WT36130216F-100LB 3.2V 100Ah Low Temperature LiFePO4 Battery for Cold-Chain Power, Outdoor Energy Storage, Emergency Backup Systems
| Parameter | Specification |
|---|---|
| Model | WT36130216F-100LB |
| Battery Type | Wide-temperature rechargeable lithium iron phosphate (LiFePO4) cell |
| Nominal Voltage | 3.2V |
| Nominal Capacity | 100.0Ah |
| Minimum Capacity | 99.0Ah |
| Charge Cut-off Voltage | 3.65V |
| Discharge Cut-off Voltage | 2.0V |
| Standard Charge / Discharge | 100.0A (1.0C) standard charge at 0°C to 45°C; 100.0A (1.0C) standard discharge at -40°C to 60°C |
| Dimensions / Weight | 36.0 x 130.0 x 216.8 mm with plastic film; 2020±30g |
| Operating Temperature | Charge: -45°C to 60°C; discharge: -50°C to 60°C |
WT36130216F-100LB 3.2V 100Ah Low Temperature LiFePO4 Battery Cell
The WT36130216F-100LB low temperature LiFePO4 battery cell is a 3.2V 100Ah wide-temperature rechargeable lithium iron phosphate cell for OEM battery pack programs that need reliable operation in cold environments. Key sourced parameters include 100.0Ah nominal capacity, 99.0Ah minimum capacity, 3.65V charge cut-off voltage, 2.0V discharge cut-off voltage, approximately 36.0 x 130.0 x 216.8 mm dimensions with plastic film, and 2020 +/- 30 g weight. The specification supports charging from -45°C to 60°C and discharging from -50°C to 60°C when used within the stated current limits. VTCBATT can support factory-direct supply, sample testing, pack design discussion, busbar and terminal matching, labeling, OEM/ODM customization, and stable batch production for low-temperature LiFePO4 battery packs.
For additional cold-climate pack options, review the VTCBATT Wide Temperature Battery range and Wide Temperature LiFePO4 Battery category.
This 3.2V 100Ah low temperature LiFePO4 battery is suitable for cold-chain logistics systems, refrigerated warehouse AGV packs, outdoor energy storage cabinets, telecom backup batteries, winter emergency power, remote monitoring stations, marine port equipment, and off-grid industrial sites where ordinary cells may lose usable capacity in freezing weather. The prismatic cell format provides high capacity in a compact pack-building shape, while the documented low-temperature charging, discharging, startup pulse, and cycle data help engineers design battery systems for cold climates. VTCBATT can customize pack structure, series-parallel configuration, BMS protection settings, wire harnesses, busbars, connectors, NTC placement, labels, samples, and wholesale supply plans for distributors, brand owners, and equipment manufacturers.
3.2V 100Ah Wide-Temperature LiFePO4 Cell Features
Low-temperature charging, sub-zero discharge, startup pulse support, and factory-ready pack customization for B2B projects.
Specification supports discharge operation from -50°C to 60°C within the stated current limits.
Wide-temperature charging support helps rechargeable packs operate in cold warehouses and winter outdoor cabinets.
3.2V 100Ah LiFePO4 cell with 36.0 x 130.0 x 216.8 mm body size for module assembly.
VTCBATT supports BMS design, busbars, terminals, enclosures, NTC placement, labeling, samples, and wholesale supply.
-50°C Discharge Operation
WT36130216F-100LB is designed for wide-temperature LiFePO4 battery packs that must keep operating in freezing field conditions. The specification supports discharge from -50°C to 60°C, with tested 1C discharge data at -40°C showing 91.31Ah capacity and 89.2% capacity retention.


Low Temperature Charging Ready
The cell supports charging down to -45°C within the specified charge-current limits, helping engineers build rechargeable packs for cold warehouses, winter outdoor cabinets, and field equipment. The test report records low-temperature charging results including -10°C 1C charging with 94.11Ah capacity and 97.1% retention.
-20°C 500A to 600A Startup Pulse
For cold-start equipment and short high-load events, the report records -20°C transient discharge performance with 500A terminal voltage of 2.32V and 600A terminal voltage of 2.20V for 10 seconds. This supports low-temperature pack designs that need controlled burst power.


Long Cycle Life in Cold Conditions
The specification defines -10°C cycle-life testing at 0.33C charge and 1C discharge, with capacity required to remain at least 70% after 1500 cycles. The test report further shows -10°C low-temperature cycling data with 500-cycle average discharge capacity retention of 101.39%.
Low Temperature Application Environments for WT36130216F-100LB 3.2V 100Ah LiFePO4 Cell
This wide-temperature prismatic LiFePO4 cell is intended for cold-chain logistics, winter outdoor energy storage, emergency backup, refrigerated warehouse equipment, marine and port systems, and remote industrial power sites. The application scenes show low-temperature operating environments where OEM pack design must account for charging current, discharge current, BMS settings, enclosure protection, and thermal conditions.

