American Power Conversion 60kW InfraStruXureTM System Electrical Requirements and Specifications

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Electrical Requirements and Specifications

Procedures requiring a licensed electrician

Electrical Hazard

See also

Procedures requiring a licensed electrician include:

Connection of utility conductors

Installation of a 225-, 90-, or 75-amp circuit breaker

Connection to the Main Input switch

Wiring under the floor

To connect utility conductors, see Certified Electrician’s Instructions included with your PDU documentation.

Electrical requirements

 

208V Input

480V Input

600V Input

 

 

 

 

Service distribution breaker †‡

225A

90A

75A

Conductors to main input switch

Transformer: 3W + G + GEC

3W + G + GEC

3W + G + GEC

 

No Transformer: 4W + G

 

 

Recommended wire sizing

 

 

 

L1, L2, L3, N

4/0AWG

3 AWG

4 AWG

G

6 AWG

8 AWG

8 AWG

GEC

4 AWG

8 AWG

8 AWG

 

 

 

 

† Provided by customer.

‡ The specifications are recommendations. Consult the NEC and local codes for requirements specific to your installation.

InfraStruXure System—Installation and Start-Up

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Contents Installation and Start-Up Page About this Manual Page Contents Start-Up Procedure Appendix a Operation Page Overview Safety symbols used in this manualCross-reference symbols used in this manual Receiving/moving Installation/MaintenanceEmergency Power Off EPO Total Power OffPage NetShelter VX Enclosure DimensionsInfraStruXure PDU Space Considerations Component Maximum Weight Weight ConsiderationsHeat Output Procedures requiring a licensed electrician Electrical Requirements and SpecificationsElectrical requirements 208V Input 480V Input 600V InputOverview Emergency Power Off EPOLicensed electrician must connect the power source Basic Installation ProcedureSite Planning Basic Installation Procedure Level the PDU and NetShelter Enclosures Installation ProceduresAttach conduit to the PDU for the input conductors Connect the Power Source to the PDUAccess the PDU Main Input switch Installation Procedures Connect the Power Source to the PDU Terminal Torque Tools Install a circuit breakerTorque specs and tools required 208V input without a transformer Connect input conductorsContact closure 24VAC 24VDC Contact closure is recommended Connect an Emergency Power Off Switch24VAC/VDC-Normally Open Contact Closure-Normally OpenContact Closure-Normally Closed Problem Action Safety warnings Overview Relay output specifications How to connect contacts to the PDU Monitoring Unit990-1393B Cable Ladders for overhead wiring across rows Install the Rack Automatic Transfer Switches ATS Install InfraStruXure Rack-Mount DevicesInstall the Rack Power Distribution Units PDU Install the InfraStruXure Manager and Hub or SwitchRoute and attach power cables to equipment racks Route and Attach Overhead WiringInstallation Procedures Route and Attach Overhead Wiring Installation Procedures Route and Attach Overhead Wiring Wiring Under the Floor Installation Procedures Wiring Under the Floor Route Data Cables to the InfraStruXure Manager Hub or Switch Ensure that all power is off Start-Up ProcedureApply power to the system Start-Up Procedure InfraStruXure System Configure the InfraStruXure Manager Appendix a Operation How to Apply Power to the SystemDistribution panel circuit breakers For PDU with transformer Set the Main How to Ensure Total Power OffPage Changes by page number General changesPage Index InfraStruXure System-Installation and Start-Up Page Page Page Page Page Page Page 990-1638B

60kW InfraStruXureTM System specifications

The American Power Conversion (APC) 60kW InfraStruXure™ System represents a groundbreaking advancement in power management for critical facilities. Designed for data centers and environments with extensive IT infrastructure, this system stands out for its scalability, reliability, and efficiency.

One of the primary features of the InfraStruXure™ System is its modular architecture. This design allows for the deployment of power and cooling components in a customized manner, tailored to the specific needs of each facility. The system can grow alongside business needs, accommodating increased power demands simply by adding additional capacity modules. This flexibility means that organizations can adapt without the often hefty costs and complexities associated with traditional infrastructure upgrades.

The 60kW configuration supports a range of power distribution options, ensuring that it can serve diverse loads while maintaining optimal performance. The system includes integrated power distribution units, which facilitate seamless integration with existing setups. This integration is crucial for organizations wishing to enhance their infrastructure without undergoing extensive overhauls.

Moreover, the InfraStruXure™ System leverages advanced cooling technologies to maintain operational efficiency. Its intelligent cooling systems optimize airflow management, helping to prevent hotspots and maintain an even thermal profile throughout the data center. The cooling units are designed to work in conjunction with the power modules, ensuring that the entire system operates with minimal energy wastage.

In terms of monitoring and management, the InfraStruXure™ System is equipped with an intuitive interface that provides real-time visibility into system performance. This includes alerts and status updates that enable quick responses to potential issues, ensuring high levels of uptime. The integration of remote monitoring capabilities allows facility managers to keep an eye on performance from anywhere, further enhancing operational management.

Reliability is another cornerstone of the InfraStruXure™ System. Built-in redundancy features minimize the risk of downtime, while the rugged reliability of APC products ensures long-term performance. Power quality management features protect sensitive equipment from surges and disruptions, critical in environments where every second of uptime counts.

In conclusion, the APC 60kW InfraStruXure™ System is a state-of-the-art solution designed to meet the evolving demands of modern data centers. With its modular design, robust power distribution, intelligent cooling, and advanced monitoring capabilities, it offers organizations an efficient, reliable, and scalable power management solution that stands up to the challenges of today’s technology-driven world.