(2 IN 1 UNIT )The 600W micro inverter with reactive power control for 2 solar panels. It can realize solar panel independently monitor.One microinverter can connect two solar panels.
Developing Clean, Affordable,Reliable and Efficient (CARE) products for our customers worldwide.
The microinverters have an isolation transformer and basic isolation between the DC input and the AC output network.
FOTOVO BDM 600W micro inverter
Product Details
Low cost $watt micro inverter
Single microinverter connects two PV modules with individual MPPT
High continuos output power up to 600Wac, recommended for dua max 460W solar panel
Globaly certified for UL1741,SAA,TUV, VDE-AR-N 4105, VDE0126,G83/2,CEL 021,IEC61727,EN50438
Integrated monitoring and power line communicationwith RDG-256 gateway,built-in WiFi
Integrated grounding for easy installation
Solar System Wiring Diagram
How to Apply Microinverter in an AC-Coupled Solar Battery System?
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① AC-coupled solar battery system as shown , is the connection of a battery energy storage system to a solar system via AC (alternating current) electricity. ② Energy from a solar system is generated in the form of DC (direct current) electricity which is then turned into AC by the solar microinverters. ③ A battery bi-directional / multimode inverter connected to the same electrical network via AC then converts any spare energy not used by the home back into DC so it can be stored in a battery.
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The AC-coupled solar battery system is more complicated than the traditional grid-tied PV inverter system. But this kind of system can even work when grid outage or the system is the type of off grid.
For now, more and more manufacturers have launched AC-coupled solar battery system. Some of these solutions are integrated PV inverters, which others require the installers to select the grid-tied PV inverters to integrate with their battery system.
Technical Parameter
INPUT(DC) | Recommended Max PV Power (wp) | 460 x 2 | ||||||||||
Max DC open Circuit Voltage (Vdc) | 60 | |||||||||||
Max DC 1nput Current (Adc) | 14 x 2 | |||||||||||
MPPT Tracking Accuracy | >99.5% | |||||||||||
MPPT Tracking Range (Vdc) | 22-55 | |||||||||||
Isc PV (absolute maximum) (Adc) | 18 x 2 | |||||||||||
0 | ||||||||||||
OUTPUT (AC) | Peak AC output Power (wp) | 600(continuous) | ||||||||||
Nominal Power Grid Voltage (Vac) | 240 | 208 | 230 | |||||||||
Allowable Power Grid Voltage (Vac) | 211-264 | 183-229 | confgurable | |||||||||
Allowable Power Grid Frequency (Hz) | 59.3 a 60.5 | confgurable | ||||||||||
THD | <3% (at rated power) | |||||||||||
Power Factor (cos phi, fxed) | >0.99 (at rated power) | |||||||||||
Rated output Current (Aac) | 2.5 | 2.87 | 2.6 | |||||||||
Current (inrush)(Peak and Duration) | 24A, 15us | |||||||||||
Nominal Frequency (Hz) | 60 | 50 | ||||||||||
Maximum output Fault Current (Aac) | 4.4A peak | |||||||||||
Maximum output overcurrent Protection (Aac) | 10 | |||||||||||
Maximum Number of Units Per Branch (20A) (All NEC adjustment factors have been considered) |
7 | 6 | 6 | |||||||||
SYSTEM EFFICIENCY | weighted Averaged E而ciency (CEC) | 95.50% | ||||||||||
Night Time Tare Loss (wp) | 0.11 | |||||||||||
PROTECTION FUNCTIONS |
over1Under Voltage Protection | Yes | ||||||||||
over1Under Frequency Protection | Yes | |||||||||||
Anti-1slanding Protection | Yes | |||||||||||
over Current Protection | Yes | |||||||||||
Reverse DC Polarity Protection | Yes | |||||||||||
overload Protection | Yes | |||||||||||
Protection Degree | 1P-67 | |||||||||||
Ambient Temperature | -40。F to +149。F (-40。C to +65。C) | |||||||||||
operating Temperature | -40。F to +185。F (-40。C to +85。C) | |||||||||||
Display | LED LIGHT | |||||||||||
Comunications | Power Line | |||||||||||
Dimension (w-H-D) | 10.91"x5.20"x1.97"(277x132x50 mm) | |||||||||||
weight | 6.4 1bs. (2.9 kg) | |||||||||||
Environment Category | Indoor and outdoor | |||||||||||
wet Location | Suitable | |||||||||||
Pollution Degree | PD 3 | |||||||||||
overvoltage Category | 11(PV), 111 (AC MA1NS) | |||||||||||
Product Safety Compliance |
UL 1741 CSA C22.2 No. 107. 1 |
1EC1EN 62109- 1 1EC1EN 62109-2 |
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Grid Code Compliance (Refer to the label for the detailed grid code compliance) |
1EEE 1547 |
VDE-AR-N 4105* VDE V 0126- 1- 11A1 G8312, CE1 021 AS 4777.2 & AS 4777.3,EN50438 |
1.Safer:The solar panels are connected in parallel, and the system has no DC high voltage.
2.No cask effect, more power generation:The solar panels are independent from each other, without cask effect,
and the actual system efficiency can be maximized.
3.Wide range of application:A good solution to the multi-orientation, shaded roof system; Surrounding environment dust, flying flocculant more complex scene.
4.Simple system:The combination of PV moduels and micro inverter is modular, which simplifies design and construction and reduces system cost.
5.Flexible system design:Allow the design and connection of solar panels which has different powers, brands and types in the same system.
6.Smart monitoring:PV module-level monitoring to reduce later operation、maintenance and repair costs.
7.Long service life:The service life of the micro-inverter is up to 25 years, and the comprehensive investment cost is lower than the traditional system, and the cost performance is higher.
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