Description
Specifications Table
| Product Name | Copper wire, 1.5mm (0.06in) dia, Puratronic™, 99.999% (metals basis) |
|---|---|
| Pack Size | 5m, 1m |
| Form | Wire |
| Grade | Puratronic™ (99.999% metals basis) |
| Application | Electrical conductivity experiments, research, calibration, and high-precision lab work |
Product Description
When your experiments demand uncompromising purity and reliability, this Puratronic™ copper wire delivers. With a 99.999% metals basis purity, it’s engineered for applications where even trace impurities can skew results. The 1.5mm diameter ensures optimal conductivity while maintaining flexibility for intricate setups.
Whether you’re a student testing electrical resistance, a researcher calibrating sensitive equipment, or an educator demonstrating fundamental physics principles, this wire is a staple in labs across India. Its high thermal and electrical conductivity makes it ideal for creating precise circuits, electrodes, or even custom lab apparatus.
Unlike standard copper wires, the Puratronic™ grade undergoes rigorous purification to eliminate contaminants, ensuring consistent performance in critical experiments. The 5m and 1m pack sizes offer flexibility—choose the 5m roll for bulk projects or the 1m length for quick, single-use applications.
Upgrade your lab setup with ultra-pure copper wire. Shop now at eqipped for guaranteed authenticity and fast shipping.
FAQs
What makes Puratronic™ copper wire different from regular copper wire?
Puratronic™ copper undergoes advanced refining to achieve 99.999% purity, eliminating trace metals and impurities that could affect experimental results. Regular copper wire may contain contaminants that alter conductivity or reactivity.
Can this wire be used for high-temperature applications?
Yes, but prolonged exposure above 200°C may cause oxidation. For extreme heat applications, consider using it in an inert atmosphere or with protective coatings.
Is this wire suitable for medical or food-related experiments?
While highly pure, it’s not certified for medical implants or food contact. For such applications, consult material safety guidelines or opt for medical-grade alternatives.
How do I calculate the resistance of this copper wire?
Use the formula R = ρL/A, where ρ (resistivity of copper) is ~1.68×10⁻⁸ Ω·m, L is length, and A is cross-sectional area (πr², with r = 0.75mm).
Does eqipped offer discounts for educational institutions?
Yes! Schools, colleges, and research labs can avail bulk discounts. Contact our team with your institution details for a tailored quote.