UPS5000-E-60 kVA

UPS5000-E-60 kVA

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Description

UPS5000-E-60 kVA

The UPS5000-E-60 kVA UPS is suitable for poor power grids because it supports a wide range of input frequencies which is 40–70Hz, works at full load when the phase voltage is 96–150 V AC and is linearly derated when the phase voltage is 80–96 V AC (excluding 96 V AC).

The UPS5000-E has 5 kA lightning protection, higher than the industry level 2 kA.

The control module (CM) uses a redundant design. Fans have high fault tolerance capability: When a single fan is faulty, the UPS5000-E works at 50% load; when two fans are faulty, the UPS5000-E works at 30% load.

The built-in parallel card supports parallel connection of UPS5000-Es. Built-in bus synchronization controllers (BSCs) support dual-bus configuration.

Intelligent power mode allows you to intelligently control the diesel generator (D.G.) and ensures uninterruptible power supply. The D.G. connection has two scenarios: use with an AC transfer switch (ATS) and reuse.

The UPS5000-E intelligently manages batteries. The number of batteries is adjustable. Batteries have a high fault tolerance capability and are easy to maintain. All these features help increase the battery lifespan by 50%.

The UPS5000-E provides a variety of optional components to address various customer requirements.

 

Tech Specs
Item UPS5000-E-60K-F60
Cabling mode Cables are routed from the top or bottom.
Protection level IP20 (or IP21)
Dimensions (H x W x D) 2000 mm x 600 mm x 850 mm
Communication Dry contacts, RS485, and SNMP
Weight UPS5000-E-60K-F60: 291 kg. Each power module is 32 kg. A maximum of three power modules are supported.
Operating temperature 0–40°C
Storage temperature –40°C to +70°C
Relative humidity 0%–95% RH (non-condensing)
Altitude 1000–4000 m
When the altitude is above 1000 m, the load decreases by 1% for each additional 100 m.
Noise At atmospheric pressure (25°C):
50% load: 60 dB
75% load: 63 dB
100% load: 68 dB
Input system Three-phase five-wire
Rated input voltage 208 V AC/220 V AC/230 V AC (line voltage)
Input voltage tolerance 80–150 V AC (phase voltage)
96–150 V AC: not derated; 80–96 V AC: linearly derated
Input frequency range 40–70 Hz
Input power factor > 0.99 (full load)
> 0.98 (half load)
THDi < 3%
Input system Three-phase five-wire
Rated input voltage 208 V AC/220 V AC/230 V AC (line voltage)
Input frequency range 50 Hz/60 Hz±6 Hz
Bypass synchronization tracking range 50 Hz/60 Hz±6 Hz
Overvoltage category OVC II
Battery voltage (lead-acid battery) 192–288 V DC (16–24 batteries, 20 by default)
NOTE:
The default number of batteries is 0. Set this parameter based on site requirements.
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.
Battery detection (lead-acid battery) The optional BMU monitors the status of each battery.
Battery management Intelligent battery management
One-button cold start If a mains power outage occurs, batteries can start the UPS to supply power to loads.
Battery string sharing (lead-acid battery) Battery string sharing is supported in a parallel system. Battery strings are shared by default.
Charging voltage (lead-acid battery) Equalized charging voltage: 2.35 V/cell
Float charging voltage: 2.25 V/cell
Output system Three-phase five-wire
Voltage 208 V AC/220 V AC/230 V AC±1% (line voltage)
Frequency In normal mode, the mains frequency is synchronous with the bypass input frequency.
In battery mode, the frequency is 50 Hz or 60 Hz (tolerance ±0.25%).
THDv THDv < 2% at full linear load; THDv ≤ 5% at full non-linear load
Output power factor 1
Transfer time 0 ms
Output voltage unbalance Voltage unbalance: ±3%; phase unbalance: ±2°
Overload capability Inverter overload capability:
105% < load ≤ 110%: transfers to bypass mode after 60 min
110% < load ≤ 125%: transfers to bypass mode after 10 min
125% < load ≤ 150%: transfers to bypass mode after 1 min
Bypass overload capability:
Load ≤ 135%: runs continuously in bypass mode at 30°C or less
1000% load: runs for 100 ms
Redundancy design The auxiliary power supplies, centralized controllers, and parallel signals use redundancy design.
Number of parallel UPSs 2
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