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Projection Display<br>* a2 y6 R) a, m% e) N3 z2 R2 A
Serial Interface Specification<br>
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Version: 1.4<br>
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Table of Contents<br>4 o& I. n7 c$ W
1. RS232 SETTING 3<br>' z( l2 ^: @5 l4 h' v6 U2 r* _
2. CONTROL COMMAND STRUCTURE 3<br>
6 Q* n7 g) x1 i9 Z! m+ o3. CONTROL SEQUENCE 3<br>. o1 ]9 {4 ~- L6 E* w
4. OPERATION COMMAND 3<br>! T0 X& d! j! k, |$ V5 S
5. REMOTE COMMAND 3<br>0 `/ {# z& f, S$ A" [- d% ?
6. SET VALUE COMMAND 3<br>" X F. C6 P- l% E# g0 L# w) A( Z* D
7. QUERY COMMAND 3<br>
( r' c/ ?- }0 _4 X. Q, j8. HYPER TERMINAL SETTING GUIDE 3<br>9 K {1 l/ _! C4 @% C$ o. h0 f; [% z
APPENDIX A (AMX CONTROL ROOM CONSOLE COMPATIBILITY) 3<br>
% ^; A& J5 p4 R( O! JAPPENDIX B (DIN TO RS232 DIAGRAM) 3<br>. a$ l5 g4 A+ T8 K- V& U( L+ O
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, a3 K" k$ ~8 u4 g1. RS232 Setting<br>
, _8 k, n: n) k9 R& ABaud rate: 9600<br>
/ l" h8 o4 _6 D9 d! ^- {4 ZParity check: None<br>/ A# A# N7 V5 W0 v% D; a' Y
Data bit: 8<br>
' u! Y+ m$ S, t. c3 t' yStop bit: 1<br>Minimum delay for next command: 1ms<br>6 e8 e3 Z" T1 f/ X2 m* b
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; Z2 V5 e" N! p% ]- o* e2. Control Command Structure <br>" V: @4 x3 Q% _5 M5 T
The command is structured by the Header code, command code, data code and end code. Most of the commands are structured except some for the compatibility issue with other projectors.<br>$ o4 K. [! E: z+ Y( Z7 E+ i: O. P
<br>Header code Command code Data code End code<br>; l' l/ K9 |5 o3 U- G; Y1 \# S( b
HEX 7Eh Command Data 0Dh<br>
1 Y- Z& w! W6 z( i; S4 @ASCII ‘~’ Command Data CR<br>, L! H) ]# Z/ E5 l% U g H F
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" E5 }& H# o: {3 `! c& l3. Control Sequence<br>
, s& w) }0 x# R3 ^The projector may send a return code after it received a command. If the command isn’t received correctly, the projector will not send the return code<br><br>
8 l7 R r" ^1 ?% v<br>
2 ^7 j( `8 P* B: V; U _4. Operation Command<br>The operation commands execute the basic operation setting of this projector.<br>% z# C, p' q: x- `+ ^: D6 M+ E* z
Operation ASCII HEX<br>
, T% W# o9 H9 BPower On ※ ~ P N CR ※ 7Eh 50h 4Eh 0Dh<br>
$ l7 \9 L( ^' _/ NPower Off ~ P F CR 7Eh 50h 46h 0Dh<br>0 l/ d3 p0 q0 y b! ?
