SMC Corporation of America
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Search Results "HRR012-AN-20-T"

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

4 x 2.6 Depth 7 or less (7.7) 30 20 Power supply/Output connector Bracket A (Part no.: ZS-46-A1) 30 25 20 20 20 45 30 2 30 34.6 19 5.2 5.2 5.2 14.7 47 9.6 Bracket configuration allows for mounting in four orientations.

O e b u t ) h c n i ( . n i M e l o h . a i d t h g i e W ) g ( d a e r h T ) T P ( R . o N t r a P H ) . x e H ( D 1 D 2 L1 L2 * A M R(PT) 6 1 / 3 8 / 1 S 1 0 5 0 T 2 Q K 0 1 4 . 1 1 0 1 5 . 9 1 5 . 2 2 4 2 5 . 6 1 6 2 1 4 / 1 S 2 0 5 0 T 2 Q K 4 1 5 . 6 2 6 2 1 2 8 / 1 S 1 0 7 0 T 2 Q K 0 1 2 . 3 1 0 1 5 . 0 2 5 . 3 2 6 2 7 1 6 . 4 2 1 4 / 1 4 / 1 S 2 0 7 0 T 2 Q K 4 1 5 . 7 2 8 2 2 2

H (Conduit terminal: T) I (DIN terminal: D) Main port 1(A), 2(B) A B C D E F G H I J K L M N P Q R S T U Model VNA2-10A VNA2-15A VNA3-20A VNA4-25A 3 8 1 2 3 4 63 144.5 55 125.5 52 42 26 29 4.5 14 24.3 72.5 2.3 80.5 25 75 34 80 84.5 124 135.5 151.5 137 153 156 172 60.5 73 1 80 90 62 72 50 60 31 36 35 40 5.5 6.5 17.5 20 28.3 33.3 84 100 2.3 2.3 92 108 30 35 84 90 43 49 89 95 93.5 99.5 Port

T 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 T Unit: N.m Cylinder stroke (mm) Bore size (mm) 5 10 100 40 45 50 75 15 20 25 30 35 12 0.11 0.10 0.08 0.07 0.07 0.06 16 0.15 0.12 0.11 0.10 0.09 0.08 20 0.19 0.18 0.17 0.16 0.37 0.32 0.28 0.25 0.23 0.21 25

(Bracket for centralized lead wire) 28 46 14 16 16 20 19 8 (1.6) 5.5 6 12 22 60 48 2 x 3 6.5 2 x 3.4 4 19.2 2 x 5.5 2 20 ISA3 Series Error Indication Main screen Name Description Measures Supply rated pressure (100 kPa to 200 kPa).

CJ2 CM2 Symbol A A' B C D E GA GB H J K MM NN Q T CD CH CK CT CU CX CY CZ Bore size (mm) 6 10 15 CG1 6 M10 x 1.0 18.5 7 9 14 16.5 3 10.5 11 17 6 8 M3 x 0.5 20.4 3 16 4 12 1.6 18 3.4 26 MB 6 M12 x 1.0 20.5 10 12 15 20 5 13 17 20 7 8 M4 x 0.7 23.9 5 20 6.5 13.5 1.6 24 4.5 33 6 M14 x 1.0 28 12 14 20 24.5 6 15.5 18.5 24 9 8 M5 x 0.8 31.7 6 25 8 17 2.9 29 5.5 42 MB1 Symbol S Z ZZ R Bore size (

W .TOea TT XIUS ' Z ZZ l ~/ t ~ ~ 20 27 Y. 42 11 20 45 153 8 15 !

) (4 port) 16 (20) (2 port) 16 (20) (4 port) 16 (20) (2 port) B A PB B A PB 62 (72) 75 (86) 38 50 62 (72) 75 (86) 14 12 50 38 14 12 Manual override PA P R2 R1 49 (64) 49 (64) Manual override PA 2-8 mounting hole Indicator light P R2 R1 2-8 mounting hole Indicator light 49 (64) 49 (64) M12 connector M12 connector 126.5 (139.5) 126.5 (139.5) PE port PE port PE port PE port 50 (63) 3 5 38

An auto switch can be mounted at 4 locations.

