6kW Home Commercial Pure Sine Wave Hybrid Inverter
6kW home commercial pure sine wave hybrid inverter is built for projects that need a stable solar inverter plus grid interaction—supporting PV + battery + grid operation in one integrated unit. With built-in MPPT, high energy efficiency, and robust load handling, it is an ideal choice for integrators sourcing a hybrid inverter 6kW class solution for residential and light commercial solar systems.
Beyond basic conversion, it supports load balancing, tariff peak shaving, and valley filling—helping reduce electricity bills and improve self-consumption.
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What Makes This 6kW Hybrid Inverter Project-Friendly
Hybrid Operation: Solar + Grid + Battery
Designed to work as a 6kw hybrid solar inverter, it intelligently coordinates PV generation, battery charging/discharging, and grid supply to keep critical loads stable and optimized.
Peak Shaving & Time-of-Use Optimization
Supports energy strategies such as:
Tariff peak shaving (use battery when grid price is high)
Valley filling (charge battery during low-price periods)
Load balancing to keep output stable under variable demand
Pure Sine Wave Output for Sensitive Loads
As a pure sine wave unit, it provides grid-quality AC power with low interference—important for:
Medical and diagnostic devices
IT equipment and network systems
Precision electronics and automation controllers
Built-in MPPT = Fewer Components, Faster Installation
No external solar charge controller required. The integrated MPPT simplifies wiring, reduces installation time, and improves solar yield.
Compatible With Lithium & Lead-Acid Batteries
The inverter supports Li / lead-acid battery types within a 40–60Vdc battery voltage range, giving installers flexible battery selection.
99.99% Device Compatibility
Designed to integrate smoothly into most energy storage ecosystems.
Applications
Residential Solar + Storage (Self-Consumption)
A strong fit for households that want to store solar energy and use it at night, during peak tariffs, or during grid instability.
Light Commercial Energy Optimization
Suitable for small shops, offices, and facilities using TOU pricing—peak shaving helps reduce operating costs.
Backup-Ready Hybrid Systems
When paired with a battery bank, the inverter can support continuous power delivery during grid fluctuation (system configuration dependent).
Parameters
| Name | HyBrid Inverter |
| Battery Voltage Range | 40-60Vdc |
| Max Charging & Discharging Power | 6kW |
| Battery Type | Li/Lead-acid |
| Product Lifespan | 5+ years |
| Max Recommended PV Power | 6kW |
| Max PV Voltage | 500Vdc |
| Startup Voltage | 120Vdc |
| PV Voltage Range | 120-450Vdc |
| MPPT Voltage Range | 120-450Vdc |
| Rated Grid Frequency | 50/60Hz |
| Max Energy Efficiency | 93% |
| MPPT Efficiency | 97% |
| Protection Degree | IP20 |
| Communication | 485 |
| Max Input Current | 22A |
| Input Voltage Range | 220/230Vac |
| Max Charging Current | 60A |
| Rated Output Power | 6kVA/6kW |
| Max Output Current | 22A |
| Rated AC Output Voltage | 230Vac |
| Rated AC Output Frequency | 50Hz+0.3Hz/60Hz+0.3Hz |
| Operating Temperature | -10°C ~ 60°C |
| Dimensions | 480×305×118 mm |
| Weight | 10.1 kg |
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About us
A decade of energy storage manufacturing excellence.
Residential Solar Energy Storage Battery Solution Manufacturer
TURSAN is a high-tech enterprise integrating R&D, manufacturing, and global sales of lithium battery–based energy storage systems. Founded in 2016, we operate a 20,000+m² production facility producing reliable LiFePO4 power solutions for residential, commercial, and outdoor applications.
Through a strategic partnership with BYD, we co-manufacture larger-capacity, safer, and more environmentally friendly portable power stations and home battery backups. Today we serve global brand owners, distributors, EPC contractors, and project developers in over 60 countries — saving OEM clients up to 20% in annual sourcing cost while meeting the toughest international safety standards.
OEM&ODM Process
Confirm Requirements and Finalise the Solution
We collect all customer specifications: voltage, capacity, dimensions, communication protocol, etc. Then we decide if it is a pure OEM job (build exactly to your drawings) or an ODM job (we provide the design). We issue a clear BOM (bill of materials) and 2D/3D drawings for both parties to sign off, avoiding any later misunderstandings.