Auto Image ~ A I CR 7Eh 41h 49h 0Dh<br>
( p) u( _4 M( ]. r5 I QInput Select RGB ~ S R CR 7Eh 53h 52h 0Dh<br>
* R j! q* X+ W2 g r- AInput Select RGB2 ~ S G CR 7Eh 53h 47h 0Dh<br>
3 O" n4 j3 J5 B m- nInput Select DVI ~ S D CR 7Eh 53h 44h 0Dh<br>, a( P$ \& d, f
Input Select Video ~ S V CR 7Eh 53h 56h 0Dh<br>+ ]. Z* |" j+ }' ] T5 m
Input Select S-Video ~ S S CR 7Eh 53h 53h 0Dh<br> f) v7 d4 ` f3 Y
Input Select Component ~ S Y CR 7Eh 53h 59h 0Dh<br>
' B! t$ v/ W0 H7 ^Input Select Wireless ~ S W CR 7Eh 53h 57h 0Dh<br>! j& I' M5 _# u/ `' m
※ Power On command will not work for 1 minute after the power off command triggered.<br>
4 {' j. ^. s, V$ _; |※ CR : Carriage Return. <br>6 s( O' H/ w3 z0 o& @# ]
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5. Remote Command<br>
% E+ l V( b; K6 }2 dThe remote commands simulate the code send from IR remote handset.<br>
) a( A% t" y4 KButton’s name ASCII HEX<br>( C* \/ C* V- W1 a* Z0 i
UP arrow ~ r U CR 7Eh 72h 55h 0Dh<br>
- i/ J; {* u6 w0 A- N9 X3 u& yDOWN arrow ~ r D CR 7Eh 72h 44h 0Dh<br>
! T( v3 G& V) M& j5 B4 DLEFT arrow ~ r L CR 7Eh 72h 4Ch 0Dh<br>
+ C& q, G0 v$ {% e$ Q+ pRIGHT arrow ~ r R CR 7Eh 72h 52h 0Dh<br>
g. `6 C$ a7 D! S- R* R1 lPOWER ~ r P CR 7Eh 72h 50h 0Dh<br>
! |$ h: Y5 S( c& x; K4 s5 LEXIT ~ r E CR 7Eh 72h 45h 0Dh<br>
& O" [* b1 o6 N/ Y6 l4 o. m6 P0 ?INPUT ~ r I CR 7Eh 72h 49h 0Dh<br>
' R3 |1 m8 h N1 f! nAUTO ~ r A CR 7Eh 72h 41h 0Dh<br>
$ J0 p% V/ Z. J1 x. t( mKEYSTONE+ ~ r K CR 7Eh 72h 4Bh 0Dh<br>
2 N8 s+ @2 b1 T$ m& U/ `- gKEYSTONE- ~ r J CR 7Eh 72h 4Ah 0Dh<br>0 | X; {* B; h( P* p' @/ F
MENU ~ r M CR 7Eh 72h 4Dh 0Dh<br>
- l9 H' q) h! f$ j' D# kSTATUS ~ r S CR 7Eh 72h 53h 0Dh<br>
* `. L- S" I6 M1 BMUTE ~ r T CR 7Eh 72h 54h 0Dh<br>7 f. M+ X: }. E9 U5 U" V
ZOOM+ ~ r Z CR 7Eh 72h 5Ah 0Dh<br>% W0 O9 p' F: M; P4 U$ B
ZOOM- ~ r Y CR 7Eh 72h 59h 0Dh<br>
: s4 |) @9 h( \4 XBLANK ~ r B CR 7Eh 72h 42h 0Dh<br> o& m% n# F9 D* ]7 b9 w
FREEZE ~ r F CR 7Eh 72h 46h 0Dh<br>
4 Q) _6 k, b: C( |& a( {VOLUME+ ~ r V CR 7Eh 72h 56h 0Dh<br>* k4 X' k: r. ~1 V$ m( b0 f
VOLUME- ~ r W CR 7Eh 72h 57h 0Dh<br>6 Y4 |$ P0 n4 [( v! ?$ N: y/ T
Enter ~ r N CR 7Eh 72h 4Eh 0Dh<br>
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6. Set Value Command<br>
4 c3 c6 o' t3 A' m. uITEM ASCII HEX<br>8 K1 m' [- J5 u* C( {9 k0 E
Brightness ~ s B ? CR ※ 7Eh 73h 42h ?h 0Dh<br>
* L$ r; O, a" y9 i. w5 TContrast ~ s C ? CR 7Eh 73h 43h ?h 0Dh<br>9 |* b% z( q& ^
Color ~ s R ? CR 7Eh 73h 52h ?h 0Dh<br>9 X1 A- Y- x x% z. c
Tint ~ s N ? CR 7Eh 73h 4Eh ?h 0Dh<br>$ p ?5 t. \) x) v" Y7 T2 S; b
Scaling ~ s A ? CR 7Eh 73h 41h ?h 0Dh<br>6 z/ o- }8 L# p; @6 E& I
Color Temperature ~ s T ? CR 7Eh 73h 54h ?h 0Dh<br>: l9 O1 m9 m0 Z
Projection Mode ~ s J ? CR 7Eh 73h 4Ah ?h 0Dh<br>: F. h4 |% b R( x; V
※ ? : ASCII Data <br>
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Data Range<br>- _8 r R1 {9 X* s1 b
ITEM Set Data Range Source<br>* ^) x. c2 r+ c9 L5 X" x$ ^( |
