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1kw 1.5kw inverter customized on grid solar system with inverter mounting structure 1kw inverter

Product parameters

Product Details
Product Description

1kw customized on grid solar system with inverter mounting structure

1kw customized on grid solar system with inverter mounting structure

If you need we make the designer .

1.    Please let me know Daily consumption.  Total how much load power?

2.   How many cloudy day would you consider?

3.   How about system DC voltage?

Re the 3kw off-grid  system .First kind check below. It is our projec1kw customized on grid solar system with inverter mounting structure

1kw

Product Description

     1kw customized on grid solar system with inverter mounting structure

 

Main Application for Solar System

 

 

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 For All Model We Can Customized On Your Request !!!

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Detail Technical Parameter for 1kw customized on grid solar system with inverter mounting structure Part

 3KW Solar Power Syetem

 250W Solar Panel :

1kw customized on grid solar system with inverter mounting structure

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1kw customized on grid solar system with inverter mounting structureSolar Panel characteristics:
Type of solar cell  Monocrystalline
Max-power:Pm(W) 250W
Lay up of solar cell 8 (6*12)PCS
                                Max-power voltage: Vm(V)                              37.2V
                               Max-power current: Im(A)                             6.72A
                                Open-circuit voltage:Voc(V)                             45V
                            Short-circuit current: Isc(A)                            7.30A
                           Max-system voltage(VDC)                          1000V
                            Operating temperature(℃)                            -40℃~+85℃
                             Power tolerance                        0~ +6W
                           Dimension of solar module                      1640*982*40mm
                       Gross weight of solar module  19.4Kg
                                      Front Cover                          Low-iron Tempered glass/ 3.2mm
                                        Frame            Anodization aluminum
                  Junction Box (protection degree)                     IP65
Hailstone Impact 25mm at 23m/s
Qty/CTN 2PCS

   

1kw customized on grid solar system with inverter mounting structure Controller

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1kw customized on grid solar system with inverter mounting structure

Model:ESG 12V/24V/48V-series

40A

50A

60A

 

Charge Mode

 Maximum Power Point Tracking

 

Method

3 stages: fast charge(MPPT),constant voltage, floating charge

 

System Type

DC12V/24V/48V

Automatic recognition

 

System Voltage

12V system

DC9V~DC15V

 

24V system

DC18V~DC30V

 

48Vsystem

DC36V~DC60V

 

Soft Start Time

12V/24V/48Vsystem

≤10S

 

Dynamic Response

Recovery Time

12V/24V/48Vsystem

500us

 

Conversion Efficiency

12V/24V/48Vsystem

≥96.5%,≤99%

 

PV Modules Utilization Rate

12V/24V/48Vsystem

≥99%

 

1kw customized on grid solar system with inverter mounting structure Inverter Specification: 

 

Model

ESG1302

Rated capacity(W)

3000W

 

Input

Commercial Power range      (VAC)

 

 

100/110/120/127/220/230(+25%,-35%)

Frequency

(Hz)

60/50±10%

 

Output

AVR voltage range(VAC)

 

100/110/120/127/220/230±10%(Auto-sensing)

Transfer time

Typical:5ms(Including detection time)

 

Battery

 

DC Voltage

24VDC

48VDC

 

Output

Waveform

Pure sine wave

Frequency(Hz)

Commercial power supply: shared frequency with the commercial inversion state:60/50±0.5

 

Protection

 

Overload

IPS automatically shut down if overload exceeds 120% of normal value for 10 seconds, IPS automatically resumes work if overload comes to rated load.

 

Battery Type

Type

 

Sealed, maintenance-free lead acid

Recharge current

15A(Maximum)

Battery protection

Automatic self-test, discharge protection, over-charge protection, smart management system.

