Description
The BNC Female (F) 4-Hole LMR-200 Clamp is a high-performance connector designed for use in RF applications, particularly with LMR-200 coaxial cables. It features a BNC female interface with a 4-hole mounting configuration for secure attachment, ensuring reliable and stable connections. This connector is optimized for low-loss signal transmission, making it ideal for telecommunications, broadcasting, and industrial RF applications.
Electrical Specifications:
- VSWR: ≤ 1.15 (0~3 GHz), ensuring excellent signal integrity and minimal signal reflection across the frequency range.
- Frequency Range: DC to 3 GHz, offering a broad bandwidth for a wide range of RF applications.
- Dielectric Strength: ≥ 2500V RMS, ensuring robust performance even in high-voltage environments.
- Characteristic Impedance: 50 ohms, ensuring compatibility with a variety of RF systems and minimizing signal loss.
- Center Contact Resistance: ≤ 1.0 mΩ, providing low resistance for efficient signal transfer.
- Outer Contact Resistance: ≤ 0.25 mΩ, contributing to minimal power loss and maintaining signal integrity over time.
Mechanical Specifications:
- Connector Type: BNC Female with a 4-hole mounting configuration, offering easy integration into panel or chassis systems.
- Mounting Type: Clamp, ensuring a secure and vibration-resistant connection suitable for use in industrial and outdoor environments.
- Durability: Designed for up to 500 mating cycles, ensuring long-term reliability in high-use applications.
Material and Plating:
- Material: Brass body for high mechanical strength and durability.
- Plating: Nickel-plated for corrosion resistance, with gold plating on the center contact to enhance conductivity and reduce signal loss.
Environmental Specifications:
- Operating Temperature: The connector typically operates in a temperature range from -55°C to +85°C, making it suitable for both indoor and outdoor installations in harsh environments.
This BNC Female 4-Hole LMR-200 Clamp connector is an excellent choice for applications requiring high-frequency performance, robust reliability, and low-loss signal transmission in systems such as RF communication, broadcasting, and instrumentation.
Reviews
There are no reviews yet.