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HS Code Lookup for Heading 8507

HS Code Lookup helps classify products under appropriate HS code and find duties applicable across 140+ countries. Find and discover HS classification, tariffs, taxes, controls, rulings, ECCNs, and default and preferential duties for HS code 8507.

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Heading 8507
Electrical machinery and equipment and parts thereof; sound recorders and reproducers, television image and sound recorders and reproducers, and parts and accessories of such articles - Electric accumulators, including separators therefor, whether or not rectangular (including square).
List of Sub Headings & Description

WCO Notes for Heading 8507

85.07 Electric accumulators, including separators therefor, whether or not rectangular (including square).

8507.10 - Lead‑acid, of a kind used for starting piston engines

8507.20 - Other lead‑acid accumulators

8507.30 - Nickel‑cadmium

8507.50 - Nickel-metal hydride

8507.60 - Lithium-ion

8507.80 - Other accumulators

8507.90 - Parts

Electric accumulators (storage batteries or secondary batteries) are characterised by the fact that the electrochemical action is reversible so that the accumulator may be recharged. They are used to store electricity and supply it when required. A direct current is passed through the accumulator producing certain chemical changes (charging); when the terminals of the accumulator are subsequently connected to an external circuit these chemical changes reverse and produce a direct current in the external circuit (discharging). This cycle of operations, charging and discharging, can be repeated for the life of the accumulator.

Accumulators consist essentially of a container holding the electrolyte in which are immersed two electrodes fitted with terminals for connection to an external circuit. In many cases the container may be subdivided, each subdivision (cell) being an accumulator in itself; these cells are usually connected together in series to produce a higher voltage. A number of cells so connected is called a battery. A number of accumulators may also be assembled in a larger container. Accumulators may be of the wet or dry cell type.

The main types of accumulators are :

(1) Leadacid accumulators, in which the electrolyte is sulphuric acid and the electrodes lead plates or lead grids supporting active material.

(2) Alkaline accumulators, in which the electrolyte is usually potassium, or lithium hydroxide or thionyl chloride and the electrodes are, for example :

(i) Positive electrodes of nickel or nickel compounds and negative electrodes of iron, cadmium or metal hydride;

(ii) Positive electrodes of lithiated cobalt oxide and negative electrodes of a blend of graphite;

(iii) Positive electrodes of carbon and negative electrodes of metallic lithium or lithium alloy;

(iv) Positive electrodes of silver oxide and negative electrodes of zinc.

The electrodes may consist of simple plates, grids, rods, etc., or of grids or tubes covered or filled with a special paste of the active material. The containers for leadacid accumulators are usually made of glass or, in the case of car batteries, are moulded from plastic, hard rubber or composition material. In big stationary accumulators, glass or lead lined, plastic or wood boxes are used, while containers for alkaline accumulators are usually of steel or plastics. Alkaline accumulators may be of a specific size and shape, so designed to fit the device for which they are the source of electricity. They may be within waterproof containers. Many alkaline accumulators may have the external appearance of primary cells or batteries of heading 85.06.

Accumulators are used for supplying current for a number of purposes, e.g., motor vehicles, golf carts, fork-lift trucks, power hand-tools, cellular telephones, portable automatic data processing machines, portable lamps.

Some leadacid accumulators are fitted with a hydrometer, which measures the specific gravity of the electrolyte and so indicates roughly the degree of charge of the accumulator.

Electric accumulators remain classified here even if presented without their electrolyte.

Accumulators containing one or more cells and the circuitry to interconnect the cells amongst themselves, often referred to as battery packs”, are covered by this heading, whether or not they include any ancillary components which contribute to the accumulator’s function of storing and supplying energy, or protect it from damage, such as electrical connectors, temperature control devices (e.g., thermistors), circuit protection devices, and protective housings. They are classified in this heading even if they are designed for use with a specific device.

PARTS

Subject to the general provisions regarding the classification of parts (see the General Explanatory Note to Section XVI), the heading also covers parts of accumulators, e.g., containers and covers; lead plates and grids, whether or not coated with paste; separators of any material (except of unhardened vulcanised rubber or of textile material), including those in the form of flat plates merely cut into rectangles (including squares), meeting very precise technical specifications (porosity, dimensions, etc.) and hence ready for use.

The heading does not cover :

(a) Terminals (heading 85.36).

(b) Spent electric accumulators and waste and scrap thereof (heading 85.48).

