Comtech EF Data CDM-Qx Installation And Operation Manual page 180

Multi-channel satellite modem with doubletalk carrier-in-carrier
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CDM-Qx Satellite Modem
Remote Control
Command
Parameter
(Instruction
Type
Code and
qualifier)
RX Reed-
RRS=
Solomon (n, k)
values
RX Data Rate
RDR=
RX Spectrum
RSI=
Invert
RX Descrambler
RDS=
RX Data Invert
RDI=
RX Data Clock
RCI=
Invert
Arguments for
Command or
Description of Arguments
Response to
Query
1 byte, value of 0
Command or Query.
through 3
RX Reed-Solomon (n, k) values, where:
0=Unframed closed network (220,200)
1=EFD closed network (225,205)
2=IESS-310 compatible operation (219,201)
3=EDMAC mode, closed (200,180) – EDMAC only
Notes:
1. Selection is valid only when RFT=2 or RFT=5.
2. For D&I++, selection 0,1, and 2 are supported.
9 bytes
Command or Query
RX Data Rate, in kbps, between 32 kbps and 20 Mbps
Resolution = 1 bps. (See Chapter 5 for valid rates)
Query ONLY if Interface Type is Quad Drop & Insert (ITF=D).
Example: RDR=02047.999
1 byte, value of 0,
Command or Query
1
RX Spectrum Invert, where:
0=Normal
1=RX Spectrum Invert
Example: RSI=0 (Normal)
1 byte, value of 0
Command or Query
1, 2
RX Descrambler state, where:
0=Off
1=On (default descrambler type)
2=On (IESS-315 Turbo only)
1 byte, value of 0,
Command or Query
1
Invert Receive Data, where:
0=Normal
1=Inverted
Example: RDI=1 (Inverted RX Data)
1 byte, value of 0,
Command or Query
1
Invert Receive Data Clock, where:
0=Normal
1=Inverted
RRS=
RRS?
RRS*
RRS#
RRS$
RRS^
RRS@
RDR=
RDR?
RDR*
RDR#
RDR$
RDR^
RDR@
RSI=
RSI?
RSI*
RSI#
RSI$
RSI^
RSI@
RDS=
RDS?
RDS*
RDS#
RDS$
RDS^
RDS@
RDI=
RDI?
RDI*
RDI#
RDI$
RDI^
RDI@
RCI=
RCI?
RCI*
RCI#
RCI$
RCI^
RCI@
C-14
Response to
Query
Command
(Instruction
(Target to
Code and
Controller)
Qualifier)
RRS?
RDR?
RSI?
RDS?
RDI?
RCI?
Revision 6
MN/CDMQx.IOM
Response to
query
(Target to
Controller)
RRS=x
(see description of
arguments)
RDR=xxxxx.xxxx
(see description of
arguments)
RSI=x
(see description of
arguments)
RDS=x
(see description of
arguments)
RDI=x
(see description of
arguments)
RCI=x
(see description of
arguments)

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