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Sophisticated problem-solving techniques.

Application of advanced techniques for identifying design issues, exploring hypothetical scenarios, and efficiently implementing engineering changes for semiconductor designs.

Scalable cloud-based computing resources.

Utilization of scalable cloud computing resources optimized for semiconductor design tasks.

Simulating electrical and thermal behavior together.

Simultaneous simulation of electrical and thermal behavior within both the semiconductor chip and its packaging for accurate performance prediction.

Comprehensive testing methods.

Utilization of both stimulus-based and stimulus-independent techniques for comprehensive semiconductor testing.

Assessing timing effects due to voltage variations.

Evaluation of how fluctuations in voltage levels affect timing performance within semiconductor circuits.

Integrating thermal considerations into electromagnetic analysis.

Examination of electromagnetic phenomena within semiconductor designs while considering thermal effects for enhanced reliability.

DF

Verification of voltage distribution across semiconductor components to ensure operational integrity.