85.07 Electric accumulators, including separators therefor, whether or not rectangular (including square).

8507.10 - Lead‑acid, of a kind used for starting piston engines

8507.20 - Other lead‑acid accumulators

8507.30 - Nickel‑cadmium

8507.50 - Nickel-metal hydride

8507.60 - Lithium-ion

8507.80 - Other accumulators

8507.90 - Parts

Electric accumulators (storage batteries or secondary batteries) are characterised by the fact that the electrochemical action is reversible so that the accumulator may be recharged. They are used to store electricity and supply it when required. A direct current is passed through the accumulator producing certain chemical changes (charging); when the terminals of the accumulator are subsequently connected to an external circuit these chemical changes reverse and produce a direct current in the external circuit (discharging). This cycle of operations, charging and discharging, can be repeated for the life of the accumulator.

Accumulators consist essentially of a container holding the electrolyte in which are immersed two electrodes fitted with terminals for connection to an external circuit. In many cases the container may be subdivided, each subdivision (cell) being an accumulator in itself; these cells are usually connected together in series to produce a higher voltage. A number of cells so connected is called a battery. A number of accumulators may also be assembled in a larger container. Accumulators may be of the wet or dry cell type.

The main types of accumulators are :

(1) Leadacid accumulators, in which the electrolyte is sulphuric acid and the electrodes lead plates or lead grids supporting active material.

(2) Alkaline accumulators, in which the electrolyte is usually potassium, or lithium hydroxide or thionyl chloride and the electrodes are, for example :

(i) Positive electrodes of nickel or nickel compounds and negative electrodes of iron, cadmium or metal hydride;

(ii) Positive electrodes of lithiated cobalt oxide and negative electrodes of a blend of graphite;

(iii) Positive electrodes of carbon and negative electrodes of metallic lithium or lithium alloy;

(iv) Positive electrodes of silver oxide and negative electrodes of zinc.

The electrodes may consist of simple plates, grids, rods, etc., or of grids or tubes covered or filled with a special paste of the active material. The containers for leadacid accumulators are usually made of glass or, in the case of car batteries, are moulded from plastic, hard rubber or composition material. In big stationary accumulators, glass or lead lined, plastic or wood boxes are used, while containers for alkaline accumulators are usually of steel or plastics. Alkaline accumulators may be of a specific size and shape, so designed to fit the device for which they are the source of electricity. They may be within waterproof containers. Many alkaline accumulators may have the external appearance of primary cells or batteries of heading 85.06.

Accumulators are used for supplying current for a number of purposes, e.g., motor vehicles, golf carts, fork-lift trucks, power hand-tools, cellular telephones, portable automatic data processing machines, portable lamps.

Some leadacid accumulators are fitted with a hydrometer, which measures the specific gravity of the electrolyte and so indicates roughly the degree of charge of the accumulator.

Electric accumulators remain classified here even if presented without their electrolyte.

Accumulators containing one or more cells and the circuitry to interconnect the cells amongst themselves, often referred to as battery packs”, are covered by this heading, whether or not they include any ancillary components which contribute to the accumulator’s function of storing and supplying energy, or protect it from damage, such as electrical connectors, temperature control devices (e.g., thermistors), circuit protection devices, and protective housings. They are classified in this heading even if they are designed for use with a specific device.

PARTS

Subject to the general provisions regarding the classification of parts (see the General Explanatory Note to Section XVI), the heading also covers parts of accumulators, e.g., containers and covers; lead plates and grids, whether or not coated with paste; separators of any material (except of unhardened vulcanised rubber or of textile material), including those in the form of flat plates merely cut into rectangles (including squares), meeting very precise technical specifications (porosity, dimensions, etc.) and hence ready for use.

The heading does not cover :

(a) Terminals (heading 85.36).

(b) Spent electric accumulators and waste and scrap thereof (heading 85.4885.49).

85.07 Electric accumulators, including separators therefor, whether or not rectangular (including square).

8507.10 - Lead‑acid, of a kind used for starting piston engines

8507.20 - Other lead‑acid accumulators

8507.30 - Nickel‑cadmium

8507.50 - Nickel-metal hydride

8507.60 - Lithium-ion

8507.80 - Other accumulators

8507.90 - Parts

Electric accumulators (storage batteries or secondary batteries) are characterised by the fact that the electrochemical action is reversible so that the accumulator may be recharged. They are used to store electricity and supply it when required. A direct current is passed through the accumulator producing certain chemical changes (charging); when the terminals of the accumulator are subsequently connected to an external circuit these chemical changes reverse and produce a direct current in the external circuit (discharging). This cycle of operations, charging and discharging, can be repeated for the life of the accumulator.

Accumulators consist essentially of a container holding the electrolyte in which are immersed two electrodes fitted with terminals for connection to an external circuit. In many cases the container may be subdivided, each subdivision (cell) being an accumulator in itself; these cells are usually connected together in series to produce a higher voltage. A number of cells so connected is called a battery. A number of accumulators may also be assembled in a larger container. Accumulators may be of the wet or dry cell type.

