Sony Projector VPH-D50 Protocol Manu
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Transcript of Sony Projector VPH-D50 Protocol Manu
Ñ 1 Ñ
........................................
AEP
SCC-K78A-A
SCC-K79A-A
PROTOCOL MANUALMODEL ....................CHASSIS NO. MODEL ..........DEST. ....................CHASSIS NO.
VPH-G70QVPH-G70QMVPH-G70QMG
R
CanadianUS
SCC-K81A-A
AEP SCC-K82A-A
AEP SCC-K89C-A
CanadianUS
MULTISCAN PROJECTOR
VPH-D50Q/D50QM
VPH-G70Q/G70QM/G70QMG
REVISED-1
DEST.
VPH-D50QVPH-D50QM
For General Release
— 2 —
The material contained in this manual consists of
information that is the property of Sony Corporation and
is intended solely for use by the purchasers of the
equipment described in this manual.
Sony Corporation expressly prohibits the duplication of
any portion of this manual or the use thereof for any
purpose other than the operation or maintenance of the
equipment described in this manual without the express
written permission of Sony Corporation.
Content of this manual is subject to change without
prior notice.
— 3 —
1. INTRODUCTIONThis protocol manual describes various commands provided for projectors VPH-G70 and VPH-D50.
Using these commands, an external computer is able to control VPH-G70 and VPH-D50. In the following
paragraphs, CONTROLLER means an external device such as a PC which controls VPH-G70 and VPH-
D50 using these commands.
2. PROTOCOL SPECIFICATION
2-1. Communication Signal
• Standard (4 Wire) communication channel
• Unsynchronous bit serial, word serial digital signal
• Baud rate : 38.4K, 19.2K, 9600, 4800 bits per second (bps)
<Note>
1: Baud rate of PROJECTOR is originally set to 38.4Kbps for the standard at the factory.
2: Baud rate of PROJECTOR is able to be changed in the item of ‘Service Setting for RS422A’ of
OSD Menu of PROJECTOR.
• Bit configuration is defined as follows
1 START Bit + 8 DATA Bits + 1 PARITY Bit + 1 STOP Bit
EVEN Parity ... Total number of ‘1’s from D0 to D7 is even number
START
BIT
D0
(LSB)
D1 D2 D3 D4 D5 D6 D7
(MSB)
PARITY
(EVEN)
STOP
BIT
— 4 —
RECEIVER (To) Index
2-2. Command Block FormatCode from B0 up to Bn+2 as described bellow shall be transmitted.
< Note > n = 16 + the number of bytes of Data transmitted
1
B0
Start Code
B2 B3 B4 B5
Group Index Device Index
B7
SENDER (From) Index
B8 B9 B10
Group Index Device Index
B11
CMD1
B12
CMD2
COMMAND
B13
CMD3
8
Bn+2
End Code
5
B16
Data Size of 6
6
B17
Data (TOP)
7
Bn+1
Check SUM
B1 ~ Bn XOR
4
B15
Sub Command
Bn
Data (END)
~
2
B1
Peripheral Index
B6
Peripheral Index
3
B14
Data Size of 4~6
— 5 —
2-3. Data of Code
1 Start Condition
2 Index Header
/*-- RECEIVER INDEX --*/
/*-- SENDER INDEX --*/
/*-- COMMAND --*/
3 Data Size
4 Sub Command
5 Data Size
6 Data
7 Check SUM
8 End Condition
CONTROLLER
Group Index = 0001 hex
Device Index = 0001 hex
Projector
Group Index = 0001 hex
Device Index = 0001 hex
Bn
B0
NAME
Start Code
NOTEDATA
A5
B1
B2
B3
B4
B5
PERIPHERAL INDEX
GROUP INDEX UPPER BYTE
GROUP INDEX LOWER BYTE
DEVICE INDEX UPPER BYTE
DEVICE INDEX LOWER BYTE
01
00
01
00
01
B6
B7
B8
B9
B10
PERIPHERAL INDEX
GROUP INDEX UPPER BYTE
GROUP INDEX LOWER BYTE
DEVICE INDEX UPPER BYTE
DEVICE INDEX LOWER BYTE
03
00
01
00
01
B11
B12
B13
CMD1
CMD2
CMD3 CRT Projector
LCD Projector
DMD Projector
10
80
B0
Refer to attached
Refer to attached
B14 Data Size Total Data Size of 4~6xx
B15 Sub Command I am stationary in 00.00
B16 Data Size Data Size of 6xx
B17~Bn Data Bytes of Data depend on a COMMANDxx
Bn+1 Check Sum Check SUM of Data of 2~6
(XOR of Data of 2~6)
xx
Bn+2 END Code 5A
- 6 -
FUNCTION
RETURN DATA FROM PJ
STATUS SENSE
SYSTEM SELECT
INTERNAL TEST SIGNAL GEN.
