UPS5000-H-1200 kVA

UPS5000-H-1200 kVA

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Description

UPS5000-H-1200 kVA

The UPS5000 is suitable for power systems in various scenarios, including large-scale data centers or communications centers, equipment rooms of large-scale enterprises or financial systems, industrial automated equipment, and scheduling centers.

The UPS uses a modular design. It uses multiple power modules connected in parallel to deliver a high loading capacity.

The UPS5000 consists of a rectifier, inverter, and DC/DC converter.

It converts inputs into pure high-quality sine wave outputs by using the high-frequency switching technology.

 

Tech Specs

Physical Specifications

Item Specifications
Cabling mode Battery cables are routed in and out from the top, and input and output cables are connected using the busway (without optional components).
Top cabling (with a top cabling component)
Bottom cabling (with bottom cabling cabinets and bottom cabling component copper bars)
IP rating IP20
Communication Supports dry contacts, RS485 ports, and FE ports. Supports SNMP and Modbus.
Dimensions (H x W x D) 2200 mm x 1600 mm x 1000 mm
Weight < 1600 kg

Mains Input Electrical Specifications

Item Item
Rated voltage (line voltage) 380 V AC 400 V AC 415 V AC
Rated current 2229 A 2118 A 2041 A
Power system Three-phase four-wire + PE/Three-phase three-wire + PE
Voltage range 0–30°C: not derated at 323–485 V, derated from 100% load to 45% load at 323–191 V, and derated from 45% load to 35% load at 191–138 V
30–40°C: not derated at 342–485 V, derated from 100% load to 45% load at 342–191 V, and derated from 45% load to 35% load at 191–138 V
Rated frequency 50/60 Hz
Frequency range 40–70 Hz
Power factor > 0.99 (100% load)
> 0.98 (50% load)
> 0.94 (30% load)
Harmonic current THDi < 9% (30% linear load), THDi < 6% (50% linear load), THDi < 3% (100% linear load)
THDi < 11% (30% non-linear load), THDi < 8% (50% non-linear load), THDi < 5% (100% non-linear load)
The preceding specifications can be met only when the following conditions are met:
One power source
Input THDv < 2%
Overvoltage category OVC II

Bypass Input Electrical Specifications

Item Item
Rated voltage (line voltage) 380 V AC 400 V AC 415 V AC
Rated current 1823 A 1732 A 1669 A
Power system Three-phase four-wire + PE/Three-phase three-wire + PE
Rated frequency 50/60 Hz
Frequency range 50/60 Hz±6 Hz (adjustable with a tolerance of 0.5–6 Hz, ±2 Hz by default)
Input mode The mains input and bypass input share a power source (by default) or use different power sources.
Overvoltage category OVC II

Battery Electrical Specifications

Item Specifications
Battery type Lead-acid battery (VRLA)
SmartLi: For the supported version, contact technical support.
Battery voltage (lead-acid battery) 360–600 V DC
12 V batteries (30–50 batteries, 0 by default)
40–50 batteries: not derated
38–39 batteries: derated to 90%
34–37 batteries: derated to 80%
30–33 batteries: derated to 70%
2 V batteries (180–300 batteries, 0 by default)
240–300 batteries: not derated
228–239 batteries: derated to 90%
204–227 batteries: derated to 80%
180–203 batteries: derated to 70%
NOTE:
The number of batteries is 0 by default and needs to be set based on site requirements. Batteries have no neutral wire, and an odd number of batteries are supported.
When the UPS works in normal mode, if the actual load rate exceeds the threshold that could trigger battery derating, an output overload alarm is generated.
Nominal discharge current (lead-acid battery) 2660 A (480 V, forty 12 V batteries in standard configuration)
Maximum discharge current (lead-acid battery) 3185 A. It is the EOD current of forty 12 V batteries in standard configuration, that is, two hundred and forty 2 V battery cells (1.67 V/cell).
Battery cold start If a utility power outage occurs, batteries can start the UPS to supply power to loads.
Charger output power The maximum charge power is 15% of power of a single module, and the charge current is limited to 30 A.
Battery string sharing Lead-acid battery: Battery string sharing is supported in a parallel system. No battery is shared by default.
SmartLi 2.0: Battery string sharing is supported in a parallel system. No battery is shared by default.
SmartLi 3.0: Battery string sharing is not supported.
Charging voltage (lead-acid battery) Equalized charging voltage: 2.35 V/cell
Float charging voltage: 2.25 V/cell

