SLC X-PERT
Salicru’s SLC X-PERT series consists of three-phase UPSs that combine very low total cost of ownership (TCO) with very high efficiency and compact design, providing high-quality uninterruptible power for all critical applications. The technology incorporated offers one of the highest efficiencies on the market in VFI mode and 100% of expected battery life.
The SLC X-PERT series maximises the use of the surface occupied thanks to its high power density design. Models from 200 kVA have complete front access, precluding the need for side or rear space, making them easy to maintain and installable side by side, back to back or against a wall. The common battery option further enhances the ability of the SLC X-PERT series to deliver low footprint solutions, freeing space for other equipment.
Guaranteed energy for all environments
Data centres: Ensures the functionality of environments and prevents losses caused by net failures.
IT-Networks: Prevent costs due to service interruptions or loss of information.
Financial services: Maintains online operability of financial transactions and operations.
Industrial processes: Protects productivity in electrically complicated environments.
Telecommunications: Prevents supply failures that can suspend communication between subscribers.
Infrastructures: Safeguards the instruments/equipment and ensures the proper management of the systems.
High-efficiency operating mode disconnects the DC bus battery when it is fully charged, enabling the DC voltage to be lowered to achieve performance of up to 97% working in on-line mode and in turn protecting and extending the life of the batteries.
Ability to parallel systems with up to 6 units (allowing up to 2.4 MW of power to be reached), both for redundant systems, and to increase power capacity.
N+M redundant systems enable critical loads that should be protected with ‘N’ devices to have a redundancy of ‘M’ devices to replace the possible failure of any device, without compromising power supply continuity. Example: a ‘2+1’ SLC X-PERT 200 kVA parallel redundant system makes it possible to power a load of up to 400 kVA, which is tolerant to the failure of one of these 3 UPSs, without the need to transfer to static bypass.
In other cases, the need to parallel devices may be due to increased load, for which it will be possible to add a device(s) to an existing system to increase power capacity
Intermittent battery charging; battery insulation with respect to voltage ripple caused by distorting loads; temperature compensation of float voltage; manual and automatic battery test.
Prolongation of battery life. Temperature compensation prevents excessive recharging and unnecessary overheating of the batteries.
Battery test to detect possible failures early and ensure availability.
Surplus rectifier power, always prioritising power to the loads, can be used for the recharging of greater battery current.
Allows batteries to be recharged faster in cases of long backup, thereby increasing backup availability
10”colour touch screen containing all information about the device’s measurements, alarm situations and operating states. With schematic diagram of operation. Choice of 8 languages.
Ease of handling, complete information.
The UPS’s peak startup currents can be reduced with different settings: sequential startup of the two internal stages (thyristors and PFC), as well as sequential startup in parallel systems (configurable startup time), programmable soft startup time (walk-in time), deactivation of battery charging and delay of quick battery charging activation.
Reducing the peak startup current of the UPS makes it possible to decrease the size of the generator units that supply the devices in case of emergency. This results in lower TCO
- Parallel/redundant kit.
- Extended backup times.
- Common rectifier/bypass input.
- SNMP adapter.
- NIMBUS adapter for remote management.
- External output voltage synchronism.
- Backfeed protection.
- Transformer.
- Battery temperature sensor.
- Top cable entry.
- External maintenance bypass.
- Modbus protocol.















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