
MP-ESA Series 3-10kW/5-48kWh Single Phase Home Storage Solution-6089
The China Moneypro ESA Series is a fully integrated all-in-one residential energy storage solution that combines hybrid inverter and battery in a streamlined modular design. It simplifies installation, reduces system complexity, and allows flexible energy expansion to match evolving household energy demands. With intelligent energy management and rapid UPS-level switching, the ESA Series empowers homeowners with greater self-consumption and reliable backup power.
All-in-One Smart Residential Energy Storage
The China Moneypro ESA Series is a fully integrated all-in-one residential energy storage solution that combines hybrid inverter and battery in a streamlined modular design. It simplifies installation, reduces system complexity, and allows flexible energy expansion to match evolving household energy demands. With intelligent energy management and rapid UPS-level switching, the ESA Series empowers homeowners with greater self-consumption and reliable backup power.
Compact, Modular & Scalable Design
Tailored for Growing Energy Needs
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Combines inverter, battery, UPS-style switching, and energy enclosure in a pre-wired modular unit.
-
Stackable battery modules (5 kWh or 8 kWh) support flexible capacity — scalable up to ~48 kWh.
-
Supports mixing old and new battery modules for easier system upgrades and expansion.
Benefits:
-
Expand storage incrementally with capacity that matches your energy demands.
-
Easy adaptation over system lifetime without full redesign.
-
Ideal for both new installs and retrofit upgrades.
High Performance & Efficient Cycling
Rapid Charge/Discharge & Quiet Operation
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1C charge/discharge capability enables fast energy cycling for daily use.
-
Fanless design delivers quiet operation (< 35 dB) — suitable for residential environments.
-
Supports 20 A PV input per string and 200 % PV oversizing, maximizing solar energy harvest.
Advantages:
-
Efficient cycling reduces energy waste and improves solar self-consumption.
-
Quiet system operation fits well in home settings.
-
Performance remains robust through typical daily charge/discharge cycles.
Reliable Backup & Smart Energy Control
Uninterrupted Power & Intelligent EMS
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UPS-level switching in < 4 ms ensures seamless transition to backup mode during outages.
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Offers up to 63 A full backup output, capable of powering essential loads.
-
AI-driven energy management system (EMS) optimizes tariff and load patterns for smarter usage.
Benefits:
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Keeps essential appliances running during grid interruptions.
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Enhances energy independence with real-time intelligent control.
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Reduces reliance on the grid through optimized energy dispatch.
Safe, Durable & Outdoor-Ready
Built for Residential Reliability
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LFP (Lithium Iron Phosphate) battery technology offers excellent safety and cycle stability.
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IP66 protection rating supports both indoor and outdoor installations.
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Advanced multi-layer safety protection, including cell/module monitoring and optional aerosol fire suppression, ensures robust long-term operation.
Advantages:
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High safety performance for daily residential use.
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Durable against weather elements and environmental stress.
Why Choose China Moneypro ESA Series?
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Integrated All-in-One: Hybrid inverter and battery in one compact unit, reducing installation effort and cost.
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Scalable Capacity: Stackable battery architecture supports up to ~48 kWh.
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Fast Backup: UPS-level switching (< 4 ms) with 63 A backup output.
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Quiet & Efficient: Fanless design with < 35 dB noise and 1C rapid cycling.
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Smart EMS: AI-driven control optimizes energy usage and tariff responsiveness.
Key Specifications (Representative Models)
| Parameter | GW3K-EHA-G20 | GW5K-EHA-G20 | GW6K-EHA-G20 | GW8K-EHA-G20 | GW10K-EHA-G20 |
|---|---|---|---|---|---|
| Battery Voltage Range (V) | 350–550 | 350–550 | 350–550 | 350–550 | 350–550 |
| Max. Continuous Charging Current (A) | 11.9 | 19.8 | 23.7 | 31.6 | 35.6 |
| Max. Continuous Discharging Current (A) | 8.7 | 14.5 | 17.4 | 23.2 | 29.0 |
| Max. Apparent Power to Grid (VA) | 3000 | 5000 | 6000 | 8000 | 10000 |
| Backup Nominal Apparent Power (VA) | 3000 | 5000 | 6000 | 8000 | 10000 |
Typical values; specific configurations may vary by region and model.
