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Vertiv Liebert NX Manuals
Manuals and User Guides for Vertiv Liebert NX. We have
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Vertiv Liebert NX manuals available for free PDF download: Installation Manual, Operation And Maintenance Manual, User Manual
Vertiv Liebert NX Operation And Maintenance Manual (76 pages)
225-600kVA, Three-Phase, Single-Module & Multi-Module
Brand:
Vertiv
| Category:
UPS
| Size: 7 MB
Table of Contents
Product Warranty Registration
2
Table of Contents
3
Important Safety Instructions
7
Save These Instructions
7
Appendix A-Systemconfiguration
9
Figure 1 Typical Single Module UPS System One-Line Diagram
9
Modes of Operation
10
Normal Mode
10
Eco Mode
10
Bypass Mode
10
Battery Mode
10
Maintenance Bypass
10
Options
11
1 0 Introduction
9
General Description
9
2 0 Operation
12
Physical Layout of the UPS
12
Figure 2 Main Component Locations-225-300Kva Liebert NX
12
Figure 3 Main Component Details-225 to 300Kva Liebert NX
13
Interface Display Features
14
Figure 4 Main Component Details, 400-600Kva Liebert NX
14
Figure 5 Main Display Screen, Typical
15
Normal Mode
15
Touchscreen Navigation
16
Main Display Screen
16
Utility Fail
16
Load on Bypass
16
Status
17
Figure 9 Main Display Screen, MBD Open
18
Figure 10 Load Status
18
Figure 12 Bypass Status
19
Figure 11 Rectifier Status
19
Figure 13 Inverter Status
20
Figure 14 Charger/Booster Status
20
Figure 15 Battery Status
21
Events Log Menu
22
Measures Menu
22
Figure 16 Status Summary
22
Table 1 Measurements for Functional Blocks
22
Figure 18 Bypass Measures
23
Figure 17 Rectifier Measures
23
Figure 19 Inverter Measures
24
Figure 20 Charger/Booster Measures
24
Figure 21 Battery Measures
25
Figure 22 Load Measures
25
Battery Menu
26
Figure 23 Battery Parameters
27
LIFE ™ Menu
28
Figure 24 LIFE Menu
28
Settings Menu
29
Figure 25 Settings Menus
29
Animated One-Line MIMIC
30
Functional Blocks
30
About Menu
30
Figure 26 about Menu
30
Functional Block Information
30
Modes of Operation
31
Load on Bypass
31
Figure 27 Load on Bypass, UPS Not Operating
31
Figure 28 Load on Bypass, UPS Available
32
Figure 29 Eco Mode One-Line MIMIC Display
32
Normal Mode-Load on UPS
33
Input Power Failure-Load on DC Source
33
Figure 30 Load on UPS, Bypass Available
33
Figure 31 Input Power Failure, Load on DC Source
33
Off DC Source
34
Remote Emergency Power off
34
Figure 32 Load on UPS, DC Source Not Available
34
Figure 33 Remote Emergency Power off
34
Eco Mode Active
35
Eco Mode Activation and Control
35
Active Eco Mode
35
Normal-Active Eco Mode
35
Inverter Stop-Active Eco Mode
36
Overload-Active Eco Mode
36
Emergency-Due to Source Supply Failure or Variance Beyond Tolerance Limits, Active Eco
36
Mode
36
Return to Normal Conditions-Active Eco Mode
36
Manual Operations-All Systems
36
Figure 34 Maintenance Bypass Configurations-Two Breaker
37
Figure 35 Maintenance Bypass Configurations-Three Breaker for Single-Input UPS
37
Figure 36 Maintenance Bypass Configurations-Three Breaker for Dual-Input UPS
37
Figure 37 Maintenance Bypass Configurations-Four Breaker for Dual-Input UPS
38
Figure 38 Maintenance Bypass Configurations-Four Breaker for Dual-Input UPS, no CB1
38
Figure 39 Maintenance Bypass Configurations-Distributed Bypass, 1+N Multi-Module
39
Startup-Single Module System
40
Startup Single Module System from Maintenance Bypass
41
Load Transfer and Retransfer-Single Module System
43
Maintenance Bypass Load Transfers-Single Module System
43
Shut down Single Module UPS System
44
Startup-1+N Multi-Module System with Maintenance Bypass Cabinet
45
Transfer Load from Bypass to UPS: 1+N Distributed Bypass System
46
Transfer the Load from UPS to Bypass: 1+N System
46
