Product Description
200-400VDC input off grid inverter split phase
Introduction
SANDI SDP series Low Frequency Off Grid Pure Sine Wave Inverter is one of the most advanced DC to AC conversion products in the world, it's widely used in areas without electricity, providing a complete power solution for strict demand applications. With SVPWM technology, it has high conversion efficiency, high instantaneous power and low losses, output pure sine wave, applying to capacitive, inductive and nonlinear mixed-load, with superior load capacity, perfect protection of overload, short circuit, low/over battery voltage, improper operation etc, reliable and safe to use.
Features:
1, Standard rack mount cabinet, front and back side with ventilation holes for good cooling performance.
2, Small size(Width*Height*Depth):
435 x 605 x 267mm: 1-6KW single phase 6U
435 x 635 x 400mm: 5-12KW three phase 9U
3, Light weight, product net weight is about 40-120kg
4, 100% full power output
5, High efficiency > 94%
6, Two kinds of start mode Variable frequency start(soft start) and step down voltage start
7, RS485 monitoring, AC bypass(grid or generator) input, built in solar charge controller(Optional)
8, Built in low frequency isolation transformer, which ensure the AC busbar and DC busbar are completely isolated, the harmonic and interference is very little, suitable for all types of load.
9, Suitable for off grid without battery system, the DC input voltage range can be choose from 48-100V or 100-300V or 200-500V or 400-800V or others customized voltage range.
10, Can continuously work for 7*24h, the design service life > 15 years.
11, Big LCD display, parameter setting flexible,input and output voltage,frequency can be set on LCD.
12, Power range: 1kw-12kw, can be customized to customer's requirements.
Advanced Performance and FlexibilityThis inverter supports both 50Hz and 60Hz frequency, making it suitable for varied regions and applications. The split-phase output ensures flexible integration into local power infrastructure, whether you require 110/220VAC or 120/240VAC. Its certified design assures safety and compatibility for residential, commercial, or industrial systems.
Durable Construction and Safety FeaturesEngineered for longevity, the inverter boasts a sturdy casing with IP20 or IP45 protection against dust and splashes. The units build quality and protective measures allow dependable operation in different environmental conditions, making it an optimal solution for off-grid installations across diverse locations.
FAQs of 200-400VDC input off grid inverter split phase:
Q: How does the off grid inverter convert DC input to split phase AC output?
A: The inverter utilizes advanced circuitry to transform 200400VDC input into stable split-phase AC output at either 110/220VAC or 120/240VAC, suitable for powering appliances and equipment in off-grid systems.
Q: What type of environments can this inverter be installed in?
A: Due to its IP20 or IP45 protection ratings, the inverter can safely be installed indoors and in sheltered outdoor environments, providing resistance against dust and minor water splashes.
Q: When should I use this inverter rather than a standard grid-tied unit?
A: This inverter is ideal for applications where grid power is unavailable or unreliable, such as remote areas, renewable energy projects, or backup power systems requiring autonomous DC to AC conversion.
Q: Where is the inverter manufactured and distributed from?
A: The inverter is made in China and is distributed, exported, and supplied through certified international channels, meeting global standards like CE, SAA, VDE, G83, and G59.
Q: What is the installation process for this off grid inverter?
A: Installation typically involves mounting the inverter in a secure location, connecting it to the DC source within the 200400VDC range, and wiring the AC output to your split-phase system. Compliance with local electrical codes is recommended.
Q: How can users benefit from the inverters split-phase output capabilities?
A: The split-phase output provides compatibility with common household and light industrial circuits, enabling efficient distribution of AC power across appliances with different voltage requirements.