SIRCS CODE DIRECT
ACTIVE MEMORY READ
ACTIVE MEMORY WRITE
Place Data for a Command Block as follows for VPH-G70 / D50.
¥ Command Blocks from B0 up to Bn+2 shall be transmitted continuously. Transfer interval between
bytes within a Command Block sent from CONTROLLER shall not exceed 4 ms.
COMMAND is composed of 3 part commands CMD1, CMD2 and CMD3 as shown on the section 3rd.
<CMD1> CMD1 is the first part command represents the basic operation of COMMAND, and classified
into as follows.
~
DATA
B16
SIZE of 6
B0
A5
B14
SIZE of 4 ~6
B15
00
B1
01
B2
00
B3
01
B4
00
B5
01
B6
03
B7
00
B8
01
B9
00
B10
01
B17 Bn Bn+1
Check SUM
Bn+2
5A
<CMD2> CMD2 is the second part command and shall be used with CMD1 for the real operation of
COMMAND. Its role depends on a CMD1 combined.
<CMD3> CMD3 is the third part command which clarifies a category of PROJECTOR. This shall be
set to 10 hex for VPH-G70 and D50.
CMD1
10
11
13
15
16
30
32
DIRECTION
CONTROLLER <-- PROJECTOR
CONTROLLER --> PROJECTOR
CONTROLLER --> PROJECTOR
CONTROLLER --> PROJECTOR
CONTROLLER --> PROJECTOR
CONTROLLER --> PROJECTOR
CONTROLLER --> PROJECTOR
B11
CMD1
B12
CMD2
B13
10
— 7 —
2-4. ConnectionConnector : 9 Pin D-subminiature female(D-9S)
If CONTROLLER is wired with RS-232C and PROJECTOR is with RS-422A, the following connection
is recommended.
2-5. Communication ProcedureCommunication between CONTROLLER (such as a PC) and DEVICE (such as a PROJECTOR) shall be
performed with transmission of a Command Block format.
Communication starts with a Command transmitted by CONTROLLER, and ends with a Return Data from
DEVICE to CONTROLLER, if DEVICE receives a Command and deal with it correctly.
CONTROLLER is prohibited to send plural Commands simultaneously, so that after transmission of a
Command to DEVICE, CONTROLLER shall not transmit the next Command before receiving a Return
Data from DEVICE.
Required time between transmission of a Command from CONTROLLER and that of Return Data from
DEVICE depends on a Command transmitted, since DEVICE needs some time for dealing with it and then
send back a Return Data
signal
pin
1
2
3
4
5
6
7
8
9
CONTROLLER
NC
RXDA
TXDA
NC
GND
DSR
RTS
CTS
NC
PROJECTOR
GND
TX
RX
GND
NC
GND
TX
RX
GND
CONTROLLER MAX489ECSD
MAX202E
or
MA232E
PROJECTOR
— 8 —
2-6. Communication Rules• INDEX NUMBER of PROJECTOR shall be set to ‘01’.
• After transmission of a Command to PROJECTOR, CONTROLLER shall not send the next Command
before receiving Return Data ( CMD1=10 hex ) from PROJECTOR. If not, any Data is not transmitted
from PROJECTOR, neither any Error Code.
• In case of a communication error, PROJECTOR ignores all Data sent so far, and transmits ‘NAK’ to
CONTROLLER as a Return Data.
• If unidentified Command is transmitted or Data is not acknowledged by PROJECTOR, PROJECTOR
transmits ‘NAK’ to CONTROLLER as a Return Data.