Typical Applications
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Residential Solar + Storage: Store excess PV generation for evening and peak use.
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Full Backup Support: Power essential loads during grid outages.
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Tariff Optimization: Smart EMS optimizes time-of-use energy usage.
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Outdoor & Indoor Installations: IP66 protection supports versatile placement.
FAQ – Common Questions
Q1: How fast does the ESA Series switch to backup mode?
It provides UPS-level switching in < 4 ms when a grid failure is detected.
Q2: Can the battery capacity be expanded later?
Yes — scalable battery modules (5 kWh/8 kWh) can be stacked up to approximately 48 kWh in total.
Q3: Is the ESA suitable for outdoor use?
Yes — the system features an IP66 protection rating, suitable for indoor or sheltered outdoor installations.
Q4: What type of battery does it use?
It uses LFP (Lithium Iron Phosphate) cells, known for high safety and cycle stability.
Q5: How quiet is the system during operation?
Thanks to its fanless design, typical sound levels remain below 35 dB.
Specifications
|
Technical Data
|
GW3K-EHA-G20
|
GW3.6K-EHA-G20
|
GW5K-EHA-G20
|
GW6K-EHA-G20
|
GW8K-EHA-G20
|
GW9.999K-EHA-G20
|
GW10K-EHA-G20
|
|---|---|---|---|---|---|---|---|
|
Battery Side
|
|||||||
|
Battery Type
|
LiFePO4
|
LiFePO4
|
LiFePO4
|
LiFePO4
|
LiFePO4
|
LiFePO4
|
LiFePO4
|
|
Nominal Battery Voltage (V)
|
380
|
380
|
380
|
380
|
380
|
380
|
380
|
|
Battery Voltage Range (V)
|
350 ~ 550
|
350 ~ 550
|
350 ~ 550
|
350 ~ 550
|
350 ~ 550
|
350 ~ 550
|
350 ~ 550
|
|
Start-up Voltage (V)
|
380
|
380
|
380
|
380
|
380
|
380
|
380
|
|
Number of Battery Input
|
1
|
1
|
1
|
1
|
1
|
1
|
1
|
|
Max. Continuous Charging Current (A)
|
11.9
|
14.3
|
19.8
|
23.7
|
31.6
|
35.6
|
35.6
|
|
Max. Continuous Discharging Current (A)
|
8.7
|
10.5
|
14.5
|
17.4
|
23.2
|
29.0
|
29.0
|
|
Max. Charging Power (kW)
|
3.3
|
3.96
|
5.5
|
6.6
|
8.8
|
11.0
|
11.0
|
|
Max. Discharging Power (kW)
|
3.3
|
3.96
|
5.5
|
6.6
|
8.8
|
11.0
|
11.0
|
|
PV Side
|
|||||||
|
Max. Input Power (kW)
|
6.0
|
7.2
|
10.0
|
12.0
|
16.0
|
20.0
|
20.0
|
|
Max. Input Voltage (V)
|
600
|
600
|
600
|
600
|
600
|
600
|
600
|
|
MPPT Operating Voltage Range (V)
|
40 ~ 560
|
40 ~ 560
|
40 ~ 560
|
40 ~ 560
|
40 ~ 560
|
40 ~ 560
|
40 ~ 560
|
|
Start-up Voltage (V)
|
50
|
50
|
50
|
50
|
50
|
50
|
50
|
|
Nominal Input Voltage (V)