Output Electrical Specifications

Item Item
Rated voltage 380 V AC 400 V AC 415 V AC
Rated current 1823 A 1732 A 1669 A
Power system Three-phase four-wire + PE/Three-phase three-wire + PE
Frequency In normal mode, the frequency is synchronous with the bypass input frequency.
In battery mode, the frequency is 50/60 Hz with a tolerance of ±0.05%.
Voltage distortion Linear load THDv < 1% (50–100% load balancing)
Non-linear load THDv < 3% (50–100% load balancing)
Power factor 1
Transfer time Double conversion mode: uninterrupted transfer 0 ms; interrupted transfer ≤ 5 ms
S-ECO mode: 0 ms (supported only by the three-phase four-wire model in the 380 V/400 V/415 V system)
Output voltage imbalance Voltage imbalance: ±1%
Phase imbalance: 120±1° (balanced load and unbalanced load)
Inverter overload capability Inverter overload capability for front-to-back airflow:
100%< load ≤ 105%: long-term running (ambient temperature ≤ 30°C)
100% < load ≤ 105%: transfers to bypass mode after 60 min or longer (ambient temperature > 30°C)
105% < load ≤ 110%: transfers to bypass mode after 60 min or longer
110% < load ≤ 125%: transfers to bypass mode after 10 min or longer
125% < load ≤ 150%: transfers to bypass mode after 1 min or longer
Load > 150%: The inverter can run for 200 ms or longer.
Inverter overload capability for top airflow:
100% < load ≤ 110%: transfers to bypass mode after 60 min or longer
110% < load ≤ 125%: transfers to bypass mode after 10 min or longer (ambient temperature ≤ 30°C)
110% < load ≤ 125%: transfers to bypass mode after 1 min or longer (ambient temperature > 30°C)
125% < load ≤ 150%: transfers to bypass mode after 1 min or longer (ambient temperature ≤ 30°C)
125% < load ≤ 150%: transfers to bypass mode after 20 seconds or longer (ambient temperature > 30°C)
Load > 150%: transfers to bypass mode after 200 ms or longer
Inverter output short-circuit capability If the initial load rate is less than 40%, twice the rated current can be tolerated for 300 ms (that is, the short-circuit current RMS is 3646 A) in the case of inverter output short-circuit.
Bypass overload capability 30°C: runs continuously at 135% load; generates only alarms and depends on overtemperature protection at 135–150% load
40°C: runs continuously at 125% load; generates only alarms and depends on overtemperature protection at 125–150% load
At 40°C, if the load of the bypass single-phase or three-phase is 150%–200%, the bypass will be shut down in 5 min, and the hardware depends on overtemperature protection. If the load of the bypass single-phase or three-phase is greater than 200%, the bypass will be shut down in 1 min, and the hardware depends on overtemperature protection.
Load > 1000%: runs for 100 ms

System Electrical Specifications

Item Specifications
Parallel system reliability Redundancy design for parallel signals
ECO in a parallel system Supported
No-load loss Three-phase four-wire: 9 kW
Three-phase three-wire: 10 kW
Number of parallel UPSs A maximum of four UPSs can be connected in parallel.
NOTE:
For details about a parallel system where three-phase three-wire input and output are connected using a busway, contact marketing engineers.
Power distribution system TN-C, TN-S, TN-C-S, TT
NOTE:
The three-phase three-wire corner-grounded delta power system is not supported.

 

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