Your No.1 Choice for High-Quality Batteries.

Home

Contact Us

Downloads

Reseller Login

Aftersale&Forum

Battery Pack Information Lookup

Get Data of Your Gobel Power Battery
Decode
GP-SR1-PC200 Premium Example: GPEV280H240520R1006
GP-SR1-PC200 Standard Example: GPHC280H240401R1003
GP-SR1-PC200 Standard Example: GPEV280H240927R1001
GP-SR1-PC200 Basic Example: GPCN280L240809R1001
GP-SR1-PC314 Premium Example: GPEV314H240921R1012
GP-SR1-JK314 Standard Example: GPEV314M250109R1001
GP-SR1-JK314 Standard Example: GPGT314L250510R1011
GP-SR3-PC100 Example: GPEV100H240930R1003
GP-LA12-280AH Premium Example: GDEV280H240307R1008
GP-LA12-280AH Standard Example: GDHC280H240312R1401
More Examples
SN Capacity (Ah) Max Charge Voltage (V) Min Discharge Voltage (V) BMS
GPEV280H231220R1001 293.00 58.00 43.09 GP-PC200 BMS
GPHC280H240321R1201 295.00 57.27 42.17 GP-PC200 BMS
GPGT314L250510R1002 331.00 57.73 41.96 GP-JK200 BMS
GPEV314H250611R1004 328.00 57.86 41.96 GP-PC200 BMS
GPEV100H250507R1001 103.00 57.06 44.02 GP-PC100 BMS
GPEV280H240515R1001 298.00 57.70 42.56 GP-PC200 BMS
GPEV280H240616R1002 304.00 57.98 41.10 GP-PC200 BMS
GPHC280H250610R1501 291.00 57.29 43.19 GP-JK200 BMS
GPEV280H231227R1006 304.00 58.00 41.33 GP-PC200 BMS
GPEV100H241022R1007 104.00 57.82 40.99 GP-PC100 BMS
GPEV314H241105R1005 325.00 57.41 41.55 GP-PC200 BMS
GPEV314H250610R1007 329.00 57.99 41.07 GP-PC200 BMS
GPHC280H241116R1201 291.00 57.47 44.03 GP-RN200 BMS
GPEV314H250517R1011 330.00 57.99 41.19 GP-PC200 BMS
GPRP280L231107R3202 283.00 56.46 43.44 GP-PC200 BMS
GPEV280H240401R1029 303.00 58.00 42.06 GP-PC200 BMS
GPEV314H250514R1004 329.00 57.91 41.72 GP-PC200 BMS
GPEV280H240520R1017 299.00 57.99 42.27 GP-PC200 BMS
GPEV280H231220R1015 294.00 58.00 42.22 GP-PC200 BMS
GPEV100H240826R1004 104.00 57.98 41.51 GP-PC200 BMS
Specification of The Battery

Pack SN:GPHC280M250718R1001
Pack Type: 51.2V LiFePO4 Battery
Pack Grade: Standard
BMS Type: JK200 BMS
Balancer: Built-in BMS 2A
Heater: Without Heater
Cell Type: Hithium 280
Cell Grade: HSEV-
Cells Connection: 16S1P
Pack Test Result

Full Capacity: 287.00 Ah (14.69 kWh)
Max Charge Voltage: 57.69 V
Min Discharge Voltage: 44.71 V
Charge Test Steps
  • Charging at a constant current of 100A, with a maximum charging voltage of 55.5V.
  • Charging at a constant voltage of 55.5V, with a cutoff current of 40A.
  • Charging at a constant current of 40A, with a maximum charging voltage of 58V.
  • Document the maximum charging voltage when the voltage of a single cell reaches 3.65V.
  • * Tested without deliberated active balance procedure.
Discharge Test Steps
  • Discharging at a constant current of 100A.
  • Document the minimum discharging voltage when the voltage of a single cell reaches 2.5V.
  • * Please be aware that the charge/discharge curve and capacity of batteries can vary with changing temperatures throughout the seasons. In winter, tested capacity will be relatively lower.
Charge/Discharge Curve
(Based on GPHC280M250718R1001 Test Data)

