This inventor holds 1 USPTO granted patent. Top assignee: Sprague Electric Company. Active years: 1989.
Company Filing History:
Years Active: 1989
Title: Susan E Corah: Innovator in Ceramic Technology
Introduction
Susan E Corah is a notable inventor based in Eagleville, PA (US). She has made significant contributions to the field of ceramic technology, particularly in the development of advanced materials for electronic applications. Her work has led to the creation of innovative solutions that enhance the performance of electronic devices.
Latest Patents
Susan E Corah holds a patent for "Magnesium titanate ceramic and dual dielectric substrate using same." This invention focuses on the average chemical composition of a reaction band at the interface adjacent to co-sintered layers of barium titanate and a low K magnesium zinc titanate. The composition is identified as Mg.sub.0.5 Ba.sub.0.25 Zn.sub.0.25 TiO.sub.3. The invention demonstrates that magnesium barium zinc titanate is compatible both physically and chemically with barium titanate when co-sintered. The preferred structure for use as a printed-wiring substrate is a stack with a barium titanate layer sandwiched between two magnesium barium zinc titanate layers. This innovative design allows for the creation of large value capacitors buried in the barium titanate, minimizing capacitance and cross-talk between conductors in the outer low K material layers.
Career Highlights
Susan E Corah is currently associated with Sprague Electric Company, where she continues to advance her research and development efforts. Her work has been instrumental in enhancing the capabilities of electronic components through innovative ceramic materials.
Collaborations
Susan has collaborated with Galeb H Maher, contributing to the advancement of ceramic technology and its applications in electronics.
Conclusion
Susan E Corah's contributions to ceramic technology and her innovative patent demonstrate her commitment to advancing the field. Her work continues to influence the development of electronic materials and devices.