Allowable Kinetic Energy and Rotation Time Adjustment Range JIS symbol Stable operational rotation time adjustment range Allowable kinetic energy Size Allowable kinetic energy (J) Cushion angle With air cushion Rotation time (s/90) Rubber bumper Without cushion 0.25 x 100.2 to 0.7 10 0.39 x 100.2 to 0.7 15 0.12 0.2 to 1 40 0.025 20 0.25 0.2 to 1 40 0.048 30 0.40 0.2 to 1 40 0.081
11/4 14 11/2 / OUT1 OUT2 1 1~5 V 2 4~20 mA 1T 1~5 V 1~5 V (PF3W3)1~5V (-1-1T) 4~20mA(47) -11No.PF-OMN0009CN-F PVC PF3W5 U 48 () 3 A : 11 21 10~100 L/min 30~250 L/min U PVC 2 11 21 R (PVC) 11 21 40 11 21 25 25A 30 30A 250L/min G : SI : G : 1[L/min]=0.2642[gal/min] 1[gal/min]=3.785[L/min] L/min L/min(gal/min) JIS K6742 1 2 1~5 V 4~20 mA (PF3W3) 1~5(1) 1 N M8(3m) -12No.PF-OMN0009CN-F
Thread 1 1 VXP2272-12 1 4 1 2 AC 1 VXP2382-14 2 VXP2392-20 VXP2272-32 VXP2382-40 VXP2392-50 32A 40A 50A Flange DC Note) Surge voltage suppressor is attached in the middle of lead wire.
hole: G1/2 LQ LVN Manual override (Non-locking) TI/ TIL Pilot port PA PAX PB Main port Main port Rc Pilot port Rc A B C D E F H J K L Model 1 8 1 4 1 4 VNC5-32A VNC6-40A VNC7-50A 1 4 1 2 1 1 2 105 120 140 77 96 113 53 60 74 26.5 30 37 120.5 137 160 20 24 24 129.5 147 170 229.5 247 270 197 214.5 237.5 55 63 74 17-4-25 6 Series VNC Flange Type Port size: 32F, 40F, 50F Electrical entry hole
P F H J L N P R Option Code Specification Standard (Cv: 0.06) High flow (Cv: 0.12) No code HF O-ring material 1) Not available for material code B.
T3 Cylinder with Bypass Piping Component Parts T2 63.4 73.8 80.3 T3 57.8 67.8 74.3 TH 47.9 57.3 57.3 TP Rc, NPT, G 1/8 Rc, NPT, G 1/4 Rc, NPT, G 1/4 T1 81.4 93.3 99.8 No. 1 2 3 4 Description Qty. 1 1 1 1 Part no.
Position of rotation axis: Parallel to side b and passes a center of gravity. 1=m 12 a 2 1=m 4 r 2 oWith a load at the lever end rThin rectangle board (Parallelogram) Position of rotation axis: Perpendicular to the board and passes through center line. 2 1 2 2 a +K 1=m1 +m2 3 a Ex.)
PAX PB Model %# & 0 & VXA3114 VXA3124 VXA3134 VXA3224 VXA3234 VXA3244 , 1 , / , 1 , / , 1 , / , / . 1 , / . 1 , / . 1 ,!* )!).)!)./ Material 17-3-101 6 The VX series will be revised shortly. Series VXA31/32 Common (C.O.)
P19 6 XL-OMY0002 3. 3 5 P11 25 40 50 XLD25-30-1 XLD40-30-1 XLD50-30-1 XLD25-30-1H XLD40-30-1H XLD50-30-1H 63 80 100 160 XLD63-30-1 XLD80-30-1 XLD100-30-1 XLD160-30-1 XLD63-30-1H XLD80-30-1H XLD100-30-1H XLD160-30-1H 1) M9// XLD25-30-1-M9// 2) 3) FKM:No.1349-80XLD25-30-1-XN1 4) S / 25 40 50 AS568-030V AS568-035V AS568-039V AS568-030 ** AS568-035 ** AS568-039 ** B2401-V24V B2401
CE1 Series/ 1. / 1 1.5 *3) *3)1 1 () 1. 2. 3. a. b. c. 4. a. b. c. 6. 1. 7. a.060 b.2585%RH c. d. e. 8. ,, f. g.( 9. ) h. i. j. k. l. 2. 1. 2. 1. 3 2. 1. 3. 4. 1. 12:0.071.0MPa 2063:0.051.0MPa :060 5. 2. 1. 5m 1. 2. 2. 3.
