| Energy Architecture | PV + Battery + Grid Integration |
| Expansion Approach | Parallel Multi-Inverter Configuration |
| Delivery Time | 10-15 Days for Samples; 30-40 Days for Bulk Production |
| Operating Flexibility | Grid-Tied / Backup / Off-Grid |
| Payment Terms | L/C,T/T,Western Union |
| PV Array Strategy | Triple-MPPT Multi-String Solar Design |
| Battery Platform | 48V-Class Energy Storage System |
| AC System Design | High-Current AC Pass-Through |
| Supply Ability | 5000 Sets per Month |
| Power Positioning | High-Power Single-Phase Hybrid Inverter |
| Buyer Profile | Solar EPC / Installers / ESS Integrators |
| Packaging Details | Heavy-Duty Wooden Case with Protective Foam |
| Place of Origin | China |
| Model Number | INV-16KW-51.2V-W |
| Brand Name | Voltertech |
| Certification | MSDS |
View Detail Information
Explore similar products
48V 6kW Single Phase Hybrid Solar Inverter With 6kW PV Input Parallel Operation
Single Phase 6kW 48V Solar Inverter With 9kW PV Input 9 Unit Parallel Support
10.2kW Solar Inverter 48V With 10.8kW MPPT Input 20.4kVA Surge
Compact 1.2kW Solar Inverter For 12.8V Batteries With 120A Charging
Product Specification
| Energy Architecture | PV + Battery + Grid Integration | Expansion Approach | Parallel Multi-Inverter Configuration |
| Delivery Time | 10-15 Days for Samples; 30-40 Days for Bulk Production | Operating Flexibility | Grid-Tied / Backup / Off-Grid |
| Payment Terms | L/C,T/T,Western Union | PV Array Strategy | Triple-MPPT Multi-String Solar Design |
| Battery Platform | 48V-Class Energy Storage System | AC System Design | High-Current AC Pass-Through |
| Supply Ability | 5000 Sets per Month | Power Positioning | High-Power Single-Phase Hybrid Inverter |
| Buyer Profile | Solar EPC / Installers / ESS Integrators | Packaging Details | Heavy-Duty Wooden Case with Protective Foam |
| Place of Origin | China | Model Number | INV-16KW-51.2V-W |
| Brand Name | Voltertech | Certification | MSDS |
| High Light | 16kW Hybrid Inverter ,48V Solar Inverter ,3 MPPT Inverter | ||
The 16kW 48V Single Phase Hybrid Solar Inverter with 3 MPPT IP65 combines high single-phase AC output with a larger photovoltaic input section and three MPPT trackers for multi-string solar system design.
The inverter provides 16000W rated AC output, supports up to 21800W of PV input and uses a 48Vdc battery platform with up to 250A charging current. Grid-tied, off-grid and hybrid operating specifications allow PV, battery and AC power to be integrated within one system.
The PV input section supports up to 21800W while the inverter provides 16000W rated AC output. This gives system designers flexibility when matching the photovoltaic array to the required AC output.
Maximum DC voltage is 520Vdc and the MPPT operating range is 50–450Vdc. The final PV string design must therefore remain within both the voltage and current limits of the inverter.
Unlike the lower-power versions in this inverter series that use two MPPT trackers, the 16kW model is specified with three MPPT trackers.
The parameter sheet lists the MPPT input current arrangement as 18A + 18A + 36A. This provides additional flexibility when the PV array needs to be divided across multiple solar input groups.
The inverter provides 16000W rated output with a nominal AC output current of 69.6A at the specified 220V, 230V or 240V output options.
Whether 16kW is the correct inverter size depends on the loads that may operate simultaneously. Peak demand and the starting characteristics of larger electrical equipment should be considered when sizing the system.
The battery side uses a nominal 48Vdc architecture and specifies maximum solar charging current, maximum AC charging current and maximum total charging current of 250A.
Maximum charging power for the 16kW model is specified at 14000W at 56V. CAN and RS485 interfaces are available for communication with compatible battery systems.
For 51.2V LiFePO4 batteries commonly used in 48V-class energy storage systems, the exact battery operating voltage, allowable current, charging parameters and BMS communication protocol should be checked before confirming compatibility.
The technical specification lists maximum AC input current as 100A with pass-through operation for the 16kW model.
