Meaning
Lithium-ion accumulators form the basis of the technological category identified by hs code 8507.60.00. This numerical classification denotes rechargeable batteries that rely on lithium ions as the primary charge carrier moving between electrodes during discharge and charging cycles. Customs authorities apply this code to separate advanced high-energy density energy storage products from traditional lead-acid or nickel-cadmium battery systems.
Chemical Identification
A specific electrochemistry distinguishes units under hs code 8507.60.00 from other energy storage devices. These cells utilize a cathode composed of lithium metal oxides and an anode often manufactured from graphite or silicon composites. Energy density per unit of mass remains the primary performance metric for items classified here.
Higher energy density enables portable electronics and electric vehicle architectures to minimize total pack weight. Manufacturers provide data sheets detailing the internal resistance and cycle life to demonstrate compliance with expected standards for lithium-based storage.
Commercial Regulation
International trade protocols necessitate the use of hs code 8507.60.00 to track the cross-border movement of secondary energy storage equipment. Documentation attached to shipments must reference this code to ensure appropriate tariff application and regulatory oversight regarding hazardous materials transportation. Logistics providers manage the physical handling of these goods according to specific safety protocols for lithium chemistries.
Incorrect classification during import or export procedures results in delays or regulatory scrutiny by customs officials.
Storage Requirement
Optimal performance for products under hs code 8507.60.00 depends on strict temperature and state-of-charge management during long-term holding periods. Excessive heat accelerates the degradation of internal electrolytes and reduces the total capacity of the battery pack. Logistics managers ensure that warehouse environments maintain the climate conditions suggested by the original equipment manufacturer to preserve electrical integrity.
Proper inventory rotation follows the first-in first-out method to mitigate the risk of spontaneous capacity loss associated with extended shelf duration.