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Startups

Main Industry
Manufacturing
Main Product/Service
New High-Performance Conductive Polymer Material Formulations and Their Application Technologies
(The content above was translated by AI.)
Founded Year
2016
Unified Business No.
24811417
Status
Active
Number of Employees
0
Total Paid-in Capital
0 (NT$)
Website
Information such as company name, company status, responsible person, year of establishment, paid-in capital, and registered address is sourced from the Commercial and Industrial Registration Office of the Ministry of Economic Affairs; listing status includes emerging stock, M&A, and IPO; overseas development is provided by the startup itself. Notice: This data is compiled from public sources for reference only. We have no direct affiliation with the company and are not their contact person.
About the Company
POLY-MAGIC MATERIALS CORPORATION. TAIWAN BRANCH (SAMOA) was established in August 2016, and is primarily engaged in the production and sales of innovative conductive polymer material formulations for solid-state capacitors. Solid-state capacitors manufactured using this innovative material formulation possess the following advantages over existing commercially available solid-state capacitors: the capacitance is far higher than that of general solid-state capacitors (the theoretical capacitance extraction rate can reach 95-100%); the size is much smaller than that of capacitors with the same capacitance, offering the advantage of premium pricing; ultra-high film-forming properties combined with ultra-high interfacial adhesion make the overall mechanical strength far superior to products of other technologies; shock-resistant, impact-resistant, and suitable for automotive and audio applications, making it the only pure solid-state capacitor product that can be used in automotive applications; it has the best thermal stability (200-240°C); it can be made into a new generation of ultra-high temperature products (e.g., >150°C); it has the best low-temperature characteristics (at -55°C: low-temperature capacitance decay is only 4%, and low-temperature impedance increase is only +12%); it allows electronic products to operate normally in ultra-low temperature (polar) environments; and it features an ultra-long lifespan (at 105°C, >80,000 hours vs. approximately 1,000-2,000 hours for commercially available products).
(The content above was translated by AI.)



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