i-PRO MC-6005-BKB Mini Mullion HID 125kHz Reader
When door frame space is tight but you need reliable proximity credential reading, the MC-6005-BKB delivers HID 125kHz compatibility in a compact mullion form factor. This black mini reader fits narrow mullions and retrofit applications where standard-sized readers won't work, providing a practical solution for glass doors, restricted jamb depths, and secondary entry points that still require proper access control integration.
Key Features
- HID 125kHz proximity technology for compatibility with existing HID card infrastructure
- Compact mini mullion design fits narrow door frames and space-constrained installations
- Black finish for professional appearance on dark door frames and modern building exteriors
- Designed for integration with standard Wiegand access control panels
- Suitable for interior and weather-protected exterior mounting locations
- Streamlined profile reduces visual footprint on glass doors and narrow jambs
The MC-6005-BKB addresses a common deployment challenge: integrating access control at entry points where mechanical constraints limit hardware options. Glass door applications, aluminum storefront frames, and retrofit projects often lack the mounting depth for standard readers. This mini mullion reader maintains full HID 125kHz functionality while requiring minimal installation space, letting you extend credential-based access control to locations that would otherwise require alternative solutions or compromise aesthetics.
The reader connects via standard Wiegand output, maintaining compatibility with existing access control panels without requiring proprietary controllers or additional conversion hardware. Black housing matches contemporary architectural finishes and coordinates with dark door hardware. For integrators managing multi-site deployments with mixed door types, this reader provides a consistent HID credential platform across installations where physical constraints vary—standardizing user experience and credential management while adapting to each location's physical requirements.