• While a signal inputted to PROJECTOR is not stable ( where 7 SEG LED indicates ‘10’ ), Data
transmitted to PROJECTOR is not recognised.
• In case of USER mode on PROJECTOR, a picture displayed might disappear accidentally and also
might come out of any status to the normal, when a Command, especially DATA WRITE COMMAND
is transmitted.
• In both cases of USER and SERVICEMAN mode, if PROJECTOR receives DATA WRITE
COMMAND such as SYSTEM SELECT COMMAND and ACTIVE MEMORY WRITE
COMMAND, PROJECTOR needs some more time to check its Data as explained bellow before
sending back the Return Data to CONTROLLER. It takes around 800 ms totally between transmission
of a Command from CONTROLLER and that of a Return Data from PROJECTOR.
• When SYSTEM SELECT COMMAND (CMD1=13hex) or ACTIVE MEMORY WRITE COMMAND
(CMD1=32hex) is transmitted, its Data is checked by PROJECTOR firstly whether it is out of range
or not. In case of out of range of Data, the followings are implemented by PROJECTOR.
a) In case of SYSTEM SELECT COMMAND (CMD1=13hex)
- ‘NAK’ is sent back from PROJECTOR to CONTROLLER. It takes around 800 ms until
‘NAK’ is sent back.
b) In case of ACTIVE MEMORY COMMAND (CMD1=32hex)
- Data is replaced automatically into appropriate one as it is just within a range, and ‘NAK
(RANGE OVER / Data = 06hex)’ is transmitted to CONTROLLER. It takes also around
800 ms until ‘NAK’ is sent back.
- Range of Data for SYSTEM SELECT COMMAND is described on Protocol Table attached.
- Range of Data for ACTIVE MEMORY WRITE COMMAND is not available as Table, since its
Data is justified automatically as mentioned above.
- Range of Data for ACTIVE MEMORY WRITE COMMAND depends on the horizontal frequency
of a signal inputted, either a product model ( G70/D50 ) itself.
• After transmission of SIRCS DIRECT COMMAND (CMD1=16hex) and that of a Return Data
(CMD1=10hex) from PROJECTOR , CONTROLLER shall not send the next SIRCS DIRECT
COMMAND immediately. More than 180 ms is required for its interval.
— 9 —
B22
Check SUM
2A
B19
Data3
00
B11
CMD1
32
B12
CMD2
08
B14
Data Size
07
B13
CND3
10
B15
Sub Command
00
B16
Data Size
05
B17
Data1
01
B18
Data2
01
B20
Data4
00
B21
Data5
00
Please pay special attention to the following ERROR Data, when SIRCS DIRECT COMMAND is
transmitted.
04 : SIZE ERROR The value of Data is not ‘2’.
05 : SELECT ERROR The value of the first Data is not ‘0’, neither ‘1’.
- ‘0’ : simulation to press a key of the remote commander
once
- ‘1’ : simulation to keep pressing a key of theremote
commander
07 : SIRCS BUSY ERROR SIRCS Encoder inside PROJECTOR is busy.
3. Command Block Table
The following is one of examples about a Command Block, which intends to set the green data of
COLOR UNIFORMITY adjustment as HG=0, VG=0 and V=0.
— 10 —
FU
NC
TIO
NC
OM
MA
ND
DIR
EC
TIO
NC
MD
1C
MD
2D
AT
A
RE
TU
RN
DA
TA
AC
K(A
CK
NO
WLE
DG
E)
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
01
00
0
FR
OM
PJ
<CM
D1=
10 H
EX
>A
CK
WIT
H D
AT
AC
ON
TR
OLL
ER
++++
PR
OJE
CT
OR
10
20
DA
TA
1D
AT
A 2
~D
AT
A N
NA
K(N
OT
AN
KN
OW
LED
GE
)C
ON
TR
OLL
ER
++++
PR
OJE
CT
OR
10
F0
ER
RO
R D
AT
A
CO
MM
AN
D E
RR
OR
01
UN
DE
FIN
ED
CO
MM
AN
D
02
PR
OJE
CT
OR
HE
AD
IS
NO
T P
OW
ER
ON
03
AN
Y P
RO
TE
CT
IS
ON
04
SIZ
E E
RR
OR
05
SE
LEC
T E
RR
OR
06
RA
NG
E O
VE
R
07
SIR
CS
BU
SY
08
DA
TA
NO
T S
TA
BIL
IZE
D
CO
MM
UN
ICA
TIO
N E
RR
OR
10
CH
EC
K S
UM
ER
RO
R
20
FR
AM
ING
E
RR
OR
30
PA
RIT
Y
E
RR
OR
40
OV
ER
E
RR
OR
50
OT
HE
R
E
RR
OR
ST
AT
US
SE
NS
ED
EV
ICE
TY
PE
RE
QU
ES
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
11
00
XX
<CM
D1=
11 H
EX
>
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0S
ET
NA
ME
SE
T S
ER
IAL
32
BY
TE
S(M
AX
)4
BY
TE
S
AS
CII
CH
AR
AC
TO
R32
BIT
S C
OD
E
SO
FT
WA
RE
VE
R.
