Modular Rack Mount Power Supplies Up to 24kW Artesyn

IHP Configurable High Power System – Rack Mount Inverters

Total Power: Up to 24 KW Input Voltage: 180-264 Vac 342-528 Vac Single Phase or 3-Phase # of Outputs: Up to 8

Our engineers will size and configure the right solution to meet your applications’ needs by using a wide variety of plug-in modules that address a large range of voltages and currents. Every project is different and has the same importance for us. Don’t hesitate to get in touch; Helios DC experts will take great care to understand the real needs and objectives of your power system.

19″ Rack Mount Inverters with optional SNMP interface

– Digital Display
– Alarm Relay Contacts
– Inverter mode or UPS mode by switch ( UIP models)
– Protection: Input Undervoltage, Input Overvoltage ,Overload Short circuit , Low battery alarm ,Over temperature

RM – PSW Series of Inverters  offer a wide range of customizable features to meet the stringent specifications of your application

SeriesPower (kVA)PFInput Voltage (VDC)Output Voltage (VAC)
RM-PSW1KVA1U10.8512 V100/110/115/120V(Switch Selectable) RMS±3%
24 V200/220/230/240V(Switch Selectable) RMS±3%
48 V
RM-PSW2KVA1U20.8512 V100/110/115/120V(Switch Selectable) RMS±3%
24 V200/220/230/240V(Switch Selectable) RMS±3%
48 V
RM-PSW3KVA1U30.85 24 V100/110/115/120V(Switch Selectable) RMS±3%
48 V200/220/230/240V(Switch Selectable) RMS±3%
RM-UIPSW2KVA2U2112 V100 ~ 120V (Tune VR)
24 V200~240VAC (Tune VR)
48 V
110 V
220 V
RM-UIPSW3KVA2U3112 V100 ~ 120V (Tune VR)
24 V200~240VAC (Tune VR)
48 V
110 V
220 V
RM-UIPSW5KVA3U5112 V100 ~ 120V (Tune VR)
24 V200~240VAC (Tune VR)
48 V
110 V
220 V

Customizable Options:
1. DC Input Range 2. Conversion time By-pass 3. Alarm Relay Contacts 4. SNMP interface 5. Digital Display

FAQ
Please explain power loss of power supplies.
The power loss of power supplies is the difference between input active power and output power and is calculated with the formulas below.
Power loss= input active power – output power
Input active power can be calculated with the output power ÷ efficiency, so
power loss= (output power ÷ efficiency) – output power.

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