

Andrew 245173
The Andrew 245173 Cold Shrink Kit offers a fast, secure, and weatherproof sealing solution for 1/2in coaxial cable and connector installations.
Andrew 245173 – Weatherproofing Kit for 1/2in Cable
The Andrew 245173 Weatherproofing Kit is a professional-grade solution designed to protect 1/2-inch coaxial cable connections from environmental elements such as water, dust, UV exposure, and temperature extremes. Trusted by engineers and installers worldwide, this kit ensures long-lasting performance and reliability for outdoor cable connections, helping prevent signal degradation and costly downtime.
Perfect for use in broadcast, telecom, wireless, and networking installations, the Andrew 245173 kit includes all essential components required for a secure, watertight seal. Its easy-to-install design saves time in the field while delivering peace of mind that your coaxial infrastructure remains protected in even the harshest conditions.
Whether you’re working on a rooftop, tower, or remote installation, the Andrew 245173 is the ideal companion for ensuring durable and weather-resistant RF connections. Enhance your system’s longevity and performance with this dependable and industry-approved weatherproofing solution.
✅ Key Features
✅ Designed for 1/2-inch Coaxial Cables – Tailored to fit standard 1/2″ cable types used in wireless and RF systems
✅ Complete Protection Kit – Includes sealing tape and weatherproofing materials for a full solution
✅ UV & Moisture Resistant – Engineered to withstand sun exposure, rain, and high humidity
✅ Easy Installation – No special tools required; field-ready for quick deployment
✅ Ideal for Outdoor Use – Suitable for rooftop, tower, and antenna installations
✅ Prevents Signal Loss & Corrosion – Ensures RF integrity and connection stability over time
✅ Trusted by Professionals – Used in telecom, broadcasting, and networking environments globally
🛠️ Upgrade your cable management and weatherproofing strategy with the Andrew 245173 – a must-have for any serious outdoor cable installation.