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IEEE 802.15.4 subsystem, IEEE 802.15.4 Low-Rate Wireless Personal Area Network (WPAN) http://projects.qi-hardware.com/index.php/p/ben-wpan/
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Werner Almesberger 00f28250c5 Added boot loader for C8051F326 (using f326xbase)
- fw/boot/Makefile: build DFU-capable bootloader from f326xbase
- fw/boot/config.h: product-specific configuration
2010-08-19 01:05:04 -03:00
cam Typo causing silent failure: forgot the semicolon, so "doit" thought these 2010-08-14 23:57:56 -03:00
components Made first draft of schematics. 2010-08-12 13:09:36 -03:00
fw/boot Added boot loader for C8051F326 (using f326xbase) 2010-08-19 01:05:04 -03:00
modules Added modules for test points and solder pads. Some cleanup. 2010-08-12 15:28:03 -03:00
scripts Added a data sheet viewer. It improves upon the design used in gta02-core by 2010-08-10 12:26:24 -03:00
atrf.sch Net name correction, layout update. 2010-08-18 17:21:47 -03:00
AUTHORS Added modules for test points and solder pads. Some cleanup. 2010-08-12 15:28:03 -03:00
BOOKSHELF Updated the LED. 2010-08-12 15:50:38 -03:00
COPYING Added COPYING (GPL 2/LGPL 2.1/CC-BY-SA 3.0) and AUTHORS. Put pointer 2010-08-12 09:44:48 -03:00
Makefile Added a data sheet viewer. It improves upon the design used in gta02-core by 2010-08-10 12:26:24 -03:00
README Added COPYING (GPL 2/LGPL 2.1/CC-BY-SA 3.0) and AUTHORS. Put pointer 2010-08-12 09:44:48 -03:00
usb.sch Brown paper bag time: the VDD net was connected to VBUS, not VDD/VIO. 2010-08-18 15:45:26 -03:00
wpan-atrf.brd Added boot loader for C8051F326 (using f326xbase) 2010-08-19 01:05:04 -03:00
wpan-atrf.cmp First layout draft. (No GND areas, not quite following design rules.) 2010-08-12 22:35:54 -03:00
wpan-atrf.pro First layout draft. (No GND areas, not quite following design rules.) 2010-08-12 22:35:54 -03:00
wpan-atrf.sch Added default footprints to schematics. 2010-08-12 15:35:32 -03:00

IEEE 802.15.4 Low-Rate Wireless Personal Area Network (WPAN)
============================================================


IEEE 802.15.4 defines physical layers and a media access control for
wireless networks. ZigBee and 6loWPAN are based on IEEE 802.15.4.

This project aims to add experimental WPAN functionality to the Ben
NanoNote, in order to permit evaluation of overall network performance
and to examine possible integration into future devices.

This work is licensed under the terms detailed in the file COPYING.


Hardware architecture
---------------------

IEEE 802.15.4 transceiver chips are available from several manufacturers,
including Atmel, Freescale, and Texas Instruments. These chips are similar
in size, functionality, and cost. The first prototype is based on the
Atmel AT86RF230.

The RF module will be physically placed on the left side of the LCD
module, replacing part of the display's PCB.

When installed in the Ben, the transceiver will connect directly via SPI
to the Jz4720. For development, a SiLabs C8051F326 microcontroller
implements a USB to SPI conversion.