Cold-chain logistics power systems, refrigerated truck battery modules, freezer monitoring backup power

Outdoor energy storage cabinets, telecom base station backup, remote microgrid battery banks

Low-temperature AGV and material-handling equipment used in refrigerated warehouses

Polar research instruments, winter field monitoring stations, remote weather telemetry systems

Emergency backup power systems for cold regions, rescue equipment, outdoor UPS packs

Snow-removal equipment electronics, winter municipal service devices, roadside control modules

Marine and port equipment battery packs operating in freezing wind and salt-air environments

Industrial energy storage packs for mining, oilfield, and off-grid sites exposed to sub-zero temperatures
WT36130216F-100LB Low Temperature Battery Test Results
Review source-supported charging, discharge, startup pulse, cycle-life, and safety data for this 3.2V 100Ah low-temperature LiFePO4 cell.
- Low Temperature Discharge Test
- Low Temperature Charging Test
- Startup Pulse Test
- Cycle Life Test
- Safety Test
Low Temperature Discharge Test
Test data supports sub-zero pack design review for WT36130216F-100LB.
| Condition | Capacity | Capacity Retention | Platform Voltage | Energy Retention |
|---|---|---|---|---|
| 1C, -40°C | 91.31Ah | 89.2% | 2.519V | 70.7% |
| 1C, -30°C | 96.35Ah | 96.6% | 2.660V | 80.9% |
| 1C, -20°C | 96.38Ah | 95.3% | 2.770V | 82.9% |
| 1C, 25°C | 101.16Ah | 100.0% | 3.183V | 100.0% |
High and Low Temperature Charging Test
Charging performance was tested under low and high temperature conditions with current limits adjusted by temperature.
| Condition | Capacity | Capacity Retention | Platform Voltage | Temperature Rise |
|---|---|---|---|---|
| 0.01C, -45°C | 81.75Ah | 80.3% | 3.582V | 3.0°C |
| 0.1C, -30°C | 65.64Ah | 64.5% | 3.598V | 2.3°C |
| 0.2C, -20°C | 88.33Ah | 86.8% | 3.548V | 3.6°C |
| 0.3C, -10°C | 96.99Ah | 94.1% | 3.493V | 4.7°C |
Cold Startup Pulse Test
The -20°C startup pulse data helps evaluate short high-current events in cold environments.
| Condition | Terminal Voltage |
|---|---|
| -20°C, 500A, 10s | 2.32V |
| -20°C, 600A, 10s | 2.20V |
Low Temperature Cycle Life Test
At -10°C, 0.33C charge and 1C discharge, the specification defines 1500-cycle life with capacity at least 70% of initial capacity. The test report records 500-cycle average discharge capacity retention of 101.39% under -10°C cycling conditions.
| Cycle Condition | Source-Supported Result |
|---|---|
| -10°C, 0.33C charge / 1C discharge | Specification: capacity ≥70% after 1500 cycles |
| -10°C low-temperature cycling | Test report: 500-cycle average discharge capacity retention 101.39% |
| 25°C cycling | Specification: capacity ≥70% after 8000 cycles |
Safety and Environmental Test Summary
The specification defines safety and environmental checks including free fall, squeeze, overcharge, over-discharge, short circuit, vibration, low pressure, and thermal cycling. Acceptance criteria are buyer-facing safety outcomes such as no explosion, no fire, and no leakage where applicable.
| Category | Defined Check | Acceptance Criteria |
|---|---|---|
| Mechanical | Free fall, squeeze, vibration | No explosion, no fire, and no leakage where specified |
| Electrical | Overcharge, over-discharge, short circuit | No explosion and no fire |
| Environmental | Low pressure and thermal cycling | No explosion, no fire, and no leakage where specified |
The specification lists charging from -45°C to 60°C and discharging from -50°C to 60°C when used within the stated current limits.
The test report records 1C discharge at -40°C with 91.31Ah capacity and 89.2% capacity retention.
The report records -20°C 10-second transient discharge results of 500A at 2.32V terminal voltage and 600A at 2.20V terminal voltage.
Yes. VTCBATT can support BMS settings, busbars, terminals, enclosure, NTC placement, wiring, labels, samples, and wholesale production for OEM/ODM low-temperature battery packs.
Related LiFePO4 and Wide Temperature Battery Products
Related VTCBATT battery option for LiFePO4 and wide-temperature pack projects.
Related VTCBATT battery option for LiFePO4 and wide-temperature pack projects.
Related VTCBATT battery option for LiFePO4 and wide-temperature pack projects.
Related VTCBATT battery option for LiFePO4 and wide-temperature pack projects.
Related VTCBATT battery option for LiFePO4 and wide-temperature pack projects.
WT36130216F-100LB 3.2V 100Ah Low Temperature LiFePO4 Battery Cell
The WT36130216F-100LB is a wide-temperature rechargeable LiFePO4 battery cell for cold-region energy storage, outdoor industrial equipment, and OEM battery pack programs that require operation below freezing.

