co.,Ltd.
Location 201, BLD 4, Baoshu Technology Industrial Park, Xixiang, Baoan District, Shenzhen, China
Contact Person Deng Zhonglin

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