Vertiv Liebert XDO

  • Cooling Capacity: Available in models typically providing cooling capacities around 17.2 kW to 20 kW, making it suitable for high-heat density applications.
  • Overhead Installation: The XDO unit is designed to be mounted directly above the cold aisle, which helps save valuable floor space while effectively managing heat.
  • Airflow Design: It draws in hot air from the hot aisle and discharges cooled air into the cold aisle, optimizing airflow management in data center layouts.
  • Energy Efficiency: Utilizes an EC fan with large air volume and low energy consumption, promoting energy-efficient operation. The electronic expansion valve (EEV) ensures precise control of refrigerant flow for optimal cooling performance.
  • Modular Flexibility: Part of the Liebert XD family, the XDO can be combined with other units like the Liebert XDV and XDH to create a comprehensive cooling solution that can handle significant heat loads across multiple racks.
  • High Reliability: Designed for high reliability with a focus on maintaining optimal conditions for sensitive equipment, including servers and communication devices.
  • Environmentally Friendly Refrigerant: Uses R410A refrigerant, which meets international environmental safety standards.
  • Dimensions: The unit dimensions are approximately 615 mm (W) x 1835 mm (D) x 580 mm (H), making it compact yet effective for overhead installation.

Description

The Liebert XDO precision air conditioner is a ceiling-mounted, energy-efficient cooling solution specifically designed for high heat-density environments such as data centers. Utilizing eco-friendly R410A refrigerant and equipped with an EC fan, it delivers large air volume with low energy consumption. Its advanced finned tube heat exchanger enhances heat transfer efficiency, while the electronic expansion valve ensures optimal refrigerant flow, effectively addressing heat dissipation for high-density server cabinets. With its flexible and scalable design, the Liebert XDO saves valuable floor space by mounting overhead, drawing in hot air from opposite inlets and cooling it efficiently before discharging it into the cold aisle.