Altronix T3MK7516 16-Door Mercury Access and Power Integration Kit

Regular price
$1,054.00
Regular price
Sale price
$1,054.00

Manufacturer : Altronix

Sku : T3MK7516

Condition : New

1 available

The Altronix T3MK7516 16-Door Mercury Access and Power Integration Kit is a versatile and efficient solution designed to streamline access control management across multiple doors. This kit allows for the integration of up to 16 doors with Mercury hardware, providing a centralized approach to security for commercial and institutional environments. Featuring a robust power supply, the T3MK7516 ensures reliable operation of connected devices while simplifying installation with its pre-wired components. The kit is engineered for scalability, making it easy to expand as security needs grow. With its user-friendly design and efficient power management, the Altronix T3MK7516 is an ideal choice for enhancing access control systems
  • •Trove3 Enclosure and TM3 Backplane Included: This kit comes equipped with a Trove3 enclosure and TM3 backplane, providing a structured and secure housing for system components, optimizing space for streamlined access and maintenance.
  • •Dual Voltage Power Supply/Chargers (24VDC and 12VDC): It includes versatile power supply options, delivering 24VDC and 12VDC outputs to accommodate various device requirements and ensuring reliable performance across connected components.
  • •Extensive Mercury Controller Compatibility: Supports multiple Mercury controllers, including LP1501, LP1502, LP2500, LP4502, MR16IN, MR16OUT, MR50, MR52, MR62e, and MUX8, allowing for flexibility and scalability in system design.
  • •16 AWG Galvanized Steel Backplane: Features a 16 AWG galvanized steel backplane that simplifies the layout of control boards and improves wire management, reducing installation time and enhancing durability.
  • •Spacious Enclosure with Battery Accommodation: The enclosure can hold up to four (4) 12VDC/12AH batteries, providing backup power support to maintain system operation during power outages, thereby increasing system reliability.