Battery Integrated Uninterruptible Power System
UPS5000-E (25-75 kVA) Series
HUAWEI TECHNOLOGIES CO., LTD.
CONTENTS
02 Solution Overview
03 Customer Benefits
09 System Architecture and Key Components
12 Typical Configuration
13 System Parameters
14 Global Services
Solution Overview
UPS5000-E Battery Integrated Solution
Rated capacity: 25-75 kVA
The three-phase uninterruptible power supply
solution is applicable to small- and medium-sized
data centers or high-density areas. The integrated
UPS adopts online double conversion design and
system with a leading efficiency up to 96%. The
UPS is fully modular with hot-swappable modules.
Redundancy is also supported.
•
•
•
•
•
•
•
•
UPS and batteries integrated in one cabinet
Modular and redundant
Efficient double conversion technology, system
efficiency up to 96%
High power density design
1.0 output power factor (kVA = kW)
Front maintenance, can be installed against a
wall
Battery modular design
Battery module fault displayed locally
UPS5000-E-75K-BF
02
Customer Benefits:
Simple · Efficient · Reliable
01
All Modular Design
Simple installation: Site survey and
battery wiring are not required.
Professional installation, complex
wiring, long labor hours
Huawei battery integrated UPS
Traditional battery rack solution
The power module, bypass module, battery module, and control module all use modular and integrated design.
Compared with traditional UPS and battery rack solutions, the integrated UPS is installed by inserting modules
onsite and does not require site survey or wiring. A common engineer can finish installation and wiring, greatly
reducing labor hours for site installation and wiring.
02
Battery Modular Pre-integration
• Batteries pre-integrated before delivery
• Hot-swappable terminals
• Wiring not required onsite
03
03
Simple Maintenance
Power module
Battery module
Bypass module
Control module
The power module, battery module, bypass module,
and control module are all hot-swappable. Online
maintenance is supported. A common engineer can
finish replacement and maintenance in 5 minutes.
04
Intelligent Battery Management Without
Manual Inspection
• Battery module overtemperature alarm
• Fuse blown for protection if battery module
is abnormal
• Fault displayed locally, easy to locate the
faulty module
• Intelligent equalized charging, float
charging, and temperature compensation
• Battery hibernation can be enabled,
preventing battery lifespan from being
shortened due to long-time float charging
04
Customer Benefits:
Simple · Efficient · Reliable
01
Space Saving
>> Power Module: High Power Density
25 kVA power module
Occupying 2 U
space, improve space
The power density increases
exponentially
use by
50%
compared with the
industry
Structure
Heat sink
patent design design
>> Highly Integrated, Saving Footprint
Traditional UPS
Battery rack
Huawei battery integrated solution saves
05
50%
Battery integrated UPS
footprint compared with a traditional solution.
02
Efficient and Energy-saving
>> >> High efficiency at low load rate
• Due to redundancy configuration
to ensure reliability and excessive
configuration at the initial stage
to meet the power demand in 3-5
years, the UPS system of traditional
datacenter often operates at load
rate of 10%-50% and the operating
efficiency is far below the value
claimed. It's estimated that the UPS
loss takes up 6%-10% of the total
power consumption in datacenter
• Huawei UPS can keep high
efficiency operation at low load
rate: Up to 96% at 40% rated load
and up to 95% at 20% rated load
Efficiency
100%
95%
90%
85%
80%
75%
70%
65%
60%
55%
50%
0%
20%
40%
60%
80%
100%
Load rate
>> Intelligent hibernation design
Module
Module
Module
Module
Module
Module
75%
Load
Module
• To ensure reliability, at least one
power module serves as redundancy
module and when load increases
dramatically, the sleep module will
be awaked instantly
100%
Module
• When the load rate is very low
(below 10%-15%), intelligent
hibernation can be enabled and
some power modules will switch to
"standby" state to boost load rate
and improve operating efficiency
50%
25%
0%
06
Customer Benefits:
Simple · Efficient · Reliable
01
Redundancy Design,
Eliminating Single Point of Failure
• Redundancy design for energy control
unit, communication buses to eliminate
single point of failure
• Fault-tolerant design for fan system:
30% load can be driven when 2 fans fail
and 50% load when 1 fan fails
Redundant Energy
Control Units
Control module
Control module
CAN2
CAN1
CAN2
Dual communication system design,
single bus system failure, will not affect
the normal operation of the system.
