MSQ Angle adjustment Range Figure 5 MSZ MSZ CRQ2X MSQX ad a ge ju Cl lt MRQ an st bo oc t r m nd en g k en tm wi in e us 10 10 se t r st on dj a ju an r on ti ot ad iti ta os ge at p ro er y nt io e b C e b n y is e ge n ad w d k an c ju lo t r C st in en g m bo st lt ju b ad M 0 ax 19 im e u ng m ra ro n ta tio Center position adjustment Table 2 R: Clockwise adjustment L: Counterclockwise
E C Padlock mounting position C D D Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com SUP SUP . A OUT IN A OUT IN 1 2 B 3 B EXH. EXH.
E C Padlock mounting position C D D SUP SUP. A OUT IN A OUT IN 1 2 3 B B EXH. EXH. H 28 30 36 44 54 G 33 42 44 50 61 F 45 55 58 65 76 E 22 21 26 D 34 46 63 67 78 C 40 53 70 75 90 B 20 29 39 42 53 A 59 78 107 110 134 I 45 55 63 69 81 Model Piping port VHS20 VHS30 VHS40 VHS40-06 VHS50 1/8, 1/4 1/4, 3/8 1/4, 3/8, 1/2 3/4 3/4, 1 3
If the leakage volume is 30 /min (ANR), the vacuum pressure of the S type is 20 kPa q w e, and for the L type it is 33 kPa q' w' e'. If the leakage volume is 5 /min (ANR), the vacuum pressure of the S type is 80 kPa r t y, and for the L type it is 47 kPa r' t' y'.
diameter C C CN Lead wire length 0.6 m Lead wire length 3 m No lead wire 05 0.5 mm 07 0.7 mm 10 1.0 mm 13 1.3 mm 15 1.5 mm ZL Refer to Table (2) for lead wire with 4-wire connecor.
Determination of load's kinetic energy (E) bore size E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 8-16-8.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 8-16-8.)
Determination of load's kinetic energy (E) bore size E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 8-16-8.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 8-16-8.)
MHK2-20S MHK2-20C 80 60 70 50 Holding force (N) Holding force (N) 60 Allowable moment Pressure 0.6MPa 50 40 Model Allowable moment Pressure 0.6MPa Nm 40 0.5MPa 30 0.5MPa 0.05 MHK2-12S, C 30 0.4MPa 0.4MPa 0.12 MHK2-16S, C 20 20 0.3MPa 0.25 MHK2-20S, C 0.3MPa 10 10 0.49 MHK2-25S, C 0 0 20 40 60 80 20 40 60 80 M: Allowable moment (M = WL) Holding point L(mm) Holding point L(mm) W MHK2-25S MHK2
IDX-OM-V020 Original Instructions PRODUCT NAME Refrigerated Air Dryer MODEL / Series IDFA60-23-A,C,L,R,T,V IDFA70-23-A,C,L,R,T,V IDFA80-23-A,C,L,R,T,V IDFA90-23-A,C,L,R,T,V This manual is intended to explain the installation and operation of the product.
Fittings & Tubing Air Cylinders Rotary Actuators How to Order 11 Vacuum suction type Clean series 11 M D HR 2 10 R M9B S 22 M D HR 2 10 R M9B S Number of fingers Copper, fluorine and silicone-free + Low particle generation Number of auto switches 2 2 fingers Nil S 2 pcs. 1 pc. 22 Vacuum suction type Nominal size 10 15 20 30 Auto switch Without auto switch (without magnet) Nil Connecting
Operating model: MHY2-16D Opening time: 0.15 s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b c B part e f d 2.
Operating model: MHY2-16D Opening time: 0.15 s a = 40 (mm) b = 7 (mm) c = 8 (mm) d = 5 (mm) e = 10 (mm) f = 12 (mm) A part a b Courtesy of Steven Engineering, Inc.-230 Ryan Way, South San Francisco, CA 94080-6370-Main Office: (650) 588-9200-Outside Local Area: (800) 258-9200-www.stevenengineering.com c B part e f d 2.
IDX-OM-W095-A / Series IDFC60-23-C,L,R,T,V IDFC70-23-C,L,R,T,V IDFC80-23-C,L,R,T,V IDFC90-23-C,L,R,T,V URLhttp://www.smcworld.com/ English instruction manual can be downloaded from our URLhttp://www.smcworld.com/ SMC , ISO4414 *1) JIS B8370 *2) *1) ISO4414Pneumatic fluid power Recommendations for the application of equipment to transmission and control systems. *2) JIS B8370 URLhttp
T: Long hole for mounting P O A F D Q 4 positions C Main port 3 (3 port valve only) VNA VNB Flow indicator for 2 port valve SGC Dimensions SGH (mm) Main port 1, 2, 3 2 Port 2 x 2 x Pilot port 12(P1), 10(P2) A B Note) C D E F G H I Model 3 Port 3 x 3 x VNC 3 8 1 2 2 x 3 4 2 x 1 3 8 1 8 VNH1 -10A VNH2 -15A VNH3 -20A VNH4 -25A A B A B A B A B 60 80 100 115 217 (219) 246.5 (248.5) 282 (284) 301
W C D FH FH V (Element removal dimension) HOW L M 4 x J A (mm) A B C D E F G H I J K L M N O P Q R Model FH990-04 FH990-06 FH990-08 FH990-10 FH990-12 FH990-16 FH991-20 FH991-24 FH991-28 FH991-32 1/2B M10 x 1.5 Thread depth 22 M10 x 1.5 Thread depth 22 1B 150 75 80 164 112 40 40 52.4 26.2 22.2 47.6 16.5 6 16.5 3/4B 1B M12 x 1.75 Thread depth 23 M12 x 1.75 Thread depth 23 1 1/2B 200 110 95
P101. 2 CG5 N A (mm) E max (J) E max (J) 2 E=(m/2)v 20 0.28 0.42 25 0.41 0.65 E J m: (Kg) v m/s 32 0.66 0.91 40 1.2 1.8 50 2.0 3.4 EE max (J) 63 3.4 4.9 80 5.9 11.8 100 9.9 16.7 (2) 2-7. 14 28. 3 13 2 3CDG5 (M4 1~1.2Nm 3 3.
CJP Rear trunnion Integrated clevis Boss-cut basic Basic Axial foot Front flange Rear flange Single clevis Double clevis Front trunnion T E BZ B L F G C D U CJ2 F Low friction direction Boss-cut front flange FZ CM2 Side at pressure When pressurized on head side Boss-cut front trunnion B Side at pressure When pressurized on rod side UZ C85 CG1 L 40 150 CM2Q F Standard MB C95 CDM2Q L F 40 C73
Rail mounting hole pitch 12.5 C 9 8 7 6 5 4 3 2 1 0 No.
Determination of load's kinetic energy (E) E > Es E Es Determination of bore size Review of larger bore size E = m E 2 a ( ) 2 = (Refer to page 1548.) 1000 P Ps P > Ps Determination of pressure for intermediate stop (p) (Refer to page 1548.)
6 @6 e #7 #7 @4 @8 @0 @0 w @3 Options (With lock mechanism and cancel cap) When cancel cap is used (-C) With lock mechanism (-D) #6 #2 @9 #5 #3 #1 #4 #0 Component Parts Component Parts Description Material Note Aluminum alloy Aluminum alloy Aluminum alloy Aluminum alloy Carbon steel Bearing alloy Carbon Steel Cast iron Cast iron Urethane Urethane Resin Carbon steel Carbon steel Carbon steel