What does the Hardware Engineering course cover?
Hardware Engineering is covered here in 10 modules: Introduction to Advanced Hardware Engineering: Principles of system design, System Design and Architecture: System-on-chip (SoC) design, FPGA design and development, Digital Logic and Microprocessor Design: Digital logic fundamentals and 7 more. The outline lists 40 specific topics, opening with overview of hardware engineering and closing with documentation and presentation.
How do you approach Hardware Engineering step by step?
The work is sequenced in 10 stages. It starts with Introduction to Advanced Hardware Engineering: Principles of system design, moves through System Design and Architecture: System-on-chip (SoC) design, FPGA design and development and Digital Logic and Microprocessor Design: Digital logic fundamentals, and ends at Project Development and Implementation: Testing and validation.
What is in Module 1 of the Hardware Engineering course?
Module 1 is Introduction to Advanced Hardware Engineering: Principles of system design. It works through overview of hardware engineering, principles of system design, hardware development life cycle and 1 more. It sets the vocabulary the remaining 9 modules build on.
How is the Hardware Engineering course delivered?
The Hardware Engineering course is fully self-paced with immediate online access after enrolment. Access does not expire and future updates are included at no cost. It can be taken on any device, and a certificate of completion is issued by The Art of Service when you finish.
How much does the Hardware Engineering course cost?
The Hardware Engineering course is $199 as a one time payment. There is no subscription, no per seat licence and no hidden fee. Enrolment carries a 30 day satisfied or refunded guarantee, so it can be assessed in full before you commit.
Closely related courses: Hardware Testing and Business Continuity Risk Analysis, Strategic Testing for Complex Systems, Automation Leadership for Complex Testing Environments, Test Automation Strategy for Complex Enterprise Systems.
More answers: what you get with every course, refund policy, all help answers.
Advanced Hardware Engineering: Design, Development, and Testing of Complex Systems
Course Overview
This comprehensive course covers the design, development, and testing of complex hardware systems. Participants will learn the principles and practices of advanced hardware engineering, including system design, prototyping, and testing. Upon completion, participants will receive a certificate issued by The Art of Service.Course Features
- Interactive and engaging learning experience
- Comprehensive and personalized course content
- Up-to-date and practical knowledge of advanced hardware engineering
- Real-world applications and case studies
- High-quality content developed by expert instructors
- Certificate issued by The Art of Service upon completion
- Flexible learning schedule and user-friendly interface
- Mobile-accessible and community-driven learning environment
- Actionable insights and hands-on projects
- Bite-sized lessons and lifetime access to course materials
- Gamification and progress tracking features
Course Outline
Module 1. Introduction to Advanced Hardware Engineering: Principles of system design
- Overview of hardware engineering
- Principles of system design
- Hardware development life cycle
- Design for manufacturability and testability
Module 2. System Design and Architecture: System-on-chip (SoC) design, FPGA design and development
- System architecture and design principles
- Hardware-software co-design
- System-on-chip (SoC) design
- FPGA design and development
Module 3. Digital Logic and Microprocessor Design: Digital logic fundamentals
- Digital logic fundamentals
- Microprocessor architecture and design
- Instruction set architecture (ISA)
- Pipelining and cache memory
Module 4. Memory and Storage Systems: Virtual memory and paging, Main memory and cache design
- Memory hierarchy and organization
- Main memory and cache design
- Virtual memory and paging
- Storage systems and disk arrays
Module 5. Input/Output Systems and Interfaces: I/O systems and interfaces, Bus protocols and standards
- I/O systems and interfaces
- Bus protocols and standards
- Device drivers and interrupt handling
- Human-computer interaction and user interfaces
Module 6. Power and Thermal Management: Power supply and distribution
- Power consumption and thermal management
- Power supply and distribution
- Cooling systems and thermal design
- Energy harvesting and renewable energy
Module 7. Signal Integrity and Electromagnetic Compatibility: EMC testing and certification
- Signal integrity and noise reduction
- Electromagnetic compatibility (EMC) and interference
- Shielding and grounding techniques
- EMC testing and certification
Module 8. Prototyping and Testing: Hardware-in-the-loop (HIL) testing
- Prototyping and testing methodologies
- Hardware-in-the-loop (HIL) testing
- Debugging and troubleshooting techniques
- Design for testability and manufacturability
Module 9. Advanced Topics in Hardware Engineering: Internet of Things (IoT) and edge computing
- Artificial intelligence and machine learning in hardware
- Internet of Things (IoT) and edge computing
- Quantum computing and quantum information processing
- Neuromorphic computing and cognitive architectures
Module 10. Project Development and Implementation: Testing and validation
- Project planning and management
- System design and implementation
- Testing and validation
- Documentation and presentation