CAN1
Power module
Power module
Power module
3 power module running
Power module redundancy design, a
single power module failure, will not
affect the normal operation of the
system.
Fan fault tolerance design, Single fan
faults with load 50%,two fan faults
with load 30%
07
2 power module running
20% Load rate
20% Load rate
30% Load rate
20% Load rate
30% Load rate
02
Strong Adaptability in Power Grid,
Load & Environment
High grid adaptability
Areas allowing load rate >50%
• 138-485 Vac wide input voltage
range to minimize battery use: 485305Vac for 100% load; 305-138
Vac for 100%-40% load (derating
linearly)
• 6 kV/5 kA lightning protection
design, reducing lightning-related
failure rate
Huawei UPS Input Voltage Range
Typical UPS Input Voltage Range
100
150
200
250
300
350
400
450
500
Input Voltage Range (V)
High load adaptability
• High output power factor of up
to 1, 25% more load driven than
traditional UPSs
The application of PFC technology
in modern IT devices like servers,
storages, routers improves the input
power factor to more than 0.95.
And if they are powered by UPS
with output power factor of 0.7-0.8,
the investment on UPS will increase
remarkably
Active power (P)
P F=0.9
(leading)
P F=1
P F=0.7
(leading)
P F=0.9
(leading)
P F=0.7
(leading)
P F=0.5
(leading)
P F=0.5
(leading)
φ
Reactive
power (Q)
Ideal
Huawei UPS
• No derating for capacitive or
inductive devices with a PF>0.5
High environment
adaptability
• No derating at 40℃ to ensure
power continuity
• Conformal coating on PCB,
improving adaptability to dusty or
salty spray environment
System normal operation After
Airborne Hygroscopic Dust Test
08
System Architecture and Key Components
01
System Architecture and Composition
1
25 kVA power module
2
Static bypass module
1
6
3
Monitoring module
3
4
Battery module
5
Battery switch
6
LCD
7
Air filter
10
4
9
09
8
Maintenance bypass switch
9
Input switch
10
Monitoring unit (SNMP and RS485
communications in standard
configuration)
2
8
5
7
Dimensions (H*W*D): 2000 mm x 600 mm x 1100 mm
02
Key Components
Power module
The Power module with rated capacity of 25 kVA/kW can
eliminate all the nine common problems in public grid
and output pure and stable sine wave.
Dimensions (H x W x D): 86 mm x 442 mm x 620 mm
Bypass module
The bypass module can provide continuous power supply
to load when overload. The bypass module of UPS5000-E
features concentrated design and maximum output
power 128kW.
Dimensions (H x W x D): 130 mm x 442 mm x 620 mm
Energy control module
The ECM supports intra-rack parallel CAN communication
and inter-rack parallel CAN communication. The intra-rack
loadshare control and inter-rack loadshare control are
isolated at ECM to achieve better expandability.
Battery Module
A battery module consists of ten B.B. 9 Ah batteries. An
alarm will be generated if the battery module temperature
is abnormal and the fuse will be blown for protection if
the battery module is abnormal. If there is a fault, the
fault indicator turns on locally.
Dimensions (H x W x D): 160 mm x 108 mm x 786 mm
10
System Architecture and Key Components
03
Key Components (Optional)
Battery Cabinet
The battery cabinet meets the long-time
power backup requirements. Each battery
cabinet can house eight battery strings
(each string contains four battery modules)
and is equipped with a battery switch. A
maximum of four battery cabinets can be
connected.
Dimensions (H x W x D): 2000 mm x 600
mm x 1100 mm
>> Other Optional Components
Component
11
Function
Antiseismic kit
Reinforces the cabinet so that the cabinet meets the requirements of 9 degree
seismic fortification intensity.
IP21 component
Prevents water from dropping into the cabinet, protecting the cabinet to IP21.
Battery temperature
sensor
Feedbacks real-time temperature and humidity data to dynamic environment
monitoring system.
BSC cable
Transmits bus synchronization signals in a dual-bus system.
