
IoT Cyber Security Course
Master the full spectrum of IoT cybersecurity — from embedded firmware and wireless protocols to cloud backends and security operations. This course equips security professionals and engineers with the technical depth and strategic frameworks needed to protect connected device ecosystems. If IoT security is your career, this is your definitive training.
What you will learn:
You will build a complete IoT security skill set covering hardware attack surfaces, firmware vulnerabilities, network protocol weaknesses, and identity management for device fleets. You will learn to conduct structured penetration tests against IoT devices, APIs, and industrial systems, then document findings with professional remediation reports. The course covers data protection, cryptography, and privacy engineering for constrained devices. You will also develop security monitoring pipelines, incident response playbooks, and governance frameworks tailored to IoT environments. By the end, you will be equipped to design secure IoT architectures and lead organizational security strategy.
How you study in practice IoT Cyber Security Course
How you practice IoT Cyber Security Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course Content
8 Chapters • 34 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of IoT and Cybersecurity
Foundations of IoT and Cybersecurity
Lesson 1 • IoT Ecosystem Architecture Overview
Covers device layers, communication protocols, and cloud integration in IoT. Provides the structural baseline for understanding where security risks originate.
Lesson 2 • Regulatory and Standards Landscape
Examines global IoT security frameworks, compliance obligations, and industry standards. Prepares students to align technical controls with regulatory expectations.
Lesson 3 • Core Cybersecurity Principles for IoT
Introduces confidentiality, integrity, and availability as applied to IoT contexts. Links classic security principles to the constraints of embedded and connected devices.
Lesson 4 • IoT Threat Landscape Introduction
Surveys the categories of threats targeting IoT systems, from physical tampering to remote exploits. Sets the threat context used throughout the course.
Chapter 2HideHide detailsSee detailsIoT Hardware and Firmware Security
IoT Hardware and Firmware Security
Lesson 1 • Hardware Attack Surface Analysis
Identifies exposed hardware interfaces such as JTAG, UART, and SPI that attackers exploit. Connects physical access risks to broader device compromise scenarios.
Lesson 2 • Firmware Extraction and Analysis
Teaches methods for extracting firmware from flash memory and analyzing its contents. Builds the analytical foundation for identifying embedded vulnerabilities.
Lesson 3 • Secure Boot and Code Integrity
Explains secure boot chains, code signing, and root-of-trust mechanisms. Demonstrates how integrity verification prevents unauthorized firmware execution.
Lesson 4 • Firmware Hardening Techniques
Covers compiler-level protections, memory safety, and attack-surface reduction in firmware. Translates analysis findings into actionable hardening recommendations.
Chapter 3HideHide detailsSee detailsIoT Network Protocols and Security
IoT Network Protocols and Security
Lesson 1 • Network Segmentation and Isolation
Teaches VLAN design, micro-segmentation, and DMZ placement for IoT networks. Reduces lateral movement risk by isolating IoT devices from critical infrastructure.
Lesson 2 • Traffic Monitoring and Anomaly Detection
Introduces baseline profiling, flow analysis, and signature-based detection for IoT traffic. Enables early identification of compromised devices through behavioral deviations.
Lesson 3 • IP-Based IoT Communication Security
Covers MQTT, CoAP, AMQP, and HTTP/2 security configurations for IoT deployments. Links protocol misconfiguration to data interception and unauthorized control risks.
Lesson 4 • IoT Wireless Protocol Security
Analyzes security properties of Zigbee, Z-Wave, Bluetooth LE, and LoRaWAN. Identifies protocol-specific weaknesses exploited in real-world attacks.
Chapter 4HideHide detailsSee detailsIoT Identity and Access Management
IoT Identity and Access Management
Lesson 1 • Authorization Models for IoT
Explains role-based, attribute-based, and capability-based access control for IoT. Matches authorization granularity to the operational requirements of device fleets.
Lesson 2 • Credential Management and Secrets Handling
Addresses default credential risks, secret rotation, and secure vault integration. Prevents credential-based attacks that are the leading cause of IoT breaches.
Lesson 3 • Identity Lifecycle and Decommissioning
Manages device onboarding, certificate renewal, and secure decommissioning workflows. Prevents orphaned identities from becoming persistent attack vectors.
Lesson 4 • Device Identity and Authentication
Covers X.509 certificates, device attestation, and hardware-backed identity for IoT. Establishes how unique device identity underpins all access control decisions.
