When processing large-gauge or complex-shielded cables, an adjustable-length shield layer stripping machine becomes especially valuable. It allows the operator to set precise stripping lengths according to cable size, shielding thickness, and process requirements, preventing manual damage to inner cores while maintaining batch-level consistency. For many wire-harness manufacturers, the most common question is: *What determines the price of such a machine?*
First, the precision of the adjustment mechanism is the core factor. Models that achieve millimeter-level accuracy and automatically compensate for cable elasticity usually require higher-grade motors, sensors, and guide systems, which naturally raises the cost. Second, the supported cable diameter range also affects pricing. Machines capable of handling both thin signal shielding wires and thick new-energy cables need stronger drive modules and interchangeable blade systems, placing them in the higher-end category.
Another major factor is the degree of automation. If the machine supports automatic feeding, automatic positioning, automatic stripping-quality detection, or even integration with MES or full-line data systems, its price will be significantly higher than that of basic semi-automatic models. Blade material, blade life, multi-step stripping capability, and the ability to handle multiple shield layers in one process also contribute to cost differences.
Overall, prices for adjustable-length shield layer stripping machines usually fall into three tiers:
*Entry-level models: Designed for single-spec cables, lower cost.
*Mid-range models: Support wider cable sizes, higher precision, best cost-performance.
*High-end models: Intelligent adjustment, fully automated workflow, ideal for high-standard industries such as new energy, automotive, and communications.
When choosing a machine, companies should not focus only on the price. The decision should be based on cable types, production volume, and future expansion needs. Investing in a stable, reliable machine often saves labor costs in the long term, improves consistency, and ultimately delivers higher production efficiency.
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