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Hybrid Inverter 5048E 
Ortech Power Solutions SAS 
Apr 2014
Overview
RĂ©alisations
What is Hybrid Inverter? 
Energy saving & 
Backup power solution 
(Solar System) 
Hybrid Power Sources
Who Needs Hybrid Inverter? 
Electricity tariff is expensive 
Grid outage all the time 
Plenty of sunlight
Key Features 
 Ideal energy saving solution for home/office applications 
 Supports AC generator as input 
 Reliable backup power supported by both PV (solar) system and 
battery bank 
 Batteries can be charged by both PV system and AC input 
 Automatically switches between 9 operation modes to optimize the 
energy consumption 
 Built-in 20/35A battery charger 
 Built-in 40A circuit breaker 
 Built-in MPPT * for optimized PV energy harvest 
 Compliance with CE (IEC 62109-1 /-2, IEC 62040-1 /-2) 
MPPT: Maximum Power Point Tracker
Product Outlook
Major Parts 
(3) USB Port 
(4) LED Indicators 
(1) Upper Control Panel 
(8) Battery Terminal Block 
(2) Lower Control Panel 
(9) AC Output Terminal Block 
(to loads) 
(5) Power Switch 
(6) Grid Protect 
Breaker 
(7) AC Input 
Terminal Block 
(from grid) 
(10) PV String Input 
Connectors
Typical Application
Energy Saving 
In day time, PV power is strong enough to fully supply AC loads 
without consuming the power from AC grid 
‱ Built-in MPPT leads to 30%more PV energy production 
*based on the case in India 
‱ Up to 40%energy saving per day* 
‱ Up to $1,000 saving per year*
Operation Modes 
Automatically switch between modes according to the operating conditions
Operation Modes: LINE-PV 
 AC loads are supplied by AC grid 
 PV is strong enough to charge battery bank 
without consuming power from AC grid 
AC Grid or 
Generator 
PV System 
Battery 
Bank 
AC Loads 
Strong
Operation Modes: SOLAR-PV 
 AC loads are fully supplied by PV system 
 No power consumption from AC grid 
 Back to LINE-PV mode when BAT <60% 
 Surplus PV power will charge battery 
Strong 
>90% charged
Operation Modes: LINE-HYBRID 
 AC loads are supplied by AC grid 
 The power to charge battery bank firstly 
comes from PV system and the rest comes 
from AC grid 
Less Power 
AC Grid or 
Generator 
PV System 
Battery 
Bank 
AC Loads
Operation Modes: SOLAR-HYBRID 
 AC loads are supplied firstly by PV system 
and the rest by battery bank 
 No power consumption from AC grid 
Less Power
Operation Modes: LINE MODE 
 AC grid not only supplies AC loads but also 
charges battery bank 
No Power 
AC Grid or 
Generator 
PV System 
Battery 
Bank 
AC Loads
Operation Modes: INV MODE 
 AC loads are fully supplied by PV system as 
backup power 
 No power consumption from battery bank 
 Surplus PV power will charge battery 
Outage 
Strong
Operation Modes: INV-HYBRID 
 AC loads are supplied firstly by PV system 
and the rest by battery bank 
 The power from PV system helps to prolong 
the backup time 
AC Grid or 
Generator 
PV System 
Battery 
Bank 
AC Loads 
Outage 
Less Power
Operation Modes: INV MODE 
 AC loads are supplied only by the battery 
bank 
 The backup time is subject to the capacity 
of battery bank 
Outage 
No Power 
AC Grid or 
Generator 
PV System 
Battery 
Bank 
AC Loads
Operation Modes: CHARGE MODE 
 AC grid is not available to charge the 
battery 
 PV power take over to charge the battery as 
long as no AC load is connected 
Outage
Product Specification (1/2)
Product Specification (2/2)

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Hybrid Solar Inverter 5kVA/4.2kW/48VDC/400Ah Off-Grid Generation

  • 1. Hybrid Inverter 5048E Ortech Power Solutions SAS Apr 2014
  • 4. What is Hybrid Inverter? Energy saving & Backup power solution (Solar System) Hybrid Power Sources
  • 5. Who Needs Hybrid Inverter? Electricity tariff is expensive Grid outage all the time Plenty of sunlight
  • 6. Key Features  Ideal energy saving solution for home/office applications  Supports AC generator as input  Reliable backup power supported by both PV (solar) system and battery bank  Batteries can be charged by both PV system and AC input  Automatically switches between 9 operation modes to optimize the energy consumption  Built-in 20/35A battery charger  Built-in 40A circuit breaker  Built-in MPPT * for optimized PV energy harvest  Compliance with CE (IEC 62109-1 /-2, IEC 62040-1 /-2) MPPT: Maximum Power Point Tracker
  • 8. Major Parts (3) USB Port (4) LED Indicators (1) Upper Control Panel (8) Battery Terminal Block (2) Lower Control Panel (9) AC Output Terminal Block (to loads) (5) Power Switch (6) Grid Protect Breaker (7) AC Input Terminal Block (from grid) (10) PV String Input Connectors
  • 10. Energy Saving In day time, PV power is strong enough to fully supply AC loads without consuming the power from AC grid ‱ Built-in MPPT leads to 30%more PV energy production *based on the case in India ‱ Up to 40%energy saving per day* ‱ Up to $1,000 saving per year*
  • 11. Operation Modes Automatically switch between modes according to the operating conditions
  • 12. Operation Modes: LINE-PV  AC loads are supplied by AC grid  PV is strong enough to charge battery bank without consuming power from AC grid AC Grid or Generator PV System Battery Bank AC Loads Strong
  • 13. Operation Modes: SOLAR-PV  AC loads are fully supplied by PV system  No power consumption from AC grid  Back to LINE-PV mode when BAT <60%  Surplus PV power will charge battery Strong >90% charged
  • 14. Operation Modes: LINE-HYBRID  AC loads are supplied by AC grid  The power to charge battery bank firstly comes from PV system and the rest comes from AC grid Less Power AC Grid or Generator PV System Battery Bank AC Loads
  • 15. Operation Modes: SOLAR-HYBRID  AC loads are supplied firstly by PV system and the rest by battery bank  No power consumption from AC grid Less Power
  • 16. Operation Modes: LINE MODE  AC grid not only supplies AC loads but also charges battery bank No Power AC Grid or Generator PV System Battery Bank AC Loads
  • 17. Operation Modes: INV MODE  AC loads are fully supplied by PV system as backup power  No power consumption from battery bank  Surplus PV power will charge battery Outage Strong
  • 18. Operation Modes: INV-HYBRID  AC loads are supplied firstly by PV system and the rest by battery bank  The power from PV system helps to prolong the backup time AC Grid or Generator PV System Battery Bank AC Loads Outage Less Power
  • 19. Operation Modes: INV MODE  AC loads are supplied only by the battery bank  The backup time is subject to the capacity of battery bank Outage No Power AC Grid or Generator PV System Battery Bank AC Loads
  • 20. Operation Modes: CHARGE MODE  AC grid is not available to charge the battery  PV power take over to charge the battery as long as no AC load is connected Outage