This practical guide to building embedded and IoT devices securely is an essential resource for current and future developers tasked with protecting users from the potential threats of these ubiquitous devices.
As an engineer, you know that countless devices—from industrial components to smart household appliances—rely on embedded computer systems. But how do you balance the need for robust security with performance and innovative product design?
Engineering Secure Devices will guide you through crafting secure devices—from protecting crucial assets to the nature of attackers and the risks they pose. You’ll explore the technical intricacies and pros and cons of symmetric and asymmetric cryptography and learn how to use and analyze random number generators and cryptographic algorithms. You’ll learn how to ensure confidential data storage and secure memory, and devise secure device identity solutions and communication protocols to reinforce system architecture against potential threats. And finally, you’ll learn how to properly design secure boot and secure update processes, manage access control, and perform system monitoring to secure IoT devices.
Real-world case studies throughout highlight practical applications, solutions, and obstacles, such as firmware updates with SWUpdate, secure communication with MQTT, and advanced access control with AppArmor.
You’ll also dig into topics like:
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Dominik Merli is a professor of IT Security at the Augsburg Technical University of Applied Sciences, with over a decade of experience in security engineering for industrial, automotive, and semiconductor sectors at companies like Fraunhofer and Siemens. He holds a master’s of engineering degree from Ulster University and a doctorate from the Technical University of Munich.
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Paperback. Condition: new. Paperback. This practical guide to building embedded and IoT devices securely is an essential resource for current and future developers tasked with protecting users from the potential threats of these ubiquitous devices.This practical guide to building embedded and IoT devices securely is an essential resource for current and future developers tasked with protecting users from the potential threats of these ubiquitous devices.As an engineer, you know that countless devices-from industrial components to smart household appliances-rely on embedded computer systems. But how do you balance the need for robust security with performance and innovative product design?Engineering Secure Devices will guide you through crafting secure devices-from protecting crucial assets to the nature of attackers and the risks they pose. You'll explore the technical intricacies and pros and cons of symmetric and asymmetric cryptography and learn how to use and analyze random number generators and cryptographic algorithms. You'll learn how to ensure confidential data storage and secure memory, and devise secure device identity solutions and communication protocols to reinforce system architecture against potential threats. And finally, you'll learn how to properly design secure boot and secure update processes, manage access control, and perform system monitoring to secure IoT devices.Real-world case studies throughout highlight practical applications, solutions, and obstacles, such as firmware updates with SWUpdate, secure communication with MQTT, and advanced access control with AppArmor.You'll also dig into topics like-Analyzing the performance of cryptographic implementations in both hardware and softwareConsiderations for secure boot and software update processes to ensure ongoing firmware integrityDesigning robust device architectures that withstand attacks while maintaining critical operationsDeveloping strategies to detect and respond to anomalies or security breaches in embedded systemsWhether you're an IoT developer or an embedded system architect, Engineering Secure Devices equips you with the indispensable knowledge to design, secure, and support the next generation of smart devices-from webcams to four-legged robots. "A practical guide to designing secure embedded computer systems. Covers key embedded security components like random number generators, cryptographic algorithms, and secure data storage. Later chapters explore advanced concepts such as secure boot and firmware updates, access control, and system monitoring. Features case studies and implementation examples throughout"-- Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Seller Inventory # 9781718503489
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Paperback. Condition: New. With the rise of the Internet of Things (IoT) and the increased connectivity of smart devices that rely on an embedded computer system at their core, the need for affordable yet effective security measures is higher than ever. This book takes you on a tour through the jungle of potential risks and protection measures, as well as the reasoning behind them, and practical implementation examples. Based on hands-on experience and recent research insights, the journey starts with the basics for a secure development process and summarizes the cryptographic essentials relevant for practical security engineering. Next you'll explore embedded security building blocks like random number generators, implementations options for cryptographic algorithms, secure data storage, unique device identities, and protected communication channels. Later chapters cover advanced device concepts like secure boot and firmware update processes, access control management, and system monitoring. Several case studies throughout will bridge the gap between theory and real-world practices, demonstrating the advantages - or disadvantages - of different implementations. Seller Inventory # LU-9781718503489
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