Documented EU three-phase range

Three-phase hybrid power, without stretching the data.

The current supplied guide confirms one EU three-phase model: ELE TPE48160V300-1000P. This page explains its published selection values and the engineering checks required around them.

Representative white three-phase hybrid inverter family visualFamily visual
L1Phase A0° reference
L2Phase B120° offset
L3Phase C240° offset

Concept visual · confirm exact output and wiring from model documentation

16kWrated output
48Vnominal battery
32kWmaximum PV input
1–6parallel capability listed

Three-phase principle

Three conductors share one rotating power system.

In a typical balanced three-phase system, the phase waveforms are separated by 120 electrical degrees. The load schedule, phase-to-phase and phase-to-neutral requirements still have to match the exact inverter and site.

  • 01
    Match the serviceCountry, nominal voltage, frequency, neutral and grounding
  • 02
    List loads by phaseContinuous power, surge and single-phase branches
  • 03
    Confirm imbalance limitsNever infer them from total 16kW output
L1 · 0°L2 · 120°L3 · 240°

Current documented model

One confirmed model is better than a padded range.

The neutral guide currently supports this EU model only. No 18kW, 30kW or high-voltage-battery variant is inferred from adjacent products.

EU · three phase · family visual
Representative ELECNO three-phase hybrid inverter family visualExact image-to-model mapping pending confirmation

TPE series · 48V battery

ELE TPE48160V300-1000P

16kW
rated output
Maximum PV input
32kW
Maximum PV open-circuit voltage
1000V
MPPT channels / current
2 × 36A
Battery charging current
300A
Parallel capability
1–6 units
Source boundary

Selection values: Household Series Product — Neutral Version — 260721, EU quick selection guide page 4. Certification scope, exact interfaces and model-image mapping require separate verification.

Voltage-domain check

1000V PV input does not mean a high-voltage battery.

This model connects two separate DC domains. Treating the PV maximum as the battery voltage would be a fundamental specification error.

PV domain1000V

Maximum open-circuit voltage

A ceiling for array Voc—not a normal target and not the MPPT operating value.

DC conversionseparate voltage domains
Battery domain48V

Nominal battery platform

Compatibility still depends on its full operating window, current, BMS and protection.

Cold weather

Calculate maximum string Voc at the lowest design temperature.

MPPT current

Check both documented 36A channels independently.

Battery current

Verify the bank and BMS against the 300A charging value and discharge design.

Protection

Coordinate disconnects, breakers or fuses, conductors and grounding.

Load-side engineering

Balance is a load-schedule question.

The 16kW total does not reveal how much uneven phase loading is permitted. Map every load to L1, L2 or L3 and request the exact model limit before promising backup performance.

Send a phase load schedule
Three-phase load reviewΣ
L1kW + surgephase and single-phase loads
L2kW + surgephase and single-phase loads
L3kW + surgephase and single-phase loads

Illustrative bars only · not a permitted imbalance specification

Published mode flags

Three modes are marked in the selection guide.

The quick table marks this model for on-grid, off-grid and battery-less operation. Detailed behavior, switching and limitations must still be verified from exact documentation.

01

On-grid

Confirm grid settings, anti-export design, protection and target-market requirements.

Selection table: supported
02

Off-grid

Size continuous load, three-phase motor surge, battery power and reserve energy.

Selection table: supported
03

Battery-less

Request exact operating constraints before designing a system without a battery.

Selection table: supported

Parallel boundary

“1–6” is a capability flag, not a finished design.

Adding inverters multiplies more than nameplate power. It also changes DC current, communications, conductor and busbar sizing, protection, fault levels, layout and commissioning requirements.

01
02
03
04
05
06

Confirm before design: approved topology · firmware · communications · total battery current · AC protection · cable and busbar sizing

Publication status

EU confirmed. US held for written verification.

EU seriesDocumented

ELE TPE48160V300-1000P

The model and selection values are consistent enough in the supplied guide to support this category page.

Included on this website
US seriesOn hold

ELE TPE48160M…

The selection table and detail page conflict on the model/current designation. Publishing a product page now would turn an unresolved source conflict into a public claim.

Excluded pending manufacturer confirmation

Three-phase FAQ

Keep every answer tied to the model.

These answers reflect the current supplied material. The exact datasheet, project design and local electrical requirements remain controlling.

The EU guide documents ELE TPE48160V300-1000P: 16kW output, 48V nominal battery, 300A battery charging, 32kW PV input, 1000V PV Voc maximum, two 36A MPPT channels and 1–6 parallel capability.

Three-phase inquiry

Send the electrical architecture, not just “16kW.”

Include country, grid voltage and frequency, neutral arrangement, loads by phase, largest motor, PV string design, battery model and parallel target.

Prepare an inquiry