The actual AC-side installation, conductor sizing, circuit protection and allowable loads should be determined according to the complete electrical design and local installation requirements.
Swipe left or right to view the complete specification table.
| Parameter | Specification |
|---|---|
| Rated Output Power | 16000W |
| Maximum PV Input Power | 21800W |
| Maximum Charging Power | 14000W @ 56V |
| Maximum DC Voltage | 520Vdc |
| MPPT Voltage Range | 50–450Vdc |
| MPPT Trackers / Input Current | 3 / 18A + 18A + 36A |
| Nominal AC Output Voltage | 220 / 230 / 240VAC |
| Nominal Output Current | 69.6A |
| Nominal Battery Voltage | 48Vdc |
| Maximum Charging Current | 250A |
| Maximum AC Input Current | 100A (Pass-Through) |
| Maximum Conversion Efficiency | 97% |
| Communication | RS485 / CAN / Wi-Fi / Dry Contact |
| Protection Rating | IP65 |
| Dimensions | 637.5 × 491 × 300.5mm |
| Net Weight | 50kg |
The 16kW model does more than increase AC output. It also increases the maximum PV input and changes the PV architecture from two MPPT trackers to three.
For a project that requires more AC output or a larger multi-string PV array, the 16kW version provides additional capacity. If the load and solar array remain within the 12kW model's limits, selecting 16kW simply for a larger number is not necessary.
The inverter series supports up to six units for single-phase parallel operation. The specification also lists three units for three-phase supply.
Parallel operation should be confirmed according to the required total power, phase arrangement, battery system and project electrical architecture.
The inverter provides 16000W rated AC output, but suitability depends on the maximum loads expected to operate at the same time. The actual load calculation should include both normal running power and the starting requirements of larger equipment.
The technical specification allows up to 21.8kW of PV input. The final PV array must also remain within the 520V maximum DC voltage, 50–450V MPPT operating range and specified MPPT input current limits.
A 20kW PV array is below the specified 21.8kW maximum PV input power. However, total wattage alone is not enough to confirm compatibility. PV string voltage and current must also be checked against the inverter limits.
Three MPPT trackers allow the PV array to be divided across more independent tracking inputs. This can provide additional design flexibility for a multi-string solar system, subject to the specified voltage and current limits.
The inverter uses a nominal 48Vdc battery architecture and can charge at up to 250A. Battery selection should consider required backup energy, battery current capability, charging limits and communication compatibility rather than capacity in kWh alone.
51.2V LiFePO4 batteries are commonly used in 48V-class energy storage systems. Compatibility should still be confirmed from the exact battery operating voltage, current capability, charging parameters and CAN or RS485 communication protocol.
The 16kW model provides higher rated AC output, increases maximum PV input from 16.2kW to 21.8kW and uses three MPPT trackers instead of two. Both models list a maximum charging current of 250A. The appropriate choice depends on the actual load and PV array design.
Yes. The supplied specification includes off-grid operating parameters and pure sine wave battery-mode output. Actual off-grid performance depends on the available PV generation, battery system and connected loads.
Yes. The inverter series specifies parallel operation of up to six units for single-phase supply and three units for a three-phase configuration. Final system design should be confirmed before installation.
Provide the solar panel model and quantity, PV string arrangement, battery brand and model, maximum simultaneous load, grid voltage and required backup or off-grid function. These details help check inverter sizing, MPPT configuration and battery compatibility.
Send us your solar panel specifications, planned string arrangement, battery model and maximum load. We can help check the 21.8kW PV input, three-MPPT configuration and battery compatibility before ordering.
Check Your 16kW Inverter ConfigurationCompany Details
Business Type:
Manufacturer
Year Established:
15 Years
Total Annual:
5000000-10000000
Employee Number:
50~100
Ecer Certification:
Verified Supplier
/* ========================================= VOLTERTECH ABOUT US Lightweight responsive version Primary: #4E2F18 Accent: #D6AF88 ========================================= */ .vt-about-page, .vt-about-page * { box-sizing: border-box; } .vt-about-page { width... /* ========================================= VOLTERTECH ABOUT US Lightweight responsive version Primary: #4E2F18 Accent: #D6AF88 ========================================= */ .vt-about-page, .vt-about-page * { box-sizing: border-box; } .vt-about-page { width...
Get in touch with us
Leave a Message, we will call you back quickly!