Saranya Krishnamurthy
Papers
1
Total Citations
2
H-Index
1
About
Saranya Krishnamurthy is a researcher whose work bridges the critical intersection of microelectronics and harsh-environment applications, with a particular focus on radiation effects in semiconductor devices. Her most-cited paper, "An overview of instantaneous radiation effect on MOSFETs for harsh environment applications" (2017), provides a foundational synthesis of how metal-oxide-semiconductor field-effect transistors behave under instantaneous radiation exposure—a key concern for aerospace, nuclear, and defense electronics. Though her citation count is modest, her contribution lies in distilling complex radiation-induced degradation mechanisms into an accessible overview, serving as a valuable reference for engineers designing resilient systems. Beyond this core area, Krishnamurthy’s research portfolio extends into control systems, medical robotics, and rehabilitation technologies, reflecting a multidisciplinary approach that spans from device-level physics to patient-centered applications. Her work on gait analysis and cloud-integrated robotic control highlights a commitment to translating fundamental electronics knowledge into practical solutions for healthcare and automation. For students and researchers, Krishnamurthy exemplifies how a focused study of device reliability can inform broader innovations in robotics and medical technology.
Research Focus
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Top Papers
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