PEI8K-3P high voltage 3 phase solar energy inverter 8000 watt

Hybrid Solar Inverter | 8000W | IP65 | Battery: 125VDC - 600VDC | Max. PV: 12000W | 3 Phase

SKU: PEI8K-3P Category:

Prostar PEI8K-3P high voltage 3 phase solar energy inverter 8000 watt can deliver unparalleled performance and efficiency.  With a robust power output of 8000 watts, this inverter is perfect for both residential and commercial applications. Its IP65 rating ensures that hybrid solar inverter 8000 watt can withstand harsh environmental conditions, making it a reliable choice for various settings.

The 3 phase solar energy inverter 8000 watt is a powerful and reliable solution for anyone looking to harness the full potential of solar energy. Its advanced features, high efficiency, and robust design make it an excellent choice for a wide range of applications.

The 3 phase solar energy inverter 8000 watt boasts an impressive efficiency rating of up to 98%, minimizing energy losses and maximizing the utilization of solar power.

PEI8K-3P high voltage 3 phase solar energy inverter 8000 watt

3 Phase Solar Energy Inverter Features

3-Phase Output

Designed for 3-phase systems, this inverter is ideal for larger installations, providing balanced power distribution and enhanced performance for high-demand applications.

Dual MPPT Solar Charge Controller

Maximizes energy harvesting from solar panels by independently tracking the maximum power point of each input, resulting in higher efficiency and performance.

IP65 Protection

Dust-tight and water-resistant, ideal for outdoor installations in various weather conditions.

On/Off Grid Capability

Seamlessly transitions between grid-tied and off-grid modes to ensure continuous power supply.

Lithium Battery Compatibility

Easily connect lithium batteries for efficient energy storage and long lifespan.

Peak Shaving

Reduce peak demand charges by using stored energy during high consumption periods.

High Battery Voltage

Operating at a high battery voltage, the 3 phase solar energy inverter allows for reduced current flow, which minimizes energy loss and enhances the overall lifespan of the battery system.

User-Centric Display

Equipped with an intuitive LCD display that provides clear information on system performance, energy production, and battery status.

Hybrid Solar Inverter Diagram

Prostar PEI-3P 3 phase hybrid solar inverter system connection

 

Best 3 Phase Hybrid Solar Inverter Overview

Prostar PEI-3P 3 phase hybrid solar inverter terminal

LCD Display Information

Prostar PEI-3P 3 Phase ON OFF Grid Solar Inverter LCD Control Panel

CT Sensor Connection

Connecting a CT (Current Transformer) sensor to an IP65 3 Phase Hybrid Solar Inverter requires careful attention to the wiring and configuration to ensure accurate monitoring and measurement of the current.

Prostar PEI-3P 3 Phase ON OFF Grid Solar Inverter Electrical Wiring

Ensure that the CT connected to the live wire of Phase 1 is connected to CT1 input on the inverter, CT for Phase 2 to CT2, and CT for Phase 3 to CT3.

Applications of IP65 Hybrid PV Inverters

The PEI8K-3P high voltage 3 phase solar energy inverter 8000 watt is versatile and can be used in a variety of applications, including:

  • Residential solar power systems
  • Commercial buildings
  • Industrial facilities
  • Remote locations with limited grid access
  • Backup power systems

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Model PEI8K-3P
PHASE 3-phase in/ 3-phase out
Max. PV INPUT POWER 12000W
Rated Output Power 8000W
Parallel Function up to 2 units
Dimension, D x W x H (mm) 560x530x220
Net weight (kgs) 32
PV INPUT (DC)
Nominal DC Voltage/Max. DC Voltage 600VDC / 1000VDC
Start-up Voltage 125VDC
MPPT Voltage Range 180VDC~850VDC
Full Power MPPT Voltage Range 330VDC~850VDC
Max. DC INPUT Current 18A/18A
Max. DC Short-circuit Current 25A/25A
No. of MPPT Trackers 2
No. of String per MPPT Tracker 1/1
GRID OUTPUT (AC)
Rated Output Power 8000W
Max. AC Output Power 8800W
Nominal Output Voltage 380/400/415VAC
Output Frequency 50Hz / 60Hz
Max. Apparent Power from Grid 17.6KVA
Max. Apparent Current from Grid 25.5A
Nominal AC Output Current 11.5A
Max. AC Output Current 12.7A
Power Factor 1 (0.8 leading ~ 0.8 lagging)
Total Harmonic Distortion(THDi) < 3%
AC Grid Tie 3P+N+PE
EPS OUTPUT (AC)
Rated Output Power 8000W
Max. Apparent Power 8800VA
Nominal Output Voltage 380/400/415VAC
Output Frequency 50Hz / 60Hz
Rated Output Current 11.5A
Max. Output Current 12.7A
Total Harmonic Distortion(THDu) <2%
EFFICIENCY
Max. Efficiency (DC/AC) 97.9%
Euro Efficiency 97.4%
MPPT Efficiency 99.9%
BATTERY & CHARGER
Battery Type Lead-acid or Lithium-ion
Nominal DC Voltage 125VDC – 600VDC
Working Voltage Range 150VDC – 550VDC
Max. Charging/Discharging Power 8800W
Rated Charging/Discharging Current 40A
Max. Charging/Discharging Current 50A
Min. Full Power Voltage @EPS 210V
Charging Curve 3 Stages / Equalization
Charging Strategy for Li-battery Self-adaption to BMS
PROTECTION
Protection Island protection / PV reverse polarity protection / Battery reverse polarity protection / Insulation monitoring / Residual current monitoring / AC over current protection / AC over power protection / Back-up output short circuit protection / Short circuit protection / Insulation resistor detection
INTERFACE
HMI LCD, APP
BMS CAN
EMS/Meter RS485/RS485
WiFi Yes
ENVIRONMENT
Operating Temperature -25°C to 60°C
Relative Humidity 0 ~95%(non-condensing)
Altitude 2000m (>2000 derating)
Cooling Natural
Noise < 35dB
Protection Degree IP65
Installation Style Wall-mounted
CERTIFICATION STANDARDS
Grid Regulation Europe: EN 50549-1:2019/AC:2019, Poland:EN50549-1:2019/Rfg:2016/NC Rfg:2018/PTPiREE:2021,
Germany:VDE-AR-N 4105:2018 /DIN VDE V 0124-100(VDE V 0124-100):2020,
South Africa: NRS 097-2-1:2017 Edition 2.1,
UK:G98/G99/1-6:2022,  Spain: UNE217001:2020 /UNE217002:2020/NTS V2.1:2021-07, IEC61727:2004/IEC62116:2014/IEC61683:1999, Hungary:EN50549-1:2019/RFG:2016
Italy: CEI0-21
Safety EMC / Standard IEC/EN 61000-6-1:2019, IEC/EN 61000-6-2:2019, IEC/EN 61000-6-3:2021, IEN/EN 61000-6-4:2019, IEC/EN 61000-3-2:2019/A1:2021, EN 61000-3-3:2013/A2:2021, IEC/EN 61000-3-11:2019, EN 61000-3-12:2011, IEC/EN62109-1:2010, IEC/EN62109-2:2011