Connecting Wire, Enameled Copper Magnet Manufacturer,Supplier and Exporter in India
Product Code : SCL-M-11539
This Enameled Copper Magnet Wire is a high-purity conductor
engineered for the fabrication of electromagnetic coils, solenoids, and
transformers. Optimized for University, Secondary, and
Vocational TVET physics laboratories, it facilitates the study of
Maxwell’s equations and electromagnetic induction. It complies with ISO 9001:2015 manufacturing standards for
high-dielectric reliability in instructional electrical modules.
Technical Specifications
|
Tender Specification |
OEM Technical Detail |
|
Conductor Material Grade |
High-Purity Electrolytic
Annealed Copper |
|
Insulation Grade |
Industrial Enamel (Thin-film
polymer coating) |
|
Spool Displacement |
4-Ounce (113.4g) Net Weight |
|
Available Gauges |
Two Standard Wire Gauges
(SWG) |
|
Dielectric Integrity |
Optimized for high-density
winding without short-circuiting |
Key Pedagogical Outcomes
·
Thin-Film Enamel Insulation: Enables students to Evaluate the efficiency of high-density electromagnetic
coils while preventing inter-turn short circuits during "Synthesis"
induction experiments.
·
High-Purity Annealed Copper Core: Facilitates the Analysis of magnetic
flux density (B) relative to ampere-turns, supporting quantitative
verification of Ampere's Law.
·
4-Ounce Standardized Spooling: Students Apply standardized
wire lengths to construct functional motors and galvanometers, reinforcing Application of electromagnetic motor principles.
International Logistics & Compliance
This School Instrument grade material is consolidated for
international B2B procurement via export-grade seaworthy crating
(ISPM-15 compliant). Each 4-ounce spool is vacuum-sealed or
shrink-wrapped to protect the enamel coating from UV degradation and prevent
copper oxidation during maritime transit. Documentation provided to
international procurement officers includes the Manufacturer’s Authorization
Form (MAF), Certificate of Quality (CoC), and Material Safety Data
Sheets (MSDS). The tropicalized design of the enamel
insulation is verified for operational stability in environments reaching 45°C and 90% Humidity, ensuring the dielectric barrier
remains flexible and non-tacky in equatorial laboratory settings.
