Farasis
Farasis P187A
Grade A
186.5Ah
3.2V
3040 ± 45g
598 ± 1 × 200 ± 1 × 11.80 ± 0.25mm
3000 times (80% of initial capacity at 0.2C rate, IEC Standard)
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| Parameter | Specification | Parameter | Specification |
|---|---|---|---|
| Model | IFP12200598P187A | Chemistry | Lithium iron phosphate / graphite |
| Capacity at 0.33C | 188.5Ah | Capacity at 1C | 186.5Ah |
| Nominal voltage at 0.33C | 3.21V | Nominal voltage at 1C | 3.145V |
| Nominal energy | 605.1Wh at 0.33C; 586.5Wh at 1C | Charge cut-off voltage | 3.65V |
| Discharge cut-off voltage | 2.5V at 20–55°C; 2.3V at 10–20°C; 2.1V at 0–10°C; 2.0V at −30–0°C | AC resistance | ≤1.0mΩ at 50% SOC |
| DC resistance | ≤1.5mΩ; 1C, 10 seconds, 50% SOC | Continuous discharge current | 186.5A / 1C maximum |
| Continuous charge current | 250A / 1.34C maximum | Standard charge mode | 1/3C CC/CV; terminate at 0.05C |
| Peak discharge power | ≥2674W; 25°C, 10 seconds, 50% SOC | Peak charge power | ≥1100W; 25°C, 10 seconds, 50% SOC |
| Temperature ranges | Charge: −20–55°C; discharge: −30–55°C; storage: −40–60°C | Cycle test | ≥2000 cycles to the stated swelling end-of-life criterion; 25°C, step charge / 1C |
| Cell body dimensions | 598 ± 1 × 200 ± 1 × 11.80 ± 0.25mm; thickness at 50% SOC | Overall length / weight | 641 ± 3mm including terminals; 3040 ± 45g |
The IFP12200598P187A is a thin prismatic lithium iron phosphate and graphite cell for engineered battery modules. The supplied parameter image specifies 188.5Ah, 3.21V and 605.1Wh at 0.33C, with separate 1C figures of 186.5Ah, 3.145V and 586.5Wh. It lists 186.5A maximum continuous discharge and 250A maximum continuous charge. MisenBattery can supply cells and support custom module integration after the operating conditions, mechanical fit and manufacturer documentation have been checked.
At 0.33C, the stated capacity is 188.5Ah and nominal energy is 605.1Wh. At 1C, the corresponding values are 186.5Ah and 586.5Wh. The image also lists gravimetric energy density of 199Wh/kg at 0.33C and 193Wh/kg at 1C. These distinct conditions help buyers compare cells using the same discharge rate.
The cell body measures 598 ± 1mm long, 200 ± 1mm high and 11.80 ± 0.25mm thick at 50% SOC. Its overall length reaches 641 ± 3mm including the terminal extensions. Keeping these measurements separate is useful for module layout, terminal clearance, compression hardware and enclosure design.
The supplied image lists 186.5A, or 1C, as maximum continuous discharge current and 250A, or 1.34C, as maximum continuous charge current. These are cell-level figures for evaluating a proposed load and charging system. A finished module still needs suitable interconnects, temperature monitoring, protection settings and validation of heat generation.
At 25°C and 50% SOC, the listed 10-second peak discharge power is at least 2674W; peak charge power is at least 1100W under the same stated conditions. These power figures describe short tests, not continuous operation. Module design should confirm voltage response, temperature rise and allowable repetition for its actual duty cycle.
AC resistance is listed as no more than 1.0mΩ at 50% SOC. DC resistance is listed separately as no more than 1.5mΩ using a 1C, 10-second test at 50% SOC. Preserving the measurement methods matters when comparing cells or assessing electrical losses; AC and DC resistance are not interchangeable specifications.
The image lists charging from −20°C to 55°C and discharging from −30°C to 55°C. It also states at least 2000 cycles under a 25°C step-charge and 1C test to a swelling-based end-of-life criterion. The summary does not give low-temperature charging current limits or a numeric swelling threshold; obtain the full test procedure for pack qualification.
Custom battery module applications: This LFP cell may be evaluated for custom modules after the intended power profile, operating temperatures and mechanical requirements are checked. MisenBattery supplies cells and supports module integration with a compatible BMS, fuse protection, temperature sensing, insulated terminal connections, compression and thermal design. Obtain the full manufacturer datasheet and applicable product documentation before finalizing low-temperature charging or end-of-life criteria.