RE
QU
ES
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
11
*CM
D2
XX
*CM
D2
03 A
LL M
CU
04 M
AIN
MC
U
05 R
EG
I M
CU
06 O
SD
MC
U
07 C
OM
M M
CU
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0D
AT
A #
1D
AT
A #
2D
AT
A #
3D
AT
A #
4~
DA
TA
#16
ALL
M
CU
RO
M V
ER
SIO
N (
MA
IN R
EG
I O
SD
CO
M)
DA
TA
4B
YT
ES
* 4
= 1
6BY
TE
S
OR
DA
TA
#1
DA
TA
#2
DA
TA
#3
DA
TA
#4
MA
IN M
CU
RO
M V
ER
SIO
N D
AT
A
RE
GI
MC
U R
OM
VE
RS
ION
DA
TA
OS
D
MC
U R
OM
VE
RS
ION
DA
TA
CO
MM
MC
U R
OM
VE
RS
ION
DA
TA
ER
R R
EQ
UE
ST
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
10
8X
X
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0M
AIN
MC
U E
RR
OR
RE
GI
MC
U E
RR
OR
OS
D M
CU
ER
RO
RC
OM
M M
CU
ER
RO
R
00~
99(B
CD
)00
~99
(BC
D)
00~
99(B
CD
)00
~99
(BC
D)
PO
WE
R S
TA
TU
S S
EN
SE
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
10
BX
X
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0P
OW
ER
00 O
FF
01 O
N
— 11 —
FU
NC
TIO
NC
OM
MA
ND
DIR
EC
TIO
NC
MD
1C
MD
2D
AT
A
SE
T M
OD
E A
CT
ST
AT
US
SE
NS
EC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
11
0D
XX
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0S
ET
MO
DE
00 U
SE
R
01 S
ER
VIC
E
02 F
AC
TO
RY
PO
LE S
TA
TU
S S
EN
SE
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
10
EX
X
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0P
OL
E
00 N
OR
MA
L
01 H
INV
02 V
INV
03 H
VIN
V
ALL
WH
ITE
MO
DE
ST
AT
US
SE
NS
EC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
11
0F
XX
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0A
LL W
HIT
E
00 O
FF
01 O
N
PO
WE
R S
AV
ING
ST
AT
US
SE
NS
EC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
11
10
XX
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0P
OW
ER
SA
VIN
G
00 O
FF
01 O
N
PIC
TU
RE
MU
TIN
G S
TA
TU
S S
EN
SE
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
11
1X
X
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0P
ICT
UR
E M
UT
ING
00 O
FF
01 O
N
PR
OT
EC
TIO
N S
TA
TU
S S
EN
SE
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
11
7X
X
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0P
RO
TE
CT
ION
00 O
FF
01 O
N
FH
TO
O H
IGH
ST
AT
US
SE
NS
EC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
11
18
XX
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0F
H T
OO
HIG
H
00 N
OR
MA
L
01 F
H T
OO
HIG
H
OV
ER
CO
RR
EC
TIO
N S
TA
TU
S S
EN
SE
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
11
9X
X
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0O
VE
R C
OR
RE
CR
ION
00 N
OR
MA
L
01 O
VE
R C
OR
RE
CT
ION
CO
MM
TA
RG
ET
DE
VIC
E I
ND
EX
SE
NS
EC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
11
1A
XX
