The Diamond K415 mounting bracket is a commercial-grade, rigid vehicular structural support engineered to provide a rock-solid mechanical bond for mobile CB, VHF/UHF, and amateur radio vertical antennas. Precision-crafted to mount seamlessly along the structural edges of vehicle hatchback doors, trunk lips, or rear vertical seams, this premium component delivers exceptional mounting versatility without requiring destructive drilling into the vehicle’s body panels. It serves as an essential, high-rotation operational procurement component for professional transit fleets, field engineering vehicles, overland rigs, and high-volume B2B radiocommunication accessory wholesale networks across European markets.
The core engineering highlight of the K415 framework is its advanced 3-axis adjustable articulation system. This mechanism allows installation technicians to precisely calibrate and tilt the antenna element across three distinct planes, ensuring a perfectly vertical radiating posture regardless of the slant, curvature, or aerodynamic profile of the host vehicle’s hatchback door. Supplied strictly as a mount bracket only, this standalone structural asset allows the operator complete freedom to pair it with their choice of low-loss coaxial cable assemblies and specialized RF connectors, maintaining absolute grid flexibility and preserving maximum fleet operational readiness.
Technical Specifications Matrix
| Technical Specification Parameter | Value & Fleet Alignment |
|---|---|
| Product Brand Designation | Diamond Antenna |
| Hardware Model Designation | K415 |
| Primary Component Classification | Mobile Radio Antenna Hatchback / Trunk Edge Lip Mount |
| Adjustment Engineering | 3-Axis Full Rotational Articulation Axis Matrix |
| Supply Configuration Scope | Structural mount bracket only (coaxial feedline and base socket excluded) |
| Mounting Installation Typology | Heavy-duty non-destructive edge-clamp / lip grip assembly |
| Exterior Structural Finish | Premium weather-resistant, anti-corrosive industrial finish |