De-Energize 1+N System with Maintenance Bypass Cabinet
47
Load Transfer-1+N System-Add One UPS Module to the System (Collective)
47
Load Transfer-1+N System-Remove One UPS Module from System (Collective)
47
Automatic Operations
48
Overloads (Without Transfer)
48
Automatic Transfers to Bypass (Overload Condition)
49
Automatic Transfers to Bypass, UPS System Faults
49
Table 3 Current-Versus-Time Curves of Overload Capacity
49
Automatic Retransfers to UPS
50
3 0 Ups Messages: Status, Warning, Fault
51
Table 4 UPS Status, Warning and Fault Messages
51
4 0 Connectivity
60
Network and BMS Connectivity and Monitoring
60
Determining the Type of Card in Your System
60
Connection Points
60
Connectivity Combinations
60
Available Selectable Input Contacts
61
Available Selectable Output Contacts
62
5 0 Maintenance
63
Safety Precautions
63
Vertiv Liebert Services
63
Routine Maintenance
64
Record Log
64
Air Filters
64
Limited Life Components
65
Table 6 Table
65
UPS Component Service Life
65
Battery Maintenance
66
Battery Safety Precautions
66
Table 7 Battery Voltage, Nominal and Float
67
Table 8 Battery Retorque Values
68
Detecting Trouble
69
Items to Check Include
69
Reporting a Problem
69
Upstream Feeder Circuit Breaker Setting Inspections
69
AC Output Ground Fault Detection
70
6 0 Specifications
71
DC Sources
71
Battery Operation
71
Other DC Sources
71
Battery DC Ground Fault Detection
71
Environmental Conditions
72
Thermal Runaway Protection
72
Environmental Specifications
72
Table 10 Electrical Specifications
73
Table 11 Physical Specifications
73
Appendixa - System Configuration
74
Figure 40 Two-Module 1+N UPS System, Single Input, Common Battery and Paralleling Switchboard
74
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Vertiv Liebert NX Installation Manual (87 pages)
Large System, 3-Phase UPS Battery System
Brand:
Vertiv
| Category:
UPS
| Size: 12 MB
Table of Contents
Table of Contents
4
Important Safety Instructions
10
1 Mechanical Installation
13
Introduction
13
Preliminary Checks
13
Environmental Considerations
13
Battery Room
13
1.3.2 Storage for Delayed Installation
13
Positioning
15
Moving the Cabinets
15
Figure 1 Shipping Bolts-Top-Terminal Battery Cabinet, Standard Width
16
Figure 2 Shipping Bolts-Top-Terminal Battery Cabinet, Reduced Width
16
1.4.2 Clearances
17
1.4.3 Raised Floor Mounting
17
System Composition
17
2 Battery Installation
18
Safety
18
Layout
19
Figure 3 Top-Terminal Battery System Configurations-Liebert® EXL
19
Figure 4 Top-Terminal Battery System Configurations Attached to UPS-Liebert® EXL™ S1
20
Figure 5 Top-Terminal Battery System Configurations-Liebert® NX™ 225-600Kva
21
Figure 6 Top-Terminal Battery System Configurations-Liebert® NXL
22
Figure 7 Top-Terminal Stand-Alone Battery System Configuration-Liebert® EXL™, Liebert® EXL™ S1
23
Figure 8 Top-Terminal Battery System Configuration-Battery Cabinets Not Attached to UPS or each
23
Figure 9 Front-Terminal Battery System Configurations-Liebert® EXL
24
Figure 10 Front-Terminal Battery System Configurations Attached to UPS-Liebert® EXL™ S1
25
Figure 11 Front-Terminal Battery System Configurations-Liebert® NX
26
Figure 12 Front-Terminal Battery System Configurations-Liebert® NXL
27
Control Cable Entry
28
DC Power Connections
28
2.4.1 Connected Battery Systems
28
2.4.2 Connected or Stand-Alone Arrangement
28
Figure 13 Front-Terminal Stand-Alone Battery System Configuration-Liebert® EXL™, Liebert® EXL™ S1
28
Figure 14 Front-Terminal Battery System Configuration-Battery Cabinets Not Attached to UPS or each
28
2.4.3 DC Power Connections-Liebert® EXL™ S1
29
2.4.4 Grounding
30
Control Connections
30
Figure 15 Control Cable Layout-Liebert® UPS to Liebert® Battery Cabinet
30
