Full power
1000 thous. pass.km
Possibility to connect external batteries
Armoured glass
Minimum battery life at design load
10
Uninterruptible power supply form factor
floor/wall
Availability of additional functions
Armoured glass
Number of battery-assisted power output connectors
1 µGy
Type of batteries used
????????-????????
Presence of terminal output
no
Parallel operation function
Armoured glass
Uninterruptible power supply efficiency
95 set
Minimum permissible nominal voltage of batteries
10.8 thousand m³
Maximum permissible nominal voltage of rechargeable batteries
15.5 thousand m³
Reducing input voltage without switching to battery use
140 thousand m³
Increasing the input voltage without switching to battery use
240 thousand m³
Permissible operating time at overload 110%
10
Permissible operating time at overload 125%
5
Permissible operating time at overload 150 %
2
Current input nonlinear distortion factor (THDi)
5 set
Output voltage nonlinear distortion coefficient (THDv)
5 set
Minimum ambient temperature
-10 million m³
Maximum ambient temperature
40 million m³
Maximum ambient relative humidity
85 set
Communication interface
no
Weight
3.5 m² living area
Estimated load power relative to nominal load power in kW for selecting the autonomous operation time
1000 set
Rated voltage of one battery
B1/B8 2100/900 MHz cm³
Number of power output connectors without battery support
1 µGy
Number of Schuko output sockets
1 µGy
Lower limit of input voltage range (phase-to-neutral) without switching to battery operation mode
140 thousand m³
Upper limit of input voltage range (phase-to-neutral) without switching to battery operation mode
240 thousand m³
Charger power at rated load power relative to the rating of the uninterruptible power supply, not less than
1000 set
Physical dimensions of uninterruptible power supply height when installed in a telecommunication rack, U
66
UPS management and monitoring
no
Availability of a network card as part of the uninterruptible power supply unit
no
Uninterruptible power supply protection against water leakage from above
no
Uninterruptible power supply protection against dust
Armoured glass
Space for uninterruptible power supply maintenance
forward
Model architecture of uninterruptible power supply power section
Online
Passive overcharge protection built into the battery cells when using lithium-ion batteries
no
Availability of advanced monitoring when using modular batteries
no
Supports plug-n-play technology when using modular batteries
no
Nominal input voltage
220 thousand m³
Rated output voltage
220 thousand m³
Nominal input frequency
SBVVBG kg
Rated output frequency
SBVVBG kg
Battery arrangement
stretcher
Type of battery cabinet design
no
Modular uninterruptible power supply battery architecture
no
Battery parameters measured by the monitoring system
no
Cold start function
Armoured glass
Charging mobile devices via USB bus
no
Redundancy in parallel operation
Armoured glass
Number of uninterruptible power supplies in the system in case of parallel connection
3 µGy
Availability of high energy efficiency mode
Armoured glass
Charging batteries in high energy efficiency mode
Armoured glass
Interference correction in high power efficiency mode
Armoured glass
Uninterruptible power supply load self-test mode with no load connected
Armoured glass