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0D
EV
ICE
IN
DE
X
UP
PE
R D
AT
ALO
WE
R D
AT
A
2BY
TE
S D
AT
A
NV
M I
ME
M E
NT
RY
LO
AD
FR
OM
SE
NS
EC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
11
1B
XX
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0LO
AD
FR
OM
00~
63 0
~99
— 12 —
FU
NC
TIO
NC
OM
MA
ND
DIR
EC
TIO
NC
MD
1C
MD
2D
AT
A
NV
M I
ME
M E
NT
RY
SA
VE
TO
SE
NS
EC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
11
1C
XX
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0S
AV
E T
O
00~
63 0
~99
SIG
NA
L S
TA
BIL
IZE
D S
TA
TU
S S
EN
SE
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
11
DX
X
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0S
IGN
AL
ST
AB
ILIZ
ED
00 I
NS
TA
BIL
ITY
01 S
TA
BIL
ITY
INP
UT
SIG
NA
L S
EN
SE
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
12
BX
X
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0C
HA
NN
EL
CH
AN
NE
L S
W'E
RS
IGN
AL
RE
QS
IGN
AL
AC
TH
IGH
SC
AN
CO
L S
YS
00 V
IDE
OO
LD 0
0~07
(1-1
~2-
8)10
V
IDE
OC
VB
S00
N
OIN
PU
T00
NO
RM
AL
00 I
NV
ALI
D
01 I
NP
UT
A20
(OT
HE
R)
11
VID
EO
YC
10
VID
EO
CV
BS
01 I
NT
_2F
H07
NT
SC
02 I
NP
UT
B20
R
GB
11 V
IDE
OY
C02
IN
T_2
FH
FV
19 P
AL
03 O
LD S
W'E
R30
C
OM
P20
RG
B04
IN
T_E
DT
VII
1D S
EC
AM
40
HD
TV
YP
BP
R21
RG
B15
K08
IN
T_P
ALP
LUS
05 N
TS
C44
3
41
HD
TV
GB
R30
CO
MP
10 E
XT
_2F
H2B
PA
LM
50
IDT
VC
OM
P60
40 H
DT
VY
PB
PR
20 E
XT
_2F
HF
V02
BW
60
51
IDT
VN
OT
CO
MP
6041
HD
TV
GB
R40
EX
T_E
DT
VII
10 B
W50
50 I
DT
V80
EX
T_P
ALP
LUS
52 I
DT
VN
TS
C
INP
UT
fH
,fV,S
YN
C D
AT
A S
EN
SE
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
12
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R1
34
4P
IC O
RB
ITIN
G
00 O
FF
01 O
N
PIC
OR
BIT
ING
TIM
E W
RIT
EC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
45
PIC
OR
BIT
ING
TIM
E
1BY
TE
(*
1 M
in)
PO
WE
R S
AV
ING
ALL
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
49
PO
WE
R S
AV
ING
PO
WE
R S
AV
ING
TIM
E
00 O
FF
1BY
TE
(*
1 M
in)
01 O
N
PO
WE
R S
AV
ING
ON
/OF
F S
ELS
EC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
4A
PO
WE
R S
AV
ING
00 O
FF
01 O
N
PO
WE
R S
AV
ING
TIM
E W
RIT
EC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
4B
PO
WE
R S
AV
ING
TIM
E
1BY
TE
(*
1 M
in)
PO
WE
R D
IRE
CT
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
50
AC
PO
WE
R O
N/O
FF
00 O
FF
01 O
N
PO
WE
R O
N D
ELA
Y S
TA
TU
S S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
35
1P
OW
ER
ON
DE
LAY
00 O
FF
01 O
N
5BN
C O
LD S
W'E
R S
TA
TU
S S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
35
25B
NC
OLD
SW
'ER
00 O
FF
01 O
N
AU
TO
BA
CK
GR
OU
ND
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
55
AU
TO
BK
00 O
