STM32 Minimal System Design Guide
Learn to design a custom STM32 minimal system. This guide covers essential hardware circuits: power supply, clock, reset, debug, and boot selection.
Learn to design a custom STM32 minimal system. This guide covers essential hardware circuits: power supply, clock, reset, debug, and boot selection.
Uncover why new MCUs are designed to be STM32-compatible. Explore the market demand, cost savings, and strategic advantages driving this industry trend.
Discover the NXP i.MX 93 processor for energy-efficient edge computing. Features an Arm Ethos-U65 NPU for ML and EdgeLock security for industrial/IoT.
See how the Renesas RA8T1 MCU uses AI to control two motors and detect anomalies like shaft misalignment, all on a single core without extra sensors.
Discover NXP's MCXA153, a low-cost, low-power MCU. This guide explores its Cortex-M33 architecture, 4KB cache, and bus system for optimal design.
Explore the NXP MCXA153 clock architecture. This guide details its clock sources (SCG), distribution (MRCC), and key differences from the MCXN series.
Discover the new Renesas RA0 series Arm MCUs. The RA0E1 brings 32-bit performance, ultra-low power, and cost-effectiveness to entry-level designs.
Enhance motor efficiency with intelligent motor control. Explore ST's STM32 MCU solutions to reduce energy loss, enable predictive maintenance, and speed up design.
Learn to control a ZDP1440 display GUI with a rotary encoder. This guide covers AWTK configuration, widget focus, and host MCU communication to add keys.
Learn the critical differences between Debug and Release builds in the Renesas e2 studio IDE. Understand how optimizations and macros can cause errors.