23
/*Type;
Check matrix model
[X5]
/*Type;
<^SPORT>
Check current matrix network
port number
SPORT:[X12]
<^SPORT>
<^SIPR>
Check current matrix IP network
number
SIPR:[X12].[X13].
[X14].[X15]
<^SIPR>
<^SUBR>
Check current network sub net
mask number
SUBR:[X12].[X13].
[X14].[X15]
<^SUBR>
<^GAR>
Check current network gateway
number
GAR:[X12].[X13].
[X14].[X15]
<^GAR>
<^SHAR>
Check current network hardware
address number
SHAR:[X12].[X13].
[X14].[X15].[X16].
[X17]
<^SHAR>
9.9 Common Usage Allocation Order
ASCII
command(from
PC to matrix)
Command function
Return(from
matrix to PC)
Example
Standard switch
[xxx].
Switch standard work mode
(xxx=255,operate all output)
STANDARDSWIT
CH002!
Standard
switch.2
Fast switch[xxx].
Switch quick work mode
(acquiescence) (xxx=255,
operate all output)
FASTSWITCH002!
Fastswitch2.
[Y1]D[X1],
[X2],…,[Xn].
Read monitor EDID to input port
connecting output port[Y1]
[X1],[X2],…,[Xn].
When output port [Y1]: 0, means
recover the acquiescent EDID to
the related output port
input port [Xn] require the same
input board, one time only can be
written 8-channel (for example)
(1D1,2,3,4,5,6,7,8.)
EDID-OK! (success)
EDID-FAIL! (fail)
1D1,2,3,8.
WEDIDx.
Send EDID to output board,
restore in EEPROM
send”CONFIGEDIDCODE.” Then
send EDID data.
Send WEDIDx. (x=1 to 8
)
WEDIDx.
WEDID1.
ROUTPUTDID
[Y1].
Read output port EDID to
terminal
256 byte EDID
,
if no
connection monitor,
return 0
ROUTPU
TDID1.
R BLOCK E DID x.
Read output board EPROM x
situation EDID to terminal
256 byte EDID data
RBLOCKE
DID1.
[X]WBEDID[Y]
Read output board EDID[X] to
CALLEDID[X],[Y].
2WBEDI
Summary of Contents for TS-9208H
Page 27: ...26 15 System connection drawing TS 9208H...
Page 28: ...27 TS 9216H TS 9232H...
Page 29: ...28 16 Theory block plan...