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FoxESS H3-8.0-E Hybrid Inverter (8 kW, 3-Phase)

Manufacturer: FoxESSSKU: H3-8.0-E
6375,00 zł net
≈ 1.452 € (settled in PLN, NBP rate of 2026-09-24)
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Manufacturer
FoxESS
SKU
H3-8.0-E
Availability
Made to order
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The FoxESS H3-8.0-E is an 8 kW 3-phase hybrid inverter designed for PV installations with battery storage. It features an EPS backup power function with a switching time of under 20 ms and built-in AC and DC surge protection.

The FoxESS H3-8.0-E is an 8 kW 3-phase hybrid inverter compatible with high-voltage energy storage systems (LFP). The device is equipped with two independent MPPT trackers, allowing for optimal PV system design. The inverter supports a 3-phase EPS backup power function with a maximum output of 8000 VA. Standard equipment includes a WLAN communication module and integrated Type II SPD surge protection on both the DC and AC sides.

Key features

  • Compatible with lithium batteries (LFP) in the 180-600 V voltage range
  • 3-phase EPS backup power with a switching time of under 20 ms
  • Two independent maximum power point trackers (MPPT)
  • Built-in DC switch and Type II SPD surge protection (AC and DC)
  • Maximum efficiency of 98.00%

Technical specifications

Rated AC output power8000 W
Number of phases3
Maximum DC input voltage1000 V
MPPT voltage range160-950 V
Number of MPPT trackers2
Maximum battery charge and discharge current26.0 A
Maximum efficiency98.00%
Protection classIP65
Operating temperature range-25 to 60 °C
Dimensions (W x H x D)449 x 519 x 198 mm
Weight28 kg

Frequently asked questions

Z jakimi magazynami energii współpracuje ten falownik?+
Falownik jest przeznaczony do współpracy z wysokonapięciowymi bateriami litowymi (LFP) pracującymi w zakresie napięć od 180 do 600 V.
Jaki jest czas przełączania na zasilanie awaryjne (EPS)?+
Czas przełączenia falownika na zasilanie awaryjne w trybie EPS wynosi poniżej 20 ms.
Jakie zabezpieczenia przepięciowe wbudowano w urządzenie?+
Falownik jest wyposażony fabrycznie w ochronniki przeciwprzepięciowe (SPD) typu II zarówno po stronie prądu stałego (DC), jak i przemiennego (AC).

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