1. Huawei Luna 2000 S0 battery
When configuring the Huawei Luna 2000 S0 battery, make sure that a built-in DC-DC inverter turns paired batteries back into 1 battery.
-
Select Huawei Luna 2000 S0 Single phase battery if a single-phase inverter is used.
|
Battery Pack Count [#]
|
Number of battery towers |
|---|---|
|
Cells Per Battery Pack [#]
|
1 (as a fixed value) |
|
Cell capacity [Ah] |
Amount of modules per tower * 11,11 [Ah] |
-
Cell Nominal Voltage ☑️ automatically set - do not change
-
Cell Maximum Current [A] ☑️ automatically set - do not change
Examples:
10kWh LUNA2000-S0 Single Phase |
15kWh LUNA2000-S0 Single Phase |
|---|
-
Select Huawei Luna 2000 S0 Three phase battery if a three-phase inverter is used.
|
Battery Pack Count [#]
|
Number of battery towers |
|---|---|
|
Cells Per Battery Pack [#]
|
1 (as a fixed value) |
|
Cell capacity [Ah] |
Amount of modules per tower * 8.33 [Ah] |
-
Cell Nominal Voltage ☑️ automatically set - do not change
-
Cell Maximum Current [A] ☑️ automatically set - do not change
Examples:
10kWh LUNA2000-S0 Three Phase |
15kWh LUNA2000-S0 Three Phase |
|---|
2. Huawei Luna 2000 S1 battery
2.1 Huawei S1 6.9kWh battery
Always connect the Huawei Luna 2000 S1 battery to the local network using a wired network cable directly connected to the modem!
-
Select Huawei Luna 2000 S1 Single phase battery if a single-phase inverter is used.
|
Battery Pack Count [#] |
Total amount of battery modules |
|
Cells Per Battery Pack [#] |
1 (as a fixed value) |
-
Cell Nominal Voltage ☑️ automatically set - do not change
-
Cell Maximum Current [A] ☑️ automatically set - do not change
Examples:
7kWh LUNA2000-S1 Single Phase |
14kWh LUNA2000-S1 Single Phase |
|---|
-
Select Huawei Luna 2000 S1 Three phase battery if a three-phase inverter is used.
|
Battery Pack Count [#] |
Total amount of battery modules |
|
Cells Per Battery Pack [#] |
1 (as a fixed value) |
-
Cell Nominal Voltage ☑️ automatically set - do not change
-
Cell Maximum Current [A] ☑️ automatically set - do not change
Examples:
7kWh LUNA2000-S1 Three Phase |
14kWh LUNA2000-S1 Three Phase |
|---|
2.2 Huawei S1 5kWh Battery
The S1 5kWh battery will be available in the device details.
2.3 Configuration of mixed modules
The LUNA2000-S1 system has one power module and one to three battery modules. One inverter can have up to four systems, and thus up to 12 battery modules. Two types of battery module are available.
|
Module |
Energy |
|---|---|
|
LUNA2000-5-E1 |
5 kWh |
|
LUNA2000-7-E1 |
6.9 kWh |
A mixed stack contains both types of module. This document is for a mixed stack only.
Note: For a stack with only one type of module, the named Huawei battery is correct. This document is not necessary.
Procedure
-
Count the modules of each type.
-
Select "Unsupported Battery" in the portal.
-
Enter Pack Count 1 and Cells Per Pack 1.
-
Enter the Cell Nominal Voltage for your inverter: 450 V for single phase, 600 V for three phase.
-
In Table 1 or Table 2, find the cell for your modules.
-
Enter the Cell Capacity and the Cell Maximum Current from that cell.
-
In the Battery Description field, write the brand, the model and the mix of modules.
CAUTION: Do not enter the cell values from the battery datasheet. The power module limits each module to 3.5 kW. Higher values make the inverter decrease the setpoint without a message.
Example of a description: Huawei LUNA2000-S1 - 1x 5-E1 + 2x 7-E1, 18.8 kWh
How to read Table 1 and Table 2
Find the row for the number of 5-E1 modules. Find the column for the number of 7-E1 modules. Each cell gives the Cell Capacity in Ah, then the Cell Maximum Current in A.
An empty cell is more than 12 modules. A stack of 12 modules is the maximum.
