ZERNE Battery Manufacturer

3.7 V Lithium Polymer Battery

3.7 V 5000mAh Lithium Polymer Battery 105070

The 105070 lipo battery provides 5000mAh in a 10mm × 50mm × 70mm pouch. Its approximately 18.50Wh reference keeps the high-capacity target while shortening plan length for products with more depth than length available.

5000mAh≈18.50Wh10mm50mm × 70mm3.7 V Nominal

Product Snapshot

A 5Ah Reference for Compact High-Capacity Enclosures

The 105070 is the shorter, slightly thinner 5000mAh alternative to 115080. It can be considered when a 50mm × 70mm pocket is available and the enclosure accepts a 10mm cell thickness.

A 10mm Stack-Up for High Reserve

The thickness remains a key mechanical and mass decision even though it is thinner than 115080.

5000mAhRated Capacity
18.50WhCalculated Energy
10mmCell Thickness
50mm × 70mmPlan Area

Technical Data

105070 LiPo Battery Specifications

The table separates confirmed configuration data from calculated electrical references so the 105070 format can be reviewed quickly during product planning.

105070 Mechanical and Electrical Specifications
Product Number105070
Nominal Voltage3.7 V
Rated Capacity5000mAh
Battery Dimension10mm × 50mm × 70mm
Approximate Battery WeightApprox. 100g
C-Rate1C
Internal Resistance40mΩ
Calculated Electrical References
Standard Charge CurrentApprox. 2500mA
Rapid Charge CurrentApprox. 5000mA
Standard Discharge CurrentApprox. 1000mA
Maximum Discharge CurrentApprox. 5000mA
Calculated EnergyApprox. 18.50Wh

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

High-Capacity Reserve in a Shorter 50mm-By-70mm Format: Why Evaluate the 105070 LiPo Battery?

The 105070 is selected around short length within the 5Ah class. Its 50mm × 70mm plan area can simplify packaging, but the approximately 100g family weight and 10mm depth must be included in the product architecture.

The 105070 is selected around short length within the 5Ah class. Its 50mm × 70mm plan area can simplify packaging, but the approximately 100g family weight and 10mm depth must be included in the product architecture. The calculated electrical references provide a structured starting point for charger, load and protection discussions, while the final battery remains a configurable OEM design.

01 / ENERGY

18.50Wh for a Defined Operating Target

Use the calculated energy to compare the product load, standby interval and desired recharge schedule.

02 / PACKAGING

10mm × 50mm × 70mm for Enclosure Planning

Review the cell envelope with cushioning, protection, retention and cable access before releasing the battery bay.

03 / CURRENT

Capacity-Derived Current References

The table gives early charger and load inputs; final electrical limits depend on the approved battery assembly.

04 / RESISTANCE

40mΩ for Power-Path Discussion

Use the listed internal-resistance reference with peak current, wiring, connector and temperature during validation.

05 / TEMPERATURE

Qualified Low-Temperature Evaluation

Confirm usable capacity, charging limits and cold-start behavior at the actual required operating condition.

Battery Calculation

Check 105070 Energy and Estimated Runtime

Use the prefilled 105070 values or enter your own load assumptions for a quick energy and runtime estimate.

LiPo Battery Capacity Calculator

Energy is calculated from nominal voltage and capacity. Runtime uses the entered load power and an adjustable efficiency assumption.

Approx. 2500mA is the approximate standard-charge reference for 5000mAh.

18.50WhEstimated Energy
Estimated Runtime
Ideal Charge Time

How to Use the Result

The 105070 reference values are prefilled: 3.7 V, 5000mAh and a standard-charge reference of approximately 2500mA. Adjust the load power and efficiency to compare operating scenarios; the calculator does not infer safe limits from capacity alone.

  • Energy = voltage × capacity ÷ 1000
  • Runtime estimate = energy × efficiency ÷ load power
  • Ideal charge time = capacity ÷ entered charge current
  • Actual runtime depends on load profile, temperature, cutoff and system losses

Use the result for early comparison, then confirm the charger, protection, connector and final battery specification through sample testing.

Integration Guidance

Use the 105070 When Length Is Tighter Than Depth

Review the 10mm depth, mass, retention and 18.50Wh reference as one packaging and power decision when a 70mm route is available.

Short Route

Use the shorter length to simplify placement while leaving room for leads, connector, protection and service access.

Structural Budget

A roughly 100g battery can influence supports, drop performance and device balance.

Actual Interval

Compare energy with power conversion losses and cold-weather capacity before approving runtime.

The stated dimensions and calculated values are reference inputs for design planning. Confirm the finished battery drawing, tolerance, protection, connector and test conditions before production release.

Applications & Solutions

Applications for the Compact High-Capacity 105070 LiPo Battery

The 105070 reference is intended for larger portable products that need a 5Ah reserve but have a shorter 70mm battery route.

These application paths are starting points for OEM evaluation. Final suitability depends on actual load, runtime, temperature, protection, connector and assembly requirements.

OEM Battery Support

Review the 105070 Short High-Capacity Pocket with ZERNE

Share the 50mm × 70mm bay, 10mm depth allowance, weight budget, actual load, charging method and temperature range so the format can be evaluated.

Useful RFQ Inputs

Include the conditions that determine whether this reference is suitable for the finished product.

  • Target runtime and duty cycle
  • 5000mAh energy target and load profile
  • 10mm depth and 50mm × 70mm pocket
  • Low-temperature operating and charging range
  • Connector, protection and cable arrangement
  • Forecast quantity, samples and documentation

When the Standard Format Needs Adjustment

ZERNE can review capacity, dimensions, protection, connector and temperature requirements when the 105070 configuration does not match the device.

Discuss a Custom Battery

FAQ

105070 LiPo Battery Questions

Find answers about the 105070 3.7 V 5000mAh lithium polymer battery, including its dimensions, energy reference, current calculations, internal resistance and low-temperature evaluation.

What are the dimensions of the 105070 LiPo battery?

The 105070 reference is 10mm × 50mm × 70mm in thickness × width × length order. Add room for cushioning, leads, connector and retention in the finished pocket.

How much energy does the 105070 battery provide?

At 3.7 V nominal voltage and 5000mAh rated capacity, the calculated energy is approximately 18.50Wh before cutoff, load, temperature and system losses.

What current references are shown for 105070?

The table provides Approx. 2500mA standard charge, Approx. 5000mA rapid charge, Approx. 1000mA standard discharge and Approx. 5000mA maximum discharge references. Confirm final safe limits for the completed battery.

How does 105070 compare with 115080?

Both are 5000mAh and 50mm wide; 105070 is 10mm × 70mm and 115080 is 11mm × 80mm.

Can ZERNE review the 105070 format for a cold-weather product?

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

Discuss the 105070 Short High-Capacity Battery with ZERNE

Share the 70mm route, 10mm depth, runtime, power profile, weight limit and temperature conditions so ZERNE can assess the format.

  • 18.50Wh target and service interval
  • 10mm depth, 50mm × 70mm pocket
  • 40mΩ, charger and peak current
  • Weight, connector and cold-weather tests

Request Product Information

Please include product number 105070 or the keyword 105070 lipo battery in your message.