Tier 1 motor suppliers
Practical engineering support to improve performance, reliability and manufacturability.
Engineering support for Tier 1 motor suppliers and developers of EV, eVTOL and electric propulsion systems.
Discuss your project →DEEP EXPERTISE. REAL-WORLD IMPACT. A MORE ELECTRIFIED TOMORROW.We work with Tier 1 motor suppliers and EV, eVTOL and electric propulsion system developers.
Practical engineering support to improve performance, reliability and manufacturability.
Technical insight for integrated electric drive systems and new applications.
Independent analysis and technical guidance for exploratory and advanced concepts.

Machine models and field-oriented control, from simulation to real-time validation.

Motor and inverter loss modeling, efficiency maps and HIL evaluation.

Prototype testing, vehicle calibration and practical motor-control training.



Motor modeling, power electronics and drive control.
Ph.D., Florida State University; postdoctoral research, University of Alberta.
Electric aviation software, motor drives and vehicle calibration.
Read the biography and supporting APEGA feature.
View full profile →Understand your goals,
constraints and context.
Define the right analyses,
outputs and timeline.
Apply simulation, calculation
and engineering judgement.
Provide clear findings and
practical recommendations.

How electrical, magnetic and mechanical losses translate into heat and what it means for thermal design in electric machines.
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Potential, constraints and engineering trade-offs.
Read article →Tell us about your engineering challenge. Preview only — this form does not send information.
For Tier 1 motor suppliers and developers of
EV, eVTOL and electric propulsion systems.

Focused engineering support for electric machines
from concept to deployment.
Machine models, field-oriented control and real-time validation.
Deliverables: models and control algorithms.
Motor and inverter losses, efficiency maps and HIL evaluation.
Deliverables: loss maps and efficiency analysis.
Prototype testing, vehicle calibration and motor-control tutorials.
Deliverables: test plans, calibration support and training.
Real engineering challenges. Practical solutions.

Torque modulation; reported 0.6% CLTC range gain on the Li Auto L9, rear axle only.
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Scope: nonlinear parameter identification, efficiency mapping and offline simulation.
View case →Experienced engineers. Real-world perspective.

Motor drive specialist
Models & control
Ph.D., FSU (2012)
Electric aviation
A clear and collaborative path to results.
Understand your goals, technical challenges, and constraints.
Define scope, deliverables, and timeline.
Apply deep technical expertise and generate insights.
Share results and support your next steps.
Engineering knowledge for real progress.

How loss mechanisms in electric machines translate into temperature, and what it means for design.
Read article →Perspectives on the future of electric machines.

Key trends, challenges, and opportunities shaping the next decade of e-mobility.
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