More Reserve Without Changing Plan Area
The 2500mAh target adds energy while the 40mm × 60mm footprint remains familiar to the product team.
3.7 V Lithium Polymer Battery
The 804060 lipo battery provides a 2500mAh rated capacity in an 8mm × 40mm × 60mm pouch format. The approximately 9.25Wh reference is a higher-reserve path for products that can keep the established footprint but accept a deeper cell.
Product Snapshot
The 804060 keeps the 40mm × 60mm plan area used by nearby 2.2Ah references, then increases capacity through an 8mm thickness.
The 2500mAh target adds energy while the 40mm × 60mm footprint remains familiar to the product team.
The 8mm thickness should be compared with cushioning, board stack-up, connector height and compression limits.
Technical Data
The table separates confirmed configuration data from calculated electrical references so the 804060 format can be reviewed quickly during product planning.
| 804060 Mechanical and Electrical Specifications | |
|---|---|
| Product Number | 804060 |
| Nominal Voltage | 3.7 V |
| Rated Capacity | 2500mAh |
| Battery Dimension | 8mm × 40mm × 60mm |
| Approximate Battery Weight | Approx. 50g |
| C-Rate | 1C |
| Internal Resistance | 50mΩ |
| Calculated Electrical References | |
| Standard Charge Current | Approx. 1250mA |
| Rapid Charge Current | Approx. 2500mA |
| Standard Discharge Current | Approx. 500mA |
| Maximum Discharge Current | Approx. 2500mA |
| Calculated Energy | Approx. 9.25Wh |
Approximate weight uses the approved 3.7 V LiPo family reference. Current and energy values are calculated planning references; internal resistance is a supplied reference, not a universal performance limit; confirm the final charger, protection and load specification for the finished battery.
Product Characteristics & Advantages
The 804060 is a capacity-first choice within a familiar footprint. It is distinct from 684060 and 714060 because it adds a 2500mAh target and an 8mm depth. Confirm low-temperature performance for the actual assembly.
The 804060 is a capacity-first choice within a familiar footprint. It is distinct from 684060 and 714060 because it adds a 2500mAh target and an 8mm depth. Confirm low-temperature performance for the actual assembly. The calculated electrical references provide a structured starting point for charger, load and protection discussions, while the final battery remains a configurable OEM design.
The calculated energy supports a higher-capacity comparison when service access or recharge frequency is constrained.
Keeping the plan area can simplify a revision, but the deeper finished assembly still needs mechanical review.
The table gives early charger and load inputs; final electrical limits depend on the approved battery assembly.
Use the listed internal-resistance reference with peak current, wiring, connector and temperature during validation.
Confirm usable capacity, charging limits and cold-start behavior at the actual required operating condition.
Battery Calculation
Use the prefilled 804060 values or enter your own load assumptions for a quick energy and runtime estimate.
Energy is calculated from nominal voltage and capacity. Runtime uses the entered load power and an adjustable efficiency assumption.
Approx. 1250mA is the approximate standard-charge reference for 2500mAh.
The 804060 reference values are prefilled: 3.7 V, 2500mAh and a standard-charge reference of approximately 1250mA. Adjust the load power and efficiency to compare operating scenarios; the calculator does not infer safe limits from capacity alone.
Use the result for early comparison, then confirm the charger, protection, connector and final battery specification through sample testing.
Integration Guidance
When the 40mm × 60mm bay is fixed and more reserve is required, compare the 8mm stack-up with the 9.25Wh target and validate charger, protection and temperature together.
A familiar plan area can reduce redesign, but a deeper pouch may affect ribs, covers and compression.
Compare 9.25Wh with actual duty cycle, cutoff and conversion losses before specifying capacity.
The resistance reference and low-temperature claim both require a test context that includes the final battery build.
Applications & Solutions
The 804060 supports products with a familiar 40mm × 60mm pocket but a need for more energy reserve than a 2.2Ah reference.
01The 8mm × 40mm × 60mm pouch can be evaluated where longer measurement sessions and a fixed battery bay are important.
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02The energy reference can support repeated print sessions when motor pulses require more reserve.
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03The 40mm × 60mm footprint can be compared with camera housings that need standby reserve and wireless activity.
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Tell us the established pocket, available depth, current profile, target operating interval and temperature conditions so ZERNE can assess the reserve.
Include the conditions that determine whether this reference is suitable for the finished product.
ZERNE can review capacity, dimensions, protection, connector and temperature requirements when the 804060 configuration does not match the device.
Discuss a Custom BatteryFAQ
Find answers about the 804060 3.7 V 2500mAh lithium polymer battery, including its dimensions, energy reference, current calculations, internal resistance and low-temperature evaluation.
The 804060 reference is 8mm × 40mm × 60mm in thickness × width × length order. Add room for cushioning, leads, connector and retention in the finished pocket.
At 3.7 V nominal voltage and 2500mAh rated capacity, the calculated energy is approximately 9.25Wh before cutoff, load, temperature and system losses.
The table provides Approx. 1250mA standard charge, Approx. 2500mA rapid charge, Approx. 500mA standard discharge and Approx. 2500mA maximum discharge references. Confirm final safe limits for the completed battery.
All use a 40mm × 60mm plan area, but 804060 raises capacity to 2500mAh and thickness to 8mm, changing the depth-versus-runtime decision.
Yes. Share the operating and charging range, runtime, load profile, connector, protection requirements and quantity so ZERNE can define an appropriate validation path.
Technical Inquiry
Tell us the 40mm × 60mm bay, allowed depth, current profile, target interval and temperature conditions so the higher-capacity configuration can be evaluated.