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48v Battery Charger Pure Sine Wave 120/240 Split Phase Solar Inverter

48v Battery Charger Pure Sine Wave 120/240 Split Phase Solar Inverter

$1099 /piece price excl.VAT

Negotiable
Order

Minimal order
100 pieces

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Product Specifications

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Product Description

Overview

Quick Details

Place of Origin:Zhejiang, China

Brand Name:TSUN ESS

Model Number:TSOL-H5.0K-NA

Input Voltage:38~60V (Battery Side) / 100~500V (PV Side)

Output Voltage:120V / 240V Split Phase

Output Current:20.8

Output Frequency:60Hz

Output Type:Single, DUAL

Size:445*630*215 mm

Type:DC/AC Inverters

Inverter Efficiency:97%

Certificate:UL FCC IEEE CSA

Warranty:5 Years

Weight:26 KG

Product name:Hybrid Inverter Split Phase

Application:Hybrid Solar Energy System in North America

Display:LCD

Peak power:5500 Watts, 60S

Battery type:Lead Acid \ Lithium ion \ Gel 48V

Power factor:0.9i - 0.9c

MPPT Efficiency:99.9%

Environmental Protection Rating:NEMA 4X

Color:Blue

Communication Interfaces:Meter (RS485), Battery (CAN)

Supply Ability

Supply Ability: 50000 Set/Sets per Year

Packaging & Delivery

Packaging DetailsCarton+wooden palletPortSHANGHAI Picture Example:

Lead Time :

Quantity(Sets)1 - 200>200
Est. Time(days)15To be negotiated

Online Customization

48v Battery Charger Pure Sine Wave 120/240 Split Phase Solar Inverter from China supplier

Product Paramenters

Model
TSOL-H5.0K-NA
TSOL-H8.0H-NA
PV Input Data (DC)
Max DC Input Power(W)
6000
10000
Max DC input Voltage(V)
550
600
MPPT Voltage Range(V)
100-500
50-550
Setup Voltage (V)
70
60
Max DC Input Current(A)
12*2
13.5*3
No. of MPPTs
2
3
Grid Output Data (AC)
Norminal AC Output Power (VA)
5000
8000
Norminal AC Output Current (A)
20.8
33.5
Max AC Output Current (A)
25
33.5
AC Frenquency (Hz)
60
Power Factor
0.9i - 0.9c
0.9i - 0.9c
THD (Current)
<3%
Battery Data (DC)
Rated Battery Voltage (V)
48
300
Batttery Voltage Range(V)
38 - 60
80 - 495
Max Charge/Discharge Current(A)
80 / 100
30 / 30
Max Discharge/Charge Power (W)
4200 / 5000
10000 / 10000
Charge Curve
3 stages
Battery Types
Li-ion / Lead-acid
Back-up Output Data (AC)
EPS Norminal Output Power(VA)
5000
8000
EPS Norminal Output Voltage (V)
120/240v Split phase
EPS Norminal Output Frequency (Hz)
60
EPS Norminal Output Current(A)
20.8
33.5A
Peak Output Power (VA)
5500,60s
9600,60s
THD (Voltage )
<3%
Switching Time (S)
<0.01
Efficiency
CEC Eiffciency
97%
97.5%
Max Eiffciency
97.60%
97.9%
Battery charge &discharge effciency
94.3% / 94%
94.5% / 94.5%
Protect Data
Reverse Polarity Protection
DC disconnect device
Over Current/Voltage Protection
Anti-islanding Protection
AC Short-ciruit Protection
Leakage Current Detection
Ground Fault Monitoring
Grid Monitoring
Insulation resistor detection
General Data
Enclosure Protect Leve
NEMA4X
Dimensions [W/H/D] (mm)
445*630*215
450*650* 210
Weight (kg)
26
30
Topology
Tranformerless(Solar) / High Frequency Isolation (Battery)
Cooling Concept
Natural Convection
Relatively Humidity
0-95%, Non condensing
Operating Temperature Range (°C)
-25~60
Operating Altitude (m)
< 2000
< 4000
Noise Emission (dB)
< 25
< 25
Display & Communication Interfaces
"LCD, LED,
Meter (RS485),
Battery (CAN)"
"LCD, LED,
Meter (RS485),
Battery (CAN),
Parallel Output(RS485)"
Certificate
UL1741, IEEE1547, CSA-C22.2, UL1998, UL1699B, FCC part15 Class B

How Energy Storage System Works

During the day, the PV array generates electricity which can be provided either to the loads, fed into the grid or charge the battery, depending on the economics and set-up. The electricity stored can be released when loads requirement during the night, including inductive loads such as air conditioners or refrigerators. Additionally, the power grid can also charge storage devices via the inverter. Hybrid Inverter is equipped with a built-in EPS (Emergency Power Supply) as standard

configuration, allowing you to run essential loads like fridges, lights and power points whenever the grid goes down. An all-round intelligent system for maximum energy flexibility.

Mode I

During the day, the energy generated by the energy

storage system is preferentially supplied to the household

load (including the load connected to the emergency

interface), the excess energy is charged to the battery, and

finally the remaining electrical energy flows into the grid.

Mode II

During the day, the energy generated by the energy storage

system is preferentially supplied to the household load (including the load connected to the emergency interface). If the amount of power generation does not satisfy the household load, the power in the battery is released and supplied to the load. If the power is still insufficient, it is provided by the grid.

Mode III

At night, the energy storage system releases electrical energy to the household load (including the load connected to the emergency interface), and insufficient electrical energy is provided by the grid.

Mode IV

In the event of a power outage, the energy storage system releases electrical energy and supplies the load to the emergency interface.

Mode V

The energy storage system can use the

grid to charge the battery. If the local

peak and valley electricity price mode is

adopted, the user can choose to charge

the battery at the price of the late night.

Applications

If you live in the following areas, hybrid solar energy storage system is good for you!

1, NO on grid permission or limited on grid permission Areas!2, Areas with unstable electricity grid power supply!

3, Areas with regular power outage!

Packaging & Shipping

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Supply Ability

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Packaging and Shipping

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Packaging details

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