Provided by: freebsd-manpages_10.1~RC1-1_all bug

NAME

     rum — Ralink Technology USB IEEE 802.11a/b/g wireless network device

SYNOPSIS

     To compile this driver into the kernel, place the following lines in your kernel
     configuration file:

           device ehci
           device uhci
           device ohci
           device usb
           device rum
           device wlan
           device wlan_amrr

     Alternatively, to load the driver as a module at boot time, place the following line in
     loader.conf(5):

           if_rum_load="YES"

DESCRIPTION

     The rum driver supports USB 2.0 and PCI Express Mini Card wireless adapters based on the
     Ralink RT2501USB and RT2601USB chipsets.

     Ralink PCI Express Mini Card adapters show up as normal USB 2.0 devices and are thus handled
     by the rum driver.

     The RT2501USB chipset is the second generation of 802.11a/b/g adapters from Ralink.  It
     consists of two integrated chips, an RT2571W MAC/BBP and an RT2528 or RT5226 radio
     transceiver.

     The RT2601USB chipset consists of two integrated chips, an RT2671 MAC/BBP and an RT2527 or
     RT5225 radio transceiver.  This chipset uses the MIMO (multiple-input multiple-output)
     technology with multiple antennas to extend the operating range of the adapter and to
     achieve higher throughput.

     rum supports station, adhoc, hostap, and monitor mode operation.  Only one virtual interface
     may be configured at any time.  For more information on configuring this device, see
     ifconfig(8).

HARDWARE

     The rum driver supports USB 2.0 wireless adapters based on the Ralink RT2501USB and
     RT2601USB chipsets, including:

     Card                         Bus
     3Com Aolynk WUB320g          USB
     Abocom WUG2700 Ta            USB
     Airlink101 AWLL5025          USB
     ASUS WL-167g ver 2           USB
     Belkin F5D7050 ver 3         USB
     Belkin F5D9050 ver 3         USB
     Buffalo WLI-U2-SG54HP        USB
     Buffalo WLI-U2-SG54HG        USB
     Buffalo WLI-U2-G54HP         USB
     Buffalo WLI-UC-G             USB
     CNet CWD-854 ver F           USB
     Conceptronic C54RU ver 2     USB
     Corega CG-WLUSB2GO           USB
     D-Link DWA-110               USB
     D-Link DWA-111               USB
     D-Link DWL-G122 rev C1       USB
     D-Link WUA-1340              USB
     Digitus DN-7003GR            USB
     Edimax EW-7318USG            USB
     Gigabyte GN-WB01GS           USB
     Gigabyte GN-WI05GS           USB
     Hawking HWUG1                USB
     Hawking HWU54DM              USB
     Hercules HWGUSB2-54-LB       USB
     Hercules HWGUSB2-54V2-AP     USB
     LevelOne WNC-0301USB v3      USB
     Linksys WUSB54G rev C        USB
     Linksys WUSB54GR             USB
     Planex GW-US54HP             USB
     Planex GW-US54Mini2          USB
     Planex GW-USMM               USB
     Senao NUB-3701               USB
     Sitecom WL-113 ver 2         USB
     Sitecom WL-172               USB
     Sweex LW053                  USB
     TP-LINK TL-WN321G            USB

EXAMPLES

     Join an existing BSS network (i.e., connect to an access point):

           ifconfig wlan create wlandev rum0 inet 192.168.0.20 \
               netmask 0xffffff00

     Join a specific BSS network with network name “my_net”:

           ifconfig wlan create wlandev rum0 ssid my_net up

     Join a specific BSS network with 64-bit WEP encryption:

           ifconfig wlan create wlandev rum0 ssid my_net \
                   wepmode on wepkey 0x1234567890 weptxkey 1 up

     Join a specific BSS network with 128-bit WEP encryption:

           ifconfig wlan create wlandev rum0 wlanmode adhoc ssid my_net \
               wepmode on wepkey 0x01020304050607080910111213 weptxkey 1

DIAGNOSTICS

     rum%d: could not load 8051 microcode  An error occurred while attempting to upload the
     microcode to the onboard 8051 microcontroller unit.  The driver will reset the hardware.
     This should not happen.

SEE ALSO

     intro(4), netintro(4), usb(4), wlan(4), wlan_amrr(4), wlan_ccmp(4), wlan_tkip(4),
     wlan_wep(4), wlan_xauth(4), ifconfig(8), hostapd(8), wpa_supplicant(8).

     Ralink Technology, http://www.ralinktech.com/.

HISTORY

     The rum driver first appeared in OpenBSD 4.0.

AUTHORS

     The original rum driver was written by Niall O'Higgins <niallo@openbsd.org> and
     Damien Bergamini <damien@openbsd.org>.

BUGS

     Host AP mode doesn't support client power save.  Clients using power save mode will
     experience packet loss (disabling power saving on the client will fix this).