HeFei Vinncom Electronic Technology Co.,Ltd.
                                                                                                           
Verified Supplier
20 Years
Since 2006
Menu

2-4GHz SMA Female RF Coaxial Circulator with 0.50dB Insertion Loss and 18dB Isolation for Radar Systems

Price Negotiable
Price: negotiation
MOQ: 5pcs
Delivery Time: 2-4weeks
Brand: Vinncom
Product Description
Product Overview

The 2-4GHz SMF Female RF Coaxial Circulator is a high-performance component designed for modern radar and microwave communication systems, featuring excellent signal transmission characteristics.

Key Features
  • Low insertion loss of 0.50 dB maximum
  • High isolation of 18 dB minimum
  • Excellent VSWR performance ≤1.35
  • SMA female connector interface
  • 100W reverse power handling capability
  • 50 Ohm impedance matching
Technical Specifications
Parameter Specification
Part Number VN-CI-2-4GHZ
Operating Frequency 2-4 GHz
Direction CW
Operating Temperature 0°C to +70°C
Insertion Loss (Max) 0.50 dB (room temp: +25°C±°C, over temp: 0°C~+70°C)
Isolation (Min) 18 dB (room temp: +25°C±°C, over temp: 0°C~+70°C)
VSWR (Max) ≤1.35 (room temp: +25°C±°C, over temp: 0°C~+70°C)
Connector SMA Female
Reverse Power 100W
Impedance 50 Ohm
Product Images
2-4GHz SMF Female RF Coaxial Circulator front view 2-4GHz SMF Female RF Coaxial Circulator technical specifications
Application Information

This circulator is designed to transmit electromagnetic waves in a one-way ring configuration, making it ideal for modern radar systems and microwave multichannel communication applications where precise signal direction control is required.

Get in Touch

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

Company HeFei Vinncom Electronic Technology Co.,Ltd.
Location GangHuai Road ,New Industrial Zone ,GangJi Town ,ChangFeng County ,HeFei City ,AnHui Province
Contact Person Peter Lee

Request A Quote

Please check your email address.
Your message must be at least 20 characters.