
Published by the International Electrotechnical Commission (IEC), IEC 62133 is the primary international safety standard governing secondary (rechargeable) sealed cells and batteries containing alkaline or other non-acid electrolytes. Divided into IEC 62133-1 (nickel systems) and IEC 62133-2 (lithium systems), compliance with IEC 62133-2 is mandatory for lithium-ion and lithium-polymer batteries used in portable electronic devices—including smartphones, laptops, medical devices, power tools, wearable tech, and e-bikes.
Because lithium chemistry possesses high energy density and volatile organic electrolytes susceptible to thermal runaway, compliance with IEC 62133-2 testing and obtaining IECEE CB Scheme certification is compulsory for market entry across the European Union (CE Marking), North America (UL 62133 / OSHA NRTL), Japan (PSE Mark), and global customs clearance.
Importers and battery pack integrators must distinguish between safety testing for product compliance and transport safety regulations:
IEC 62133-2 subjects both individual cells and assembled battery packs to severe electrical, mechanical, and thermal abuse tests to ensure zero fire, explosion, or chemical leakage:
| Abuse Test Category | Applicable Test Level | Test Execution & Environmental Parameters | Pass/Fail Evaluation Criteria |
|---|---|---|---|
| External Short Circuit | Cell & Battery Pack | Short circuit applied across positive/negative terminals (< 80 m\Ω) at 55℃ until casing cools | No fire, no explosion; case temperature must remain < 150℃ |
| Thermal Abuse | Cell Level Only | Fully charged cell placed in gravity convection oven heated to 130℃ ± 2℃ for 10 or 30 mins | No fire, no explosion |
| Overcharge Testing | Battery Pack Level | Fully discharged pack charged at a current exceeding manufacturer specs with voltage boosted to 1.4 X Vmax | No fire, no explosion |
| Mechanical Drop | Cell & Battery Pack | Released from a height of 1.0 meter onto a smooth concrete surface (3 total drops) | No fire, no explosion, zero electrolyte leakage |
| Forced Internal Short Circuit | Cell Level (Regional) | Cell crushed by a small nickel pressure block inside a controlled chamber at elevated temperatures | Simulates internal separator puncture; no fire, no explosion |
Achieving IEC 62133-2 compliance at the battery pack level relies heavily on the design and execution of the Battery Management System (BMS) protective circuit:
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Quality control inspectors conducting Pre-Shipment Inspections (PSI) or factory audits on battery-powered electronics must execute the following physical verification checks on the manufacturing line:
IEC 62133-1 applies specifically to nickel-based secondary battery systems (NiCd and NiMH). IEC 62133-2 applies exclusively to secondary lithium-based systems (lithium-ion and lithium-polymer), featuring updated abuse test protocols tailored to lithium chemistry risks.
No. UN 38.3 is a transport safety requirement governing dangerous goods shipping regulations. IEC 62133-2 is a product safety standard evaluating electrical, mechanical, and thermal abuse under consumer use conditions. Both are required for global market entry.
The Forced Internal Short Circuit test is a specialized procedure (mandatory in Europe and Japan) where a cell is disassembled, a tiny nickel particle is placed inside the electrode layer, and pressure is re-applied to simulate internal manufacturing defects (such as separator burrs) that cause internal shorting and thermal runaway.
While possible, it is economically impractical. If individual cells already hold an IEC 62133-2 CB Certificate, the pack-level testing requires testing only the BMS circuitry and pack casing. If cells are uncertified, the entire cell-level test suite must be repeated, significantly increasing testing costs and timelines.
If a cell catches fire or explodes during 130℃ thermal baking, the battery fails certification. The manufacturer must redesign the cell separator, adjust electrolyte chemistry, or select higher-grade certified cells before re-testing.
[1] International Electrotechnical Commission. IEC 62133-2:2017 Secondary cells and batteries containing alkaline or other non-acid electrolytes — Safety requirements for portable sealed secondary lithium cells[S]. Geneva: IEC, 2017. https://www.iec.ch/
[2] United Nations. Recommendations on the Transport of Dangerous Goods: Manual of Tests and Criteria, Section 38.3 (UN 38.3)[S]. New York and Geneva: United Nations, 2026. https://unece.org/
[3] IECEE System. CB Scheme Certification Rules for Portable Batteries (BAT Category)[R]. Geneva: IECEE, 2025. https://www.iecee.org/