POLY-MAGIC MATERIALS CORPORATION. TAIWAN BRANCH (SAMOA)
Update:2026/09/15
Industries
Main Industry
Manufacturing
Main Product/Service
New High-Performance Conductive Polymer Material Formulations and Their Application Technologies
(The content above was translated by AI.)
(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.
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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.)
(The content above was translated by AI.)