Core Electrical Parameters
| Parameter | Specification |
|---|---|
| Model | WT36130216F-100LB |
| Battery Type | Wide-temperature rechargeable lithium iron phosphate (LiFePO4) cell |
| Nominal Voltage | 3.2V |
| Nominal Capacity | 100.0Ah |
| Minimum Capacity | 99.0Ah |
| Charge Cut-off Voltage | 3.65V |
| Discharge Cut-off Voltage | 2.0V |
| Standard Charge / Discharge | 100.0A (1.0C) standard charge at 0°C to 45°C; 100.0A (1.0C) standard discharge at -40°C to 60°C |
| Dimensions / Weight | 36.0 x 130.0 x 216.8 mm with plastic film; 2020±30g |
| Operating Temperature | Charge: -45°C to 60°C; discharge: -50°C to 60°C |
Low Temperature Performance
The cell is specified for charging from -45°C to 60°C and discharging from -50°C to 60°C. Tested low-temperature discharge data includes 91.31Ah at -40°C under 1C discharge, 96.35Ah at -30°C under 1C discharge, and 96.38Ah at -20°C under 1C discharge.
For startup pulse requirements, the report records -20°C 10-second transient discharge results of 2.32V terminal voltage at 500A and 2.20V terminal voltage at 600A.
Low Temperature Application Gallery




Performance Charts
AGM vs Standard LiFePO4 vs Low-Temperature LiFePO4 in Cold Charging
Low-temperature charging is one of the main differences between AGM batteries, ordinary LiFePO4 batteries, and purpose-built low-temperature LiFePO4 batteries. Standard LiFePO4 cells can develop lithium plating when charged at low temperature, especially below freezing, which may cause permanent capacity loss and can raise safety risk. For this reason, many standard LiFePO4 BMS designs set a low-temperature charge cutoff around 0°C or -5°C.
AGM batteries do not have the same lithium-plating mechanism, so controlled charging below 0°C is often more acceptable for AGM than for ordinary LiFePO4. This does not mean AGM is better in every cold-weather metric. A dedicated low-temperature LiFePO4 or wide-temperature lithium battery can use optimized electrolyte, cell structure, heating film, and low-temperature BMS logic to improve cold charging behavior while still keeping lithium battery advantages such as lower weight, deeper usable capacity, longer cycle life, and higher energy efficiency.

| Battery Type | Low-Temperature Charging Behavior | Lithium Plating Risk | Typical BMS / Charging Strategy | Best-Fit Cold Environment Use |
|---|---|---|---|---|
| AGM Lead-Acid Battery | Can often accept controlled charging below freezing when voltage and current are properly adjusted. | Not affected by lithium plating because it is not a lithium-ion chemistry. | Temperature-compensated lead-acid charging; reduced current in severe cold. | Simple cold-weather backup systems where weight, depth of discharge, and cycle life are less critical. |
| Standard LiFePO4 Battery | Discharge may still be possible in cold conditions, but charging below 0°C is commonly restricted. | Higher concern during sub-zero charging; lithium plating can lead to permanent capacity fade and safety risk. | Low-temperature charge cutoff is commonly set around 0°C or -5°C; discharge protection is handled separately. | Moderate climates, indoor systems, or outdoor systems with charging disabled until the cell warms up. |
| Low-Temperature LiFePO4 / Wide-Temperature Lithium Battery | Designed for improved cold charging and cold discharge through cell chemistry, structure, and pack-level control. | Managed through optimized electrolyte, cell design, controlled charge current, heating film, and low-temperature BMS logic. | Temperature-based current limits, heater control where required, charge enable thresholds, and application-specific BMS settings. | Cold-chain logistics, outdoor energy storage, telecom backup, winter emergency power, and industrial packs exposed to sub-zero environments. |
In short, ordinary AGM batteries may tolerate extreme-cold charging better than ordinary LiFePO4, especially below freezing. However, a purpose-built low-temperature LiFePO4 battery can address the lithium-plating limitation and often outperform AGM in overall pack performance, especially for weight, cycle life, depth of discharge, and long-term energy efficiency.
VTCBATT OEM/ODM Supply
VTCBATT can customize the pack structure, BMS protection logic, busbars, connectors, enclosure, NTC placement, and labeling for application-specific low-temperature battery packs.







