Liebert NX UPS System user manual Modes of Operation

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Operation

5.2.1Features of NX Multi-Module UPS Configurations

1.The hardware and firmware of single module UPS units is completely compatible with the requirements of a multi-module system. Multi-module configuration is achieved merely through settings in configuration software.

2.Parallel control cables are connected in a ring, providing both performance and redundancy. Dual-bus control cables are connected between any two UPS modules of each bus. The intelligent paralleling logic provides the user with maximum flexibility. For example, shutting down or starting up UPS modules in a parallel system can be done in any sequence. Transfers between Normal and Bypass modes of operation are synchronised and self –recovering e.g. following overloads and their clearance.

3.The total load of the multi-module system can be queried from each module’s LCD display.

5.2.2Requirements for Paralleling of UPS Modules

A group of paralleled modules behave as if it were one large UPS with the advantage of presenting higher reliability. In order to assure that all modules are equally utilised and to comply with relevant wiring rules, the following requirements apply:

1.All UPS modules must be of the same rating and must be connected to the same bypass source.

2.The bypass and the main input sources must be referenced to the same neutral potential.

3.Any RCD, Residual Current monitoring device, if installed, must be of an appropriate setting and located upstream of the common neutral bonding point. Alternatively, the device must monitor the combined 4-wire rectifier and split-bypass input currents of the system. Refer to the High Leakage Current Warning on page 1.

4.The outputs of all UPS modules must be connected to a common output bus.

NOTE

Optional isolation transformers are available for applications where sources do not share the same neutral reference or where the neutral is not available.

5.3Modes of Operation

The NX UPS is an on-line, double-conversion, reverse-transfer UPS that permits operation in these modes:

Normal Mode

Battery Mode (Stored Energy Mode)

Auto-Restart Mode

Bypass Mode

Maintenance Mode (Manual Bypass)

ECO Mode

Parallel Redundancy Mode

Hot-Standby Mode

Frequency Converter Mode

5.3.1Normal Mode

The UPS inverter continuously supplies the critical AC load. The rectifier/charger derives power from the AC mains input source and supplies DC power to the inverter while simultaneously FLOAT or BOOST charging its associated backup battery.

5.3.2Battery Mode (Stored Energy Mode)

Upon failure of the AC mains input power; the inverter, which obtains power from the battery, sup- plies the critical AC load. There is no interruption in power to the critical load upon failure or restora- tion of the AC mains input power after which the “Normal Mode” operation will continue without the necessity of user intervention.

5.3.3Auto-Restart Mode

The battery may become exhausted following an extended AC mains failure. The inverter shuts down when the battery reaches the End Of Discharge voltage (EOD). The UPS may be programmed to “Auto Recovery after EOD” after a delay time. This mode and any delay time are programmed by the commissioning engineer.

