All-in-One Power Solution for Long Backup
Add in inquiry DownloadType:
IGBT / PWM Type
Capacity:
800W~8KW
Made in
Taiwan, ROC
Add in inquiry DownloadType:
IGBT / PWM Type
Capacity:
800W~8KW
Made in
Taiwan, ROC
• Electrification of Villages in Remote Areas
• Medical Facilities in Rural Areas
• Microwave / Radio Repeater Stations
• Emergency Communication Systems
• Aviation Obstruction Lighting Systems
• Water Quality and Environmental Data
• Monitoring Systems
• Pumping Systems for Irrigation, Rural
• Water Supplies and Livestock Watering
• Rail / Road Signals
• Electrification of School in Rural Areas
• Power Source for Summer Vacation
• Homes / Resorts
• Shops, Micro Enterprises, Offices etc.
Generator Replacer!
A Powerful All-in-One Power Solution!
► Available from 800W to 8KW output at 12/24/48VDC.
► Utility+Inverter+Battery Charger+Transfer Switch+Solar Charger+Remote Control All in One.
► Pure sine wave Inverter/Charger design ensuring compatibility with any kinds of loads.
► Un-limited load applicability.
► Low frequency feature compatible with wide range of high energy loads.
► 24 hour operation from inverter.
► Un-limited batteries backup time.
► Multi-stage charger supports big charge.
► Compatible with both linear & non-linear load.
► Controllable, Programmable and Removable LCD panel.
► DC start and automatic self-diagnostic on Start-up.
► Automatic transfer when power fails.
► High Efficiency design to save electricity.
► Low Heat dissipation over a long time operation.
► <3% Total Harmonic Distortion (THD).
► Designed to operate under harsh environments.
► 3 LED lights provides easy reading on system status.
► Inherent full-feature safety protections.
► Integrates with a Generator set.
► Support Solar Panel.
► Optional Multiple interfaces cards available.
Model | SHU8-24 | SHU16-24 | SHU24-24 | SHU40-24 | SHU60-48 | SHU80-48 | ||
Capacity | Watt | 800W | 1.6KW | 2.4KW | 4.0KW | 6.0KW | 8.0KW | |
INPUT | ||||||||
Nominal Voltage | 110/115/120Vac or 220/230/240Vac | 220/230/240Vac | ||||||
Acceptable Voltage Range | 60~135V or 120~270Vac (nominal 120V or 220Vac) | 120~270Vac (220V System only) |
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Frequency | 45Hz ~ 70Hz Auto-sensing |
45Hz ~ 70Hz Auto-sensing |
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Low Voltage Transfer | 60Vac+/-2% ; 120Vac+/-2% | 120Vac+/-2% | ||||||
Low Voltage Return | 65Vac+/-2% ; 130Vac+/-2% | 130Vac+/-2% | ||||||
High Voltage Transfer | 135Vac+/-2% ; 275Vac+/-2% | 270Vac+/-2% | ||||||
High Voltage Return | 130Vac+/-2% ; 260Vac+/-2% | 260Vac+/-2% | ||||||
OUTPUT | ||||||||
Nominal Voltage |
110Vac (115 or 120Vac re-settable via LCD panel); 220Vac (230 or 240Vac re-settable via LCD panel) |
220Vac (230V or 240Vac re-settable via LCD panel) |
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Voltage Regulation | < 3% RMS for entire battery voltage range (Battery Mode) | |||||||
Frequency Regulation | LineMode | Synchronized to AC Main | ||||||
Bat.Mode | 50Hz or 60Hz ±0.1Hz | |||||||
Efficiency | > 75% | > 80% | ||||||
Wave Form | Pure Sine wave | |||||||
Transfer Time | < 8ms (Typical) | |||||||
DC START | ||||||||
Cold Start | Yes | |||||||
BATTERY | ||||||||
Battery Voltage | 24Vdc | 24Vdc | 48Vdc | |||||
Backup Time | Based on the Batteries Connected | |||||||
PROTECTION | ||||||||
Overload | LineMode | > 110%, then Buzzer alrm and amber LED blink continuously | ||||||
Bat.Mode | 110%~150% for 30 sec; >150% for 200ms, then UPS Shuts Down | |||||||
Short Circuit | LineMode | Circuit Breaker | ||||||
Bat.Mode | Electronic Circuit | |||||||
CONTROL PANEL | ||||||||
LCD Display | HOME UPS Status, I/P & O/P Voltage Frequency, Load Level, Battery Voltage & Level, Temperature, Model | |||||||
LED Indicator | Normal (Green), Warning (Yellow), Fault (Red) | |||||||
AUDIBLE ALARM | ||||||||
Battery Mode | Beeping Every 4 Seconds | |||||||
Low Battery | Beeping Every Second | |||||||
HOME UPS Fault | Beeping Continuously | |||||||
Overload | Beeping Twice Per Second | |||||||
SAFETY COMPLIANCE | ||||||||
Safety Standard | EN62040-1-1 | |||||||
EMC | EN62040-2 | |||||||
Marks | CE | |||||||
ENVIRONMENTAL | ||||||||
Operating Temp. | 0℃ ~ +40℃ (32°F ~ +104°F) | |||||||
Relative Humidity | 0~95% RH Non-condensing | |||||||
Audible Noise | Less than 55dBA (at 1 M) | |||||||
PHYSICAL | ||||||||
Capacity | 800W | 1.6KW | 2.4KW | 4KW | 6KW | 8KW | ||
Size | W*D*H | 298*150*400mm | 298*190*450mm | 415*260*600mm | ||||
Net Weight | kgs | 14kgs | 21kgs | 23kgs | 50kgs | 52kgs | 54kgs |
Remarks: All specifications mentioned above are subject to change without prior notice.
• Green Power Mode
• SNMP Monitoring Interface
• DB-9 Card
• Generator Starter
Introduction :
1. Description
Pure sine wave Inverter/Charger design ensuring compatibility
The Solar SP series is designed to have access to dual input source; one is AC source from a grid, and the other is DC source from a solar array.
This series is a powerful all-in-one solution, not only delivering unsurpassed clean true sine wave output power and combining this with a selectable multistage battery charging current but also converting sunlight into clean energy.
This series features durable and continuous 24-hour operation. Consequently, it is applicable to any kind of loads such as air conditioner, home appliances, consumer electronic and office equipment.
The built-in 5-stage intelligent charger automatically charges any type of batteries without the risk of overcharge. The compact and modular design makes utility interactive installations easier and more cost effective. It is a high quality product that offers the best price-performance ratio in the industry.
2. Operation Modes
2-1 System Block Diagram
2-2 Normal Operation
There are two main loops when AC utility is normal and DC electricity is generated from solar array under sufficient sunlight: the AC loop and the battery charging loop. The AC output power comes from AC utility input and passes through the static switch to support power to load. The battery charging voltage comes from AC utility input and is converted by AC/DC charger to support battery-charging power.
2-3 AC Utility Failure at Daytime (Solar Mode)
The AC output comes from DC input from solar array through DC/AC inverter when the AC utility fails at daytime.
2-4 AC Utility Failure at Night (Battery Mode)
The AC output comes from battery, passing through DC/AC inverter and static switch within during the battery backup time.