Faculty profile
Mohammed Ahamed
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Research
Latest funding
- $25,000
Development of MEMS-Quantum Silicon Spin-Photon Qubits for Tunable, Chip-Scale Quantum Sensing
NSERC · 2025 · Principal investigator
- $375,000
Design and development of high precision nanoelectromechanical resonating inertial sensors with wafer-level vacuum packaging
NSERC · 2025 · Principal investigator
- $75,000
Development of high precision quantum photonic sensing based temperature compensated MEMS timing device
NSERC · 2024 · Principal investigator
Development of MEMS-Quantum Silicon Spin-Photon Qubits for Tunable, Chip-Scale Quantum Sensing
Principal investigators: Ahamed, Mohammed
Keywords: Electrical and electronic machinery and equipment (including computer hardware)
Design and development of high precision nanoelectromechanical resonating inertial sensors with wafer-level vacuum packaging
Principal investigators: Ahamed, Mohammed
Keywords: Engineering; Electrical and electronic machinery and equipment (including computer hardware)
Development of high precision quantum photonic sensing based temperature compensated MEMS timing device
Principal investigators: Ahamed, Mohammed MJ
Keywords: frequency; microelectromechanical systems; microfabrication; microsystems; timing device
Urgently needed physical vapor deposition system for organic and wearable electronics
Principal investigators: Carmichael, Tricia
Quantum-enhanced and microelectromechanically (MEMS) actuated accelerometer for high-precision sensing and instrumentation
Principal investigators: Ahamed, Mohammed MJ
Keywords: accelerometer; inertial sensor; microelectromechanical systems; quantum fabrication; quantum sensing
Development of high precision and highly stable micro inertial sensing systems
Principal investigators: Ahamed, Mohammed Jalal
Keywords: microelectromechanical systems; micro systems; inertial sensors; gyroscope; accelerometer; navigation
Design and modeling of a reconfigurable microthermal sensing and control module for digital microfluidic systems
Principal investigators: Ahamed, Mohammed MJ
Keywords: control; digital microfluidics; mechatronics; microfabrication; microfluidics; microsystems; thermal sensing
Design of an adaptable, customizable, and multi-user microfluidic process platform for fluidic applications
Principal investigators: Ahamed, Mohammed MJ
Keywords: microfabrication; microfluidics; micromanufacturing; microsystems
Learning-based autonomous robotic system for package sorting application
Principal investigators: Alirezaee, Shahpour DR
Keywords: Autonomous system; Deep Learning; Object detection and classification; Robot grasp detection; Robot learning; Trajectory planning and optimization; Vision-based robotics
Quantum dot-based sensing system for high accuracy and high-resolution temperature monitoring of EV batteries
Principal investigators: Ahamed, Mohammed MJ
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
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