2.5.1 Liebert® EXL™ and Liebert® EXL™ S1-UPS Control Contacts with Battery Cabinet
31
Figure 16 TB1154 Location-Liebert® EXL
31
Table 1 Liebert® EXL™ and Liebert® EXL™ S1 UPS Control Contacts to Battery Interface Boards
31
2.5.2 Liebert® NX™-UPS Control Contacts with Battery Cabinet
32
Figure 17 TB1154 Location, BIB Connection-Liebert® EXL™ S1
32
Figure 18 TB3 Location-225-300Kva Liebert® NX™, SMS and 1+N Multi-Module Unit with Static
33
Table 2 Liebert® NX™UPS Control Contacts to Battery Interface Boards
33
Figure 19 TB3 Location-Liebert® NX™ 400-600Kva, SMS and 1+N Multi-Module Unit with Stat- IC
34
2.5.3 Liebert® NXL™-UPS Control Contacts with Battery Cabinet
35
Figure 20 Wiring External Interface Board in Liebert® NXL™ to Battery Interface Board in Battery
35
Alber® Monitoring System-Optional
36
External Battery Room Temperature Sensor-Optional
36
Figure 21 Battery Temperature Sensor Control Connection
37
Figure 22 Outline and Terminal Details, Optional Auxiliary Temperature Sensor for Liebert® EXL
38
3 Installation Drawings
39
Installation Drawings-Top Terminal Battery Cabinets
39
Figure 23 Top-Terminal Battery Cabinet Layout
39
Figure 24 Ground Strap Location for Connected Top-Terminal Battery Cabinets
40
Figure 25 Outline Drawing, Liebert® Top-Terminal, 47" (1194Mm) Wide Battery Cabinet (1194Mm)
41
Figure 27 Outline Drawing, Liebert® Top-Terminal, 55" (1400Mm) Wide Battery Cabinet for Lieb- Ert
43
Figure 28 Main Components, Top-Terminal, 55" (1400Mm) Wide Battery Cabinet for Liebert
44
Figure 29 Terminal Details, Top-Terminal, 55" (1400Mm) Wide Battery Cabinet for Liebert® EXL™, Liebert® EXL™ S1, Liebert® NX™ 225-600Kva and Liebert® NXL
45
Battery
46
Figure 31 Liebert® EXL™ S1 625-800Kva UPS Input/Output Cabinet 1 to Top-Terminal Battery
47
Figure 32 Liebert® EXL™ S1 1000-1200Kva UPS Input/Output Cabinet 1 to Top-Terminal Battery
48
Figure 33 Liebert® EXL™ S1 625-800Kva UPS Input/Output Cabinet 2 or 3 to Top-Terminal Bat
49
Figure 34 Liebert® EXL™ S1 1000-1200Kva UPS Input/Output Cabinet 2 or 3 to Top-Terminal
50
Figure 35 Busbar Shroud for Input/Output Cabinet 2 or 3, Top-Terminal or Front-Terminal Battery
51
Ebert
51
Installation Drawings-Front Terminal Battery Cabinets
52
Figure 36 Front-Terminal Battery Cabinet Layout
52
Figure 37 Front-Terminal Battery Cabinet Shipping Split
53
Figure 38 Outline Drawing Liebert® 63" (1600Mm) Wide, Front-Terminal Battery Cabinet for Lieb- Ert® EXL™, Liebert® EXL™ S1, Liebert® NX™ 225-600Kva and Liebert® NXL
54
Figure 39 Main Components, Liebert® 63" (1600Mm) Wide Front-Terminal Battery Cabinet for Li- Ebert
55
Figure 40 Terminal Details, Cable Entry Liebert® 63" (1600Mm) Wide Front-Terminal Battery Cab
56
Installation Drawings-Junction Cabinets
57
Figure 41 Busbar Connection between Battery Cabinet and Attached Junction Cabinet
57
Figure 42 Terminal Details-Liebert® Stand-Alone 17" 800-1200Kva Junction Cabinet
58
Figure 43 17" Junction Cabinet Junction Cabinet-Cable Entry
59
Figure 44 Terminal Details-Liebert® Stand-Alone 32" (813Mm) Junction Cabinet
60
Figure 45 Terminal Details-Liebert® 15-1/2" Attached Junction Cabinet, 500-750 Kva
61
Figure 46 Outline Drawing-Liebert® 15-1/2" Attached Junction Cabinet
62
Figure 47 17" Junction Cabinet Junction Cabinet
63
Figure 48 Liebert® Battery Cabinet Control Wiring
64
Figure 49 Attached Battery Cabinet Connections
65
Figure 50 Liebert® Top-Terminal, 55" (1400Mm) Battery Cabinet Interconnect Wiring to Liebert
66
Figure 51 Liebert® EXL™ S1 625-800Kva UPS Input/Output Cabinet 1 to Front-Terminal Battery
67
Figure 55 Terminal Details, 625/750 Liebert® NXL 1+N Multi-Module or SMS with Static Bypass
71
Figure 56 Terminal Details, Liebert® NXL™ 800Kva 1+N Multi-Module or SMS with Static Bypass
