Powertec
Powertec
PTL-240 Coaxial Cable N Male to SMA Male, 6m
PTL-240 Coaxial Cable N Male to SMA Male, 6m
The PTL-240 Coaxial Cable N Male to SMA Male, 6m, is designed for superior RF performance with minimal signal loss. This L-240 class cable offers a perfect balance between flexibility, attenuation, and shielding, making it an ideal choice for connecting roof-mounted antennas to indoor equipment, particularly for 3G, 4G, and UHF radio applications.
Key Features:
- Low Loss Coaxial Cable
- Supports frequencies up to 6 GHz
- Double-shielded outer conductor
- UV-stable polyethylene (PE) jacket
- Flexible and Easy to Install
- High Power Handling
High-Quality Construction for Enhanced Durability
Manufactured with a double-shielded outer conductor and a durable, UV-stable Polyethylene (PE) jacket, the PTL-240 cable ensures a long service life exceeding 20 years. The solid copper inner conductor and aluminium foil outer conductor provide exceptional shielding effectiveness, exceeding 90 dB, which significantly reduces interference and ensures consistent, reliable performance.
Excellent Signal Transmission Capabilities
Supporting frequencies up to 6 GHz, the PTL-240 cable offers industry-leading attenuation characteristics, making it suitable for a wide range of wireless transmissions. The cable's design allows for efficient signal propagation with 83% velocity, making it an excellent choice for high-frequency RF applications, including cellular and UHF communications.
Flexible and Easy to Install
With a 6.1 mm outer diameter, the PTL-240 coaxial cable provides a flexible yet robust option for installations requiring tight bends or constrained spaces. Its manageable size ensures easy handling and installation without compromising on performance, and the cable's minimum bend radius allows for both static and dynamic use, enhancing its versatility in various setups.
Exceptional Power Handling and Shielding
The PTL-240 is engineered for exceptional power handling, capable of withstanding peak power levels up to 5.6 kW. Its high shielding effectiveness reduces electromagnetic interference, ensuring a cleaner signal transmission path. This makes it particularly effective for critical RF installations where performance and reliability are paramount.
Wide Range of Compatible RF Connectors
This cable is compatible with a broad range of RF connectors, enhancing its adaptability in diverse wireless communication setups. The N Male to SMA Male connectors provide a secure and stable connection, ensuring that signal integrity is maintained across the entire cable length.
Ideal for Sub-6 GHz Wireless Applications
The PTL-240 Coaxial Cable is optimised for most Sub-6 GHz wireless applications, making it suitable for use with various RF devices, including cellular repeaters, modems, and antennas. Its balanced performance, cost-effectiveness, and ease of installation make it a preferred choice for professional RF installations.
Category | Specification | Details |
---|---|---|
Product Information | Model Number | PTL-240 |
Cable Type | Construction | Flexible |
Cable Group | L-240 | |
Electrical Characteristics | Impedance | 50 Ω |
Operating Frequency Range | DC to 6 GHz | |
Velocity of Propagation | 83% | |
Capacitance | 79.8 pF/m | |
Shielding Effectiveness | > 90 dB | |
DC Test Voltage | 2500 V | |
Peak Power | 5.6 kW | |
Physical Characteristics | Outer Diameter | 6.1 mm |
Min. Bend Radius (Static) | 19.1 mm | |
Min. Bend Radius (Dynamic) | 63.5 mm | |
Weight | 50 g/m | |
Operating Temperature | -40 to 85 °C | |
Tensile Strength | 36 kg | |
Material Layers | Inner Conductor | Solid Copper, 1.42 mm |
Dielectric | Foamed Polyethylene (EPE), 3.81 mm | |
Outer Conductor 1 | Aluminium Foil, 3.94 mm | |
Outer Conductor 2 | Tinned Copper Braid (TC), 4.52 mm | |
Outer Jacket | Polyethylene (PE), 6.10 mm | |
Features | Durability | Durable and UV-Stable PE Jacket |
Frequency Support | Suitable for most Sub-6 GHz wireless transmissions | |
Attenuation | Industry-leading attenuation characteristics | |
Connector Termination | Requires 6.48 mm hex die |