Emerson 10-30kVA, 208V installation manual UPS Input Configuration, Cabling Guidelines

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Electrical Connections

2.1.2UPS Input Configuration

Figure 2 illustrates the NX in a split bypass (dual-input) configuration. In this configuration the Static Bypass and the Maintenance Bypass lines are supplied from a separate feed from the Main input. Both sources must be protected externally with properly sized protective devices. By default, the unit ships with internal links installed between the Bypass input and Main input (Single Input configuration). To wire the unit as a dual input UPS, remove the links and wire the bypass to the input bus bars, then wire the Main input directly to CB1 (see Figure 3).

Figure 2 Single module block diagram—dual input configuration

 

SW1/D

Maintenance Bypass

 

 

 

SW1/C

Contactor

Static Switch

 

 

Bypass Input

 

 

 

 

 

 

 

 

AC Utility Input

Rectifier

Inverter

Contactor

SW1/A

UPS

 

 

Output

 

 

 

 

 

CB1

 

 

 

 

Neutral Wire

Discharge

Battery

 

SW1/B

 

 

 

 

 

 

Charger

 

 

 

 

Battery

 

 

 

 

2.1.3Cabling Guidelines

The following are guidelines only and are superseded by local regulations and codes of practice where applicable.

1.Take special care when determining the size of the neutral cable, as current circulating on the neutral cable may be greater than nominal current in the case of non-linear loads. Refer to the values in 6.4 - UPS Electrical Characteristics.

2.The ground conductor should be sized according to such factors as the fault rating, cable lengths and type of protection. The ground cable connecting the UPS to the main ground system must follow the most direct route possible. Control wiring and power wiring must be run in separate conduit. Output and input cables must be run in separate conduit.

3.Consider using paralleled smaller cables for heavy currents—this can ease installation.

4.When sizing battery cables, a maximum voltage drop of 4VDC is permissible at the current ratings in Table 10. For terminal connection sizing, see Table 10.

5.In most installations, especially parallel multi-module systems, the load equipment is connected to a distribution network of individually protected busbars fed by the UPS output, rather than connected directly to the UPS itself. When this is the case, the UPS output cables can be rated to suit the individual distribution network demands rather than being fully load-rated.

NOTE

If more load is added to the distribution panel, the unit’s cabling must be resized.

6.When laying power cables, do not form coils; this will help avoid increasing formation of electromagnetic interference.

NOTE

Left-side access may be required when making power connections. Cable connections should be made before a cabinet is attached to the left side of the NX or before the UPS is placed where another obstruction, such as a wall, is against the NX’s the left side.

