Liebert CSU3000 specifications PETNet Cyclotron Specifications, CSU Chiller Specifications

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CSU3000 Chiller Keeping Business in Business For CTI PETNet Cyclotron w/100% Redundancy

Dedicated cooling supplies the proper temperature and water flow year round.

Factory-tested, piped, wired and charged for hassle-free startup and operation.

Local service and parts for quick and knowledgeable maintenance and service.

Optional switch-over to alternate water source provides redundant, continuous operation.

Optional remote monitoring systems keep you informed of chiller operation.

Standard product ETL/CSA certified.

ISO 9001 certified company.

PETNet Cyclotron Specifications

Fluid Specified

Water/Glycol

 

 

Max Heat Dissipation—BTUH (kW)

60,000 (17.6)

 

 

Fluid Temperature Range—°F (°C)

40-50 (4.4-10)

 

 

Fluid Flow Rate—GPM (l/m)

10 (38)

 

 

 

Fluid Pressure Drop—PSI (kPa)

5

(34)

 

 

 

 

 

 

CSU Chiller Specifications

 

 

 

 

Model Number

CS109A

 

 

Fluid Circulated

Water

 

 

Net Cooling Capacity—BTUH (kW)

121,900 (35.7)

 

 

Leaving Fluid Temperature—°F (°C)

45 (7.2)

 

 

Fluid Flow Rate—GPM (l/m)

24 (91)

 

 

 

PETNet Cyclotron Pressure Drop—PSI (kPa)

5

(34)

 

 

 

Chiller Pressure Drop—PSI (kPa)

8.4

(58.1)

 

 

 

Pump Total Head—PSI (kPa)

35.9

(247.7)

 

 

Pump HP (kW)

1.5 (1.1)

 

 

 

CSU3000 Chiller For CTI PETNet Cyclotron w/100% Redundancy

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Contents CSU Chiller Specifications PETNet Cyclotron SpecificationsOptional Features Standard FeaturesModel No Width Height Depth Weight Inches mm Lbs. kg Required Special Options

CSU3000 specifications

The Liebert CSU3000 is a state-of-the-art uninterruptible power supply (UPS) designed specifically for mission-critical applications requiring reliable power protection. This model stands out in the market due to its advanced features, robust design, and efficient performance, making it an ideal choice for data centers, telecommunications, and industrial settings.

One of the main features of the Liebert CSU3000 is its modular architecture, which allows for flexible scalability. Users can configure the system according to their specific power requirements, enabling them to add or remove modules as needed. This modularity not only ensures that businesses can accommodate growth over time but also maximizes investment by allowing for upgrades without replacing the entire system.

Equipped with advanced digital signal processing technology, the CSU3000 offers exceptional power quality management, ensuring that connected equipment is safeguarded from voltage fluctuations, surges, and interruptions. The unit provides a pure sine wave output that is critical for sensitive electronic loads, enhancing overall system reliability and performance.

Another significant characteristic of the Liebert CSU3000 is its high efficiency rating. The UPS operates with an impressive energy efficiency of up to 98%, which minimizes energy consumption and reduces operational costs for businesses. This energy efficiency is complemented by a robust thermal management system that keeps the unit at optimal operating temperatures, enhancing its reliability and lifespan.

The CSU3000 features a user-friendly interface that allows for easy monitoring and management of the UPS. Its LCD display provides real-time information about the system's status, battery health, and operational parameters, enabling users to make informed decisions regarding power management. Remote monitoring capabilities are also available, allowing for proactive management and timely responses to power issues.

In addition, the Liebert CSU3000 supports multiple communication protocols, making it highly compatible with various monitoring and management systems. This flexibility enables integration into existing infrastructure, enhancing overall operational efficiency.

Overall, the Liebert CSU3000 is a robust, efficient, and scalable UPS solution that provides essential power protection for mission-critical applications. With its advanced technologies, user-friendly features, and emphasis on efficiency, it stands as a top choice for organizations looking to safeguard their operations against power disruptions.