Sol-Ark 30K-3P-208V Hybrid Inverter System
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The Sol-Ark 30K-3P-208V Hybrid Inverter System is an all-in-one power management system designed for larger residential customers and light commercial or industrial applications. It combines an inverter, charger controller, and display with remote monitoring while managing power between solar, batteries, the grid, loads, and a generator. With 30,000W of maximum continuous three-phase real power, four MPP trackers, and support for up to 12 units in parallel, it is built for substantial solar and battery-based power systems where coordinated energy management matters.
The system provides up to 30,000W of maximum continuous real power in three-phase operation, with a nominal AC voltage of 120/208V. It also provides up to 83.4A of output current and a 200A maximum grid passthrough current. For off-grid operation, the system can provide up to 45,000VA of peak apparent power for 7 seconds at 125A.
Solar array management is handled through four MPP trackers, with two PV strings per MPPT. The system supports up to 39,000W of PV power at STC, with a nominal PV voltage range of 150–500V, a 150V startup voltage, and a maximum input voltage of 550V. Each MPPT supports up to 36A of operating input current and 55A of short-circuit current.
The Sol-Ark 30K is designed to manage power to and from multiple parts of a hybrid energy system. The system can manage solar, battery, grid, loads, and generator power, making it suitable for grid-tied, off-grid, and battery backup solar systems. Its integrated automatic generator start uses a two-wire start configuration.
The battery section is designed around lithium iron phosphate battery chemistry and provides two battery inputs. The nominal DC voltage is 300V or higher, with an operating range of 160–500V. Maximum battery charge and discharge current is 100A total, or 50A per input, while the stated battery capacity range is 50–9,900Ah. Active BMS communication is required for lithium batteries, using CANBus and RS485 communication.
When a single inverter system is not enough for the planned power architecture, the Sol-Ark 30K can be stacked with up to 12 units in parallel. This provides a way to design larger systems around multiple inverter units rather than relying on a single device. System sizing and configuration should be confirmed for the intended application before purchase.
The system includes a display with remote monitoring, with Wi-Fi and LAN hardware included for communication and monitoring. This gives system operators access to monitoring capabilities without treating the inverter as a standalone black box. The unit also includes integrated PV DC disconnect, ground fault detection, PV rapid shutdown control, PV arc fault detection, and PV input lightning protection.
The Sol-Ark 30K has an IP65 / NEMA 3R enclosure and a stated ambient operating temperature range of -40°C to 60°C, with derating above 45°C. Its listed noise level is below 30 dB at 25°C, while idle consumption with no load is 60W. These specifications provide useful planning information when selecting a location and designing the surrounding power system.
The Sol-Ark 30K is specifically described for larger residential customers and light commercial or industrial applications. Its 120/208V three-phase output, substantial continuous power rating, solar input capacity, battery management, and grid passthrough capabilities make it relevant to larger hybrid power architectures rather than small portable power setups.
The Sol-Ark 30K belongs to a different category from compact portable power stations and smaller standalone inverters. Instead of focusing on portability, it is designed as a substantial hybrid power system capable of coordinating solar, batteries, grid power, loads, and a generator. Its 30,000W continuous three-phase output, 39,000W maximum PV input, 200A grid passthrough, and ability to operate with up to 12 units in parallel reflect a system-oriented approach intended for larger residential and light commercial or industrial applications.
That distinction matters when planning a power system. Customers looking for a small, portable source of electricity should consider a different product category. Customers planning a permanent or larger-scale solar and battery system should evaluate the inverter as part of the complete electrical design, including the intended PV array, battery bank, loads, grid connection, and generator configuration.
The right hybrid inverter depends on the electrical requirements of the complete system, not simply the inverter's headline wattage. The Sol-Ark 30K is particularly relevant when a project calls for three-phase 120/208V output, substantial solar input, high-voltage battery integration, and coordination between multiple energy sources.
This May Be A Good Fit If
Before purchasing, confirm that the planned battery chemistry, battery voltage, BMS communication, PV string configuration, AC requirements, and overall system design match the inverter's stated specifications. Lithium batteries require active BMS communication, and the source specifies CANBus and RS485 communication.
It is designed for grid-tied, off-grid, and battery backup solar systems, with a particular focus on larger residential customers and light commercial or industrial applications.
