LG
P30
Grade A
30Ah
3.7v
550g
7.47 × 164 × 232mm;
3000 times (80% of initial capacity at 0.2C rate, IEC Standard)
| Availability: | |
|---|---|
| Quantity: | |
| Parameter | Compiled specification | Parameter | Compiled specification |
|---|---|---|---|
| Brand / model | LG P30 / LGX P30 | Cell type | Rechargeable lithium-ion pouch cell |
| Chemistry | NCM, according to the supplied compilation | Nominal voltage | 3.7V |
| Nominal capacity | 30Ah | Approx. nominal energy | 111Wh, calculated from 3.7V × 30Ah |
| Charge cut-off voltage | 4.20V; verify with manufacturer documentation | Discharge cut-off voltage | 2.75V; verify with manufacturer documentation |
| Reference continuous discharge | 3C / 90A; commercially reported, unverified | Reference maximum discharge | 5C / 150A; duration and conditions unverified |
| Internal resistance | Approximately 0.6–0.7mΩ; method unverified | Reference weight | Approximately 550g; verify against sample |
| Reference dimensions | 7.47 × 164 × 232mm; nominal, excluding tabs | Terminal type | Pouch-cell tabs; geometry to be confirmed |
| Approx. specific energy | 202Wh/kg, calculated from 111Wh and 0.55kg | Product form | Bare cell for protected module integration |
The LG P30, also described as LGX P30 in the supplied compilation, is presented as a rechargeable 3.7V, 30Ah NCM pouch cell. Its calculated nominal energy is approximately 111Wh. The slim pouch format may suit custom modules where enclosure space and mechanical support have been carefully designed. This listing is a preliminary product summary: MisenBattery can source cells and support pack integration, while model identification and operating limits should be confirmed against the original manufacturer documentation and actual sample.
The compiled specifications list 30Ah nominal capacity at 3.7V. Multiplying these figures gives approximately 111Wh of nominal energy per cell. This calculation is useful for initial module sizing, while usable energy will depend on the verified discharge window, current, temperature and battery-management settings used in the finished system.
Reference dimensions are 7.47 × 164 × 232mm, excluding the terminal tabs. Pouch thickness can change with cell condition and measurement pressure, so these figures should be checked against production samples. Module design must allow for tab routing, edge sealing, swelling clearance, suitable compression and protection against puncture or bending.
Commercially reported figures in the supplied summary are 90A at 3C for continuous discharge and 150A at 5C as a reference maximum. They have not been confirmed from an original LG P30 specification. Their temperature conditions and the duration of the 150A rating must be established before either value is used in pack design.
Using the compiled 111Wh nominal energy and approximate 550g cell weight gives a calculated specific energy of about 202Wh/kg. This is an estimate based on two reference inputs, not a verified manufacturer rating. Check actual cell mass, usable energy and the additional weight of supports, connections and protection electronics when comparing complete modules.
The supplied compilation reports approximately 0.6–0.7mΩ internal resistance without stating whether it is an AC or DC measurement, or defining temperature and state of charge. Treat it as preliminary screening information. Incoming-cell evaluation should use one defined test method and consistent conditions so results can be compared meaningfully across samples.
Pouch cells require careful support of their flexible packaging and terminal tabs during assembly and service. Before selecting this model for mobility, robotics or portable power equipment, verify cell identity, voltage limits, discharge capability and temperature range. The enclosure and battery-management system should be designed around the confirmed cell and its actual operating profile.
Custom battery module applications: MisenBattery can supply cells and support custom pouch-cell modules with a compatible BMS, fusing, temperature sensing, insulated tab connections, mechanical support and thermal design. Confirm the original LG specification, sample markings and applicable product documentation before approving an application or publishing unverified discharge ratings as guaranteed limits.