• 1500w Solar Grid Tie Inverter Transformerless 1.5kw String Inverter ETL/FCA System 1
  • 1500w Solar Grid Tie Inverter Transformerless 1.5kw String Inverter ETL/FCA System 2
  • 1500w Solar Grid Tie Inverter Transformerless 1.5kw String Inverter ETL/FCA System 3
  • 1500w Solar Grid Tie Inverter Transformerless 1.5kw String Inverter ETL/FCA System 4
  • 1500w Solar Grid Tie Inverter Transformerless 1.5kw String Inverter ETL/FCA System 5
1500w Solar Grid Tie Inverter Transformerless 1.5kw String Inverter ETL/FCA

1500w Solar Grid Tie Inverter Transformerless 1.5kw String Inverter ETL/FCA

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$370.00 - 556.00 / pc get latest price
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Shekou
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TT or LC
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10 pc
Supply Capability:
100000 pc/month

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1500w solar grid tie inverter transformerless 1.5kw string inverter ETL/FCA

Solar inverter 1500TL-3000TL-US

Maximum efficiency of 97.5% and wide input voltage range

Internal DC Switch

Transformerless GT topology

Compact design

Bluetooth/ RF technology/ Zigbee/ Wi-Fi

Sound control

Easy installation


 

General Descriptions

 Leading-Edge Technology, CE,TUV ,VDE , SAA,DK5940 Certicificates.

> Maximum efficiency of 97.8 % and wide input voltage range

> Internal DC STWTICH

> Transformerless H6 topology

> Compact Design

> MPPT control

> MTL-String

> RS485 RS432 bluetooth Technology

> Comprehensive Growatt warranty program

> Easy country configuration, easy installation

> Multi-language display

 

Communications
> RS485 /GPRS interfaces
> Computer monitoring software


1500w solar grid tie inverter transformerless 1.5kw string inverter ETL/FCA


1500-US

2000-US

3000-US

Inputdata   

Max.DCpower

1800W

2300W

3200W

Max. DC  voltage

450V

500V

500V

Start  Voltage

150V

150V

150V

PV voltage  range

100V-450V

100V-500V

100V-500V

MPP voltage  range(full load)

120V-400V

120V-450V

120V-450V

Max. input  current of per MPP tracker

12A

14A

17A

Number of  independent MPP
 trackers/strings per MPP tracker

1/1

1/2

1/2

 

Rated AC  output power

1500W@208Vac
 1650W@240&277V

1800W@208Vac
 2000W@240&277Vac

2500W@208Vac
 2800W@240&277Vac

        AC nominal voltage; range

Default:240V  single phase, optional:208 single  phase;183-228@208V,211-264V@240V                

Max. output  current

8A/7.8A

9.7A/9.4A

15A/14.2A

AC grid  frequency; range

60Hz;  59.3-60.5Hz

60Hz;  59.3-60.5Hz

60Hz;  59.3-60.5Hz

Power  factor

1

1

1

THDI

<3%

<3%

<3%

Grid  connection type

Single  phase

Single  phase

Single  phase

 

Efficiency   

Max.efficiency
 Euro-eta
 MPPT efficiency

97%
96%
99.5%

97%
96.5%
99.5%

97%
96.5%
99.5%

 

Protection Devices   

DC reverse  polarity protection

yes

yes

yes

DC switch  rating for each MPPT

yes

yes

yes

Output over  current protection

yes

yes

yes

Output over  voltage
 protection-varistor

yes

yes

yes

Ground  fault monitoring

yes

yes

yes

Grid  monitoring

yes

yes

yes

Integrated  all-pole sensitive
 leakage current monitoring unit

yes

yes

yes

 

Generaldata   

Dimensions(W/H/D)  in mm
 Weight
 Operating temperature range
 Noise emission(typical)
 Self-Consumption (night)
 Topology
 Cooling concept
 Environmental Protection rating
 Altitude
 Humidity

360/465/165
 14.6KG
 -25℃ ... +60℃
 ≤25dB(A)
 <0.5W
 Transformerless
 Natural
 Type 3R
 2000m without derating
 0~100%

360/465/165

15.1KG
 -25℃ ... +60℃
 ≤25dB(A)
 <0.5W
 Transformerless
 Natural
 Type 3R
 2000m without derating
 0~100%

360/465/165
 15.9KG
 -25℃ ... +60℃
 ≤25dB(A)
 <0.5W
 Transformerless
 Natural
 Type 3R
 2000m without derating
 0~100%

 

Features   

DC  connection

AC  connection

Display
 Interfaces: RS232/RS485/
 Ethernet/RF/WiFi
 Warranty: 10years/15years

Screw  terminal

Screw  terminal

LCD
yes/yes/

opt/opt/opt
yes/opt

Screw  terminal

Screw  terminal

LCD

yes/yes/

opt/opt/opt
yes/opt

Screw  terminal

Screw  terminal

LCD

yes/yes/

opt/opt/opt

yes/opt

 

Certificates and Approvals   UL1741, UL1998,  IEEE 1547, CSA C22.2    No.107.1-1, FCC Part15(Class A&B)

 


FAQ

1. Have any design tool and how to use it?

Shine Design is the system design software just for inverters, It can conduct installers to figure out panel numbers for a system, panel numbers for each string, and which inverter model is suitable for the system. Moreover, it can print a design report after input all necessary parameters, can calculate DC/AC wire wastage, annual generation, etc.