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Contents Liebert NX UPS Page Table of Contents UPS Specifications Maintenance Bypass CabinetOptions Figures Tables Important Safety Instructions Battery Cabinet Precautions Glossary of Symbols External Inspections Internal InspectionsPreliminary Checks UPS LocationConsiderations in Moving the NX Mechanical ConsiderationsSpecial Considerations for 1+N Systems Final PositionFloor Installation ClearancesCable Entry 10-30kVA UPSMaintenance Bypass Cabinet BatteryLiebert Optional CabinetsCable Rating Power CablingLug Size and Torque Requirements UPS Input Configuration Cabling GuidelinesCable Connections BussmannSafety Ground Protective DevicesUPS Rectifier and Bypass Input Supply System OutputCabling Procedure Output System Connections-Ensure Correct Phase RotationCommon Input Connections Dual Input ConnectionsMonitor Board Features Internal UPS Battery ConnectionsControl Cables Dry Contacts Input Dry ContactsMaintenance Bypass Cabinet Interface Maintenance bypass cabinet interfaceBCB Box Interface BCB box interfaceOutput Dry Contacts EPO Input-Optional Firmware Before M200Output dry contact relays EPO input contact relaysFirmware M200 or Later Introduction SafetyUPS Batteries External Battery Cabinet Installation Matching Battery CabinetsConnecting the Batteries Removable retainer Tray handle Insulated post for cablingBattery tray support Service shelf Top cable entry Battery trays BCB plate and BCBTop cable entry Batteries BCB plate Installation Considerations Battery tray supports attach To interior surface of NXFront door note notched Ends of supportsConnecting the Battery Cabinet to the UPS Non-Standard BatteriesBypass Switch Normal UPS ModeBypass Mode Maintenance ModeCable Installation Locating the CabinetPower Cable Installation Input/Output WiringMaintenance bypass control wire location Bolting Cabinets Together Line up cabinets so that mounting holes are alignedDBS Cable and Settings Load Bus SynchronizationPerformance Requirements LBS CableFeatures of Parallel System Configuring Parallel System OperationGeneral Installing Parallel System Power Cables InterconnectingParallel Control Cables Parallel System Control Cables Auxiliary Dry Contact CablesInput Distribution Normally Open EPO Normally Closed EPOBattery Circuit Breaker Box Available battery circuit breaker boxesDimensions Circuit BreakerBottom View Front ViewMidpoint Busbar Detail DPN U3813078 Rev. N UPS Mechanical Characteristics Environmental characteristicsMechanical characteristics Conformity and StandardsUPS Electrical Characteristics UPS terminalInput Rectifier Battery Manufacturers and ModelsDC Intermediate Circuit Inverter Output Inverter outputBypass Input Bypass input Time LoadInstallation Drawings Dimensions -top and bottom views Main components-typical unitCable connections Battery 417mm 186mm 687mm Location of internal batteriesW501 3pcs W500 18pcs W506 to W507 W510 to W511 W502 to W503 W504 to W505 W511 to W510 W507 to W506 W509 to W508W505 to W504 W508 to W509 W503 to W502Refer to for key to interconnection Liebert -supplied interconnect wiringRun From Conductors Maintenance Bypass interconnection Run From Conductors Cabinet Type Liebert-supplied interconnect wiringA00, BR0 Isolated Ground Distribution CabinetDistribution Cabinet Load AC Connection Neutral Ground Interconnect wiring-1+N Type a connection to NX Interconnect wiring-1+N Type A1 connection to NX Interconnect wiring-1+N Type B connection to NX Utility AC Source UPS #1-UPS #4 Module AC InputInterconnect wiring-1+N Type B1 connection to NX Interconnect wiring-1+N Type C connection to NX Ph A, B, C-system InputPh a ,B, C UPS Input Ph a ,B, C LoadInterconnect wiring-1+N Type C1 connection to NX + N Cabinet Side View + N Parallel CabinetInterconnect wiring-1+N Type D connection to NX Lineup detail-1+N Type D connection to NXUPS Torque specifications Battery torque ratingInitial Torque Annual Torque Battery In-lb N-m Lug Size and Torque RequirementsCurrent CB Size a Maintenance bypass cabinet electrical data single inputCurrent Rating a OCP CB Size a Maintenance bypass cabinet electrical data dual input Current Rating a CB Size aMulti-module bypass cabinet electrical data 300A 200ASR0, W00 G01, GR1 E00, FR0TR0 208 104 125 250 400 MR1 UR0, Y00208 280 400 222 300 210 250 167 225 140 175 111 150 Maintenance bypass cabinet lug sizes Maintenance Bypass Cabinet weights Battery cabinet physical characteristicsMaintenance Bypass Cabinet Style, lb. kg Rating Maintenance bypass cabinet dimensions Multi-module paralleling cabinet dimensionsCable Lengths Floor to Connection Point Inside UPS Distance to connection points on the NX UPSSpecifications and Technical Data Specifications and Technical Data Page Ne t ItiTi n That
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10-30kVA, 208V specifications

The Emerson 10-30 kVA, 208V uninterruptible power supply (UPS) solution is a robust system designed to provide reliable power protection for critical applications in commercial and industrial settings. This UPS is ideal for safeguarding IT equipment, communication systems, and other sensitive electronics against power disturbances and interruptions.

One of the standout features of the Emerson 10-30 kVA UPS is its modular design, allowing for flexibility and scalability. This means that as the power needs of a facility grow, the UPS can be easily expanded without requiring a complete system overhaul. This modularity contributes to a more efficient use of resources and minimizes operational costs.

The UPS also incorporates advanced technologies such as double-conversion online architecture, which provides the highest level of power quality. This technology ensures that the output power is consistently clean and stable, effectively eliminating harmful voltage fluctuations and frequency variations. Consequently, connected load receives a pure sine wave output, preventing potential damage or operational issues with sensitive equipment.

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Battery management is another critical aspect of the Emerson UPS. It employs advanced battery management technologies to ensure optimal battery life and performance. Features such as intelligent battery testing and monitoring help predict potential battery failures before they occur, allowing for proactive maintenance and minimized downtime.

In summary, the Emerson 10-30 kVA, 208V UPS offers a combination of modularity, high efficiency, advanced technologies, and effective power management features that cater to the demanding needs of critical applications. With its reliable performance and user-friendly operation, this UPS solution is an excellent choice for organizations looking to protect their valuable equipment from power disturbances.