The system provides up to 30,000W of maximum continuous real power in three-phase operation. It also lists 45,000VA of peak apparent power for 7 seconds in off-grid three-phase operation.
The maximum allowed PV power is 39,000W at STC. The system has four MPP trackers with two PV strings per MPPT.
The listed battery chemistry is lithium iron phosphate. The system has two battery inputs, a nominal DC voltage of 300V or higher, and a 160–500V operating voltage range. Active BMS communication is required for lithium batteries.
Yes. The specifications state that the system is stackable with up to 12 units in parallel. The appropriate configuration should be confirmed for the specific project before purchase.
Sol-Ark 30K-3P-208V Hybrid Inverter System Specifications |
|
|---|---|
| Maximum Allowed PV Power (STC) | 39,000W |
| PV Nominal Voltage Range | 150–500V |
| PV Startup Voltage | 150V |
| Maximum PV Input Voltage | 550V |
| Maximum Operating Input Current Per MPPT | 36A |
| Maximum Short Circuit Current Per MPPT | 55A |
| Number Of MPP Trackers | 4 |
| PV Strings Per MPPT | 2 |
| Maximum AC Coupled Input | 57,600W |
| Nominal AC Voltage (3Φ) | 120/208V |
| Grid Frequency | 50 / 60Hz |
| Maximum Continuous Real Power (3Φ) | 30,000W |
| Maximum Output Current | 83.4A |
| Peak Apparent Power (7s, Off-Grid, 3Φ) | 45,000VA @ 125A |
| Maximum Grid Passthrough Current | 200A |
| Power Factor Output Range | ±0.8 Adjustable |
| Backup Transfer Time | 5ms (Adjustable) |
| CEC Efficiency | 96.5% |
| Maximum Efficiency | 97.5% |
| DC To AC Design | Transformerless DC |
| Stackable | Up To 12 In Parallel |
| Battery Chemistry | Lithium Iron Phosphate |
| Number Of Battery Inputs | 2 |
| Battery Input Terminal Rating | 50A |
| Nominal DC Voltage | ≥300V |
| Battery Operating Voltage Range | 160–500V |
| Battery Capacity Range | 50–9,900Ah |
| Maximum Battery Charge / Discharge Current | 100A (50A Per Input) |
| Charge Controller Type | 3-Stage With Equalization |
| Grid To Battery Charging Efficiency | 96.0% |
| Automatic Generator Start (AGS) | 2-Wire Start – Integrated |
| BMS Communication | CANBus & RS485 |
| Dimensions (H × W × D) | 894 × 528 × 295 mm (35.2 × 20.8 × 11.6 in) |
| Weight | 79.4 kg / 172 lb. |
| Enclosure | IP65 / NEMA 3R |
| Ambient Temperature | -40°C to 60°C, >45°C Derating |
| Noise | <30 dB @ 25°C (77°F) |
| Idle Consumption – No Load | 60W |
| Communication And Monitoring | Wi-Fi & LAN Hardware Included |
| Warranty | 10 Years |
| Certifications And Listings | UL 1741-2021 (Including UL 1741SB), CSA C22.2 No 107.1-16, IEEE 1547-2018, IEEE 1547a-2020, IEEE 1547.1-2020 (SRD V2.0), UL 1699B, CEC, SGIP |
| PV DC Disconnect Switch – NEC 240.15 | Integrated |
| Ground Fault Detection – NEC 690.5 | Integrated |
| PV Rapid Shutdown Control – NEC 690.12 | Integrated |
| PV Arc Fault Detection – NEC 690.11 | Integrated |
| PV Input Lightning Protection | Integrated |
| PV String Input Reverse Polarity Protection | Integrated |
| Surge Protection | DC Type II / AC Type III |
The Sol-Ark 30K-3P-208V Hybrid Inverter System is designed for customers who need more than a basic inverter. With three-phase 120/208V output, 30,000W of continuous real power, substantial PV input capability, high-voltage lithium iron phosphate battery support, remote monitoring, and the ability to manage solar, batteries, grid, loads, and generator power, it provides a strong foundation for larger hybrid energy systems.
At Outbound Power, we understand that choosing an inverter is really about choosing the right foundation for the entire power system. Consider your loads, solar array, battery bank, operating mode, and electrical requirements before ordering. When you are ready to build a thoughtfully planned backup, grid-tied, or off-grid power solution, Outbound Power can help you select equipment based on the actual requirements of your project.
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