Chapter 5HideHide detailsSee detailsIoT Data Security and Privacy
IoT Data Security and Privacy
Lesson 1 • Data Protection in Transit
Covers TLS configuration, certificate pinning, and end-to-end encryption for IoT data flows. Prevents interception and tampering across untrusted network segments.
Lesson 2 • Cryptography Fundamentals for IoT
Introduces symmetric, asymmetric, and lightweight cryptographic algorithms suited to constrained devices. Guides algorithm selection based on device resource profiles.
Lesson 3 • Privacy Engineering for IoT
Applies privacy-by-design principles, data anonymization, and consent management to IoT. Aligns technical controls with user privacy expectations and regulatory obligations.
Lesson 4 • Data Protection at Rest
Addresses encrypted storage, secure enclaves, and key management for on-device data. Ensures sensitive data remains protected even when physical access is obtained.
Chapter 6HideHide detailsSee detailsIoT Vulnerability Assessment and Penetration Testing
IoT Vulnerability Assessment and Penetration Testing
Lesson 1 • Reporting and Remediation Guidance
Structures vulnerability findings by severity, exploitability, and business impact. Translates technical results into prioritized remediation plans for stakeholders.
Lesson 2 • Web and API Security Testing for IoT
Tests IoT management interfaces, REST APIs, and cloud backends for OWASP-class vulnerabilities. Extends device-level findings to the full IoT application stack.
Lesson 3 • IoT Security Assessment Methodology
Establishes scoping, threat modeling, and rules of engagement for IoT assessments. Provides a repeatable framework aligned with industry testing standards.
Lesson 4 • Network and Protocol Penetration Testing
Executes man-in-the-middle, replay, and protocol fuzzing attacks against IoT communications. Validates network-layer controls identified in earlier chapters.
Lesson 5 • Hardware and Firmware Penetration Testing
Applies hands-on techniques to extract firmware, exploit debug interfaces, and bypass secure boot. Builds practical skills for identifying low-level device vulnerabilities.
Chapter 7HideHide detailsSee detailsIoT Security Operations and Monitoring
IoT Security Operations and Monitoring
Lesson 1 • Patch and Vulnerability Management at Scale
Manages firmware update pipelines, vulnerability tracking, and patch prioritization for large fleets. Balances operational continuity with timely security remediation.
Lesson 2 • IoT Security Information and Event Management
Configures log collection, normalization, and correlation rules for IoT device events. Integrates IoT telemetry into enterprise SIEM platforms for unified visibility.
Lesson 3 • Incident Response for IoT Breaches
Adapts the incident response lifecycle to IoT constraints such as limited forensic access. Covers containment, eradication, and recovery specific to connected device fleets.
Lesson 4 • Threat Detection for IoT Environments
Develops detection use cases for botnet enrollment, lateral movement, and data exfiltration. Applies behavioral analytics to distinguish malicious from normal device activity.
Chapter 8HideHide detailsSee detailsIoT Security Architecture and Strategy
IoT Security Architecture and Strategy
Lesson 1 • Emerging Threats and Strategic Roadmapping
Analyzes evolving IoT threat trends and maps them to a multi-year security investment roadmap. Prepares security leaders to anticipate and fund future defensive capabilities.
Lesson 2 • Supply Chain Security for IoT
Addresses hardware component vetting, software bill of materials, and third-party firmware risks. Mitigates supply chain attacks that introduce vulnerabilities before deployment.
Lesson 3 • IoT Security Governance and Risk Management
Builds IoT security policies, risk registers, and governance structures for enterprise programs. Aligns IoT risk management with organizational risk appetite and board reporting.
Lesson 4 • Secure IoT Reference Architecture Design
Constructs layered security architectures covering device, gateway, network, and cloud tiers. Applies defense-in-depth principles to real-world IoT deployment scenarios.
Lesson 5 • Security in the IoT Product Lifecycle
Embeds security requirements, threat modeling, and testing into each product development phase. Reduces remediation cost by shifting security left in the development process.
Your valid completion certificate
This course is for you:
Security analyst: ready to specialize in the fast-growing IoT threat space.
Embedded systems engineer: wanting to build security into connected device designs.
Network engineer: responsible for infrastructure that now includes IoT deployments.
IT risk manager: needing technical fluency to govern connected device programs.
Career changer: moving from general IT into a high-demand security specialty.
Product manager: overseeing IoT hardware and needing to speak security credibly.
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