72
Installation Drawings-Alber® Battery Monitoring
73
Figure 57 Typical Alber Battery Monitoring Connections
73
Battery Monitoring Option
74
Cabinet
74
Figure 58 Alber Battery Monitoring Wiring to Multiple Battery Cabinets
74
Battery Monitoring Assembly Diagram
75
Cabinet
75
Figure 59 Alber
75
Table 3 Alber Battery Monitoring Assembly Connections
76
4 Specifications
77
Table 4 Liebert® NXL™ Battery Cabinet Specifications
77
Cabinet
77
Table 5 Liebert® NXL™ Junction Cabinet Specifications
78
Table 6 Electrical Values for Alber
78
Cabinet
78
Cabinet
79
Table 7 Battery Cabinet Weights and Breaker Frame Size
79
Cabinet
80
Recommended Lug Sizes
81
Vertiv Liebert NX Installation Manual (52 pages)
Brand:
Vertiv
| Category:
UPS
| Size: 5 MB
Table of Contents
Contacting Vertiv for Support
2
Product Warranty Registration
2
Table of Contents
3
Important Safety Instructions
7
Save These Instructions
7
1 Mechanical Installation
9
Introduction
9
Preliminary Checks
9
Environmental Considerations
10
UPS Room
10
Storing the UPS and Batteries for Delayed Installation
10
Installation Altitude
11
Positioning
11
Moving the Cabinets
11
Clearances
11
Raised-Floor Installations
11
Kick Plates and Floor Anchors for Special Seismic Certification-Optional
12
Kick Plate Installation-Standard
12
Special Considerations for 1+N Parallel Systems
12
Unpacking and Unloading the Cabinet from the Pallet
13
System Composition
13
Cable Entry
14
Figure 2 Cabinet Arrangement-Liebert NX Matching Battery Cabinets
14
2 Ups Electrical Installation
15
External Protective Devices
15
Power Cables
15
Sizing the Input Breaker Feeding a Liebert NX UPS
16
Single or Dual Input Feeds
16
Automatic Transfer Switches
16
Power Cable Connection Procedure
17
Control Cable and Communication
18
Slot for Liebert Intellislot or Manageups Communication Cards-XS3
18
Slot for LIFE Services Products-XS6
19
Serial Interface for Liebert LIFE Services Cards (Serial Input/Output)-X6
19
2.4.4 Connector for REPO (Input and Status)-XT3/8
19
Table 1 REPO Connection
19
Customizable Output-TB2
20
Customizable Input Contact-TB1
20
Table 2 Customizable Output Contacts
20
Table 3 Customizable Input Contacts
20
Table 2
20
Contact Control for Eco Mode
21
Connector for Parallel UPS Connection-X19A, X19B
21
RJ-45 Interface for Synchronization with External Signal-X20
21
2.4.10 UPS Control Contacts with Battery Cabinet or Module Battery Disconnect
21
Battery Interface
21
2.4.11 UPS Control Contacts with Global Maintenance Bypass
22
Configuring Ground Connections
22
Table 5 Maintenance Bypass Key Status
22
Table 6 Maintenance Bypass SKRU Enable
22
Figure 3 Grounding Diagram-Three-Wire Single-Module Systems
23
Three-Wire Input Connections
23
Figure 4 Grounding Diagram-Three-Wire Multi-Module Systems
24
Preferred Grounding Configuration, Battery Systems
24
High-Resistance Ground Systems
25
Distributed Static Switch (1+N) System Cabling Layouts
25
Figure 5 System Layout, 1+N
26
Figure 6 SKRU Connections
27
Control Wiring
27
Figure 8 REPO Connections 1+N System
28
3 Optional Equipment
29
Single-Module System Options
29
Input Circuit Breaker
29
External Battery Temperature Sensor-Optional
29
Matching Liebert NX Battery Cabinet
29
Battery Interface Box
29
Local EPO Button
29
Communication and Monitoring
29
Remote Status Panel
29
Alber Monitoring System
29
Multi-Module System Options and Accessories
30
Paralleling Cable Kit
30
Load Bus Sync Controller
30
Multi-Bus Synch Module (MBSM)
30
4 Installation Drawings
31
Figure
31
Bypass
32
Figure 10 Outline Drawing, 225-300Kva Liebert NX, SMS and 1+N Multi-Module Unit with Static
32
Figure 11 225-300Kva Low-Voltage Cable Routing
33
Bypass
34
Figure 12 Base Drawing, 225-300Kva Liebert NX, SMS and 1+N Multi-Module Unit with Static