Brightness 0 ~ 127 RGB<br>0 ~ 200 Video<br>
7 Q. |3 G! ]+ b6 \Contrast 0 ~ 200 RGB / Video<br>
/ o& l% c9 w2 gColor 0 ~ 200 Video<br>
8 U7 t5 c- C6 u+ gTint 0 ~ 200 Video<br>+ F. D( y! B7 \
Scaling 0: 4:3 1: 16:9 RGB / Video<br>! M1 }5 `4 q. g
Color Temperature 0:Cool 1:Normal 2:Warm 3:User RGB / Video<br>* T6 J1 w' I* t% m" ?- F
Projection Mode 0:Front 1:Rear+Ceiling 2:Rear 3:Ceiling RGB / Video<br>
0 F/ x8 M/ C2 f$ s/ i- l# E7 q<br>
/ w6 f' n, y- Z/ h- nAttention: Data range may be different for different models<br>
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Example 1. Adjust Brightness value to 100<br>Send Command : ~sB100CR<br>
7 ?1 ]9 H: e( O; r% i<br>
4 f6 u% T1 \$ }( ^. I: UExample 2. Adjust Color Temperature to Warm<br>Send Command : ~sT2CR<br>0 D$ k1 ~4 J: N( P+ i* f7 q
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7. Query Command<br>
8 j% ^1 s% ]+ p- N+ |4 k4 P) JITEM ASCII HEX<br>
6 r% Q" e9 K' S4 B8 X8 T! ISoftware Version ~ q V CR 7Eh 71h 56h 0Dh<br>
- ^ M+ K/ Q5 ]$ [% GPower State ~ q P CR 7Eh 71h 50h 0Dh<br># T# a9 k* a6 A" n0 W' E
Input Select ~ q S CR 7Eh 71h 53h 0Dh<br>5 d: z( T2 s3 y% A+ R) c( w) u
Lamp Hours ~ q L CR 7Eh 71h 4Ch 0Dh<br>
+ z! @+ A" ?; J) ]; YBrightness ~ q B CR 7Eh 71h 42h 0Dh<br>
& q: {" W2 W5 x$ @- y2 | o( h2 L. ?: v2 oContrast ~ q C CR 7Eh 71h 43h 0Dh<br>' n$ ] s; s3 Y! f% i, t
Color (Video) ~ q R CR 7Eh 71h 52h 0Dh<br>
( f+ |* U: L* Z$ N& V$ Y* N* oTint (Video) ~ q N CR 7Eh 71h 4Eh 0Dh<br>
% B- V# s& q7 KScaling ~ q A CR 7Eh 71h 41h 0Dh<br>! _$ y. h( V5 x$ K7 U
Color Temperature ~ q T CR 7Eh 71h 54h 0Dh<br>+ O) O ?( ?6 l; g
Projection Mode ~ q J CR 7Eh 71h 4Ah 0Dh<br> @0 t1 y+ m$ w5 S1 C) T0 t+ v! N( s
Response message<br>
! b& T7 P0 _' y+ g NITEM Response Message examples <br>
4 V/ z9 [+ G' V0 C9 z8 h1 ySoftware Version SAA0. 23 <br>
z" g1 r* ~- M8 J$ UPower State On Off <br>
& Y. Q: A! p# s+ [" i' u, m A/ sInput Select RGB DVI Video S-Video DVD HDTV <br>4 Q) d) C v) l) o
Lamp Hours 2000 <br>
1 |8 y5 V1 T) H# y! W0 R/ qBrightness 100 <br>
N2 P' x" G8 C$ X$ _& WContrast 100 <br>9 k6 X3 [9 k6 G! t6 O& f% q: y
Color (Video) 100 <br>
K* W' Q* f, P$ w( xTint (Video) 100 <br>9 ?. }: R( G+ k. q; y6 F8 e
Scaling 4:3 16:9 <br>. B1 }% q Y2 l, |
Color Temperature Cool Normal Warm User <br>
) D$ t$ F, ]% Q6 k- N0 SProjection Mode Front Rear+Ceiling Rear Ceiling <br>
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9 G* e* e( X) g1 [* C: o, @Example 1. Get Brightness value <br>Send Command : ~qBCR<br>Response : 100<br>5 t8 A1 M3 n+ K6 R6 k$ L
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/ Z V7 m. v' s+ r. H1 xExample 2. Get Color Temperature <br>Send Command : ~qTCR<br>Response : Warm<br><br>- P# H, L$ F K$ ~1 W
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$ L( q; G, ]/ c1 \1 k8. Hyper Terminal setting guide<br>