Table 1 - Single-phase inverter, Cell Nominal Voltage 450 V
Values are Cell Capacity [Ah] / Cell Maximum Current [A].
|
5-E1 row / 7-E1 column |
1 |
2 |
3 |
4 |
5 |
6 |
7 |
8 |
9 |
10 |
11 |
|---|---|---|---|---|---|---|---|---|---|---|---|
|
1 |
26.44 / 15.56 |
41.78 / 23.33 |
57.11 / 31.11 |
72.44 / 38.89 |
87.78 / 46.67 |
103.11 / 54.44 |
118.44 / 62.22 |
133.78 / 70.00 |
149.11 / 77.78 |
164.44 / 85.56 |
179.78 / 93.33 |
|
2 |
37.56 / 23.33 |
52.89 / 31.11 |
68.22 / 38.89 |
83.56 / 46.67 |
98.89 / 54.44 |
114.22 / 62.22 |
129.56 / 70.00 |
144.89 / 77.78 |
160.22 / 85.56 |
175.56 / 93.33 |
|
|
3 |
48.67 / 31.11 |
64.00 / 38.89 |
79.33 / 46.67 |
94.67 / 54.44 |
110.00 / 62.22 |
125.33 / 70.00 |
140.67 / 77.78 |
156.00 / 85.56 |
171.33 / 93.33 |
|
|
|
4 |
59.78 / 38.89 |
75.11 / 46.67 |
90.44 / 54.44 |
105.78 / 62.22 |
121.11 / 70.00 |
136.44 / 77.78 |
151.78 / 85.56 |
167.11 / 93.33 |
|
|
|
|
5 |
70.89 / 46.67 |
86.22 / 54.44 |
101.56 / 62.22 |
116.89 / 70.00 |
132.22 / 77.78 |
147.56 / 85.56 |
162.89 / 93.33 |
|
|
|
|
|
6 |
82.00 / 54.44 |
97.33 / 62.22 |
112.67 / 70.00 |
128.00 / 77.78 |
143.33 / 85.56 |
158.67 / 93.33 |
|
|
|
|
|
|
7 |
93.11 / 62.22 |
108.44 / 70.00 |
123.78 / 77.78 |
139.11 / 85.56 |
154.44 / 93.33 |
|
|
|
|
|
|
|
8 |
104.22 / 70.00 |
119.56 / 77.78 |
134.89 / 85.56 |
150.22 / 93.33 |
|
|
|
|
|
|
|
|
9 |
115.33 / 77.78 |
130.67 / 85.56 |
146.00 / 93.33 |
|
|
|
|
|
|
|
|
|
10 |
126.44 / 85.56 |
141.78 / 93.33 |
|
|
|
|
|
|
|
|
|
|
11 |
137.56 / 93.33 |
|
|
|
|
|
|
|
|
|
|
Table 2 - Three-phase inverter, Cell Nominal Voltage 600 V
Values are Cell Capacity [Ah] / Cell Maximum Current [A].