FF
01 O
N
AB
L LI
NK
ST
AT
US
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
56
AB
L LI
NK
00 O
FF
01 O
N
IR I
N S
TA
TU
S S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
35
7IR
IN
00 F
RO
NT
RE
AR
01 F
RO
NT
02 R
EA
R
— 18 —
FU
NC
TIO
NC
OM
MA
ND
DIR
EC
TIO
NC
MD
1C
MD
2D
AT
A
OS
D L
AN
GU
AG
E S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
36
0O
SD
LA
NG
UA
GE
00 E
NG
LIS
H
01 F
RE
NC
H
02 G
ER
MA
N
03 I
TA
LIA
N
04 S
PA
NIS
H
05 J
AP
AN
ES
E
06 C
HIN
ES
E
OS
D S
HO
W S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
36
1O
SD
SH
OW
00 O
N
01 N
OR
MA
L O
FF
02 A
LL O
FF
INP
UT
ALL
SE
LCT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
37
0IN
PU
T C
HA
NN
EL
OLD
SW
'ER
CH
AN
NE
LD
UM
MY
00 V
IDE
O00
~07
SW
'ER
1-1~
80
01 I
NP
UT
A10
~17
SW
'ER
2-1~
8
02 I
NP
UT
B20
OT
HE
R
03 O
LD S
W'E
R
INP
UT
CH
AN
NE
L S
ELC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
71
INP
UT
CH
AN
NE
L
00 V
IDE
O
01 I
NP
UT
A
02 I
NP
UT
B
03 O
LD S
W'E
R
OLD
SW
'ER
CH
AN
NE
L S
ELC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
72
OLD
SW
'ER
CH
AN
NE
L
00~
07 S
W'E
R1-
1~8
10~
17 S
W'E
R2-
1~8
20
O
TH
ER
VID
EO
ALL
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
74
VID
EO
VID
EO
CO
L S
YS
VID
EO
ID
TV
US
E
10
VID
EO
00 A
UT
O00
NO
T U
SE
11
SV
IDE
O07
NT
SC
01 U
SE
19 P
AL
1D S
EC
AM
05 N
TS
C44
3
2B P
ALM
VID
EO
SIG
NA
L S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
37
5V
IDE
O
10
VID
EO
11
SV
IDE
O
VID
EO
CO
L S
YS
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
76
VID
EO
CO
L S
YS
00 A
UT
O
07 N
TS
C
19 P
AL
1D S
EC
AM
05 N
TS
C44
3
2B P
ALM
VID
EO
ID
TV
US
E S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
37
7V
IDE
O I
DT
V U
SE
00 N
OT
US
E
01 U
SE
INP
UT
A A
LL S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
37
8IN
PU
T A
INP
UT
A C
OL
SY
SIN
PU
T A
ID
TV
US
E
10
VID
EO
00 A
UT
O00
NO
T U
SE
11
SV
IDE
O07
NT
SC
01 U
SE
20
RG
B19
PA
L
30
CO
MP
1D S
EC
AM
40
HD
TV
YP
BP
R05
NT
SC
443
41
HD
TV
GB
R2B
PA
LM
— 19 —
FU
NC
TIO
NC
OM
MA
ND
DIR
EC
TIO
NC
MD
1C
MD
2D
AT
A
INP
UT
A S
IGN
AL
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
79
INP
UT
A
10
VID
EO
11
SV
IDE
O
20
RG
B
30
CO
MP
40
HD
TV
YP
BP
R
41
HD
TV
GB
R
INP
UT
A C
OL
SY
S S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
37
AIN
PU
T A
CO
L S
YS
00 A
UT
O
07 N
TS
C
19 P
AL
1D S
EC
AM
05 N
TS
C44
3
2B P
ALM
INP
UT
A I
DT
V U
SE
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
7B
INP
UT
A I
DT
V U
SE
00 N
OT
US
E
01 U
SE
INP
UT
B A
LL S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
37
CIN
PU
T B
INP
UT
B C
OL
SY
SIN
PU
T B
ID
TV
US
E
10
VID
EO
00 A
UT
O00
NO
T U
SE
