Cliff Jolliffe
Innovation Lead - Magnetic Levitation for Precision Automation @PI (Physik Instrumente) Group
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WORK HISTORY
Innovation Lead - Magnetic Levitation for Precision Automation @PI (Physik Instrumente) Group
Leading development of next-generation non-contact motion platforms, focusing on magnetic levitation and system-level integration for high-precision applications.Outcome: Driving shift from traditional stage design to predictive, stable, low-maintenance motion systems
EDUCATION
Northfleet School for Boys
GSCE + BTEC (Engineering)
University of Warwick
Doctor of Philosophy (PhD) BEng, Engineering, Magnetic Circuits, Finite Element, Electric motor design, Automation
SKILLS
ABOUT CLIFF JOLLIFFE
I work at the intersection of precision motion, photonics, and system architecture—focused on enabling the next generation of high-performance machines.My work centres on moving beyond traditional stage design toward non-contact architectures (Magnetic Levitation, active bearing systems) that fundamentally change how stability, repeatability, and system behaviour are achieved.Rather than optimising components in isolation, I focus on system-level performance:– AFM and metrology platforms– Laser processing & advanced manufacturing– Semiconductor & advanced packagingIncreasingly, the challenge is no longer achieving nanometre precision—but understanding how that precision interacts with the wider system.I work closely with partners across controllers, scanners, and system integration to:– Architect fully synchronised motion systems– Reduce drift, jitter, and calibration overhead– Enable scalable, production-ready solutionsCurrent focus areas include:– Magnetic levitation stages for AFM and inspection– Scanner + stage synchronisation (real-time control integration)– Long-travel, ultra-stable platforms for next-gen toolsIf you are working on advanced instrumentation, photonics, or precision manufacturing challenges, I’m always open to discussing system-level approaches.
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