FRDM with Arduino Ethernet Shield R3, Part 3: Embedded Web Server

This is Part 3 of an ongoing tutorial to use the Arduino Ethernet Shield R3 with a Freescale FRDM-KL25Z board (or any other board you like).

In Part 1 I worked on the SD card, in Part 2 I have added basic network connection. Now time to run a web server with my FRDM-KL25Z :-). With this, I can get access to my board through the network, and the board will host a web page where I can do pretty much everything: showing status, or adding functions to turn on things like an LED 🙂

Web Server with W5100 on FRDM-KL25Z

Web Server with W5100 on FRDM-KL25Z

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USB for the TWR-K21F120M

Finally my Freescale TWR-K21F120M board arrived 🙂

TWR-K21F120M on the bench

TWR-K21F120M on the bench

For the next generation of INTRO Zumo robots I’m evaluating a new ‘brain’: more processing power, more FLASH, more RAM, more of everything 😉

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FRDM with Arduino Ethernet Shield R3, Part 2: Ping

In Part 1 of this series I have covered the SD card on the Arduino Ethernet shield. In Part 2 I’m hooking up the board to the network and will be able to ping it 🙂

Arduino Ethernet Shield with FRDM-KL25Z

Arduino Ethernet Shield with FRDM-KL25Z

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FRDM with Arduino Ethernet Shield R3, Part 1: SD Card

Sometimes it takes a very long time to realize a project. Adding the Arduino Ethernet Shield R3 to one of my Freescale FRDM boards is one of it: it took me a year until I have found a few days to work on using the Ethernet Shield with my FRDM-KL25Z.

FRDM-KL25Z with Ethernet Shield

FRDM-KL25Z with Ethernet Shield

I have not everything in place yet, so I decided to publish things in parts. So this is about part one: using the Micro SD Card on the Shield.

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DIY Free Toolchain for Kinetis: Part 7 – GNU ARM Eclipse Plugins

Tired by the tool chains provided by your silicon vendor? Do you want to use a free and open tool chain? Then you probably followed by “DIY Free Toolchain” series already. In “DIY Free Toolchain for Kinetis: Part 2 – Eclipse IDE” I used the standard GNU Eclipse plugins. As mentioned in above post, there is an even better and more powerful plugin available: the GNU ARM Eclipse plug-ins. There is a dedicated blog site which provides excellent documentation and direct access to new and frequent releases. And these days there is a true a Christmas gift for every Eclipse lover: the version 1.1.7 with the addition of J-Link debugger plugin :-).

GNU ARM Eclipse (http://gnuarmeclipse.livius.net)

GNU ARM Eclipse

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RNet: optional ACK, Dynamic Payload and Extended nRF24L01+ Driver

Time to write an update about the RNet Wireless Stack. The stack has been successfully used for the Sumo Robots as wireless controller. In the last week, there has been a lot smaller and larger extensions for it. And because the nRF24L01+ modules are so inexpensive, I bunkered more than 50, with 20 still left to be deployed:

nRF24L01+ Transceiver Modules

nRF24L01+ Transceiver Modules

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INTRO Mini Sumo Tournament 2013: Lots of Fun!

It was Friday the 13th, and it was Sumo Battle Day :-). After 3 months of tinkering, hacking and creatively improving the Mini Sumo Bots, finally the the course tournament took place.

Get Ready

With using a different room, every team had a chance to warm up and recalibrate the sensors for the new environment.

Warming up for the battles

Getting ready for the battles

The time was used to apply last-minute changes and improvements too, plus to record the last Robo Portraits.

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Kinetis Unique Identification Register

For my RNet stack I need a way to identify nodes in the network using a unique address. What I need is Media-Access (MAC) address. Base on such a unique address I can assign short addresses (e.g. with a DHCP or similar protocol to automatically assign shorter network addresses). So how to uniquely identify my network nodes?

The Freescale Kinetis microcontroller have nice feature: they have a Unique Identification Register (UID) which would be a perfect fit for a MAC address :-).

UID Output

UID Output

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Sumo Robot with Accelerometer Remote Controller

Usually, there are two flavors of Sumo robot competition:

  1. Autonomous: no communication to the robot permitted after the start.
  2. Remote-controlled: there is a wireless remote controller driving the robot.

Just for fun, I have implemented a wireless remote controller application for my Zumo Robot using the Freescale SRB (MC13123) board. I’m using the Freescale MMA7260Q accelerometer on the SRB board to control the robot.

Accelerometer Remote Controller

Accelerometer Remote Controller

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