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KIT-GOODWE4.6 - Goodwe ES 4.6kW 48V Self Consumption Kit
System Information
Your chosen system consists of a Goodwe ES 4.6kW Hybrid Inverter (4.6KW Backup) inverter with 10 Canadian Solar 300W Poly KuPower Half-Cell with MC4 modules and Freedom Won Lite Home 15/12 LiFePO4 Battery N.
This system can discharge a maximum 4600W of AC energy for powering household loads. If fully charged, the battery would sustain that rate for about 3 hours. In order to maximise the performance of the system, it is best to discharge the battery slower by avoiding high peak loads. This system would power typical household loads of 1kW for about 15 hours.
SunSynk Sun 5kW 48V Self Consumption Kit
System Information
Your chosen system consists of a Sunsynk Sun 5K Hybrid Inverter inverter with 10 Canadian Solar 300W Poly KuPower Half-Cell with MC4 modules and Freedom Won Lite Home 10/8 LiFePO4 Battery N.
This system can discharge a maximum 5500W of AC energy for powering household loads. If fully charged, the battery would sustain that rate for about 1 hours. In order to maximise the performance of the system, it is best to discharge the battery slower by avoiding high peak loads. This system would power typical household loads of 1kW for about 10 hours.
5kW Back-Up Kit
System Information
Your chosen system consists of a Sunsynk Sun 5K Hybrid Inverter inverter with Freedom Won Lite Home 10/8 LiFePO4 Battery N.
This system can discharge a maximum 5500W of AC energy for powering household loads. If fully charged, the battery would sustain that rate for about 1 hours. In order to maximise the performance of the system, it is best to discharge the battery slower by avoiding high peak loads. This system would power typical household loads of 1kW for about 10 hours.
3.6kW Back-Up Kit
our chosen system consists of a KODAK Solar Off-Grid Inverter MAX 3.6kW 24V inverter with GITER 2.56kWh, 25.6V/100Ah LFP battery module (Pack of 3).
This system can discharge a maximum 3780W of AC energy for powering household loads. If fully charged, the battery would sustain that rate for about 2 hours. In order to maximise the performance of the system, it is best to discharge the battery slower by avoiding high peak loads. This system would power typical household loads of 1kW for about 7.68 hours
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