Typical Configuration
01
Configuration scene
Typical Configuration
Long-time Power Backup Configuration
3+1
≤36
power
modules
Battery
integrated
cabinet
battery
strings
Battery
cabinet
Battery
cabinet
Battery
cabinet
Battery
cabinet
8-16
≤144
battery
modules
battery
modules
2-4 battery strings
8 battery
strings
8 battery
strings
8 battery
strings
8 battery
strings
Battery integrated cabinet: One to three 25 kVA power modules, a maximum of four power modules
can be configured with one module redundant.
Battery module: One battery module contains ten B.B. 12 V 9 Ah batteries and one battery string
contains four battery modules.
Battery cabinet: Supports a maximum of eight battery strings, that is, 32 battery modules.
>> Backup Time Table
Unit: min
350
300
Battery
Integrated
Cabinet
1# Battery Cabinet
2# Battery Cabinet
3# Battery Cabinet
4# Battery Cabinet
235
250
200
161
144
150
0
107
88
100
50
330
25.6
9.9
5.6
74
44
49
26
25kVA
68
50kVA
88
75kVA
12
System Parameters
Model
UPS5000-E- (25-75kVA) -BF
Capacity (kVA/kW)
Mains
Input
Bypass
Output
Environment
Others
25kVA/kW
50kVA/kW
Rated Voltage
380/400/415Vac
Voltage Range
138 to 485Vac
Input Wiring
3Ph+N+PE
Frequency Range
40 to 70 Hz
Total Harmonic
Distortion
<3% (100% linear load)
Input Power Factor
0.99
Rated Voltage
380/400/415Vac
Frequency Range
50/60Hz (adjustable, 0.5 to 6Hz, ±2Hz by default)
Input Wiring
3Ph+N+PE
75kVA/kW
Rated Voltage
380/400/415Vac
Output Frequency
Tracking the bypass input (Normal mode); 50/60Hz±0.05% (Battery
mode)
Output Power Factor
1
Waveform
Sine wave; THDv<1% (linear load)
Output Wiring
3Ph+N+PE
System Efficiency
Up to 96%
Overload Capacity
≤110% overload for 60min; ≤125% overload for 10min; ≤150% overload
for 1min
Operation Temperature
0 to 40 ºC
Storage Temperature
-40 to 70 ºC
Relative Humidity
0% to 95% (No condensing)
Maximum Operation Altitude
0-1000m. Above 1000m, derating rate based on EN/IEC 62040-3
Noise
<65dB
System Expandability
4
Integrated Cabinet Power Backup
Standard configuration 2 to 4 groups of battery (8 to 16 battery modules)
Battery Cabinet (optional) Power
Backup
Optional battery cabinet, 1 to 8 groups of battery (4 to 32 battery modules)
per cabinet, max. 4 cabinets in parallels
Battery Module
Support battery or empty battery for battery module, battery typical
configuration: 10×12V 9Ah
Height×Width×Depth (mm)
2000 × 600 × 1100
Weight (full version)
890kg
Certifications
EN/IEC 62040-1, EN/IEC 62040-2, EN/IEC 62040-3, CE, CB, etc.
Communications
SNMP, RS485, Dry contacts etc.
910kg
930kg
Notice:
1. The UPS series are for commercial/industrial use and not used for life support equipment;
2. The critical systems concerning economic and public security must adopt power supply architecture that comply with Uptime TIER III or TIER IV
requirements stated in TIA942.
13
Global Services
Huawei has professional UPS service engineers deployed globally, providing global technical support with
rapid response speed. Huawei provides customized services that include:
•• 7*24 remote support
•• Software support
•• Active prevention
•• Hardware support
140+ countries
129+ national spare parts centers
300+ regional warehousing centers
22,000+ servers
24*7 online service
North Africa •• Onsite support
•• Others
Russia
Western Europe
Northeast Europe
Middle East & Central Asia
China Headquarter
West Africa
Latin America India
Southeast Asia
& South Pacific
South of South America
Southeast Africa
14
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HUAWEI TECHNOLOGIES CO., LTD.
Huawei Industrial Base
Bantian Longgang
Shenzhen 518129, P.R. China
Tel: +86-755-28780808
Version No.: M3-022334-20161215-E-2.0
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