Description
The DIN Female LMR 400 CRIMP Connector is a high-performance 50Ω RF connector designed specifically for use with LMR 400 coaxial cables. Featuring a crimp termination, this connector ensures a secure and reliable connection in demanding applications such as telecommunications, broadcasting, and RF testing. With a frequency range of up to 6.5 GHz, it delivers excellent performance by offering minimal signal loss, optimal impedance matching, and a low VSWR, making it perfect for high-frequency systems where signal integrity is paramount.
Electrical Specifications:
- Impedance: 50Ω – Ensures optimal signal transmission with minimal loss.
- Frequency Range: Up to 6.5 GHz – Ideal for high-performance RF systems.
- VSWR: ≤ 1.15:1 – Excellent impedance matching and minimal signal reflection.
- Contact Resistance:
- Center Contact: ≤ 3mΩ – Low contact resistance for reduced power loss.
- Outer Contact: ≤ 2.5mΩ – Ensures stable and reliable performance.
- Dielectric Resistance: ≥ 5000MΩ – High insulation resistance for long-term dependability.
Mechanical Specifications:
- Connector Type: DIN Female for LMR 400 coaxial cables.
- Termination Method: Crimp – Provides a secure and durable connection.
- Durability: Rated for 500 mating cycles – Built for long-lasting use in high-frequency environments.
Material and Plating:
- Body Material: Brass – Provides strength and durability.
- Plating: Gold-plated contacts – Enhances conductivity and prevents oxidation.
- Insulator: PTFE – High dielectric strength and thermal stability.
Environmental Specifications:
- Operating Temperature: -40℃ to +85℃ – Suitable for a wide range of environmental conditions.
- RoHS Compliant – Environmentally friendly manufacturing materials.
Key Features:
- 50Ω impedance for reliable signal transmission.
- Up to 6.5 GHz frequency range for high-performance RF applications.
- Crimp termination for a secure and permanent connection.
- Gold-plated contacts for enhanced conductivity and corrosion resistance.
- Ideal for telecommunications, broadcasting, and RF systems.
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