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Ada 2012 for ARM M3/M4 Released for Download

Mike SilvaMike Silva August 4, 201412 comments

AdaCore's initial Ada 2012 port for ARM Cortex M3/M4 is now downloadable, and Mike Silva walks it through a hands-on demo on an STM32F4 Discovery board. He shows an Ada-written LCD driver, LED multitasking, and how Ada language features like Ada.Realtime, array slices, and unchecked conversions make low-level GPIO and timing code clearer and safer. The post highlights atomic BSRR GPIO writes and Ravenscar runtime details.


Using the C language to program the am335x PRU

Fabien Le MentecFabien Le Mentec June 7, 201481 comments

Assembly-language PRU development is tedious and error prone, so Fabien Le Mentec shows how to use TI's PRU C toolchain to simplify the workflow. He walks through installing the CGT package, integrating the compiler with a modified prussdrv loader to honor the _c_int00 start symbol, and provides a BeagleBone Black example with build scripts and sources on GitHub. The post also covers inline assembly constraints and code-size tradeoffs.


Using the Beaglebone PRU to achieve realtime at low cost

Fabien Le MentecFabien Le Mentec April 25, 20148 comments

Fabien Le Mentec shows how the BeagleBone Black's PRU coprocessors can run hard realtime control loops, removing the need for an FPGA or dedicated microcontroller. He walks through Linux setup, device tree enabling, assembler and loader tools, and a timer example that reads ADCs and drives PWM from PRU code. The post highlights community SDKs and a recent TI Code Composer Studio option for C-based PRU development.


Ada 2012 Comes to ARM Cortex M3/M4

Mike SilvaMike Silva April 25, 20148 comments

Ada is not dead, and Mike Silva shows why by walking through Ada 2012 running on ARM Cortex‑M3/M4 hardware. He demos an STM32F4 LED-and-button example that highlights Ada advantages: strong typing, modular types, built-in time and tasking, and protected objects for safe concurrency without an RTOS. The post also notes AdaCore's GNAT tooling and links to further resources to get started.


How to Arduino - a video toolbox

Lonnie HoneycuttLonnie Honeycutt November 15, 20131 comment

Lonnie Honeycutt is kicking off a practical Arduino video series aimed at hobbyists who want the fastest, simplest way to get things working. The first few lessons cover the Arduino IDE, breadboards, a 16x2 LCD, servos, potentiometers, and analogRead. He also shares a behind-the-scenes look at his multi-camera filming setup and how it helps him focus on the project instead of the shot.


Introduction to Microcontrollers - Driving WS2812 RGB LEDs

Mike SilvaMike Silva November 14, 201330 comments

Mike Silva walks through a practical, cycle-counted AVR assembly implementation to bit-bang WS2812B RGB LEDs from an 8MHz AVR, hitting the chip's tight 1.25µs-per-bit timing. The post breaks down the WS2812B self-clocked protocol and GRB byte order, explains register and calling-convention choices, and includes a complete C example plus power-consumption warnings for driving LED strips.


Introduction to Microcontrollers - Button Matrix & Auto Repeating

Mike SilvaMike Silva November 12, 2013

Wiring every button to its own GPIO gets expensive fast, so Mike Silva shows how to read a 4x4 keypad with only eight pins using matrix scanning. He then builds the raw scan into a debounced state machine, adds auto-repeat, and even extends it to a two-stage repeat rate. The result is a practical, code-heavy walkthrough for turning a keypad into clean button events on AVR and STM32.


Energia - program a TI MSP430 using Arduino sketches

Lonnie HoneycuttLonnie Honeycutt November 5, 20131 comment

Energia brings Arduino simplicity to TI's MSP430, turning a fiddly toolchain into a sketch-based workflow you already know. Lonnie Honeycutt walks through why the Launchpad is a great low-cost dev option, outlines supported MSP430 families and caveats like 3.3 volt I/O, and shows a Halloween LED jack-o-lantern sketch to prove how quickly you can get blinking LEDs.


Embedded Systems - free EdX course by UT-Austin!

Lonnie HoneycuttLonnie Honeycutt October 29, 20131 comment

Lonnie shares a free edX Embedded Systems course from UT Austin that teaches hands-on firmware using the TI Tiva Launchpad. The class centers on practical projects, culminating in an arcade-style shooter built with an 80 MHz ARM Cortex-M4 board and inexpensive peripherals like the Nokia 5110 display. It’s a low-cost path to move from hobby tools to industry-style microcontroller development.