Size

Size(mm)

D×W×H

 

470×560×500

External

Size(mm)

D×W×H

 

547×345×538(1piece)

Net weight(kg)

35

36

Gross weight(kg)

38

38

1kw customized on grid solar system with inverter mounting structure Pure Sine Wave Inverter Specification:

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1kw customized on grid solar system with inverter mounting structure Battery
 

 12v100ah AGM 29KG
1kw customized on grid solar system with inverter mounting structure

1kw customized on grid solar system with inverter mounting structure Battery Technical Parameter 

 

 3KW Solar Power Syetem

Packaging & Shipping

Packaging: 

 

 

 pp



Our Services

1kw customized on grid solar system with inverter mounting structure 

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1. Your inquiry related to our products or prices will be replied in 24hours. 
2. Professional service from well-trained and experienced staffs is customers’ best choice to secure good communication, on time delivery, reliable warranty etc.
3.OEM is available for Anern Products.
4.1kw customized on grid solar system with inverter mounting structure.Sample is available.

INSTALLATION SOLAR SYSTEM

Company Information

ESG Teamwork

1kw customized on grid solar system with inverter mounting structure

 OUR HISTORY

 

Certificates

1kw customized on grid solar system with inverter mounting structure

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ESG Photos with Clients

1kw customized on grid solar system with inverter mounting structure

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Clients Feedback

1kw customized on grid solar system with inverter mounting structure

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 3KW Solar Power Syetem

Power Electronics for Renewable Resource
SOLAR ENERGY
 

·SOLAR PHOTOVOLTAIC CONVERTERS

Solar photovoltaic (PV) converters: Solar PV converters convert sunlight energy into electricity. A typical PV panel consists of two or more thin layers of 
semi-conducting material, which is commonly silicon. PV cells are connected together and encapsulated, to form a module or panel. Incoming solar rays are captured 
by the solar panels.

When light strikes the silicon, it produces electrons that are conducted away by a metallic grid as direct current (DC). This is then sent through an inverter 
and converted into alternating current (AC) electricity for use in the home, or at school.

IV. HOW A PV SYSTEM WORKS
Simply put, PV systems are like any other electrical power generating systems, just the equipment used is different than that used for conventional 
electromechanical generating systems. However, the principles of operation and interfacing with other electrical systems remain the same, and are guided by a 
well-established body of electrical codes and standards.
Although a PV array produces power when exposed to sunlight, a number of other components are required to properly conduct, control, convert, 
distribute, and store the energy produced by the array.
Depending on the functional and operational requirements of the system, the specific components required may include major components such as a 
DC-AC power inverter, battery bank, system and battery controller, auxiliary energy sources and sometimes the specified electrical load (appliances). In addition, an 
assortment of balance of system (BOS) hardware, including wiring, overcurrent, surge protection and disconnect devices, and other power processing equipment. 
Figure 3 show a basic diagram of a photovoltaic system and the relationship of individual components.

V. TYPES OF SYSTEMS
Photovoltaic power systems are generally classified according to their functional and operational requirements, their component configurations, and how 
the equipment is connected to other power sources and electrical loads. The two principal classifications are grid-connected or utility-interactive systems and 
stand-alone systems. Photovoltaic systems can be designed to provide DC and/or AC power service, can operate interconnected with or independent of the utility 
grid, and can be connected with other energy sources and energy storage systems.
Grid-Connected or Utility-Interactive PV Systems
Grid-connected or utility-interactive PV systems are designed to operate in parallel with and interconnected with the electric utility grid. The primary 
component in grid-connected PV systems is the inverter, or power conditioning unit (PCU). The PCU converts the DC power produced by the PV array into AC 
power consistent with the voltage and power quality requirements of the utility grid, and automatically stops supplying power to the grid when the utility grid is not 
energized. A bi-directional interface is made between the PV system AC output circuits and the electric utility network, typically at an on-site distribution panel or 
service entrance. This allows the AC power produced by the PV system to either supply on-site electrical loads, or to back-feed the grid when the PV system output 
is greater than the on-site load demand. At night and during other periods when the electrical loads are greater than the PV system output, the balance of power 
required by the loads is received from the electric utility This safety feature is required in all grid-connected PV systems, and ensures that the PV system will not 
continue to operate and feed back into the utility grid when the grid is down for service or repair.

Stand-Alone Photovoltaic Systems

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     1kw customized on grid solar system with inverter mounting structure

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