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(edit with the Customer Reassurance module)
(edit with the Customer Reassurance module)
(edit with the Customer Reassurance module)
A 3.5kVA 48V Cee Power Solar Inverter is a great option for users needing more power and efficiency compared to a 24V system. This inverter is typically used for medium-sized homes or small businesses, and the 48V system allows for better performance, especially for larger loads. Let's break it down.
Feature | Details |
---|---|
Capacity | 3.5kVA ≈ 2800W (assuming PF = 0.8) |
Battery Voltage | 48V (requires 4 × 12V batteries in series) |
Inverter Type | Hybrid (solar + battery + grid) |
Output Waveform | Pure sine wave (safe for electronics) |
Brand | Cee Power |
Use Case | Homes, offices, light industrial loads |
Lighting (LED for the whole house)
6–8 ceiling fans
Medium fridge/freezer
TV, computers, and phones
Washing machine, small appliances, pumps (if run sequentially)
🛑 Avoid using:
Large AC units, electric stoves, or multiple high-wattage appliances at once.
Current Draw at Full Load: 2800W ÷ 48V ≈ 58.3 Amps
Recommended battery setup:
4 × 12V deep-cycle batteries in series to form 48V.
Prefer AGM, GEL, or Lithium batteries.
200Ah to 300Ah battery bank for reasonable backup time (e.g., 48V 300Ah battery bank = 14.4kWh of energy).
🔋 More Capacity = Longer Backup. Adding more parallel strings of batteries will increase your backup time.
Solar Panel Array Size:
Suggested size: 1000W – 1800W depending on sunlight hours in your area.
5–6 x 300W panels will work well, potentially larger if you want faster charging.
Panel voltage should be within the MPPT range of the inverter (typically 60–120V for MPPT charge controllers).
Hybrid Operation: Works with solar, battery, and grid.
Automatically switches to solar → battery → grid based on availability and settings.
MPPT Charge Controller: Efficient solar charging.
LCD/LED Display for real-time monitoring.
Overload, Short Circuit, and Voltage Protection.
Generator support (if needed).
Lower current compared to 24V, which means:
Less heat and more efficient power transmission.
Smaller gauge cables and lower losses over long distances.
Supports larger loads without drawing excessive current.
Ideal for higher energy demands.
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