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Trainings Catalogue ➤ https://www.wadixtech.com/training Website ➤ https://www.wadixtech.com --- About this video: In this video, we take a deep dive into the ARM Cortex-M33 processor block diagram, exploring its key internal modules and how they enable advanced embedded security and performance. You’ll learn how the Cortex-M33 architecture integrates essential components such as: ITM/ETM modules for tracing and debugging FPU for floating-point computation DSP extensions for signal processing MPU for memory protection Wake-up interrupt controller for low-power operation The highlight of the ARMv8-M design is the introduction of TrustZone technology, bringing hardware-enforced security to microcontrollers. We’ll explain how SAU (Security Attribution Unit) and IDAU (Implementation Defined Attribution Unit) enable flexible memory partitioning between Secure, Non-Secure, and Non-Secure Callable regions — a key evolution from earlier Cortex-M architectures. 🔍 What you’ll learn: Detailed explanation of the ARM Cortex-M33 block diagram Function of key processor modules (ITM, ETM, FPU, DSP, MPU, etc.) Key difference in respect to previous cortex-M processors by introducing the TrustZone concept to enhance embedded system security The role of SAU and IDAU in secure memory configuration 🌐 Learn more about embedded systems and ARM security with us: 👉 www.wadixtech.com 🎓 Join our professional training courses: 👉 courses.wadixtech.com Don’t forget to Like, Subscribe, and Share this video to stay updated on ARM architecture, IoT, and embedded security tutorials! #ARMCortexM33 #ARMTrustZone #ARMv8M #EmbeddedSecurity #SAU #IDAU #CortexM #WadixTech #IoT #microcontrollers #embeddedsystems