|
400
|
400
|
400
|
400
|
400
|
400
|
400
|
|
Max. MPPT Current (A)
|
20
|
20
|
20
|
20
|
20
|
20
|
20
|
|
Max. MPPT Short Circuit Current (A)
|
26
|
26
|
26
|
26
|
26
|
26
|
26
|
|
Number of MPPTs
|
2
|
2
|
2
|
2
|
4
|
4
|
4
|
|
Number of Strings per MPPT
|
1/1
|
1/1
|
1/1
|
1/1
|
1/1/1/1
|
1/1/1/1
|
1/1/1/1
|
|
AC Side (On-grid)
|
|||||||
|
Nominal Power (kW)
|
3.0
|
3.6
|
5.0
|
6.0
|
8.0
|
9.999
|
10.0
|
|
Nominal Apparent Power to Grid (kVA)
|
3.0
|
3.6
|
5.0
|
6.0
|
8.0
|
9.999
|
10.0
|
|
Max. Apparent Power to Grid (kVA)
|
6.0
|
7.2
|
10.0
|
12.0
|
14.5
|
14.5
|
14.5
|
|
Max. Apparent Power from Grid (kVA)
|
6.0
|
7.2
|
10.0
|
12.0
|
14.5
|
14.5
|
14.5
|
|
Nominal Voltage (V)
|
220 / 230 / 240, L / N / PE
|
220 / 230 / 240, L / N / PE
|
220 / 230 / 240, L / N / PE
|
220 / 230 / 240, L / N / PE
|
220 / 230 / 240, L / N / PE
|
220 / 230 / 240, L / N / PE
|
220 / 230 / 240, L / N / PE
|
|
Voltage Range (V)
|
170 ~ 280
|
170 ~ 280
|
170 ~ 280
|
170 ~ 280
|
170 ~ 280
|
170 ~ 280
|
170 ~ 280
|
|
Nominal Frequency (Hz)
|
50 / 60
|
50 / 60
|
50 / 60
|
50 / 60
|
50 / 60
|
50 / 60
|
50 / 60
|
|
Frequency Range (Hz)
|
45 ~ 55 / 55 ~ 65
|
45 ~ 55 / 55 ~ 65
|
45 ~ 55 / 55 ~ 65
|
45 ~ 55 / 55 ~ 65
|
45 ~ 55 / 55 ~ 65
|
45 ~ 55 / 55 ~ 65
|
45 ~ 55 / 55 ~ 65
|
|
Max. Current to Grid (A)
|
13.7 @ 220V / 13.7 @ 240V
|
16.4 @ 220V / 15.4 @ 230V / 15.0 @ 240V
|
22.8 @ 220V / 21.7 @ 230V / 20.8 @ 240V
|
27.3 @ 220V / 26.1 @ 230V / 25.0 @ 240V
|
36.4 @ 220V / 34.8 @ 230V / 33.4 @ 240V
|
43.5 @ 220V / 43.5 @ 230V / 41.7 @ 240V
|
43.5 @ 220V / 43.5 @ 230V / 41.7 @ 240V
|
|
Max. Current From Grid (A)
|
27.3 @ 220V / 26.1 @ 230V / 25.0 @ 240V
|
32.8 @ 220V / 31.3 @ 230V / 30.0 @ 240V
|
45.5 @ 220V / 43.5 @ 230V / 41.7 @ 240V
|
50.0 @ 220V / 50.0 @ 230V / 50.0 @ 240V
|
63.0 @ 220V / 63.0 @ 230V / 60.5 @ 240V
|
63.0 @ 220V / 63.0 @ 230V / 60.5 @ 240V
|
63.0 @ 220V / 63.0 @ 230V / 60.5 @ 240V
|
|
Power Factor
|
~1 (Adjustable from 0.8 leading to 0.8 lagging)
|
~1 (Adjustable from 0.8 leading to 0.8 lagging)
|
~1 (Adjustable from 0.8 leading to 0.8 lagging)
|
~1 (Adjustable from 0.8 leading to 0.8 lagging)
|
~1 (Adjustable from 0.8 leading to 0.8 lagging)
|
~1 (Adjustable from 0.8 leading to 0.8 lagging)
|
~1 (Adjustable from 0.8 leading to 0.8 lagging)
|
|
THDi
|
<3%
|
<3%
|
<3%
|
<3%
|
<3%
|
<3%
|
<3%
|
|
Back-up Side
|
|||||||
|
Nominal Output Apparent Power (kVA)
|
3.0
|
3.6
|
5.0
|
6.0
|
8.0
|
10.0
|
10.0
|
|
Max. Output Apparent Power (kVA)
|
3.0 (6.0, 10s)
|
3.6 (7.2, 10s)
