Description
The TNC Male Reverse Polarity (R/P) LMR-200 Crimp connector is a high-performance RF connector designed for reliable signal transmission in demanding applications. It features a TNC male (M) interface with reverse polarity, making it suitable for systems requiring specific polarity configurations. This connector is optimized for use with LMR-200 coaxial cables, providing excellent electrical performance and ease of installation through a crimp termination method.
Electrical Specifications:
- VSWR (Voltage Standing Wave Ratio): ≤ 1.15 (0–3 GHz), ensuring minimal signal reflection and high efficiency across the operating frequency range.
- Frequency Range: DC to 3 GHz, making it versatile for telecommunications, RF testing, and wireless systems.
- Dielectric Strength: ≥ 2500V RMS, providing excellent insulation and safety under high-voltage conditions.
- Characteristic Impedance: 50 ohms, ensuring low signal loss and compatibility with standard RF systems.
- Center Contact Resistance: ≤ 1.0 mΩ, minimizing signal loss for efficient energy transfer.
- Outer Contact Resistance: ≤ 0.25 mΩ, providing low-resistance grounding for reliable performance.
Mechanical Specifications:
- Connector Type: TNC Male Reverse Polarity, specifically designed for secure connections with LMR-200 cables.
- Termination Type: Crimp, offering a robust connection and easy installation for quick assembly.
- Durability: Rated for up to 500 mating cycles, ensuring long-term reliability and consistent performance.
Material and Plating:
- Material: Constructed from brass, offering mechanical strength and durability.
- Plating: Nickel-plated for corrosion resistance, with gold-plated contacts to enhance conductivity and reduce signal degradation.
Environmental Specifications:
- Operating Temperature: Suitable for temperatures ranging from -55°C to +85°C, supporting performance in extreme environmental conditions.
This TNC Male Reverse Polarity LMR-200 Crimp connector delivers superior signal integrity, durability, and reliability, making it ideal for RF communication systems, wireless networks, and testing environments requiring low-loss performance.
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