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authorJosh Blum <josh@joshknows.com>2010-10-28 18:34:04 -0700
committerJosh Blum <josh@joshknows.com>2010-10-28 18:34:04 -0700
commit92b5034cb5a6e17fe7ebc437f7ef26147d69eba3 (patch)
tree57aaeb9964b9d990510aa5cf4a72d67581f0129b /host/docs
parentf9edd3865ca0f61a9e80fd917521b49292d5ecb1 (diff)
parenta8d2c2944b329218af1c0b171b92f775b679b409 (diff)
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Merge branch 'master' into flow_ctrl
Diffstat (limited to 'host/docs')
-rw-r--r--host/docs/dboards.rst14
-rw-r--r--host/docs/usrp2.rst2
2 files changed, 12 insertions, 4 deletions
diff --git a/host/docs/dboards.rst b/host/docs/dboards.rst
index d93fb9d6a..b39c587f6 100644
--- a/host/docs/dboards.rst
+++ b/host/docs/dboards.rst
@@ -26,9 +26,13 @@ The boards have no tunable elements or programmable gains.
Though the magic of aliasing, you can down-convert signals
greater than the Nyquist rate of the ADC.
-BasicRX Bandwidth (Hz): 250M
+BasicRX Bandwidth (Hz):
+ For Real-Mode (A or B subdevice): 250M
+ For Complex (AB or BA subdevice): 500M
-LFRX Bandwidth (Hz): 30M
+LFRX Bandwidth (Hz):
+ For Real-Mode (A or B subdevice): 33M
+ For Complex (AB or BA subdevice): 66M
^^^^^^^^^^^^^^^^^^^^^^^^^^^
Basic TX and and LFTX
@@ -45,8 +49,12 @@ Though the magic of aliasing, you can up-convert signals
greater than the Nyquist rate of the DAC.
BasicTX Bandwidth (Hz): 250M
+ For Real-Mode (A or B subdevice): 250M
+ For Complex (AB or BA subdevice): 500M
-LFTX Bandwidth (Hz): 30M
+LFTX Bandwidth (Hz): 33M
+ For Real-Mode (A or B subdevice): 33M
+ For Complex (AB or BA subdevice): 66M
^^^^^^^^^^^^^^^^^^^^^^^^^^^
DBSRX
diff --git a/host/docs/usrp2.rst b/host/docs/usrp2.rst
index 181e34223..ce94f6b6a 100644
--- a/host/docs/usrp2.rst
+++ b/host/docs/usrp2.rst
@@ -178,7 +178,7 @@ The LEDs reveal the following about the state of the device:
* **LED B:** undocumented
* **LED C:** receiving
* **LED D:** firmware loaded
-* **LED E:** undocumented
+* **LED E:** reference lock
* **LED F:** FPGA loaded