5"5 VVXA211-stations VVXA212-stations VVXA221-stations VVXA222-stations 7 %1 % = > = > 3 1 VXA21 -00 . ; < Construction/ Principal Parts Material 3 1 VXA22 -00 ; Common SUP type Solenoid Valve for Manifold " 5 '* #5 5 # I ,+!J ! #5 " 0"8 1 E F 4 " 4 % " 4 4 4 4 7 %1 % 3 VXA212-00 VXA213-00 VXA223-00 VXA224-00 = < .G < < * 4.5 . >< * < * 6 < * $ /H"3 % .
NVEP NVEF 3 1 r T 1 0 3 4 0 T I tffi IFTC I B"dt nowj I Rate rype I I Ports Port Size Code Max. Etfective Orifice (mm2) NPTF (Base mount type) 1 1 3 02=1h 03 = 3/s I .t 1 30 Q2=1/t 03=9e O4=1/z 1 45 03 =3/8 04=1/z 06=aa (Base mount type) 1 2 02=lL 03 = 3/s 8 4.5 4 ?.
(between lead wire and case) 1000 VAC for 1 min.
AB B MK MK Basic (mm) MK2T A B C D E F Yh9 G 45 52 64 77 H 16 16 20 20 I 9 9 11 14 J 7 7 8 10.5 K M6 x 1.0 M6 x 1.0 M8 x 1.25 M10 x 1.5 L 10 10 14 18 S 31.5 29 34 34.5 T 10.5 9 11.5 10.5 W 14 15 19 19 X 3 3 3.5 3.5 Z 6.5 6.5 7.5 7.5 AA 4.5 5 7 7 AB 1 1 1 1.4 AC 5.5 5.5 6.6 9 AE 1/8 1/8 1/4 1/4 Model 30 30 37 48 MKB32-Z MKB40-Z MKB50-Z MKB63-Z 0 0.062 0 0.062 0 0.062 0 0.062 49.5 57 71 84
Long stroke (mm) Slide bearing Standard stroke Long stroke Ball bushing bearing Standard stroke Long stroke X Y Z Bore size (mm) Stroke range (mm) SCXT Tube bore size A, #1(#1+#3) SCXT Tube bore size B, #1(#1+#3) 12 50, 75, 100 32 7.5 7.5 16 50, 75, 100 32 7.5 7.5 SCXT Tube bore size A, #2(#2+#3) SCXT Tube bore size B, #2(#2+#3) 20 75, 100, 125, 150, 175, 200 41 9 9 25 75, 100, 125, 150,
Mey = 1/3 x 3.36 x 9.8 x (50+19)/1000 = 0.76 We = 3.36 A3 = 19 Obtain Meay = 4.2 from Va = 420 in Graph (2). 2' = 0.76/4.2 = 0.18 pitch, yaw moment: Graph (2) 2 = Me/Mea Meay Nm 4.2 420 V mm/s 3-3 Sum of the Load Factors 1 + 2 + 2' = Applicable because 0.008 + 0.15 + 0.18 = 0.34 < 1 Use is possible if the sum of the load factors does not exceed 1. 1 + 2 < 1 8-9-6 6 Model Selection Series
NVEP NVEF 3 1 r T 1 0 3 4 0 T I tffi IFTC I B"dt nowj I Rate rype I I Ports Port Size Code Max. Etfective Orifice (mm2) NPTF (Base mount type) 1 1 3 02=1h 03 = 3/s I .t 1 30 Q2=1/t 03=9e O4=1/z 1 45 03 =3/8 04=1/z 06=aa (Base mount type) 1 2 02=lL 03 = 3/s 8 4.5 4 ?.
JIS B 9960-1: 1 ) JIS B 8433: *2) 1. 2. 3. 1. 2. 3. 4
Allowable Kinetic Energy and Rotation Time Adjustment Range JIS symbol Stable operational rotation time adjustment range Allowable kinetic energy Size Allowable kinetic energy (J) Cushion angle With air cushion Rotation time (s/90) Rubber bumper Without cushion 0.25 x 100.2 to 0.7 10 0.39 x 100.2 to 0.7 15 0.12 0.2 to 1 40 0.025 20 0.25 0.2 to 1 40 0.048 30 0.40 0.2 to 1 40 0.081
164.5 170 180 230 251 15 15 15 20 22 22 8 3 , , 8 3 4 1 2 1 Bracket dimensions E D C B A Model Port size 4 3 F 345 419.2 K 57 49.6 J 14 14 H 95 120 G 32.5 0 1 1 , 87.5 125 4 3 ALD600-06 to 10 ALD900-12 to 20 , 1 4 3 175 250 135 209 460 613 175 250 2 1 1 1 4 1 2 , , ALDU600-06 to 10, ALDU900-12 to 20 D.P.