Canare SVP-C25HW 75-Ohm 12G-SDI Single Video Crimp Plugs
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Key Features
Key Features
- 12G-SDI / 4K UHD Optimized
- Snap-Lock Gold-Plated Center Pin
- SV Series Patchbay Compatible
- Excellent High-Frequency Performance
- Durable Hex Crimp Construction
Features & Specifications
Product Overview +
Elite Field Terminations for 4K UHD Studio Patching
The Canare SVP-C25HW 75-Ohm 12G-SDI Single Video Crimp Plugs give broadcast engineers and installation teams the precise component needed to build custom high-frequency patch cords on-site. Rather than relying on standard pre-made jumpers, the SVP-C25HW allows technicians to tailor single-channel video patch cables to exact rack specifications. This precise sizing eliminates excessive cable loops, reduces weight in dense cabinets, and ensures clean cable management within master control rooms, central apparatus rooms, and outside broadcast (OB) vehicles.
Tactile Snap-Lock and Superior Contact Metals
When routing critical 12G single-link UHD television feeds, even a minor physical misalignment can cause high return loss, resulting in digital jitter, pixel dropouts, or a complete loss of signal. Canare addresses this vulnerability with an advanced gold-plated "snap-lock" center pin assembly. This mechanism provides an audible and tactile confirmation when the pin is properly seated inside the barrel, preventing signal gaps. The thick gold layer over nickel plating ensures excellent corrosion resistance and minimal contact resistance over thousands of insertion cycles.
Strict Hardware Mapping and Crimping Guidelines
To maintain a true 75-ohm signal path up to 12 GHz, this plug is designed to match perfectly with Canare's high-flexibility L-2.5CHW digital coaxial cable. For proper field deployment, technicians must use the matching Canare SCB02 strain relief boot along with the TCD-D253F hardened die set. Attempting to terminate this high-frequency component with generic commercial network crimpers or automated pliers can crush the internal foam dielectric layer, which deforms the cable geometry and causes severe signal reflections at high frequencies.