Procurement and Incoming Inspection
We purchase all materials according to the BOM: cells, enclosure, brackets, screws, wiring, BMS boards, etc. When goods arrive, we do sampling or 100% inspection. For cells, we measure voltage, internal resistance and check appearance. For structural parts, we check dimensions and hole sizes. Any non‑conforming items are rejected and never go into our warehouse.
Cell Sorting and Matching
We group cells from the same batch by voltage and internal resistance values. We then match cells with the closest parameters into one set (for example, if a string uses 4 cells, the voltage and resistance differences among those 4 must stay within our set limits). This directly affects how long the battery pack will last without performance decay.
Laser Welding and Module Assembly
We fix cells into holders, then laser‑weld the tabs (connectors). We do pull‑force tests on sample weld spots to check strength. After that, we fasten the welded sub‑modules into the enclosure or tray, using torque‑controlled tools to apply the correct tightening force.
BMS Installation and Wiring Connection
We mount the main BMS and slave boards in their designated positions, then plug in all voltage sampling wires and temperature sensors. We always have a two‑person verification of the wiring sequence – this prevents reverse connections that could burn the boards when we power up.
First High‑Voltage Safety Test
We apply high voltage between the positive/negative terminals and the enclosure to measure insulation resistance and withstand voltage. We check for any leakage or breakdown. If this test fails, the module goes back for rework immediately – it does not move forward.
High‑Temperature Standing and Self‑Discharge (K‑Value) Check
We place the modules in a 45 °C room for 24–48 hours. We measure voltage before and after the standing period, then calculate the daily voltage drop (K‑value). Units with excessive drop are rejected because they indicate internal micro‑shorts that could cause early failure later.
Charge/Discharge Aging and Capacity Calibration
We connect the modules to charge/discharge equipment and run several full cycles at the current specified by the customer. During the process, we record actual discharge capacity, charge/discharge efficiency, and the temperature/voltage differences among individual cells. If all data stay within our acceptance limits, we calibrate the final rated capacity. If not, we isolate and analyse the failed units.
Final Inspection, Labelling and Packaging
We re‑measure total voltage, internal resistance and insulation performance. We check appearance for scratches, gaps, or damaged screws. We attach a permanent nameplate (with serial number), UN38.3 hazardous‑goods label, and all required operation warning labels. Then we package the battery with foam or cardboard for shock protection, as per customer requirements, and record the final weight.
Shipment and Document Handover
We verify the shipping quantity, address and consignee. We prepare all accompanying documents: factory test report, MSDS, UN38.3 test summary, and transport condition certificate. We arrange pickup with our logistics partner, and after dispatch we send the tracking number and estimated arrival time to the customer.
Frequently Asked Questions (FAQ)
Q1. What does a hybrid inverter do compared to an off-grid inverter?
A hybrid inverter supports PV + battery + grid coordination, allowing self-consumption, peak shaving, and TOU strategies. Off-grid units typically focus on PV + battery without optimized grid interaction.
Q2. Can it work with lithium batteries and lead-acid batteries?
Yes. It supports Li / lead-acid, within a 40–60Vdc battery voltage range.
Q3. Does it support peak shaving and valley filling?
Yes. It supports tariff peak shaving and valley filling, helping users reduce electricity costs in TOU pricing regions.
Q4. What PV voltage range does it accept?
PV and MPPT ranges are 120–450Vdc, with a maximum PV voltage of 500Vdc. PV string design must stay within the allowed limits.
Q5. Does it include MPPT?
Yes. This is a 6kw hybrid solar inverter class unit with built-in MPPT (97% MPPT efficiency).
Q6. Is the enclosure waterproof?
Protection degree is IP20, which is typically for indoor or protected installations. If you want to claim “waterproof” in marketing text, the spec should match (e.g., IP65). For this model, position it as indoor / protected installation unless you update the IP rating.
Q7. What communication interface is supported?
It supports RS485 for monitoring or integration (depending on your system and software).
Q8. What warranty do you provide?
Standard warranty is 5 years. OEM/ODM warranty terms can be negotiated by project.
Q9. Can it be wall-mounted?
Yes. The unit supports wall mounting and compact installation.
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