The main types of accumulators are :

(1) Leadacid accumulators, in which the electrolyte is sulphuric acid and the electrodes lead plates or lead grids supporting active material.

(2) Alkaline accumulators, in which the electrolyte is usually potassium, or lithium hydroxide or thionyl chloride and the electrodes are, for example :

(i) Positive electrodes of nickel or nickel compounds and negative electrodes of iron, cadmium or metal hydride;

(ii) Positive electrodes of lithiated cobalt oxide and negative electrodes of a blend of graphite;

(iii) Positive electrodes of carbon and negative electrodes of metallic lithium or lithium alloy;

(iv) Positive electrodes of silver oxide and negative electrodes of zinc.

The electrodes may consist of simple plates, grids, rods, etc., or of grids or tubes covered or filled with a special paste of the active material. The containers for leadacid accumulators are usually made of glass or, in the case of car batteries, are moulded from plastic, hard rubber or composition material. In big stationary accumulators, glass or lead lined, plastic or wood boxes are used, while containers for alkaline accumulators are usually of steel or plastics. Alkaline accumulators may be of a specific size and shape, so designed to fit the device for which they are the source of electricity. They may be within waterproof containers. Many alkaline accumulators may have the external appearance of primary cells or batteries of heading 85.06.

Accumulators are used for supplying current for a number of purposes, e.g., motor vehicles, golf carts, fork-lift trucks, power hand-tools, cellular telephones, portable automatic data processing machines, portable lamps.

Some leadacid accumulators are fitted with a hydrometer, which measures the specific gravity of the electrolyte and so indicates roughly the degree of charge of the accumulator.

Electric accumulators remain classified here even if presented without their electrolyte.

Accumulators containing one or more cells and the circuitry to interconnect the cells amongst themselves, often referred to as battery packs”, are covered by this heading, whether or not they include any ancillary components which contribute to the accumulator’s function of storing and supplying energy, or protect it from damage, such as electrical connectors, temperature control devices (e.g., thermistors), circuit protection devices, and protective housings. They are classified in this heading even if they are designed for use with a specific device.

PARTS

Subject to the general provisions regarding the classification of parts (see the General Explanatory Note to Section XVI), the heading also covers parts of accumulators, e.g., containers and covers; lead plates and grids, whether or not coated with paste; separators of any material (except of unhardened vulcanised rubber or of textile material), including those in the form of flat plates merely cut into rectangles (including squares), meeting very precise technical specifications (porosity, dimensions, etc.) and hence ready for use.

The heading does not cover :

(a) Terminals (heading 85.36).

(b) Spent electric accumulators and waste and scrap thereof (heading 85.49).

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FAQs
What is HS code 8507?
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HS code 8507 includes Electrical machinery and equipment and parts thereof; sound recorders and reproducers, television image and sound recorders and reproducers, and parts and accessories of such articles - Electric accumulators, including separators therefor, whether or not rectangular (including square)..
How many sub-headings are there in HS code 8507?
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There are 7 sub-heading(s) in HS code 8507.
What is an HS Code and Why Does it Hold For Cross-Border Trade?
HS code is a standardized six-digit numerical classification system developed by the World Customs Organization (WCO) and acts as a universal language for simplifying the process of identifying and classifying traded products. They ensure consistent customs clearance, enable accurate duty calculation, and help identify relevant trade regulations. This simplifies the process for businesses, saving time, reducing risk, and promoting informed decision-making.
What are Controls and Why should Businesses Focus on Them?
In global trade, controls refer to a set of regulations and policies implemented by governments to manage the import and export of goods and services. These controls can take various forms, including tariffs, quotas, embargoes, export controls, and licensing requirements. Companies should prioritize understanding and adhering to them for compliance, reduced risk of legal issues, mitigating reputational damage, staying competitive, and building trust with governments.
What are Tariffs in Global Trade and Why should Businesses Focus on Them?
In global trade, tariffs are a type of tax levied by a government on imported goods. They act as a financial barrier to entry, increasing the overall cost of the imported product for domestic consumers and businesses. By understanding how tariffs work and their potential impact, companies can make informed decisions about pricing, sourcing, and market expansion, ultimately ensuring their competitiveness in the global marketplace.
What are FTAs in Global Trade and Why should Businesses Focus on Them?
In global trade, Free Trade Agreements (FTAs) are legally binding agreements between two or more countries aimed at reducing or eliminating barriers to trade between them. By understanding the terms of relevant FTAs and strategically incorporating them into their business plans, companies can enjoy reduced costs, expanded market access, and a more competitive edge in international trade.

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