2. Does the inverter have monitoring solutions for residential system?

For small rating system, we have wired two monitoring solution (ShineNet via RS232 or RS485). (a) Local wireless monitoring solution (ShineVision via RF module communication) (b) Global wireless monitoring solution (WIFI module via WIFI network)

3. Do you have free solution for monitoring?

ShineNet is an inverter monitoring software run in Windows XP, Windows Vista, Windows 7 operating system. It can monitor inverter via RS232 (or RS232 convert to USB cable) and RS485 wire connection. Customers can purchase the cable locally to get the inverter monitored, it is simple.

Q:What are the key features to consider when choosing a solar inverter?
When choosing a solar inverter, some key features to consider are the inverter's efficiency, maximum power point tracking (MPPT) capability, warranty and reliability, communication capabilities, and compatibility with your solar panels and battery system (if applicable).
Q:Can a solar inverter be used with different types of grounding systems?
Yes, a solar inverter can be used with different types of grounding systems. Most solar inverters are designed to be compatible with various grounding configurations, including but not limited to grounded, ungrounded, and impedance grounded systems. However, it is important to consult the manufacturer's specifications and guidelines to ensure proper installation and compatibility with the specific grounding system in use.
Q:Photovoltaic grid-connected inverter problem
Hello, the definition of the zero line is not caused by the transformer three-phase electric tail connection? I now do not understand why there is no isolation transformer AC output marked is N (zero line), and it is not the transformer three-phase power of the tail connection leads to, this is the zero line? The The
Q:Can a solar inverter be used with a solar-powered vehicle?
Yes, a solar inverter can be used with a solar-powered vehicle. A solar inverter is responsible for converting the direct current (DC) produced by solar panels into alternating current (AC) that can be used to power various devices. In a solar-powered vehicle, the solar panels generate DC electricity, which can be connected to a solar inverter to convert it into AC power that can be used to charge the vehicle's battery or directly power electric components.
Q:How does the temperature affect the performance of a solar inverter?
The temperature affects the performance of a solar inverter by influencing its efficiency and power output. Higher temperatures can cause the inverter to operate less efficiently, resulting in a decrease in its overall performance. This is because the semiconductor components in the inverter may experience increased resistance, leading to more power losses and reduced conversion efficiency. Additionally, excessive heat can also lead to thermal stress and component degradation, potentially impacting the long-term reliability and lifespan of the inverter.
Q:What is the maximum output power of a solar inverter?
The maximum output power of a solar inverter depends on its capacity and rating. It can range from a few hundred watts for residential inverters to several megawatts for commercial or utility-scale inverters.
Q:How long does a solar inverter last?
A solar inverter typically has a lifespan of around 10 to 15 years, although this can vary depending on various factors such as the quality of the inverter, its usage, and maintenance.
Q:What are the typical efficiency ranges for different types of solar inverters?
The typical efficiency ranges for different types of solar inverters vary depending on the specific technology and design. However, in general, string inverters have an efficiency range of around 95% to 98%, while microinverters tend to have an efficiency range of about 96% to 99%. On the other hand, central inverters have a wider efficiency range, typically ranging from 95% to 99%. It's important to note that these efficiency ranges can also be influenced by factors such as temperature, load, and design variations among manufacturers.
Q:How does a solar inverter handle voltage and frequency variations caused by grid faults?
Grid support or anti-islanding function is the process by which a solar inverter manages voltage and frequency variations resulting from grid faults. It promptly detects disturbances, such as sudden drops or spikes in voltage or frequency, and responds accordingly. To address voltage variations, the solar inverter incorporates a voltage control mechanism. It continuously monitors the grid voltage and adjusts its own output voltage to match the grid level. In the event of a voltage drop or spike due to a grid fault, the inverter adjusts its output voltage to maintain a stable and secure operating condition. This safeguards both the solar system and the grid from potential harm. Similarly, the solar inverter handles frequency variations caused by grid faults. It constantly monitors the grid frequency and adjusts its own output frequency to align with the grid. If a grid fault results in a sudden frequency change, the inverter responds by adjusting its own frequency. This ensures the solar system remains synchronized with the grid and continues to provide uninterrupted power supply. Furthermore, solar inverters are equipped with anti-islanding protection. This feature enables them to quickly disconnect from the grid in the event of a grid fault. This safety measure prevents the solar system from supplying power to a faulty grid, thus minimizing risks to utility workers during repair. In summary, the solar inverter's capacity to handle voltage and frequency variations caused by grid faults is vital for the efficient and safe operation of a solar power system. By continuously monitoring and adjusting its output to match grid conditions, the inverter guarantees a stable and reliable power supply while keeping the solar system in sync with the grid.
Q:How does a solar inverter handle voltage sag and swell?
A solar inverter handles voltage sag and swell by utilizing its power conditioning capabilities. When it detects a voltage sag (a temporary decrease in voltage), the inverter adjusts its internal control algorithms to provide a stable and consistent output voltage to the connected loads. Similarly, in the case of voltage swell (a temporary increase in voltage), the inverter modifies its operation to prevent overvoltage conditions and ensure a safe and regulated output. Through continuous monitoring and intelligent control, a solar inverter effectively manages voltage fluctuations to maintain stable power delivery.

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