|
5.0 (10.0, 10s)
|
6.0 (12.0, 10s)
|
8.0 (16.0, 10s)
|
10.0 (20.0, 10s)
|
10.0 (20.0, 10s)
|
|
Max. Output Apparent Power (Bypass) (kVA)
|
6.0
|
7.2
|
10.0
|
12.0
|
14.5
|
14.5
|
14.5
|
|
Max. Output Current (A)
|
13.7 @ 220V / 13.7 @ 240V
|
16.4 @ 220V / 15.4 @ 230V / 15.0 @ 240V
|
22.8 @ 220V / 21.7 @ 230V / 20.8 @ 240V
|
27.3 @ 220V / 26.1 @ 230V / 25.0 @ 240V
|
36.4 @ 220V / 34.8 @ 230V / 33.4 @ 240V
|
43.5 @ 220V / 43.5 @ 230V / 41.7 @ 240V
|
43.5 @ 220V / 43.5 @ 230V / 41.7 @ 240V
|
|
Max. Output Current (Bypass) (A)
|
27.3 @ 220V / 26.1 @ 230V / 25.0 @ 240V
|
32.8 @ 220V / 31.3 @ 230V / 30.0 @ 240V
|
45.5 @ 220V / 43.5 @ 230V / 41.7 @ 240V
|
50.0 @ 220V / 50.0 @ 230V / 50.0 @ 240V
|
63.0 @ 220V / 63.0 @ 230V / 60.5 @ 240V
|
63.0 @ 220V / 63.0 @ 230V / 60.5 @ 240V
|
63.0 @ 220V / 63.0 @ 230V / 60.5 @ 240V
|
|
Nominal Output Voltage (V)
|
220 / 230 / 240, L / N / PE
|
220 / 230 / 240, L / N / PE
|
220 / 230 / 240, L / N / PE
|
220 / 230 / 240, L / N / PE
|
220 / 230 / 240, L / N / PE
|
220 / 230 / 240, L / N / PE
|
220 / 230 / 240, L / N / PE
|
|
Nominal Output Frequency (Hz)
|
50 / 60
|
50 / 60
|
50 / 60
|
50 / 60
|
50 / 60
|
50 / 60
|
50 / 60
|
|
THDv (@Linear Load)
|
<3%
|
<3%
|
<3%
|
<3%
|
<3%
|
<3%
|
<3%
|
|
Efficiency
|
|||||||
|
Max. Efficiency
|
97.6%
|
97.6%
|
97.6%
|
97.6%
|
97.5%
|
97.5%
|
97.5%
|
|
European Efficiency
|
96.5%
|
96.5%
|
96.8%
|
97.0%
|
96.8%
|
96.8%
|
96.8%
|
|
Max. Battery to AC Efficiency
|
98.0%
|
98.0%
|
98.0%
|
98.0%
|
97.8%
|
97.8%
|
97.8%
|
|
Protection
|
|||||||
|
PV String Current Monitoring
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
|
PV Insulation Resistance Detection
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
|
Residual Current Monitoring
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
|
PV Reverse Polarity Protection
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
|
Battery Reverse Polarity Protection
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
|
Anti-islanding Protection
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
|
AC Overcurrent Protection
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
|
AC Short Circuit Protection
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
|
AC Overvoltage Protection
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
Integrated
|
|
DC Surge Protection
|
Type II
|
Type II
|
Type II
|
Type II
|
Type II
|
Type II
|
Type II
|
|
AC Surge Protection
|
Type II
|
Type II
|
Type II
|
Type II
|
Type II
|
Type II
|
Type II
|



