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prod/doc/index.html: added section separators; expanded setup section
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@ -29,6 +29,9 @@ Devices accepted for further use can then be packaged for shipping.
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Defective devices can be discarded or retained for a deeper analysis.
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Defective devices can be discarded or retained for a deeper analysis.
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<!-- ====================================================================== -->
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<H2>Terminology</H2>
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<H2>Terminology</H2>
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<DL>
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<DL>
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@ -73,16 +76,129 @@ Defective devices can be discarded or retained for a deeper analysis.
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</DL>
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</DL>
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<H2>Setup</H2>
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<!-- ====================================================================== -->
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<H2>Software setup</H2>
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Before performing any production tests, various pieces of software
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need to be installed on Ben and PC, and configuration settings
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@@@
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<!-- ---------------------------------------------------------------------- -->
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<H3>PC software installation</H3>
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<H3>PC software installation</H3>
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@@@
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<H4>Install ben-wpan tools</H4>
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@@@
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<H4>Register Ben host name</H4>
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To simplify accessing the Ben via TCP/IP, its IP address should be
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registered in the hosts file on the PC. If the Ben is running OpenWrt,
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use the following command:
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<PRE>
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echo 192.168.254.101 ben >>/etc/hosts
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</PRE>
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<P>
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If the Ben is running Jlime, the address would be as follows:
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<PRE>
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echo 192.168.1.202 ben >>/etc/hosts
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</PRE>
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<P>
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If using the same PC with Bens running OpenWrt and Jlime, one may choose
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different host names depending on the distribution, and adapt the commands
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used in the production and testing process accordingly. For example,
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<PRE>
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echo 192.168.254.101 ben >>/etc/hosts
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echo 192.168.1.202 jlime >>/etc/hosts
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</PRE>
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<!-- ---------------------------------------------------------------------- -->
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<H3>Ben system setup</H3>
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The configuration setting described in this section are lost on each
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reset or reboot and either need to be entered again or a setup script
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running at boot time has to
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This needs to be done each time the Ben is booted.
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<H4>Enable network access</H4>
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Once the Ben has booted and started USB networking, the interface
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on the PC side is configured as follows:
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<PRE>
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ifconfig usb0 192.168.254.100 up
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</PRE>
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<P>
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These are the settings for OpenWrt, assuming the network device is
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called "usb0". If using Jlime, the command would be as follows:
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<PRE>
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ifconfig usb0 192.168.1.200 up
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</PRE>
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<H4>Silence other 8:10 card users</H4>
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Before running any of the ben-wpan utilities, other users of the 8:10
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card slot have to be disabled. In a Ben running the regular OpenWrt or
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Jlime distribution, the only such user that is automatically started
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is the MMC kernel driver. The following command disables it:
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<PRE>
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echo jz4740-mmc.0 >/sys/bus/platform/drivers/jz4740-mmc/unbind
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</PRE>
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<P>
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If a WPAN-enabled kernel has been installed, the AT86RF230 driver takes
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the place of the MMC driver. To disable it, run
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<PRE>
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echo spi2.0 >/sys/bus/spi/drivers/at86rf230/unbind
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</PRE>
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<H4>Start atrf-proxy</H4>
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On the Ben, launch the proxy daemon. We pass the option -b to background it:
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<PRE>
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atrf-proxy -b
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</PRE>
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<!-- ---------------------------------------------------------------------- -->
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<H3>Ben software installation</H3>
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<H3>Ben software installation</H3>
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<H3>Ben software setup</H3>
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<H4>Password-less remote access</H4>
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To enable password-less remote access from the PC, setup to betwork
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access to the Ben and run the following command:
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<PRE>
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ssh ben 'cat >>/etc/dropbear/authorized_keys' <~/.ssh/id_rsa.pub
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</PRE>
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<!-- ---------------------------------------------------------------------- -->
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<H3>Test profiles</H3>
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<H3>Test profiles</H3>
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<!-- ====================================================================== -->
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<H2>Flashing (atusb only)<H2>
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<H2>Flashing (atusb only)<H2>
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<!-- ---------------------------------------------------------------------- -->
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<H3>Flashing the boot loader</H3>
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<H3>Flashing the boot loader</H3>
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<P>
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<P>
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@ -90,6 +206,9 @@ Defective devices can be discarded or retained for a deeper analysis.
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<P>
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<P>
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<!-- ---------------------------------------------------------------------- -->
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<H3>Flashing the application</H3>
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<H3>Flashing the application</H3>
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<P>
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<P>
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@ -97,28 +216,53 @@ Defective devices can be discarded or retained for a deeper analysis.
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<P>
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<P>
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<!-- ====================================================================== -->
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<H2>Functional test</H2>
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<H2>Functional test</H2>
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<!-- ---------------------------------------------------------------------- -->
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<H3>Test setup for atben</H3>
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<H3>Test setup for atben</H3>
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<P>
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<P>
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<IMG src="setup-A.png">
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<IMG src="setup-A.png">
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<P>
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<P>
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<!-- ---------------------------------------------------------------------- -->
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<H3>Test setup for atusb</H3>
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<H3>Test setup for atusb</H3>
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<P>
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<P>
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<IMG src="setup-B.png">
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<IMG src="setup-B.png">
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<P>
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<P>
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<!-- ---------------------------------------------------------------------- -->
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<H3>Test procedure</H3>
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<H3>Test procedure</H3>
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<!-- ====================================================================== -->
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<H2>Fault analysis</H2>
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<H2>Fault analysis</H2>
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<!-- ---------------------------------------------------------------------- -->
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<H3>Component placement and orientation</H3>
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<H3>Component placement and orientation</H3>
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<!-- ---------------------------------------------------------------------- -->
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<H3>Supply voltages</H3>
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<H3>Supply voltages</H3>
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<!-- ---------------------------------------------------------------------- -->
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<H3>Clock frequency</H3>
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<H3>Clock frequency</H3>
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The flawless performance of the crystal oscillator is crucial for
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The flawless performance of the crystal oscillator is crucial for
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