Cells Information

Cell Id QR Capacity (Ah) OCV1 (mV) RI1 (mΩ) Self Discharge Thick (mm) Test Date
1 2 0IJCBA02631111D7T0008024 295.62 3,288.3 0.1906 0.0223 71.65 2023-08-07
2 4 0IJCBA0A231111DBK0001332 296.07 3,290.4 0.1750 0.0257 71.66 2023-11-25
3 6 0IJCBA02631111D700009071 294.46 3,287.7 0.1908 0.0252 71.67 2023-08-02
4 7 0IJCBA02631111D7X0001846 296.13 3,288.2 0.1902 0.0233 71.57 2023-08-03
5 9 0IJCBA0B291111D860000819 296.13 3,280.1 0.1672 0.0234 71.65 2023-08-08
6 11 0IJCBA02631111D820004053 295.33 3,287.8 0.1884 0.0263 71.65 2023-08-04
7 16 0IJCBA02631111D820007895 294.98 3,290.2 0.1878 0.0191 71.67 2023-08-04
8 28 0IJCBA02631111D700009074 295.97 3,287.6 0.1908 0.0254 71.69 2023-08-02
9 29 0IJCBA01451111D8L0002824 294.46 3,287.9 0.1622 0.0246 71.65 2023-08-23
10 30 0IJCBA02961111D7K0007793 295.21 3,289.6 0.1901 0.0187 71.63 2023-07-22
11 31 0IJCBA02631111D820007384 295.58 3,290.1 0.1910 0.0230 71.67 2023-08-04
12 35 0IJCBA0A231111DBK0001327 295.69 3,290.0 0.1753 0.0254 71.67 2023-11-25
13 40 0IJCBA03441111D7S0007293 295.67 3,287.9 0.1607 0.0227 71.71 2023-07-27
14 41 0IJCBA02101111D840005965 295.95 3,288.1 0.1906 0.0244 71.63 2023-08-06
15 42 0IJCBA02451131D8N0008492 294.73 3,288.3 0.1839 0.0240 71.62 2023-08-26
16 46 0IJCBA0A231111DBJ0029653 296.15 3,291.0 0.1744 0.0258 71.68 2023-11-25
Interest in our Products? Submit a Form and Get a Quote Get Quote
Why Cells Consistency is Important?

Cell consistency in a LiFePO4 (Lithium Iron Phosphate) battery, or indeed any type of battery, refers to the uniformity of the performance and characteristics of the individual cells within the battery.

When a battery is made up of multiple cells, it's important that each cell has the same capacity, internal resistance, self-discharge rate, and other performance characteristics. This is because the overall performance of the battery is only as good as its weakest cell. If one cell has a lower capacity or higher internal resistance, it can reduce the performance of the entire battery, and can even lead to premature failure of the battery.

In a series configuration, the same current flows through all cells. If one cell has a lower capacity, it will discharge faster than the others. Once this cell is fully discharged, the overall battery voltage will drop significantly, even though the other cells still have charge left. This can lead to underutilization of the overall battery capacity.

In a parallel configuration, all cells share the same voltage. If one cell has a higher self-discharge rate, it will drain the other cells to balance its voltage, leading to a faster overall discharge rate.

Moreover, inconsistencies between cells can lead to issues with balancing. Balancing is the process of ensuring all cells in a battery are at the same state of charge. This is typically done by either transferring charge from higher charged cells to lower charged ones (active balancing), or by dissipating excess charge in the higher charged cells (passive balancing). If the cells are inconsistent, it can make balancing more difficult and less effective.

Therefore, cell consistency is crucial for maximizing the performance, longevity, and safety of a battery. This is why Gobel Power puts a lot of effort into cell selection and sorting, to ensure that only cells with similar characteristics are used together in a battery.

Static parameters such as capacities, internal resistances, and voltage levels, though informative, may not provide a comprehensive picture of cell consistency in a LiFePO4 (Lithium Iron Phosphate) battery. A more practical and straightforward method to assess cell consistency involves monitoring the maximum charge voltage when a single cell reaches 3.65V. This is based on the understanding that if the cells exhibit good consistency, the voltage variation across them will be minimal, resulting in a higher overall maximum charge voltage. Therefore, observing the maximum charge voltage when one cell attains 3.65V can serve as a reliable indicator of the battery's cell consistency.

Home >>  Battery Pack Information Lookup
AI Chatbot