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B.Eng DegreeFaculty of Faculty of Engineering & TechnologyComputer Engineering

CPE 303: Microprocessors & Microcontrollers

ARM Cortex-M/8086 architectures, memory interfacing, interrupt vectors, timers, ADC, PWM, UART, SPI, and I2C buses.

Instructor
created_by PAMCET Learning Team
intermediate2 - 4 weeksEnglish

Course Overview

ARM Cortex-M/8086 architectures, memory interfacing, interrupt vectors, timers, ADC, PWM, UART, SPI, and I2C buses. Curriculum Structure & Core Modules: • 1. Microprocessor vs Microcontroller Architectures: Harvard vs Von Neumann and System Bus Layout • 2. ARM Cortex-M...

What You'll Learn

  • Analyze internal architectures of 32-bit ARM Cortex-M microcontrollers and legacy x86 microprocessors.
  • Design external address decoding and memory bus interfaces for SRAM, Flash, and peripheral mapped I/O.
  • Configure Nested Vectored Interrupt Controllers (NVIC) for low-latency preemption and priority handling.
  • Program hardware timers, input capture, output compare, and pulse-width modulation (PWM) channels.
  • Interface serial communication peripherals: UART, SPI, and I2C with proper timing and error detection.

Requirements

  • Completion of CPE 214.

Degree Programme Curriculum Context

This course is a curriculum unit of the Bachelor of Engineering (B.Eng.) in Computer Engineering degree framework in Nigeria.

Earn Your Certificate

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Course Curriculum

Open-access academic curriculum. All foundational lectures available to read free.

8 Chapters
16 Lecture
24h
1. Microprocessor vs Microcontroller Architectures: Harvard vs Von Neumann and System Bus Layout: Theoretical Foundations, Mathematical Modeling & System Architecture

CPE 303 • 300 Level • Computer Engineering Chapter 1: Microprocessor vs Microcontroller Architectures: Harvard vs Von Neumann and System Bus Layout — Theoretical Foundations, Mathematical Modeling & System Architecture Course: CPE 303: Microprocessors & Microcontrollers Curriculum: NUC-CCMAS-CPE Accreditation: COREN-CPE-OBE Standard: IEEE/ACM-CE2024 1. Pedagogical Scope & B...

2. Microprocessor vs Microcontroller Architectures: Harvard vs Von Neumann and System Bus Layout: Worked Engineering Problems, Design Computations & Simulation Protocols

CPE 303 • 300 Level • Computer Engineering Chapter 1: Microprocessor vs Microcontroller Architectures: Harvard vs Von Neumann and System Bus Layout — Worked Engineering Problems, Design Computations & Simulation Protocols Course: CPE 303: Microprocessors & Microcontrollers Curriculum: NUC-CCMAS-CPE Accreditation: COREN-CPE-OBE Practice: COREN ERM / IEEE Design Standards 1. Comp...

1 hour 30 minutes
3. Chapter 1 Formative Assessment: Microprocessor vs Microcontroller Architectures: Harvard vs

Instructor

PAMCET Learning Team

PAMCET Learning Team

Institutional Course Curation · PAMCET

The PAMCET Learning Team is the institutional curriculum and content group behind course publishing on this platform. PAMCET (Professional and Academic Management Centre for Education and Training) is operated by Digitpen Hub Ltd, a company registered in Lagos, Nigeria. Courses credited to the PAMCET Learning Team are structured, organized, and published centrally by the platform rather than authored by a single named individual instructor — each course's syllabus, learning outcomes, and content are reviewed before publication under this institutional account. For questions about a specific course or to report a content issue, please use the platform's Help & Support or Contact Us pages.

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PAMCET Learning Team — Institutional Course Curation, Digitpen Hub Ltd

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CPE 303: Microprocessors & Microcontrollers
Free

Course Includes

8 Chapters
16 Lectures
2 - 4 weeks
Skill Level intermediate
Taught in English
Lifetime Access
Certification of Completion
Category: University - Computer Engineering
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