Home> Products> Compression spring> Battery Negative Spring Stable Elasticity
Battery Negative Spring Stable Elasticity
Battery Negative Spring Stable Elasticity
Battery Negative Spring Stable Elasticity
Battery Negative Spring Stable Elasticity
Battery Negative Spring Stable Elasticity
Battery Negative Spring Stable Elasticity

Battery Negative Spring Stable Elasticity

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Product Description

A tower-shaped battery negative terminal contact spring with soldered leads is essentially a small metal spring that both holds the battery in place and provides direct electrical connection. It's primarily used in battery cases and compartments. It's a standard battery spring with an added soldered lead structure, allowing direct soldering to circuit boards or wires.  The spring body is typically tower-shaped, somewhat like a small cone. 

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Core Structure and Functions:Tower-shaped (conical) compression body: A spiral structure, wider at the bottom and narrower at the top, accommodates the positive electrode protrusion of cylindrical batteries (AA/AAA, etc.), ensuring stable contact area.Provides continuous axial elasticity, preventing power outages and poor contact caused by battery loosening.

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Integrated solder leads: The side-bent solder leads are a key design feature, typically with pre-soldered points at the ends for direct wave soldering/manual soldering onto the PCB.


Materials and Performance:Mainly made of nickel-plated carbon steel/stainless steel wire, balancing conductivity, rust resistance, and fatigue resistance, suitable for frequent assembly/disassembly and low-power applications.Fine wire diameter and few turns primarily provide light load elasticity while ensuring sufficient current carrying capacity.


In practical use, Compression spring primarily provides contact and support for the negative terminal of the battery. When you insert the battery, the spring compresses, generating a continuous rebound force that pushes the battery towards the other end, ensuring contact between the positive and negative terminals and allowing for stable current flow.


The soldered leads design has another advantage: a more direct conductive path, reducing intermediate contact points and improving overall stability. 

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