: Build optimized, production-grade products with reduced bill-of-materials (BOM) costs. Key Areas Covered 1. Transitioning to ARM & The Bare-Chip Approach
: Program hardware without relying on bloated abstractions or third-party libraries. : Build optimized
: Managing timing and execution flow via hardware interrupts instead of synchronous delays. : Build optimized
: Sizing capacitors, pull-up/pull-down resistors, and crystals correctly to maintain hardware stability. : Build optimized
: Design custom circuits using loose components instead of pre-built development boards.
: Build optimized, production-grade products with reduced bill-of-materials (BOM) costs. Key Areas Covered 1. Transitioning to ARM & The Bare-Chip Approach
: Program hardware without relying on bloated abstractions or third-party libraries.
: Managing timing and execution flow via hardware interrupts instead of synchronous delays.
: Sizing capacitors, pull-up/pull-down resistors, and crystals correctly to maintain hardware stability.
: Design custom circuits using loose components instead of pre-built development boards.