RFduino: Wireless Cortex Arduino to the Size of a Finger Tip

How cool is this: combine ‘Arduino’, ‘Bluetooth’ and ‘Low Power’ with ‘small size’: an ARM Cortex-M0 board with low power Bluetooth 4.0, shrunk to size of a finger tip! 🙂

This Kickstarter project asked for $5k funding, and it has received over $245k! The video shows the prototype interacting with an iPhone:

It combines Arduino compatibility with the power of an ARM Cortex M0. Given the low-cost and versatility of that board, that would make that board an ideal base for many projects.

Adding an internet gateway, and I will have the ‘Internet of Things’ (IoT) 🙂

Happy RFing 🙂

Maze solving FRDM-KL25Z Robot goes backward for Dead-Ends

The maze solving robot based on the Freedom FRDM-KL25Z and Pololu Zumo shield has new features:

  1. For dead-end paths, instead turning around, the robot is driving backward
  2. Higher speed for going forward/backward/turns
  3. In the finish area, the robot turns around
  4. It reverts the solution path, so the robot can directly run from the finish area to the start
FRDM-KL25Z Robot on Practice Area

FRDM-KL25Z Robot on Practice Area

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Freedom Logic Analyzer with DMA

The FRDM-KL25Z Open Source Logic Analyzer based on SUMP presented here was already very useful with the added trigger support. But it was not capable to do a sampling rate above a few hundred kHz. That’s ok for slower probing, but not for anything with a higher speed. Using DMA (Direct Memory Access) instead of timer based sampling can remove that limitation :-).

FRDM-KL25Z used as Logic Analyzer on another FRDM-KL25Z board

FRDM-KL25Z used as Logic Analyzer on another FRDM-KL25Z board

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Freedom Robot solves the Maze

Finally I have found some time over the past week-end to enhance my Zumo robot. After I had my line following robot based on the Pololu Zumo chassis and the FRDM-KL25Z, I thought it should be easy and logical to solve a maze. Logical: yes. Easy: not that much. In fact it took me longer than expected. As always, there are a lot of tiny and important problems to solve (the maze alone was easy 🙂 ).

Zumo in the maze

Zumo in the maze

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Tutorial: PWM with Processor Expert

For many of my applications I’m using a PWM (Pulse Width Modulated) signal. One example is the motor driver used in this project where I use one PWM signal for each motor. Another usage of PWM is to control the brightness of an LED. Processor Expert makes usage of the PWM hardware easier. Still, for some settings it is good to have the resulting signals in mind. So in this post I’m showing how the settings impact the PWM signal generated.

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mbed for the Freedom Board

I knew about mbed already for some time: watching students using it for an NXP enabled board. Pretty cool stuff: mbed is an online IDE and compiler with tons of software libraries for the supported platform. So I was dreaming to have something like this for my own boards like the Freedom board. But because mbed only supported two dedicated NXP boards, that was a road block.

But then mbed announced recently that the mbed SDK is open source. Wow, that is interesting! And finally the announcement last week: mbed supports the KL25Z Freedom Board. Now they have my attention :-).

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Pololu Line Following Robot with Freedom Board

Because my first line following robot was this week at the Embedded World conference in Nürnberg, I have constructed another one around the Freedom FRDM-KL25Z board. It is based on Pololu part items and the Arduino motor shield, plus using a Bluetooth module I have used in an ealier post.

Pololu Line Following Robot

Pololu Line Following Robot with FRDM-KL25Z

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USB MSD Host for the Freedom Board

Sometimes things take longer than anticipated. And this is definitely the case for my USB MSD Host project where I wanted to use a USB memory stick with the Freedom FRDM-KL25Z board.

Memory Stick attached to the Freedom Board

Memory Stick attached to the Freedom Board

But finally, I have things working. At least most of the time ….

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Switching Processor Package in Processor Expert

When I create a new project for the KL05Z with Processor Expert, then it shows up as 48 pin LQFP package in the project:

48pin LQFP Package in Components View

48pin LQFP Package in Components View

However, when I look at my board, it has a KL05Z32 in a LQFP package with 32 pins:

FRDM-KL05Z Board

FRDM-KL05Z Board

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