Rf circulator
I have found results from4000+products and1000+suppliers aboutRf circulator
UHF 410~440MHz 300W Customized N Type RF Coaxial Circulator with Insertion Loss 0.25dB
1.5 ~ 3GHz UHF Cw 150W Broadband RF Microwave Coaxial Circulator
UHF 400~500MHz 300W RF Coaxial Circulator with Insertion Loss 0.5dB
VHF Broadband 2.92-Female 26.5~40.0GHz RF Coaxial Circulator
7.9~8.4GHz C Band 30W RF Drop in Circulator with Tab Connector for Satellite, Radar, Aerospace
High-Power 150W Coaxial RF Circulator for 400MHz to 4GHz
2000W/Cw Power Drop in RF Circulator From 180MHz to 800MHz
2000W Power Drop in RF Circulator From 95MHz to 200MHz
Ultra-Wideband Drop in RF Circulator From 1000MHz to 8000MHz
200W/Cw Power Drop in RF Circulator for 550MHz to 5000MHz
100W/Cw Power Drop in RF Circulator From 1000MHz to 8000MHz
Ultra-Wideband Coaxial RF Circulator for 6GHz to 20GHz
100W/Cw Power Drop in RF Circulator From 800MHz to 5000MHz
Ultra-Wideband Drop in RF Circulator From 5000MHz to 20000MHz
400W/Cw Power Drop in RF Circulator From 370MHz to 4000MHz
High Power 300W UHF Band 300 to 400MHz RF Coaxial Circulators
6 to 40GHz Shf RF Coaxial Circulator with SMA-Female Connector
1.7~3.5GHz Broadband Satellite 100W RF Coaxial Circulator
High Power 300W 600 to 900MHz RF Ferrite Coaxial Circulator for Wireless Communication
10 to 12MHz Low Frequency RF Coaxial Circulators for Broadcast Transmitter Antenna
18.0-26.5GHz Waveguide Circulator High Power Ka-Band RF Passive Device
6.0 to 18.0GHz Wideband RF Coaxial Circulator Broadband Microwave Circulator
Wr137 (BJ70) 5.4 to 5.9GHz RF Waveguide Circulator for RF Communication System
26.5 to 34.0GHz Waveguide Circulator High Isolation RF Component
Topwave Circulator VHF 160-172MHz RF Dual Junction Circulator
645-655MHz RF Coaxial Circulator N Female Type for Base Station
Customized Topwave High Performance 645-655MHz RF Coaxial Circulator N Female Type Widely Used for Base Station
Sourcing guidance for Rf Circulator
What are the key technical specifications to evaluate when sourcing RF Circulators?
When selecting an RF Circulator, you must prioritize Frequency Range, Insertion Loss, and Isolation. A high-quality circulator should offer low insertion loss (typically <0.4 dB) to minimize signal attenuation and high isolation (typically >20 dB) to protect sensitive components like power amplifiers from reflected signals. Additionally, verify the Voltage Standing Wave Ratio (VSWR), aiming for a value below 1.25:1 to ensure optimal impedance matching within your RF system.
How do I choose between Drop-in, Coaxial, and Surface Mount (SMD) RF Circulators?
The choice depends on your integration method and power requirements. Coaxial circulators are ideal for laboratory testing and high-power base station applications due to their robust connectors (SMA, N-type). Drop-in circulators are preferred for internal system integration where space is moderate, while SMD (Surface Mount Device) circulators are essential for high-volume, automated PCB assembly in compact devices like small cells. Ensure the power handling capacity (Average and Peak Power) aligns with your specific usage scenario.
What environmental and compliance standards are critical for RF components?
For international trade, ensure the products are RoHS and REACH compliant to meet environmental safety standards in the EU and North America. If the circulators are intended for aerospace or military use, they must meet MIL-STD-810 for vibration, shock, and thermal cycling. For telecommunications, look for suppliers who adhere to ISO 9001 quality management systems to ensure batch-to-batch consistency.
How does temperature stability affect RF Circulator performance?
RF Circulators utilize ferrite materials which are sensitive to temperature shifts. You should request the Operating Temperature Range (standard is often -40°C to +85°C) and the Temperature Coefficient. High-end suppliers provide temperature-compensated designs that maintain stable isolation and insertion loss even during extreme thermal fluctuations, which is vital for outdoor telecommunications infrastructure.
Cross-Border Procurement Strategy for RF Components
What are the primary risks when purchasing RF Circulators internationally?
The main risks include technical parameter mismatch and counterfeit components. To mitigate this, always request a VNA (Vector Network Analyzer) test report for the specific batch before shipment. Ensure the supplier uses traceable ferrite materials and reputable magnets. Using Made-in-China.com's Secured Trading services can help protect your payment until the goods are verified against your technical specifications.
How should I negotiate with suppliers for bulk RF component orders?
Focus on tiered pricing based on volume and long-term supply stability. For RF components, the cost of raw materials (like YIG or Nickel) fluctuates; try to lock in a price validity period of 6-12 months. Ask for a sample evaluation period where the cost of samples is deducted from the first mass production order. Negotiate for a failure rate (DPPM) guarantee, ensuring the supplier replaces any units that drift out of spec during assembly.
What are the logistics and customs considerations for RF Circulators?
RF Circulators contain permanent magnets, which can interfere with aircraft navigation systems. Therefore, for air freight, you must ensure the supplier provides a Magnetic Test Report (IATA PI953) to certify the packaging is properly shielded. Failure to provide this can lead to customs delays or rejected shipments. For shipping to the US or Europe, ensure the HS Code (typically 8548.00 or 8517.70) is correctly declared to avoid tariff penalties.
How can I verify the credibility of a Chinese RF manufacturer?
Prioritize Audited Suppliers on Made-in-China.com, as these companies have undergone on-site inspections by third-party agencies like SGS or Bureau Veritas. Check if the manufacturer has an in-house RF laboratory equipped with calibrated network analyzers and environmental chambers. A credible supplier should be able to provide customized tuning services for specific frequency bands rather than just selling off-the-shelf parts.





























