4 1/4 44 16 32 10 85 15 26 54 10 10 8 M8 x 1.25 50 Up to 600 20 to 600 35 32 70 27 108 1/4 1/4 52 20 40 10 95 17 27 59 13 12 11 M8 x 1.25 63 Up to 600 20 to 600 35 32 86 27 115 1/4 1/4 64 20 40 10 102 17 26 67 18 15 11 M10 x 1.25 80 Up to 750 20 to 750 40 37 102 32 129 1/4 1/4 78 25 52 14 113 21 30 72 23 17 13 M12 x 1.75 100 Up to 750 20 to 750 40 37 116 41 140 1/4 1/4 92 30 52 14 124 21
: Degrees of protection against water 0 1 2 3 4 5 6 7 8 1.
1. 2. 3. 4. 4 - JXCD1/ 1. / [][] 1 1.5 *3) *3)1 1 5 - 2 2.1.
0.76 (A)4 2(B) 1 (P) (EA)5 3(EB) 2 position double VFA1000 VFA3000 (B)2 4(A) 5(EA) 1 (P) (EB)3 Body ported Base mounted VFA3000 VFA5000 1/8 1/4 4.0 P.1498 2(B) (A)4 (EA)5 1 (P) 3(EB) Upward 3 position closed center 2(B) (A)4 VFA5000 (EA)5 1 (P) 3(EB) 3 position exhaust center 2(B) (A)4 1/4 3/8 8.8 (EA)5 1 (P) 3(EB) 3 position pressure center 2(B) (A)4 Lateral (EA)5 1 (P) 3(EB) VFA3000 2
(Example) SS3YJA7-41-03-01. 1 set SYJA714 . 2 sets SYJ700-10-2A . 1 set (Example) SS3YJA5-40-03-01. 1 set SYJA514 . 2 sets SYJ500-10-3A . 1 set The asterisk denotes the symbol for assembly.
18 18 22 26 30 35 35 40 40 27 32 32 37 37 60 70 86 102 116 22 27 27 32 41 96 108 115 139 160 1/8 1/4 1/4 1/4 1/4 1/8 1/8 1/4 1/4 1/4 44 52 64 78 92 16 20 20 25 30 32 40 40 52 52 10 10 10 14 14 85 95 102 123 144 15 17 17 21 21 52 16 20 20 20 22 12 13 18 23 25 12 15 12 18 20 10 12 15 17 19 8 11 11 13 16 25 to 500 25 to 600 32 to 600 41 to 750 45 to 750 M18 x 1.5 M8 x 1.25 56.5 M18 x 1.5 M10
1 o q $8 y $1 r #5 B A CL CL1 MLGC @3 !4 %0 !3 #9 @8 #6 $0 w #0 $5 $7 $3 $9 %1 $4 @1 @4 !8 @0 !7 !
0 () 1 2 () 3 () 4 5 6 1 7 8 9 ON 10 11 12 13 1 14 2 15 Word2/ Word Bit 0 OFF ON*1 1-7 () 2 8-9 1:ABS() 2:INC() *2 10-15 () Word3 Word Bit 3 0-15 1 1 mm/s Word4,5 Word Bit 4 0-15 () (-)(+)*3 0.01 mm 5 0-15 () Word6 Word Bit 6 0-15 1 *1 1 mm/s 2 *1 ON ONOFF PLC *2 1(ABS)2(INC) *3 20(P.83) -39- Word7 Word Bit 7 0-15 1 *1 1 mm/s 2 Word8 Word Bit 8 0-15 *1 1% Word9
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$i3:;i, (3ol;1 2.40 ) 79+ 0 0033 M26rl 5 0.83 1 5 0 1.57 (61) (37) (40) (83) (38) \2t) Mi lLmete6 in Parenlheses CLEVIS PIN ROD CLEVI! DIMENSIONS REAF CLEVIS AORE .Dd9 I NUMEER BORE CDP.3A 50 40. 50. 63 0.47 2 . 1 9 1.47 0 . 1 6 0 . 1 2 (55.5) (47.s) l4) (3) 63 0.63 ! !!
Diagnostics type 1 . 5-1 Diagnostics type 1 Byte 0 General diagnostics 1 1 General diagnostics 2 2 Valve diagnostics 1 3 Valve diagnostics 2 General diagnostics 1 . 5-2 General diagnostics 1 Bit 0 System fault 0Diagnostics type 1Diagnostics type 1 1 Valve-coil(s) short circuit 0() 1 1 2 Module error 0 1 1 3 Changed module layout 0 1 1 4 US1 Diagnostics 0US1 ON 1US1 (DC19.2 V )
F 3 COMPRESSED AIR THEORY Units Pressur Prooerties of Gases lsothermic change (Boyle's Law) lsobaric change Charles Law Law of Gay Lussac lsochoric change Adiabatic (lsentropic) change Standard Volume Flow Bernoulli's Equation Air Humidity Relative humidity Pressur and Flow Use of the diagram: Formulae: 6 6 I 1 0 1 0 1 1 1 1 1 1 1 1 1 2 1 2 1 2 1 2 1 2 1 3 1 5 1 6 1 6 AE 36 36 5 AIR TBEATMENT
F 3 COMPRESSED AIR THEORY Units Pressur Prooerties of Gases lsothermic change (Boyle's Law) lsobaric change Charles Law Law of Gay Lussac lsochoric change Adiabatic (lsentropic) change Standard Volume Flow Bernoulli's Equation Air Humidity Relative humidity Pressur and Flow Use of the diagram: Formulae: 6 6 I 1 0 1 0 1 1 1 1 1 1 1 1 1 2 1 2 1 2 1 2 1 2 1 3 1 5 1 6 1 6 AE 36 36 5 AIR TBEATMENT
,oox'o''"n' ar3oro 60 Nole 2) Drain guide is G1i 4 (app cable 10 AF30lo 60) Nore 1) Wlhoul a valve name plate and caulion A F 1 0 1 0 6 0 Port size Symbol Port 1 0 20 30 40 50 60 Symbol Descrlption Applicable M5 a 1 B O AF20 to 60 1t4 a a a 3a a a 1t2 a g4 a a 1 a a auto dlain (N C.)
W W 1 1 W W 2 2 1 1 11 11 12 12 1 32 - 73 () 12 1. CW [CW] 2. CCW [CCW] 12 1. [] 2.
S [S ] 2.S [S ] S S 1 () (0 ) (+) (+) 1 + mm (-) (-) 1 mm 1 mm/s 1 mm/s 2 1 INP mm 1 31 - mm 0mm M (0mm) 100mm 1 M (100mm) (+)(-) 1 1 +(++) 12 2 (+) SW SW SW 12 1. 2. W W 1 1 W W 2 2 1 1 11 11 12 12 1 32 - 7.3 () 12 1.CW [CW] 2.CCW [CCW] 12 1. [] 2.
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i.\4 L, Material: Free cutting sulfer sleel Malenal: Cast lion -NX A 1 ~ 1-05 50-63 74 27 28 60 M18X 1.5 15.5 2Q 121'0711 1 ~ Y-04d 40 22 24 55 M1 4X 1.S 13 25 12171) 1 6'j-~ 38 p .OS 80 91 37 36 71 M22Xl.5 225 26 18,&070 281l V. SO-63 27 28 60 M' 8Xl .5 15 27 12'870 1 6 ~f 38 ~10 100 105 37 40 83 M26Xl .S 24.5 28 20-8-08< 3():gJ Y-08d 80 37 36 71 M22Xl .S 19 28 181. 010 28!