
( Brand: Thermax ), ( Manufacturer Part Number: M17/128-RG400 ), ( Connection Split/duplication: None ), ( Connector B: Tnc Male ), ( Cable Length: 2ft. ), ( Country Of Origin: United States )
The Thermax M17/128-RG400 Mil-DTL-17H RF Cable with TNC Male 50 Connectors is a high-performance, ruggedized coaxial cable, meticulously designed for demanding radio frequency (RF) applications. This cable is a perfect blend of quality, durability, and precision, making it an ideal choice for professionals in various industries.
The M17/128-RG400 designation indicates that this cable features a 128 strands LSZH (Low Smoke Zero Halogen) RG400 shielded coaxial cable, which ensures exceptional signal quality and reduces the risk of fires in adverse conditions. The Mil-DTL-17H specification guarantees that this cable meets the stringent military-grade standards for RF performance, durability, and reliability.
The cable features TNC (Threaded Neill-Concelman) Male 50 connectors, which are renowned for their superior RF performance and secure, reliable connections. These connectors are designed to withstand harsh environments and are resistant to corrosion, ensuring long-lasting performance. The 50-ohm impedance of the connectors ensures optimal signal transmission and minimizes signal loss.
With a total length of 1 meter (approximately 3.28 feet), this RF cable offers a practical length for a variety of applications, from laboratory testing to outdoor field deployments. The cable's flexible design allows for easy handling and maneuverability, while its rugged construction ensures that it can withstand the rigors of daily use.
In summary, the Thermax M17/128-RG400 Mil-DTL-17H RF Cable with TNC Male 50 Connectors is a high-quality, reliable solution for professionals requiring superior RF performance in challenging environments. Its military-grade construction, exceptional signal quality, and rugged connectors make it an indispensable tool for a wide range of applications.
Product: Thermax M17/128-RG400 Mil-DTL-17H RF Cable with TNC Male 50 Connectors
Pros:1. Mil-DTL-17H compliant, ensuring high-quality and military-grade specifications.
2. RG400 shielded cable provides excellent resistance to signal loss and noise.
3. TNC (Threaded Neill-Concelman) connectors offer a secure, reliable connection for RF applications.
4. 50 Ohm impedance is suitable for a wide range of RF devices and systems.
5. Cable length of 128 feet (39 meters) may be suitable for some applications requiring a medium-length cable.
Cons:1. The price is relatively high compared to some other RF cables on the market.
2. The cable may be too long for some applications, leading to excess cable and potential signal loss.
3. The TNC connectors require atoolbarrel tool for installation, which may not be readily available to all users.
4. The cable is rigid, which may make it difficult to maneuver in tight spaces.
Conclusion:The Thermax M17/128-RG400 Mil-DTL-17H RF Cable with TNC Male 50 Connectors is a high-quality, reliable option for RF applications that require a Mil-DTL-17H compliant cable. However, the high price and potential for excess cable length may be drawbacks for some users. If budget and application requirements allow, this cable would be a recommended choice for its excellent performance and durability.
Recommendation:If you need a high-quality, military-grade RF cable for a suitable application and budget is not a concern, the Thermax M17/128-RG400 Mil-DTL-17H RF Cable with TNC Male 50 Connectors would be a good choice. If you require a more cost-effective option or have specific length requirements, it would be advisable to explore other RF cable options available on the market.
Made in the USA, this cable features TNC male connectors on both ends, with a 50 ohm impedance. The cable is 2ft in length and ideal for connecting radio equipment with a 1:1 connection split/duplication. The THERMAX brand ensures reliability and performance for your RF cable needs. The THERMAX M17/128-RG400 MIL-DTL-17H 12814 RF Cable is a high-quality coaxial cable specifically designed for radio communication applications.