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GZ8648SMH
Techfine
Factory Model | 8648SMH | ||
enter | Input format | L+N+PE | |
Rated input voltage | 220/230/240VAC | ||
Voltage range | 90-280VAC±3V (normal mode) 170-280VAC±3V (UPS mode) | ||
Frequency range | 50Hz/60Hz (adaptive) | ||
Output | Output rated power | Battery Inverter | 8600W |
Photovoltaic Inverter | 11000W | ||
Output voltage | 220/230/240VAC±5% | ||
Output frequency | 50/60Hz±0.1% | ||
Waveform | Pure sine wave | ||
Switching time (adjustable) | Computer equipment 10ms, home appliances 20ms | ||
Peak Power | 17200VA | ||
Overload capacity | Battery mode: 21s@105%~150% Load;11s@150%~200% Load;400ms@>200% Load | ||
Grid-connected operation | Output voltage | 220/230/240VAC | |
Feed-in grid voltage range | 170-265VAC | ||
Feed-in grid frequency range | 49-51±1Hz/59-61±1Hz | ||
Nominal output current | 26.9A | ||
Power factor range | >0.99 | ||
Maximum conversion efficiency (DC/AC) | 98% | ||
Battery | Rated voltage | 48Vdc | |
Constant voltage charging voltage (adjustable) | 56.4Vdc | ||
Float charge voltage (adjustable) | 54Vdc | ||
charger | PV charging method | Dual MPPT | |
PV maximum input power | 2×6500W | ||
MPPT input voltage range | 90~500Vdc | ||
Optimal Vmp working range | 360~430Vdc | ||
Maximum PV input voltage | 500Vdc | ||
Maximum PV input current | 27A/27A | ||
Maximum PV charging current | 150A | ||
Maximum AC charging current | 150A | ||
Maximum charging current | 150A | ||
show | LCD Interface | Can display operation mode/load/input/output, etc. | |
interface | RS232 | Baud rate 2400 | |
Expansion slot communication interface | Lithium battery BMS communication card, WIFI card, dry contact card, etc. | ||
Parallel interface | Parallel (network) function | ||
Environmental parameters | Operating temperature | -10~50℃ | |
Operating environment humidity | 20%~95% (no condensation) | ||
Storage temperature | -15~60℃ | ||
Altitude | The altitude should not exceed 1000m, and the rating will be derated above 1000m, the maximum is 4000m, refer to IEC62040 | ||
noise | ≤50db | ||
Physical parameters | Depth × width × height (mm) | ||
Weight (for reference) KG | 7.78 | ||
Standards and certifications | EN-IEC 60335-1, EN-IEC 60335-2-29, IEC 62109-1 | ||
Note: (1) The real-time updated data of weight and size can be found in the [TQF Production Machine Packaging Dimension and Weight Record Table] file by material code. The installation dimensions shall be subject to the instruction manual. |
Factory Model | 8648SMH | ||
enter | Input format | L+N+PE | |
Rated input voltage | 220/230/240VAC | ||
Voltage range | 90-280VAC±3V (normal mode) 170-280VAC±3V (UPS mode) | ||
Frequency range | 50Hz/60Hz (adaptive) | ||
Output | Output rated power | Battery Inverter | 8600W |
Photovoltaic Inverter | 11000W | ||
Output voltage | 220/230/240VAC±5% | ||
Output frequency | 50/60Hz±0.1% | ||
Waveform | Pure sine wave | ||
Switching time (adjustable) | Computer equipment 10ms, home appliances 20ms | ||
Peak Power | 17200VA | ||
Overload capacity | Battery mode: 21s@105%~150% Load;11s@150%~200% Load;400ms@>200% Load | ||
Grid-connected operation | Output voltage | 220/230/240VAC | |
Feed-in grid voltage range | 170-265VAC | ||
Feed-in grid frequency range | 49-51±1Hz/59-61±1Hz | ||
Nominal output current | 26.9A | ||
Power factor range | >0.99 | ||
Maximum conversion efficiency (DC/AC) | 98% | ||
Battery | Rated voltage | 48Vdc | |
Constant voltage charging voltage (adjustable) | 56.4Vdc | ||
Float charge voltage (adjustable) | 54Vdc | ||
charger | PV charging method | Dual MPPT | |
PV maximum input power | 2×6500W | ||
MPPT input voltage range | 90~500Vdc | ||
Optimal Vmp working range | 360~430Vdc | ||
Maximum PV input voltage | 500Vdc | ||
Maximum PV input current | 27A/27A | ||
Maximum PV charging current | 150A | ||
Maximum AC charging current | 150A | ||
Maximum charging current | 150A | ||
show | LCD Interface | Can display operation mode/load/input/output, etc. | |
interface | RS232 | Baud rate 2400 | |
Expansion slot communication interface | Lithium battery BMS communication card, WIFI card, dry contact card, etc. | ||
Parallel interface | Parallel (network) function | ||
Environmental parameters | Operating temperature | -10~50℃ | |
Operating environment humidity | 20%~95% (no condensation) | ||
Storage temperature | -15~60℃ | ||
Altitude | The altitude should not exceed 1000m, and the rating will be derated above 1000m, the maximum is 4000m, refer to IEC62040 | ||
noise | ≤50db | ||
Physical parameters | Depth × width × height (mm) | ||
Weight (for reference) KG | 7.78 | ||
Standards and certifications | EN-IEC 60335-1, EN-IEC 60335-2-29, IEC 62109-1 | ||
Note: (1) The real-time updated data of weight and size can be found in the [TQF Production Machine Packaging Dimension and Weight Record Table] file by material code. The installation dimensions shall be subject to the instruction manual. |
Our solar inverter 48 volt offers flexible off-grid default or on-grid operation, with support for up to 9 units in parallel—delivering up to 8600W (55800W total) output power. Features include programmable load timing, solar priority selection (battery or load), and real-time clock adjustment.
With an IP54 water-resistant rating , dual AC outputs, and sealed PCB design, this hybrid solar inverter ensures durability in various environments. It also includes energy generation tracking for daily, monthly, and yearly performance monitoring.
Perfect for advanced residential and commercial solar systems requiring reliable, high-efficiency power management.
Our solar inverter 48 volt offers flexible off-grid default or on-grid operation, with support for up to 9 units in parallel—delivering up to 8600W (55800W total) output power. Features include programmable load timing, solar priority selection (battery or load), and real-time clock adjustment.
With an IP54 water-resistant rating , dual AC outputs, and sealed PCB design, this hybrid solar inverter ensures durability in various environments. It also includes energy generation tracking for daily, monthly, and yearly performance monitoring.
Perfect for advanced residential and commercial solar systems requiring reliable, high-efficiency power management.