The Acconet CLF400 is a high-performance, ultra-low-loss coaxial cable engineered to deliver minimal signal attenuation, excellent frequency response, and robust outdoor durability for demanding wireless and telecommunications deployments. Manufactured with premium shielding and a weather-resistant exterior, this cable provides exceptional signal integrity and seamless integration for long-run antenna setups.
Note: Specific connector configurations and lengths vary depending on the pre-made assembly or custom termination chosen for the installation.
Technical Specifications
- Manufacturer: Acconet
- Part Number / SKU: CLF400
- Product Type: Low-Loss Coaxial RF Cable
- Frequency Range: DC to 6 GHz ( optimised for cellular, Wi-Fi, and IoT bands)
- Signal Attenuation (Damping): Approximately 0.128 dB/m at 900 MHz; 0.22 dB/m at 2.5 GHz; 0.35 dB/m at 5.8 GHz
- Impedance: 50 Ohms
- Outer Jacket Material: UV-resistant polyethylene, engineered for external environments
- Minimum Bend Radius: 125 mm
- Operating Temperature: −40°C to +85°C
- Connector Options: Available with various factory-fitted or field-installable RF connectors (such as N-Type, SMA, or RP-SMA)
Key Features
- Ultra-Low Signal Loss: Minimises power degradation over extended cable runs, ensuring that maximum signal strength reaches your router, gateway, or base station.
- Weatherproof Durability: Features a tough, UV-resistant outer sheath designed to withstand harsh outdoor conditions, moisture ingress, and prolonged direct sunlight.
- Broad Frequency Compatibility: Perfectly suited for multi-frequency applications, including 3G, 4G LTE, 5G sub-6 GHz, Wi-Fi networks, and Helium hotspot installations.
- Superior Shielding Effectiveness: Incorporates high-density outer conductors and foil shielding to eliminate electromagnetic interference (EMI) and maintain packet integrity in noisy RF environments.
- Flexible Deployment: Despite its robust multi-layer construction, it remains adaptable for routing through standard cable trays, masts, and building entry points while respecting minimum bend radii.


