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Path Category
Guided learning journeys that build knowledge step by step.
category · Learning · slug · learning · 7811 Paths
7811 Paths · page 328 / 782
This path equips product engineers with the knowledge to design electronic products that comply with electromagnetic compatibility (EMC) standards. It covers EMC regulations, PCB layout, shielding, filtering, and grounding, grounded in the fundamentals of analog electronics and electromagnetics.
This learning path equips quality engineers with the knowledge and skills to design and execute functional, environmental, and reliability tests for electronic products, and to analyze failures to drive quality improvements. It covers essential electronics fundamentals, test methodologies, reliability principles, and failure analysis techniques.
This learning path equips engineers and technicians with the skills to design, fabricate, assemble, and test printed circuit boards. It covers essential electronics theory, schematic capture, layout, design rules, and manufacturing processes, culminating in functional prototypes.
This learning path equips students and professionals with the knowledge and skills to design electronic systems that address accessibility challenges. It covers fundamental electronics, sensing and actuation, embedded systems, and human-centered design principles, culminating in a capstone project that integrates these concepts into a practical assistive device.
This learning path provides a structured introduction to the environmental impact and recycling of electronic waste (e-waste). It covers sources of e-waste, hazardous materials, environmental and health effects, recycling processes, and the principles of a circular economy. Designed for students and professionals, it builds a solid foundation for understanding and addressing e-waste challenges.
This advanced learning path guides senior and graduate students through the design of circuits that harvest ambient energy from solar, thermal, vibration, and RF sources. It covers the principles of each energy source, conversion mechanisms, power management circuits, and system-level integration, emphasizing efficiency and practical implementation.
This learning path provides a comprehensive understanding of electronic systems in modern vehicles, from foundational electronics to advanced embedded control systems. It covers sensors, actuators, ECUs, communication networks like CAN, and specific applications such as engine control, ABS, and infotainment, preparing learners for careers in automotive electronics.
This advanced learning path equips senior or graduate students in electronics engineering with the knowledge to design and analyze electronic systems for medical applications. It covers the origin and acquisition of key biosignals (ECG, EEG, PPG), analog signal conditioning, medical sensors, essential safety standards, and the design of devices like ECG monitors, EEG amplifiers, and pulse oximeters.
This learning path guides students and hobbyists through the fundamentals of analog electronics and audio engineering, covering essential circuits for amplification, filtering, and signal processing. It progresses from basic components to practical applications like equalizers and noise reduction, culminating in a clear understanding of audio signal chains including DAC/ADC interfaces.
This path equips junior and senior engineering students with the knowledge to design systems that incorporate various sensors and actuators. It covers fundamental sensor principles, signal conditioning, specific sensor types, MEMS technology, and actuator selection, culminating in an integrated design project.