; U) f8 v) T# T$ c+ Z# s2 M% r9 h8-1 Connect the RS232 Cable between your computer and Projector。<br>) e& l4 C5 b$ h5 E9 {
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8-2 Open HyperTerminal ,<br>
1 f: i/ Y0 ~; e4 KWindow2000/XP HyperTerminal path:<br>
( f, w- S$ R( ?5 o3 X" ]Start \ Programs \ Accessories \ Communications \ HyperTerminal。<br><br>
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8-3 Setting the HyperTerminal parameter:<br>: \* ?$ {! a. s" A0 F- A, E, a% I4 h
Step 1. Type the connection name .<br><br>. c% i8 x" _2 O7 W% b5 h
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, I7 v& f( D$ G, v) n% O! B5 YStep2 . Choose the COM port for your RS232 Cable connected to.<br><br>
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Step3. In Bits per second choose “ 9600 ” and in Flow control choose “ None ”。<br><br>3 Q6 p1 @9 T6 a2 L8 H, L2 O
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Step4. Click the File and choose Properties to setting Keyboard parameter。<br><br>
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- G5 R5 r3 L# F, | k$ xStep5. In Setting page , choose Emulation type for your keyboard.<br><br>8 P' C4 ]' W( _0 o
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Step6. Click ASCII Setting icon to setup ASCII code parameter.<br><br>& P, y# \; Y4 D9 _( D2 i5 |4 o
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+ k& `- r/ `2 z* {- n; bStep7. Mark Send Line ends which line feeds and Echo typed characters locally and click OK bottom to complete setting. <br><br><br>. Z% Z) c* k6 K0 r5 m) a
Appendix A (AMX control room console compatibility)<br>
" d, E& C' J9 L! a; vControl room console list<br>% Y: x4 s' a& i2 P
Brand Device Baud Range Max length send Max length receive<br>, s) {: N/ R6 n
AMX Axcent 300~38400 64 64<br>- f* E# k. y- ] h5 |
AMX Axcent 2 300~38400 64 64<br>
& X5 E0 m- z8 p4 BAMX Axcent 3 300~115200 64 64<br>, g3 j5 s, L, Y- @1 N
AMX AXB-EM232 300~38400 64 64<br>* \, F: ?2 G9 V: t3 }# C
AMX AXC-232 300~38400 64 64<br>
: ^4 R. f/ b: G0 K% }/ sAMX AXC-232++ 300~115200 64 64<br>$ l3 j9 O5 r. U, E/ t8 U
AMX AXB-232+ 300~38400 64 64<br>
, A; i3 @, p' t" QAMX AXB-232++ 300~115200 64 64<br>4 u! f0 W; Q0 i2 ^$ S* U
AMX AXB-PCCOM 300~38400 64 64<br> M, s; f4 I1 w$ G
AMX NXC-COM2 150~230400 900 196<br>
' m. Y! e/ U1 I C; FAMX NXI 150~230400 900 196<br>
1 J/ B9 v3 _- {9 GAMX AXB-MIDI 300~38400 64 64<br>
# R, m/ u& W2 t$ I( o. GAMX AXC-MIDI 300~38400 64 64<br>3 P( A4 D5 P# [! R; g
AMX NXC-ME Ether Net <br>
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Please check the relative console provider’s website for updated product information!<br>4 y$ H, w9 L( a( u0 I: q$ L3 ~
<br><br>
. ]/ ~& a U% wAppendix B (DIN to RS232 diagram) <br>) f# h$ N% R" h1 E. C
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Notes:<br>
- Y9 Q P- c6 I* z! a, _7 ?Appendix C (DIN to RS232 diagram) <br>
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