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Deye

Deye Hybrid Inverter HV 12kW 2MPPT | SUN-12K-SG01HP3-EU-AM2

Codice Prodotto: DEYE-SUN-12K-SG01HP3-EU-AM2

1.079,00 €

+ IVA in base al paese

High-voltage three-phase hybrid inverter with 12 kW nominal power and 2 MPPTs, designed for advanced residential and C&I solar + storage systems. Supports HV batteries, grid-tied, off-grid, and backup operation.

Key Features

  • Three-phase hybrid inverter with full grid-tied and battery-supported operation
  • Supports high-voltage lithium battery systems via direct DC coupling
  • Designed for self-consumption optimization, backup power supply, and energy arbitrage
  • Suitable for on-grid, hybrid, and backup-capable solar PV systems
  • Rated AC output power: 12 kW
  • Three-phase grid connection (L1 / L2 / L3)
  • Supports balanced and unbalanced phase loads
  • Power factor adjustable within standard grid requirements
  • Full compliance with European grid codes and anti-islanding regulations
  • Capable of export limitation and zero-export operation when required
  • 2 independent MPPT trackers for optimized energy harvesting
  • Allows connection of multiple PV string configurations with different orientations
  • Maximum PV input voltage: up to 1000 V DC
  • Wide MPPT voltage operating range for increased design flexibility
  • High input current capability per MPPT for compatibility with modern high-power PV modules
  • Supports long string configurations, reducing DC cabling losses and BOS costs
  • Compatible with high-voltage lithium battery systems
  • Bidirectional DC power flow for charging and discharging
  • Supports intelligent battery charging strategies based on PV production, grid conditions, and user priorities
  • Enables time-of-use optimization and peak shaving
  • Seamless integration with Deye-compatible HV battery systems via CAN communication
  • Integrated backup power capability for critical loads
  • Fast transfer time from grid-connected mode to backup mode
  • Supports continued operation during grid outages when paired with battery storage
  • Backup power available on all phases depending on system configuration
  • Designed for high reliability in off-grid or unstable grid environments
  • Maximum efficiency: up to 97.6%
  • European efficiency: approximately 97%
  • Optimized power electronics to minimize conversion losses
  • High efficiency maintained across wide load and voltage ranges
  • Advanced thermal management ensures stable performance under continuous operation
  • Active cooling system with intelligent thermal control
  • Ensures stable inverter operation under high ambient temperatures
  • Designed for indoor and outdoor installation
  • Robust enclosure suitable for demanding environmental conditions
  • Wide operating temperature range suitable for European climates
  • DC overvoltage and overcurrent protection
  • AC overvoltage and short-circuit protection
  • Insulation resistance monitoring
  • Residual current detection
  • Anti-islanding protection in compliance with grid regulations
  • Battery protection via integrated communication and control logic
  • Comprehensive fault detection and system shutdown mechanisms
  • CAN interface for battery communication
  • RS485 interface for system integration
  • Compatible with Deye monitoring platforms
  • Supports remote monitoring, data logging, and diagnostics
  • Enables firmware updates and parameter configuration remotely
  • Real-time system performance visualization and fault analysis
  • Wall-mounted design with compact footprint
  • Clearly labeled DC, AC, and communication terminals
  • Simplified commissioning via integrated display and configuration interface
  • Designed for fast installation and service access
  • Suitable for residential and commercial energy storage projects
  • Residential solar PV systems with battery storage
  • Commercial self-consumption and peak shaving installations
  • Hybrid PV systems with backup power requirements
  • Grid-constrained locations requiring export control
  • Future-ready solar installations prepared for energy storage expansion

Disponibile

1

Specifiche Tecniche

Generale

Marca
Deye
Modello
Deye Hybrid Inverter HV 12kW 2MPPT | SUN-12K-SG01HP3-EU-AM2
SKU
DEYE-SUN-12K-SG01HP3-EU-AM2
Potenza Erogata
12000 W
Tensione
600 V DC (nominal)
Efficienza
97.6 %
Dimensioni
550 × 400 × 850 mm
Peso
30.5 kg
Garanzia
120 months

