(Bytes) unit mode D9103 4 Target position [m] Note 1) 1 Note 1) No D9105 2 Positioning time [0.01 s] 1 0 to 6000 No D9106 2 Speed [mm/s] 1 0 to 400 No D9107 2 Acceleration [mm/s2] 1 0 to 60 No D9108 2 Deceleration [mm/s2] 1 0 to 60 No 0 to 20 D9109 2 Pushing speed [mm/s] Note2) 1 No 32768 to 32788 D910A 2 Thrust setting value Note 3) [0.1] 1 More than 10 Note 3) No 0 , 5 , 10 D910B 2 Load
TB PLC 0 No. 3 ABS 1 INC 2 *1 (mm/s) (-) (+) mm 42 - 1 mm/s 2 1 mm/s 2 100% * *1 0 1100 1100 INP ON INP ON *1 1100 ( mm/s) *1 * *1 (mm/s) * (-) (+) AREA ON mm 1122 AREA ON 1 1 *1(1)2(2) 1=2=0 AREA OFF 2 2 (-) (+) 43 - mm mm INP ON INP ON *1 * INP ON () INP ON *1 44 - 11.2 ID ID 132 ID () IO IO * [64 ] * [] S S * (+) (+) *1 + mm (-) (-) *1
style>
range (mm) e l M MM N P Q H S T V W ZZ f h (Both sides) (One side) 1/4 stroke 1/4 stroke 1/4 stroke 1/4 stroke 1/4 stroke 11 11 14 17 17 M14 x 1.5 M18 x 1.5 M18 x 1.5 M22 x 1.5 M26 x 1.5 27 30 31 37 40 1/4 3/8 3/8 1/2 1/2 37 to 39.5 51 58 58 71 72 153 168 182 218 246 37.5 44 52.5 59.5 69.5 9 11 12 15 15 8 0 0 0 0 255 284 298 360 390 20 to 500 20 to 600 20 to 600 20 to 750 20 to 750 43 52
NPTF PodLocallon P A B EA EB sP0101/sP01r r 1/B s S sPot0zsP0112 S sP01m/sP0113 1/6 9B S/B S/B s/B S/B sPoto4/sP0114 1/. B B B sPor05/sP011s la S S S Electrictl Conncllons: Class 1 suFplates provide access of alectri(El solenoid leads from the vatue bass inlothe conduitcavitywithinthe sub-platediecasting.
or 3/8" 67.0 67.0 60 121 7380 1 10 mm or 3/8" 75 189 11500 1 10 mm or 3/8" 502 195 11900 1 10 mm or 3/8" 130.0 130.0 602 282 17200 1 10 mm or 3/8" 752 441 26900 1 10 mm or 3/8" B1J B1JA Stroke volume dm3 / in3 NPT Piping Air (s) Spring (s) Piping Air (s) Spring (s) Piping Air (s) Spring (s) 6 0.47 28.7 3/8 10 mm or 3/8" [6 mm or 1/4" (x)] 10 mm or 3/8" [6 mm or 1/4" (x)] 8 0.9 55
At "L" level, Input voltage VL S 0.4V Load voltage lc Vcc 24v =5.1 mA
: Degrees of protection against water 0 1 2 3 4 5 6 7 8 1.
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
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!
Without brake C section details Cross section BB l\rodel D F L 1 5 4 231 LXPB B-50 L X P B B . 7 5 173 256 52 L X P B _ B _ 1 0 0 204 281 246 323 LXPB B -.125 L X P B B 1 5 0 271 348 120 90 L X P B _ B _ 1 7 5 296 373 LXPB_B_-200 321 394 ?$rc zs S8[i8$ [10 Camraclnectl' 0i|llomiom $lift $crExi tlE LXPB S With brake I I shows the localion at which origin point swiich operates.
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 31 76 25 19 16 M12 x 1.75 Bore size [mm] K KA LZ M MM N P PG PH PL PW S Without rod boot With rod boot H ZZ e f h l ZZ 40 6 14 71 11 M14 x 1.5 27 1/4 42 11 20 45 153
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.
ABS 3 NC 1 mm/s mm + 1 mm/s 2 1 mm/s 2 100% 1 0 1100 1~100 INP ON 1 INP ON 29 - 1~100 1 mm/s mm/s 1 AREA ON 1 1122 1 + AREA ON 112 2 2 1=2=0 AREA OFF + mm mm INP ON INP ON 1 INP ON INP ON 1 30 - 72 () ID ID 132 ID () IO IO 64 S S + mm (+) (+) 1 mm (-) (-) 1 mm/s 1 1 mm/s 2 1 INP mm 1 31 - mm 0mm 0mm 100mm 1 100mm (+) (-) 1 12 1. +(++) 2. (+)
4 Size 6 8 1/4 5/16 Symbol C4 C6 N3 N7 Symbol C6 C8 N7 N9 Straight type Elbow type Straight type Elbow type V R W X S T Y U One-touch fittings for regulator block One-touch fittings for centralized supply block Fitting size Elbow W Elbow X Elbow Y Straight V Fitting size Elbow S Elbow T Elbow U Straight R 4, 5/32 2.5 6 11 35.5 4, 5/32 6 3 6.5 11 36 6 3 12.5 19 35.5 1/4 6.5 6 11.5 38.5 1/4
IIIB OA DB IOL lou DC OX iDE .1 00 DS OH Z ODHIl ": ~ 46 , 31 1 21 18 5 3a , 2' 1 51 l a.5 6.6 If 7 32 1184 lO ' ;~ 52 35 ,24 I 22 15.5 41 21 i 54 16.5 6.6 11 9 ' 36 l a, J:!'
s NVZ3000 Symbol With Subplate Body porled Vpe Base mounted type with subplate NVZ3r20 NVZ340 Cv0.25 1 1 / l \ l h u d l / l \ L E l ff NVZ32?
N P FD FT FX FZ H zz I h 22 1 3 6 (3s) 3 . 1 9 (81) 2.76 (70) 2.05 (52) o.79 (20) 1.57 (40) 0.39 ( 1 0 ) 0.67 ( 1 7 ) MAx1.25 024 l7t M18x1.5 1 . 1 4 (30) 3 5 4 (90) 2 7 6 (70) 0 3 5 ( s 0 ) (.12) 3.54 (90) 1.97 (50) 4.33 ( 1 1 0 ) 2.28 (54) 6 3 0 o60) 205 (52) 11 2l 2.60 (66) s T o 6.61 (168) 1.38 {3s) 3.98 ( 1 0 1 ) 3.35 (85) 2.52 (s) 0 7 9 (20) (40) 0.39 ( 1 0 ) 0.67 ( 1 7 ) 0 2 8 t7l
s NVZ3000 Symbol With Subplate Body porled Vpe Base mounted type with subplate NVZ3r20 NVZ340 Cv0.25 1 1 / l \ l h u d l / l \ L E l ff NVZ32?
For subsonic range Where P1 + 0.1013 = (1 to 2) (P2 + 0.1013) Formula based on Cv factor Q = 197.8Cv P (P2 + 0.1013) kg/h Formula based on effective area Q = 11.0S P (P2 + 0.1013) kg/h [650] (133) 0.2 [646] (120) 0.1 S = 2.8mm S = 5.9mm S = 9.2mm S = 11.7mm S = 6.3mm S = 9.7mm S = 14.4mm S = 10.8mm S = 15.3mm S = 24.8mm Flow rate Q kg/h VCS212 VCS213 VCS214 VCS215 VCS 13 VCS314 VCS315