11
SV
IDE
O07
NT
SC
01 U
SE
20
RG
B19
PA
L
30
CO
MP
1D S
EC
AM
40
HD
TV
YP
BP
R05
NT
SC
443
41
HD
TV
GB
R2B
PA
LM
INP
UT
B S
IGN
AL
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
7D
INP
UT
B
10
VID
EO
11
SV
IDE
O
20
RG
B
30
CO
MP
40
HD
TV
YP
BP
R
41
HD
TV
GB
R
INP
UT
B C
OL
SY
S S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
37
EIN
PU
T B
CO
L S
YS
00 A
UT
O
07 N
TS
C
19 P
AL
1D S
EC
AM
05 N
TS
C44
3
2B P
ALM
INP
UT
B I
DT
V U
SE
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
7F
INP
UT
B I
DT
V U
SE
00 N
OT
US
E
01 U
SE
OLD
SW
'ER
ALL
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
80
DA
TA
1~
DA
TA
24
DA
TA
25
~D
AT
A 4
8
OLD
SW
'ER
1-1
~O
TH
ER
OLD
SW
'ER
1-1
~O
TH
ER
OLD
SW
'ER
CO
L S
YS
~O
LD S
W'E
R C
OL
SY
SO
LD S
W'E
R I
DT
V U
SE
~O
LD S
W'E
R I
DT
V U
SE
00 A
UT
O00
NO
T U
SE
07 N
TS
C01
US
E
19 P
AL
1D S
EC
AM
05 N
TS
C44
3
2B P
ALM
24
BY
TE
S2
4B
YT
ES
OLD
SW
'ER
CO
LSY
S I
DT
V S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
38
1O
LD S
W'E
R C
HA
NN
EL
SLO
T N
o.O
LD S
W'E
R C
OL
SY
SO
LD S
W'E
R I
DT
V U
SE
00 1
00~
07 1
~8
00 A
UT
O00
NO
T U
SE
01 2
07 N
TS
C01
US
E
03 O
TH
ER
19 P
AL
1D S
EC
AM
05 N
TS
C44
3
2B P
ALM
— 20 —
FU
NC
TIO
NC
OM
MA
ND
DIR
EC
TIO
NC
MD
1C
MD
2D
AT
A
OLD
SW
'ER
CO
L S
YS
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
82
OLD
SW
'ER
CH
AN
NE
LS
LOT
No.
OLD
SW
'ER
CO
L S
YS
00 1
00~
07 1
~8
00 A
UT
O
01 2
07 N
TS
C
03 O
TH
ER
19 P
AL
1D S
EC
AM
05 N
TS
C44
3
2B P
ALM
OLD
SW
'ER
ID
TV
US
E S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
38
3O
LD S
W'E
R C
HA
NN
EL
SLO
T N
o.O
LD S
W'E
R I
DT
V U
SE
00 1
00~
07 1
~8
00 N
OT
US
E
01 2
01 U
SE
03 O
TH
ER
SC
RE
EN
TY
PE
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
88
SC
RE
EN
TY
PE
00 S
1
01 S
2
02 S
3
CO
LOR
UN
IFO
RM
ITY
SE
TT
ING
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
89
CO
LOR
UN
IFO
RM
ITY
00 O
FF
01 A
DJU
ST
02 P
RE
SE
T S
1
03 P
RE
SE
T S
2
04 P
RE
SE
T S
3
BR
IGH
TN
ES
S U
NIF
OR
MIT
Y S
ET
TIN
G S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
38
AB
RIG
HT
NE
SS
UN
IFO
RM
ITY
00 O
FF
01 A
DJU
ST
02 P
RE
SE
T S
1
03 P
RE
SE
T S
2
04 P
RE
SE
T S
3
CO
LOR
TE
MP
. S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
39
*CM
D2
TE
MP
.
00 9
300K
01 6
500K
02 5
400K
03 3
200K
*CM
D2
04 P
RE
SE
T0
OF
F
1~A
1~
10V
IDE
O M
EM
RY
No.
D P
ICT
UR
E S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
3A
*C
MD
2D
PIC
TU
RE
00 O
FF
*CM
D2
01 O
N0
OF
F
1~A
1~
10V
IDE
O M
EM
RY
No.
V.S
HIF
T S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
3B
*C
MD
2V
.SH
IFT
NA
RR
OW
/WID
E
00 W
IDE
*CM
D2
01 N
AR
RO
W0
OF
F
1~A
1~
10V
IDE
O M
EM
RY
No.