Tecnico

Tipo di Batteria
LiFePO₄ (LFP)
Tensione Batteria
High Voltage (HV system)
Corrente Massima di Carica
50 A
Corrente Massima di Scarica
50 A
Tensione di Ingresso
160–850 V DC
Tensione di Uscita
3/N/PE, 230/400 V AC
Frequenza
50 / 60 Hz
Potenza Massima FV
18,000 W
Tensione Massima FV
1000 V DC
Corrente Massima FV
26 A per MPPT
Potenza Nominale
12000 W
Potenza di Picco
18000 W
Potenza di Picco Istantaneo
18000 W
Tempo di Trasferimento
<10 ms
THD
< 3 %
Fattore di Potenza
0.8 leading to 0.8 lagging
Temperatura di Esercizio
-25°C to +60°C
Grado di Protezione
IP65
Raffreddamento
Smart forced air cooling
Livello di Rumore
< 45 dB
Certificazioni
CE, IEC 62109, IEC 61727, EN 50549, VDE-AR-N 4105, G98/G99
Compatibilità
Compatible with Deye HV battery systems and third-party HV batteries supporting CAN/RS485 protocols
Comunicazione
CAN, RS485, Ethernet, WiFi (optional), 4G (optional)
Display
Color LCD with physical control buttons
Monitoraggio
Deye Smart Cloud monitoring, web portal and mobile app, real-time data and remote configuration
Funzionamento in Parallelo
Up to 10 units in parallel (on-grid and off-grid operation)
Connesso alla Rete
Yes, with anti-islanding protection
Modalità di Ricarica
Solar, Grid, Generator
Tipo di Installazione
Wall-mounted
Opzioni di Montaggio
Wall mounting bracket included

Deye Hybrid Inverter HV 12kW | SUN-12K-SG01HP3-EU-AM2

The Deye SUN-12K-SG01HP3-EU-AM2 is a three-phase, high-voltage hybrid inverter engineered for advanced photovoltaic systems with integrated energy storage. It is designed to meet the technical and operational requirements of modern residential, commercial, and light industrial solar installations where efficiency, flexibility, and grid compliance are critical.


General System Architecture

  • Three-phase hybrid inverter with full grid-tied and battery-supported operation
  • Supports high-voltage lithium battery systems via direct DC coupling
  • Designed for self-consumption optimization, backup power supply, and energy arbitrage
  • Suitable for on-grid, hybrid, and backup-capable solar PV systems


AC Output and Grid Interaction

  • Rated AC output power: 12 kW
  • Three-phase grid connection (L1 / L2 / L3)
  • Supports balanced and unbalanced phase loads
  • Power factor adjustable within standard grid requirements
  • Full compliance with European grid codes and anti-islanding regulations
  • Capable of export limitation and zero-export operation when required


Photovoltaic Input and MPPT Configuration

  • 2 independent MPPT trackers for optimized energy harvesting
  • Allows connection of multiple PV string configurations with different orientations
  • Maximum PV input voltage: up to 1000 V DC
  • Wide MPPT voltage operating range for increased design flexibility
  • High input current capability per MPPT for compatibility with modern high-power PV modules
  • Supports long string configurations, reducing DC cabling losses and BOS costs


Battery Integration and Energy Storage

  • Compatible with high-voltage lithium battery systems
  • Bidirectional DC power flow for charging and discharging
  • Supports intelligent battery charging strategies based on PV production, grid conditions, and user priorities
  • Enables time-of-use optimization and peak shaving
  • Seamless integration with Deye-compatible HV battery systems via CAN communication


Backup and EPS Functionality

  • Integrated backup power capability for critical loads
  • Fast transfer time from grid-connected mode to backup mode
  • Supports continued operation during grid outages when paired with battery storage
  • Backup power available on all phases depending on system configuration
  • Designed for high reliability in off-grid or unstable grid environments


Efficiency and Performance

  • Maximum efficiency: up to 97.6%
  • European efficiency: approximately 97%
  • Optimized power electronics to minimize conversion losses
  • High efficiency maintained across wide load and voltage ranges
  • Advanced thermal management ensures stable performance under continuous operation


Cooling and Environmental Resistance

  • Active cooling system with intelligent thermal control
  • Ensures stable inverter operation under high ambient temperatures
  • Designed for indoor and outdoor installation
  • Robust enclosure suitable for demanding environmental conditions
  • Wide operating temperature range suitable for European climates


Protection and Safety Features

  • DC overvoltage and overcurrent protection
  • AC overvoltage and short-circuit protection
  • Insulation resistance monitoring
  • Residual current detection
  • Anti-islanding protection in compliance with grid regulations
  • Battery protection via integrated communication and control logic
  • Comprehensive fault detection and system shutdown mechanisms


Communication and Monitoring

  • CAN interface for battery communication
  • RS485 interface for system integration
  • Compatible with Deye monitoring platforms
  • Supports remote monitoring, data logging, and diagnostics
  • Enables firmware updates and parameter configuration remotely
  • Real-time system performance visualization and fault analysis


Installation and System Integration

  • Wall-mounted design with compact footprint
  • Clearly labeled DC, AC, and communication terminals
  • Simplified commissioning via integrated display and configuration interface
  • Designed for fast installation and service access
  • Suitable for residential and commercial energy storage projects


Typical Applications

  • Residential solar PV systems with battery storage
  • Commercial self-consumption and peak shaving installations
  • Hybrid PV systems with backup power requirements
  • Grid-constrained locations requiring export control
  • Future-ready solar installations prepared for energy storage expansion


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