UPS5000-H-1200 kVA
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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.
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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