51 2 вольт батарея 5.5KVA Настенный Солнечный инвертор 3 кВт 5 6 чистый синусоидальный Гибридный

Сохранить в закладки 1601334661634:


Цена:33 062,29-33 291,89 ₽*

Количество:

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Products Description


High Frequency Hybrid Solar Inverter
Off Gird FY 3509 Series (3.5KW/5.5KW)



Features
*Pure sine wave solar inverter
*Output power factor 1
*High PV input voltage range
*Built-in MPPT solar controller.
*Battery equalization function to optimize battery performance and extend lifecycle. *Inverter running without battery
*Built-in anti-dusk kit for harsh environment *Parallel operation with up to 12 units, support parallel in 1phase/3phase, support wireless parallel
*Support mutliple output priority: UTL, SOL, SBU, SUB.
*WiFi/GPRS remote monitoring.
*RS485 communication for BMS(Optional)





Selection Guide Auswahlhilfe


Model
FY 3509-3.5kw
FY 3509-5.5KW
FY 3509-5.5KW-PC
CAPACITY
3.5KVA/3.5KW
5.5KVA/5.5KW
5.5KVA/5.5KW
Parallel Capability
NO
NO
YES,12 units
INPUT
Nominal Voltage
230VAC
Acceptable Voltage Range
170-280VAC(For personal Computer);90-280vac(For Home Appliances)
Frequency
50/60 Hz(Auto sensing)
OUTPUT
Nominal Voltage
220/230VAC±5%
Surge Power
7000VA
11000VA
11000VA
Frequency
50/60Hz
Waveform
Pure Sine wave
Transfer Time
10ms(For personal Computer);20ms(For Home Appliances)
Peak Efficiency(PV to INV)
96%
Peak Efficiency(Battery to INV)
94%
Overload Protection
5s@>=150% load; 10s@110%~150% load
Crest Factor
2:1
Admissible Power FACTOR
0.6~1(inductive or capacitive)
BATTERY
Battery Voltage
24VDC
48VDC
48VDC
Floating Charge Voltage
27VDC
54VDC
54VDC
OverCharge Protection
33VDC
63VDC
63VDC
Charging Method
CC/CV
Solar Charger & AC Charger
Solar Charger TYPE
MPPT
Max.PV Array Power
4000W
5500W
5500W
Max.PV Array Open Circuit Voltage
500VDC
PV Array MPPT Voltage Range
120VDC~450VDC
Max.Solar Input Current
15A
18A
18A
Max.Solar Charge Current
100A
100A
100A
Max.AC Charge Current
60A
60A
60A
Max.Charge Current
100A
100A
100A
PHYSICAL
Dimensions,D x W x H(mm)
448x295x120
Package Dimensions,D x W x H(mm)
560x375x190
Net Weight(Kg)
9
10
10
Communication Interface
USB/RS232/Dry-contact
ENVIRONMENT
Operating Temperature Range
(-10℃ to 50℃)
Storage temperature
(-15℃ ~ 60℃)
Humidity
5% to 95% Relative Humidity(Non-condensing)


Certifications




Related Products








ON GRID INVERTER
OFF GRID INVERTER


SOLAR PANEL
BATTERY
HYBRID INVERTER


Company Profile




FAQ


What is the advantage of high frequency off-grid inverter?
High-frequency off-grid inverters offer several advantages compared to traditional low-frequency inverters. Here are some key advantages of high-frequency off-grid inverters:

1. Compact and Lightweight: High-frequency inverters are typically smaller and lighter compared to low-frequency inverters. This makes them easier to install and transport, especially in portable or mobile off-grid applications.

2. Energy Efficiency: High-frequency inverters are known for their high energy efficiency. They convert DC power from the battery bank to AC power with minimal energy losses, resulting in higher overall system efficiency and reduced energy waste.

3. Improved Power Output: High-frequency inverters can deliver higher surge power output for short periods. This is beneficialwhen starting high-power appliances or equipment that require a momentary surge of power, such as refrigerators, air conditioners, or power tools.

4. Faster Response Time: High-frequency inverters have a faster response time, allowing them to quickly adjust to changes in load demand. This ensures a stable and reliable power supply, especially during sudden load variations.

5. Enhanced Voltage Regulation: High-frequency inverters typically have better voltage regulation capabilities. They can maintain a stable and precise output voltage, which is essential for sensitive electronic devices and appliances that require consistent power quality.

6. Reduced Electromagnetic Interference (EMI): High-frequency inverters produce lower levels of electromagnetic interference compared to low-frequency inverters. This reduces the potential interference with other nearby electronic devices or sensitive equipment.

7. Lower Cost: High-frequency inverters are generally more cost-effective compared to low-frequency inverters. Their compact design, improved efficiency, and reduced component requirements contribute to lower manufacturing and installation costs.

It's important to note that the suitability of a high-frequency off-grid inverter depends on specific application requirements,
such as the power capacity needed, the types of loads, and the overall system design. Consulting with a professional solar
installer or energy expert can help determine the optimal inverter type for your off-grid system.


How many solar panels can you put on a 5kW inverter?

1.Panel Wattage: Calculate the total wattage of the solar panels. For example, if you have 300W panels, you would divide the 5kW (5000W) inverter capacity by 300W to get the approximate number of panels.

2.Inverter Capacity: Check the maximum DC input capacity of the 5kW inverter. This specification indicates the maximum power it can handle from the solar panels. Ensure that the total wattage of the panels does not exceed this capacity.

3.System Design and Efficiency: Consider any system design requirements or efficiency losses that may affect the number of panels you can connect. These factors could include shading issues, panel orientation, and wiring losses.


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