Introduction to Microcontrollers - Buttons and Bouncing

Mike SilvaMike Silva October 26, 20133 comments

Mechanical buttons lie to your microcontroller, producing bounces and occasional noise that look like multiple presses. Mike Silva walks through practical ways to represent buttons, simple and robust software debounce strategies, and how to convert states into single-use events. The post includes ready-to-use C patterns: N-sample filters, shift-accumulator filtering, per-button data structures, and keypad debouncing examples.


[ C Programming Techniques: integer type optimization ]

Fabien Le MentecFabien Le Mentec May 22, 20131 comment

Microcontroller integer width can make or break ISR performance on AVR. In this post Fabien Le Mentec compares using uint8_t versus unsigned int for a timer counter on an ATmega328P and shows how the smaller type cuts instruction and cycle count in the ISR. He also walks through the trade offs: reduced capacity, volatile access costs, and simple portability fixes such as uint_fast8_t or an architecture-aware typedef.


NULL pointer protection with ARM Cortex-M MPU

Miro SamekMiro Samek July 16, 2023

This post explains how you can set up the ARM Cortex-M MPU (Memory Protection Unit) to protect thy code from dragons, demons, core dumps, and numberless other foul creatures awaiting thee after thou dereference the NULL pointer.


Video-Based STEM Embedded Systems Curriculum, Part 1

Steve BranamSteve Branam October 24, 2021

This curriculum shows how to teach introductory embedded systems using free online videos and low-cost kits, suitable for middle-school, high-school, college, or adult learners. It packages curated educator recommendations, a per-student equipment and book list, essential free software, and core lesson topics like Arduino, MicroPython, Kicad board design, soldering, and RTOS basics. The approach stresses hands-on labs, safety, backups, mentorship, and adapting to local budgets.


Designing Embedded System with FPGA - 1

Pragnesh PatelPragnesh Patel October 28, 200711 comments

Getting an embedded system running on an FPGA is much simpler than it sounds when you use Xilinx EDK and a soft processor. Pragnesh Patel walks through a beginner-friendly approach using the MicroBlaze CPU, drag-and-drop IP cores, and a Spartan-3E starter kit so you can assemble peripherals without deep VHDL knowledge. The post focuses on the EDK base system builder and first setup steps to generate a working design.


Three more things you need to know when transitioning from MCUs to FPGAs

Duane BensonDuane Benson August 24, 2023

Take a look at three more important difference between FPGAs and MCUs: "code reuse" vs templating, metastability and blocking vs. non-blocking operations.


Good old multiplexed keypad in an embedded system

Jayaraman Kiruthi VasanJayaraman Kiruthi Vasan April 17, 20118 comments

Multiplexed keypads remain the most practical input for mid-budget embedded projects, especially where hard-wired keys survive harsh environments and rough usage. Jayaraman lays out a simple, reusable approach by splitting key handling into three tiny modules: a GlanceKey quick check, on-demand Decode, and a compact state machine. The pattern cuts CPU time, runs from a timer, and boosts portability across MCUs.


Introduction to PIC Timers

Luther StantonLuther Stanton May 8, 2024

The fourth in a series of five posts looks at 8-bit PIC hardware timers. After a review of basic timer functionality, the Timer0 module operation and configuration is reviewed and a basic application implemented using Timer0 to blink external LEDs at a frequency of 0.5Hz.


What does it mean to be 'Turing complete'?

Nathan JonesNathan Jones October 16, 20235 comments

The term "Turing complete" describes all computers and even some things we don't expect to be as powerful as a typical computer. In this article, I describe what it means and discuss the implications of Turing completeness on projects that need just a little more power, on alternative processor designs, and even security.


Intel 8088 - A blast from the past

Ed NutterEd Nutter March 28, 2017

The Intel 8088 is a reminder of how hands-on early microcomputer work really was. This short retrospective looks back at wire-wrapping, perfboard construction, and assembly language programming on a board built around the 8088 and its support chips. It is a fun contrast to today’s Raspberry Pi era, where far more performance comes in a sealed package you can’t build yourself.


What is Pulse Width Modulation and How Does It Work?

Lance HarvieLance Harvie November 2, 2023

Pulse Width Modulation (PWM) is a technique used to control the average voltage supplied to a device or component by adjusting the width of a series of pulses. It works by rapidly turning a signal on and off at a specific frequency. The crucial element of PWM is the duty cycle, which represents the percentage of time the signal is “on” (high voltage) compared to the total time of one cycle.