|
5-E1 row / 7-E1 column |
1 |
2 |
3 |
4 |
5 |
6 |
7 |
8 |
9 |
10 |
11 |
|---|---|---|---|---|---|---|---|---|---|---|---|
|
1 |
19.83 / 11.67 |
31.33 / 17.50 |
42.83 / 23.33 |
54.33 / 29.17 |
65.83 / 35.00 |
77.33 / 40.83 |
88.83 / 46.67 |
100.33 / 52.50 |
111.83 / 58.33 |
123.33 / 64.17 |
134.83 / 70.00 |
|
2 |
28.17 / 17.50 |
39.67 / 23.33 |
51.17 / 29.17 |
62.67 / 35.00 |
74.17 / 40.83 |
85.67 / 46.67 |
97.17 / 52.50 |
108.67 / 58.33 |
120.17 / 64.17 |
131.67 / 70.00 |
|
|
3 |
36.50 / 23.33 |
48.00 / 29.17 |
59.50 / 35.00 |
71.00 / 40.83 |
82.50 / 46.67 |
94.00 / 52.50 |
105.50 / 58.33 |
117.00 / 64.17 |
128.50 / 70.00 |
|
|
|
4 |
44.83 / 29.17 |
56.33 / 35.00 |
67.83 / 40.83 |
79.33 / 46.67 |
90.83 / 52.50 |
102.33 / 58.33 |
113.83 / 64.17 |
125.33 / 70.00 |
|
|
|
|
5 |
53.17 / 35.00 |
64.67 / 40.83 |
76.17 / 46.67 |
87.67 / 52.50 |
99.17 / 58.33 |
110.67 / 64.17 |
122.17 / 70.00 |
|
|
|
|
|
6 |
61.50 / 40.83 |
73.00 / 46.67 |
84.50 / 52.50 |
96.00 / 58.33 |
107.50 / 64.17 |
119.00 / 70.00 |
|
|
|
|
|
|
7 |
69.83 / 46.67 |
81.33 / 52.50 |
92.83 / 58.33 |
104.33 / 64.17 |
115.83 / 70.00 |
|
|
|
|
|
|
|
8 |
78.17 / 52.50 |
89.67 / 58.33 |
101.17 / 64.17 |
112.67 / 70.00 |
|
|
|
|
|
|
|
|
9 |
86.50 / 58.33 |
98.00 / 64.17 |
109.50 / 70.00 |
|
|
|
|
|
|
|
|
|
10 |
94.83 / 64.17 |
106.33 / 70.00 |
|
|
|
|
|
|
|
|
|
|
11 |
103.17 / 70.00 |
|
|
|
|
|
|
|
|
|
|
Table 3 - Total energy in kWh
This table gives the energy of the stack. Use it for the check after the installation.
|
5-E1 row / 7-E1 column |
0 |
1 |
2 |
3 |
4 |
5 |
6 |
7 |
8 |
9 |
10 |
11 |
12 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
0 |
- |
6.9 |
13.8 |
20.7 |
27.6 |
34.5 |
41.4 |
48.3 |
55.2 |
62.1 |
69.0 |
75.9 |
82.8 |
|
1 |
5.0 |
11.9 |
18.8 |
25.7 |
32.6 |
39.5 |
46.4 |
53.3 |
60.2 |
67.1 |
74.0 |
80.9 |
|
|
2 |
10.0 |
16.9 |
23.8 |
30.7 |
37.6 |
44.5 |
51.4 |
58.3 |
65.2 |
72.1 |
79.0 |
|
|
|
3 |
15.0 |
21.9 |
28.8 |
35.7 |
42.6 |
49.5 |
56.4 |
63.3 |
70.2 |
77.1 |
|
|
|
|
4 |
20.0 |
26.9 |
33.8 |
40.7 |
47.6 |
54.5 |
61.4 |
68.3 |
75.2 |
|
|
|
|
|
5 |
25.0 |
31.9 |
38.8 |
45.7 |
52.6 |
59.5 |
66.4 |
73.3 |
|
|
|
|
|
|
6 |
30.0 |
36.9 |
43.8 |
50.7 |
57.6 |
64.5 |
71.4 |
|
|
|
|
|
|
|
7 |
35.0 |
41.9 |
48.8 |
55.7 |
62.6 |
69.5 |
|
|
|
|
|
|
|
|
8 |
40.0 |
46.9 |
53.8 |
60.7 |
67.6 |
|
|
|
|
|
|
|
|
|
9 |
45.0 |
51.9 |
58.8 |
65.7 |
|
|
|
|
|
|
|
|
|
|
10 |
50.0 |
56.9 |
63.8 |
|
|
|
|
|
|
|
|
|
|
|
11 |
55.0 |
61.9 |
|
|
|
|
|
|
|
|
|
|
|
|
12 |
60.0 |
|
|
|
|
|
|
|
|
|
|
|
|
Formula
The tables come from these formulas. Use them only for a check.
Cell Nominal Voltage = 450 V for a single-phase inverter
600 V for a three-phase inverter
total energy [Wh] = 5000 x (number of 5-E1 modules)
+ 6900 x (number of 7-E1 modules)
total power [W] = 3500 x (total number of modules)
Pack Count = 1
Cells Per Pack = 1
Cell Capacity [Ah] = total energy [Wh] / Cell Nominal Voltage
Cell Maximum Current [A] = total power [W] / Cell Nominal Voltage
Each module gives 3.5 kW. The energy of the module does not change this value