Premix helped develop MRI-safe disposable ECG electrodes with conductive polymer materials for reliable performance and efficient production.
Explore the challenges of producing electrically conductive polyolefin foams and how optimized formulations help ensure reliable electrical and mechanical performance.
Wearable devices are evolving beyond consumer gadgets. Learn how conductive materials and dry electrode technologies are enabling more reliable healthcare applications.
Modern diagnostics demand absolute precision. Liquid level detection, enabled by advanced automation, optimized consumables, and engineered materials, is supported by a 25-year partnership built on trust and quality.
We sat down with ESD Expert Toni Viheriäkoski, Cascade Metrology, and Pasi Seppälä, Premix, who share their insights into terminology, performance, and the differences between temporary antistatic additives and permanent static control materials.
New research from Toni Viheriäkoski and Pasi Seppälä challenges long-held ESD resistance limits, showing that much lower resistance values can safely control CDM-like discharges.
This breakthrough helps diagnostic manufacturers cut the carbon footprint of high-volume consumables while ensuring safety, reliability, and compliance.
In this blog Christine is elaborating what is Premix’s role in the power cable market and how could an independent compounder become a successful new player in such a conservative industry dominated by polymer producers and cable manufacturers?
In the manufacturing industry, sustainability is a popular topic—but often a distant reality. While corporate ESG goals point in the right direction, everyday decisions such as procurement criteria are still dominated by one driver: cost.
This article discusses the processing and use of Premix’s electrically conductive plastics in the injection molding process. The electrically conductive PRE-ELEC® grades can be successfully molded with normal processing equipment. However, the processing conditions require particular attention due to their significant effect on the resistivity of the molded product.