34
Bypass
35
Figure 13 Terminal Details, 225-300Kva Liebert NX, SMS and 1+N Multi-Module Unit with Static
35
Figure 14 Terminal Details Liebert NX 225Kva - 300Kva UPS 1+N Multi-Module or SMS
35
Figure 15 Main Components, 400-600Kva Liebert NX UPS, SMS and 1+N Multi-Module Unit with
36
Static Bypass
36
Figure 16 Outline Drawing, 400-600Kva Liebert NX, SMS and 1+N Multi-Module Unit with Static
37
Figure 17 Base Drawing, 400-600Kva Liebert NX, SMS and 1+N Multi-Module Unit with Static Bypass
38
Figure 18 Terminal Details, 400-600Kva Liebert NX, SMS and 1+N Multi-Module Unit with Static
39
Figure 19 Terminal Details Liebert NX 400Kva - 600Kva UPS 1+N Multi-Module or SMS
40
Figure 20 Recommended Control Wiring for Liebert NX 225-600Kva Single Module, Eco Mode
41
Figure 21 Recommended Control Wiring for Liebert NX 225-600Kva Multi-Module, Eco Mode
42
5 Specifications
43
Table 7 Liebert NX UPS Specifications
43
UPS Rating at Altitude
44
Table 9 Current Ratings-Rectifier Input
44
Table 8 UPS Rating at Altitude
44
Current Ratings-Battery
45
Table 11 Recommended DC Circuit Breaker Rating
45
Table 14 Current-Versus-Time Curves of Overload Capacity
46
Table 15 Recommended Conduit and Cable Sizes
47
Table 17 Recommended Lug Sizes
48
Table 18 Components Required for Seismic Configuration Meeting OSHPD Regulations
49
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Vertiv Liebert NX User Manual (34 pages)
Multiple Bus Synchronization Module
Brand:
Vertiv
| Category:
Control Unit
| Size: 1 MB
Table of Contents
Table of Contents
3
1 Introduction
8
Concepts, Basic Architecture
8
Figure 1 Block Diagram of a UPS System with Liebert MBSM
8
2 Installation
10
Unpacking
10
Transporting Without Packaging Materials
10
Equipment Delivery and Storage
10
Storage
11
Configuration for 60Hz 480V AC Applications
11
Power and Sensing
11
Figure 2 Moving the Liebert MBSM
11
Selecting an Installation Site
12
Mount the Liebert MBSM on a Wall
12
Figure 3 Dimensions, Drilling Diagram
13
Figure 4 Connection Example-Liebert MBSM, Liebert EXL S1 and Transformer Box
14
Transformer Box Connections
14
Figure 5 Connection Example-Liebert MBSM, Liebert NX and Transformer Box
15
Dual Bus UPS Systems
16
Figure 6 Dual-Bus UPS Systems
16
Normal Operating Condition
17
Phase Error Control
17
Figure 7 Synchronization Components for Dual Bus System
17
Figure 8 Synchronizing to Bus a for Dual Bus System
18
Liebert MBSM Activation on Bus a
18
Liebert MBSM Activation on Bus B
18
Generator Operation
19
Bus a Failure
19
Bus B Failure
19
Figure 9 Synchronizing to Bus B for Dual Bus System
19
Both Power Bus Failure
20
Remote Commands
21
Application Limits
21
Figure 10 Remote Override to Synchronize to Bus B for Dual-Bus System
21
Table 1 Liebert MBSM Application Limits-Six UPS Modules
21
Figure 11 Liebert MBSM Connected to Six UPS Modules
22
Special Solution, if Required
23
Selecting the Priority
23
Figure 12 Special Application-Liebert MBSM Connected to 11 UPS Modules
23
Table 2 Liebert MBSM Application Limits-11 UPS Modules
23
Table
23
Remote Commands
24
Excluding Bus a
24
Excluding Bus B
24
Excluding Bus a and B
24
3 Installation
25
Liebert MBSM Internal Layout
25
Figure 13 Liebert MBSM Internal Layout
25
Figure 14 Schematic Diagram
26
4 Ups Setup
27
Liebert MBSM Function Activation
27
Liebert MBSM Interconnections
27
Figure 15 Liebert MBSM Interconnections to Liebert EXL S1 Dual Bus System
27
Power Interconnections
28
Figure 16 Liebert MBSM Interconnections to Liebert NX Dual Bus System
28
Signal Interconnections
29
Remote Contacts
29
Figure 17 Liebert MBSM Control Module
30
Figure 18 MBSM with Phase Control, up to 11 Units
31
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