(mm) H1 6 7 8 11 11 H 36 40 45 53 56 GY 5 5.5 7 8 10 GX 10 8.5 9 11.5 11.5 EY 26 42 54 64 72 D 12 14 16 20 20 B1 17 19 22 27 27 C 54 68 86 104 124 B 24 28 32 39 50 BY 7 8 9 9 12 AL 19.5 23.5 27 32 32 BX 9 6.5 8 10 11 ET A 22 26 30 35 35 BS 42 50 54 64 63 K 5.5 5.5 6 7 7 BT Model MUB25 MUB32 MUB40 MUB50 MUB63 Standard stroke (mm) 5, 10 5, 10 5, 10, 15, 20 5, 10, 15, 20 5, 10, 15, 20 M5 x 0.8

The cushion effect (smooth start-up, soft stop) cannot be obtained in an intermediate stop or return from an intermediate stop using an external stopper, etc. When using an intermediate stop considering the above information, implement measures to prevent particulate generation and set the operating pressure to no more than 0.3MPa.

The cushion effect (smooth start-up, soft stop) cannot be obtained in an intermediate stop or return from an intermediate stop using an external stopper, etc. When using an intermediate stop considering the above information, implement measures to prevent particulate generation and set the operating pressure to no more than 0.3MPa.

(R) e r Port 3 (R) Port 2 (A) Port 1 (P) Port 23(P2) (Pilot air port) y i Port 2(A) u r y Port 1(P) t q VEX3320 (Air operated) VEX3420 (Air operated) w e q r y y t w r e u t t 12(P1), 23(P2) Port Port 3(R) y y (Pilot air port) r i Port 2(A) u r Port 1(P) t q Port 1(P) Port 2(A) Port 3(R) Component Parts No.

(mm) H1 6 7 8 11 11 H 36 40 45 53 56 GY 5 5.5 7 8 10 GX 10 8.5 9 11.5 11.5 EY 26 42 54 64 72 D 12 14 16 20 20 B1 17 19 22 27 27 C 54 68 86 104 124 B 24 28 32 39 50 BY 7 8 9 9 12 AL 19.5 23.5 27 32 32 BX 9 6.5 8 10 11 ET A 22 26 30 35 35 BS 42 50 54 64 63 K 5.5 5.5 6 7 7 BT Model MUB25 MUB32 MUB40 MUB50 MUB63 Standard stroke (mm) 5, 10 5, 10 5, 10, 15, 20 5, 10, 15, 20 5, 10, 15, 20 M5 x 0.8

are used 200 200 When 20 units are used 77% reduction Current model IR3000 Series 91% reduction 38000 yen reduction 150 150 117000 yen reduction Current model IR1000 Series IR2000 Series 100 100 IR1000-A Series IR2000-A Series IR3000-A Series 50 50 0 0 0 10 20 30 40 50 0 10 20 30 40 50 Units used Units used Released into atmosphere IR Special bleeding structure No fixed throttle in the new

16 53 30* 112 30 146 182 MGC 25 60 20 63 132 167 199 30* 37 60 20 132 63 167 202 37 28.5 25* MGF 70 25 73 162 44 210 227 33 20* CY1 Without rear plate Long stroke Bore size (mm) Bore size (mm) Stroke range (mm) Z R Y MY1 20 25 32 40 20 25 32 40 250 to 400 190 14 129 350 to 500 207 14 146 350 to 600 210 14 146 350 to 800 236 15 191 Note) Dimensions marked with "*" are not required for back

Lifting force = Theoretical lifting force / t Theoretical lifting force (Theoretical lifting force = P x S x 0.1) Cup diameter (8 to 32) [N] Cup diameter [mm] 8 10 13 16 20 25 32 S: Cup area [cm2] 0.50 0.79 1.33 2.01 3.14 4.91 8.04 -85 4.2 6.6 11 17 26 41 68 -80 4.0 6.2 10 16 25 39 64 -75 3.7 5.8 10 15 23 36 60 -70 3.5 5.5 9.3 14 22 34 56 Vacuum -65 3.2 5.1 8.6 13 20 31 52 pressure -60 3.0

When an electric current is applied to the molded coil r, the armature t is attracted to the core y, and through the push rod u, it pushes down the spool valve w. Then, port P and port A are connected. At this time, there will be gaps between the armature t and the core y, but the armature will be magnetically attracted to the core y.