
Techfine GA PRO 4/6.2 kW dual-output inverter: Verify PV, Battery and AC Configuration
This page structures the current source table for the Techfine GA PRO 4/6.2 kW dual-output inverter. It keeps member ratings, PV inputs, battery routes and AC data in their exact family context instead of turning a headline into a complete project design. Dual-output wording does not prove simultaneous-load allocation, transfer behavior or included wiring.
Current source record: GA PRO 4/6.2 kW dual-output inverter; public table values are route evidence, not a released site design or supply schedule.
Current source parameter table
This table is preserved from the current source record. Read it with the identity, compatibility and document boundaries below; unresolved conflicts are not corrected by assumption.
| Model | GA4024SMH | GA6248SMH |
|---|---|---|
| AC Input | ||
| Input Formation | L+N+PE | |
| AC Input | 220/230/240VAC | |
| Input Voltage Range | 90-280VAC±3V(Normal Mode) 170-280VAC±3V (UPS Mode) | |
| Frequency | 50/60Hz(Adaptive) | |
| Inverter Output | ||
| Rated Power | 4000W | 6200W |
| Dual Output Power | 4000W/4500W | 6200W/6500W |
| Output Voltage(AC) | 220/230/240VAC±5% | |
| Output Frequency | 50/60Hz±0.1% | |
| Output Wave | Pure Sine Wave | |
| Transfer Time(Adjustable) | 10ms for Computer Equipment,20ms for Household Equipment | |
| Peak Power | 8000VA | 12400VA |
| Overload Ability | Battery Mode: 11s@105%~150% Load; 2s@150%~200% Load; 400ms@>200% Load | |
| Grid connected Operation | ||
| Output Voltage | 220/230/240VAC | |
| Grid Voltage Range | 170-265VAC | |
| Grid Frequency Range | 49-51±1Hz/59-61±1Hz | |
| Output Current | 17.4A | 26.9A |
| Power Factor Range | >0.99 | |
| Max efficiency (DC/AC) | >98% | |
| Battery Charging | ||
| Rated Voltage | 24VDC | 48VDC |
| Constant Charging Voltage | 28.2VDC | 56.4Vdc |
| Float Charging Voltage | 27VDC | 54VDC |
| PV Input & Charging | ||
| PV Charging Method | MPPT | |
| Max PV Input Power | 6500W | 8500W |
| PV Input Voltage Range | 60~500VDC | 60~500VDC |
| MAX PV Input Voltage | 500VDC | 500VDC |
| MAX PV Input Current | 27A | 27A |
| MAX PV Charge Current | 120A | 120A |
| MAX AC Charge Current MAX Charge Current | 100A 120A | 100A 120A |
| Communication & Display | ||
| LCD | Can display operating mode/load/input/output | |
| RS232 | 5PIN/Pitch2.54mm,Baud Rate 2400 | |
| Expansion Slot Communication Interface | Lithium Battery BMS Communication Card,WIFI 2×5PIN/Pitch2.54mm | |
| Parallel Interface | Not Support Parallel | |
| Environmental Conditions | ||
| Operating Temperature | 0°C~40°C | |
| Storage Temperature | -15°C~60°C | |
| Ork Altitude | No more than 1000m, If 1000m<,Rate power will lower, MAX 4000m, Refer | |
| Operating Environment Humidity | Non Condensing | |
| Noise | <50dB | |
| Mechanical | ||
| L*W*H(mm) | 495*312*125mm | |
Current document status
Request the exact model/suffix datasheet, manual, nameplate, PV/battery settings, wiring diagram, firmware/options list and destination evidence before releasing an order.
Current table evidence
Match the exact member before designing the system
Power, PV, battery and AC rows can change within a family; retain the selected member throughout the RFQ.
Member and rating
GA4024SMH / GA6248SMH: 4 / 6.2 kW
AC route
The displayed table uses single-phase 220/230/240 VAC. Confirm phase, voltage, frequency, neutral/ground, generator and grid-code requirements for destination.
PV route
MPPT; 500 VDC maximum; 6.5 / 8.5 kW PV input
Battery route
The displayed battery route is 24 V or 48 V by member. Confirm chemistry, BMS protocol, current limits, temperature and approved settings.
Hybrid inverter RFQ checks
Six checks before finalizing the inverter
A complete RFQ must tie the selected member to PV strings, battery, AC loads, grid/backup operating mode and evidence.
Exact code and member
Request the full model/suffix, nameplate, revision and table row; do not quote a family power range as one released unit.
PV strings
Provide module Voc/Vmp/Imp, cold temperature, series/parallel layout, MPPT allocation, cable loss and protection; check every exact-model PV limit.
Battery and BMS
Confirm nominal voltage, usable energy, current, BMS/CAN/RS485 pairing, charge/discharge limits, settings and warranty conditions for the selected inverter.
AC and loads
Define phase, service voltage, continuous/peak load, motor inrush, critical circuits, neutral/grounding, generator and load distribution.
Grid, backup and controls
Confirm permitted grid code, export/CT/meter topology, transfer path, backup behavior, parallel route, monitoring, firmware and commissioning responsibilities.
Documents and supply
Request current manual, wiring/one-line, protection schedule, exact compliance evidence, accessories/BOM, warranty, sample, lead time and substitution controls.
Configuration boundaries
A hybrid-inverter family table is not a complete electrical scope
Project suitability depends on the exact selected member and the PV, battery, AC, protection and regulatory design.
Family boundary
Dual-output wording does not prove simultaneous-load allocation, transfer behavior or included wiring.
PV watts, Voc and MPPT differ
Rated PV watts, cold Voc and MPPT operating range are separate limits. Do not select strings from one headline number.
Battery labels are not approval
A voltage or chemistry label does not prove BMS protocol, current, charge settings, temperature behavior or warranty compatibility.
Backup and grid are project functions
Transfer timing, export control, generator behavior, parallel operation and grid acceptance require the exact manual, wiring and local project evidence.
Continue the system review
Prepare a documented hybrid-system RFQ
Use the existing system guidance to define actual loads, energy, PV strings and technical evidence.
Battery and backup sizing guide
Record usable energy, power, reserve, battery limits, loads and temperature before stating backup performance.
Review sizing inputs →Solar backup planning
Separate grid, backup and critical-load scope, then define the PV, battery and protection design.
Review backup scope →Hybrid inverter FAQ
Questions to close before quotation
The final answer must come from the selected member, current documents and installation design.
Which rating applies to this GA PRO 4/6.2 kW dual-output inverter?
The current table lists GA4024SMH / GA6248SMH: 4 / 6.2 kW. Request the exact code/suffix and nameplate because family members have different electrical and PV/battery rows.
Can the inverter be paired with any battery of the displayed voltage?
No. Confirm chemistry, BMS protocol, current limits, charge/discharge settings, temperature rules, firmware and the supplier’s exact-model approval.
Does a hybrid label guarantee backup or grid export behavior?
No. Confirm AC topology, transfer path, backup loads, CT/meter/export control, grid-code configuration, generator/parallel behavior and local acceptance.
Which documents should an RFQ request?
Request exact datasheet/manual, nameplate, PV/battery settings, wiring or one-line, protection schedule, firmware/options list, compliance evidence, BOM, warranty and current commercial terms.
Prepare a verified GA PRO 4/6.2 kW dual-output inverter RFQ
Send PV-string data, cold-site Voc, battery/BMS details, AC service and loads, grid/backup objective, destination and required technical documents.
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