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Contents Liebert NX UPS Page Table of Contents UPS MULTI-MODULEINSTALLATION Dual Bus SystemTechnical Specifications Operating ProceduresOPTIONS-FORASSEMBLY Inside the UPS Cabinet Operator Control Panel and DisplayFigures Tables Aust/NZ Feature Set for Region InputOutput Options Model IdentificationSafety Precautions Conformity and StandardsUser-Serviceable Parts Battery Voltage Exceeds 400VDCIntroduction Preliminary ChecksUPS Room External Battery RoomLocation Storage2 10 to 30kVA UPS PositioningSystem Cabinets Moving the CabinetsExternal Protective Devices UPS Output External BatteryEarth Leakage RCD Distance from floor to connection point on the equipment Power CablesMaximum steady state AC and DC currents Cable Termination Common Input ConnectionsOutput System Connections Monitor Board Features Control Cables and CommunicationDry Contacts X3 Ancillary Control and AlarmsMaintenance Bypass Cabinet Interface Input Dry ContactsExternal Circuit-Breaker Interface Jumper connection for BCB interface+12V J13 J21 Output Dry ContactsOutput dry contact relays J28X7 External Battery Temperature Detector Interface Emergency Power Off InputX5 Auxiliary DC Power Output X6 Analog Input InterfaceBattery Start Button External Bypass Switch InterlockBattery Start Facility Serial Ports RS232-1 and RS232-2Battery Installation Safety Hazardous battery voltage present behind coversBattery Cabinet Cable W2 is packed with the temperature sensor Battery Temperature Sensor OptionalMoving the Battery Cabinets Name W2 L=5m Name W1 L=30mBattery cabinet bottom cable entry location General Arrangement DrawingsBottom cable entry Battery cabinet internal layout Item # Item Name Battery Power CablesConnection Principles Battery Room Design Battery ControlConnecting the Battery Fitting the BatteriesX24 GeneralX23 X24 Monitor Board X21Distribution Cabinet Cabinet InstallationParalleled UPS Modules Power Cables External Protective DevicesHot-Standby UPS Modules Control Cables Intermodule ControlInput Distribution Upstream Dual Bus System Parallel Board X2-2 X1-1 Parallel System Control WiresExtended Dual Bus Synchronization Option DBS Interface Box Parallel Board DBS Cable X2-2 X1-1 Parallel SystemInstallation Drawings General arrangement-10-30kVA UPS module External Battery Input Output Main Input Bypass Input NXe 10-30kVA Top View Internal battery layout and connecting-GP12120 F2 12AH/12V Internal battery layout Split-Bypass Input Static Transfer Switch Battery Temperature CompensationSocket Outlet Redundant Control Power Supply BoardMulti Module UPS-1+N Modes of Operation ECO Mode Single UPS Only Bypass ModeMaintenance Mode Manual Bypass Parallel Redundancy Mode System ExpansionNormal Function Battery Management-Set During CommissioningBattery Protection settings by commissioning engineer UPS operating modes Power SwitchesRotary switch configurations UPS Startup Start-Up ProcedureIndicator State Verify Switching Between Operation Modes Switching the UPS from Normal to Maintenance Bypass Powering Down the UPSPowering Down the UPS and Maintaining Power to Load Emergency Shutdown With EPO Auto RestartChanging the Current Date and Time Command PasswordLanguage Selection Isolating One Module in a Multi-Module System Inserting One Module into a Multi-Module System LED Function StatusButton Function UPS control and display panel componentsComponent # Function Mimic Power Flow Audible Alarm BuzzerMenu key Icons and their meaning Direct Access Push Buttons KeysLCD Monitor and Menu keys When configured, input transformer voltages are Load System Battery RecordsLanguage Settings Command Version Displayed on the front LCD. When not activated,Descriptions of UPS menus and data window items Detailed Description of Menu ItemsUPS system window Menu Type Item Type ExplanationNumber to be dialed to send an alarm notification UPS messages Message Description / Suggested Action if anyBypass voltage exceeds the limit UPS is confirmed to overload and the overload times out UPS messages Prompt windows, meanings Dynamic Energy Flow Chart and UPS Help ScreenPrompt Pop-Up Windows Prompt MeaningDefault Screen Saver Default screenTerminal Name Definition Battery Ground Fault DetectionProtection Fan120 Redundant Fan for Power ModuleFan120 AC FanOC Web Card SNMP/HTTP Network Interface Card OC Web Card data summary windowMultiport-4 Card Relay Card pin configurationRelay Card Relay card jumpersPin Description SiteNet MultiPort4 Intellislot pin assignmentAssignment Remote Alarm Monitor OC485 Web Card Modbus, Jbus, IGM NetDust filter replacement Dust Filter for 10-30kVACompliance with European, international standards Environmental characteristicsConformity and Standards Overall efficiency, heat losses and air exchangeMechanical characteristics Rectifier AC input mainsInverter output to critical load Bypass mains input Technical Specifications Technical Specifications Page Ti n Ne tIti That