NT
SC
SE
TU
P C
OM
PO
NE
NT
SE
TT
ING
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
D *
CM
D2
NT
SC
SE
TU
P 7
5C
OM
PO
NE
NT
FO
RM
AT
00 0
%00
SM
PT
E/E
BU
-N10
*CM
D2
01 7
.5%
01 B
ET
AC
AM
7.5
0 O
FF
1~A
1~
10V
IDE
O M
EM
RY
No.
VID
EO
ME
MO
RY
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
F1
VID
EO
ME
MO
RY
00 O
FF
01~
0A 1
~10
VID
EO
ME
MR
Y N
o.
— 21 —
FU
NC
TIO
NC
OM
MA
ND
DIR
EC
TIO
NC
MD
1C
MD
2D
AT
A
CLA
MP
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
F2
CL
AM
P
00 A
UT
O
01 S
ON
G
02 H
C
03 H
P
04 T
RIL
EV
ELS
SY
NC
SE
LEC
TC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
13
F3
SY
NC
SE
LEC
T
00 A
UT
O
01 I
NT
ER
NA
L
02 E
XT
ER
NA
L
02 E
XT
ER
NA
L C
03 E
XT
ER
NA
L H
V
SY
NC
OS
C S
HIF
T S
ET
TIN
G S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
3F
5S
YN
C O
SD
C S
HIF
T
00 1
01 2
INT
ER
NA
L T
ES
TO
SC
IN
T O
N/O
FF
ST
AT
US
SE
NS
EC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
15
01
XX
SIG
NA
L G
EN
<CM
D1=
15H
EX
>R
ET
UR
N D
AT
AC
ON
TR
OLL
ER
++++
PR
OJE
CT
OR
10
20
OS
C I
NT
ER
NA
L
00 O
FF
01 O
N
OS
C I
NT
ER
NA
L S
TA
TU
S S
EN
SE
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
51
0X
X
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0O
SC
IN
TE
RN
AL
00~
07 1
~8
OS
C I
NT
ON
/OF
F S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
52
1O
SC
IN
TE
RN
AL
00 O
FF
01 O
N
OS
C I
NT
ER
NA
L S
ELE
CT
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R1
53
0O
SC
IN
TE
RN
AL
00~
07 1
~8
SIR
CS
CO
DE
SIR
CS
CO
DE
DIR
EC
T S
EN
DC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
16
*CM
D2
RE
PE
AT
RE
PE
AT
NU
MB
ER
DIR
EC
T00
ON
E S
HO
T
<CM
D1=
16H
EX
>01
RE
PE
AT
*CM
D2
00~
7F S
IRC
S C
OD
E
AC
TIV
E M
EM
OR
YC
OLO
R U
NIF
OR
MIT
Y D
AT
A R
EA
DC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
30
08
SS
ET
CO
LOR
RE
AD
00 O
FF
00 R
<CM
D1=
30H
EX
>01
AD
JUS
T01
G
02 P
RE
SE
T S
102
B
03 P
RE
SE
T S
2
04 P
RE
SE
T S
3
RE
UT
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0H
RV
RC
OLO
R =
R
H G
V G
VC
OLO
R =
G
H B
V B
CO
LOR
= B
BR
TIG
HT
UN
IFO
RM
ITY
RE
AD
CO
NT
RO
LLE
R
====P
RO
JEC
TO
R3
00
AS
SE
T
00 O
FF
01 A
DJU
ST
02 P
RE
SE
T S
1
03 P
RE
SE
T S
2
04 P
RE
SE
T S
3
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0H
V
— 22 —
FU
NC
TIO
NC
OM
MA
ND
DIR
EC
TIO
NC
MD
1C
MD
2D
AT
A
CX
A18
39 0
0H D
AT
A R
EA
DC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
30
10
FO
RM
AT
00 O
RD
INA
RY
01 R
GB
02 C
OM
P
RE
TU
RN
DA
TA
CO
NT
RO
LLE
R
++++P
RO
JEC
TO
R1
02
0P
ICT
UR
E[O
RD
INA
RY
]
PIC
TU
RE
[RG
B]
PIC
TU
RE
[CO
MP
]
CX
A18
39 0
5H D
AT
A R
EA
DC
ON
TR
OLL
ER
====
PR
OJE
CT
OR
30
20
FR
OM
AT
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