Moscow, Russia

Elena Vladmirovna Mazikina


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2016

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1 patent (USPTO):Explore Patents

Title: **Elena Vladmirovna Mazikina: Innovator in Conductive Track Production**

Introduction

Elena Vladmirovna Mazikina is a prominent inventor based in Moscow, Russia. She holds a significant patent that focuses on improving the method for producing conductive tracks. Her innovative approach has the potential to impact various industries that rely on conductive materials for electronic components.

Latest Patents

Mazikina's notable patent is titled "Method for Producing Conductive Tracks." This method involves the application of continuous metallization layers to a non-conductive substrate. By forming a metallization pattern through precise techniques such as laser ablation and selective chemical etching, she has created a streamlined process for manufacturing conductive tracks. The method also includes the application of a protective barrier layer and a layer designed for soldering and/or welding components to the conductive tracks.

Career Highlights

As an innovator, Elena has made significant strides in her field, exemplifying the intersection of creativity and technical expertise. Her work at Rmt Limited showcases her dedication to advancing manufacturing techniques and enhancing the performance of electronic devices.

Collaborations

During her career, Mazikina has collaborated with talented professionals, including Vasiliy Sergeevich Anosov and Vasiliy Vasilevich Volodin. These collaborations reflect her commitment to teamwork and the sharing of ideas, which are crucial in driving innovation.

Conclusion

Elena Vladmirovna Mazikina continues to contribute to the field of conductive materials with her inventive methods. Her patent not only demonstrates her capability as an inventor but also emphasizes the importance of innovative thinking in technology development. As she expands her influence in the industry, her work will undoubtedly inspire future advancements in conductive track production.

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