SMC Corporation of America
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L Speed: V [mm/s] Cycle time: T can be found from the following equation. a1 a2 T = T1 + T2 + T3 + T4 [s] T1: Acceleration time and T3: Deceleration time can be found by the following equation. Time [s] T1 T2 T3 T4 T1 = V/a1 [s] T3 = V/a2 [s] T2: Constant speed time can be found from the following equation.

e q IN OUT t e q r IN OUT w r w AR30(K)-B/AR40(K)-B q t AR50(K)-B/AR60(K)-B e IN OUT q t r w e IN OUT r w Component Parts No.

Combination of S and T (Because S function is also included in T.) Combination of K and V (Only one or the other may be attached.) Note 2) Standard specification is the power cable with plug.

K F 10 AW B 30 03 BG JN K F 21 AW B 30 03 BG JN Copper, fluorine and silicone-free + Low particle generation q r t y w e Filter regulator Option/Semi-standard: Select one each for a to g.

PSE31(T) NPN 2 NPN 2 Max.30 V80 mA 1 V Max.30 V80 mA 1V :15 V 1 k :420 mA 300 (DC12 V) 600 (DC24 V) 50 DC+ DC+ OUT1 OUT1 OUT2 OUT2 DCDCPSE32(T) PSE33(T) NPN 2 PNP 2 Max.80 mA 1 V Max.30 V80 mA 1 V 15 V 1 k DC+ DC+ OUT1 OUT1 OUT2 OUT2 DCDCPSE34(T) PSE35(T) PNP 2 PNP 2 Max.80 mA 1 V Max.80 mA 1 V 420 mA 300 (DC12 V) 600 (DC24 V) 50 DC+ DC+ OUT1 OUT1 OUT2 OUT2 DCDC

speed and seconds of arc are found as follows. x t (1) t d t 1 / 2 t + C (2) C is integration constant.

R T XA H VA VB 3 U X PW 6 Section XX details XAH9 depth 6 S Q GC GA GB 2 x P PB XAH9 depth 6 2 x P (Plug) G J K b a PA + Stroke E FB FA e c d A + Stroke B + Stroke C + Stroke T-slot dimensions [mm] [mm] Bore size [mm] a b c d e Bore size [mm] f f 12 3.3 5.8 2.6 1.6 4.8 16 3.7 6.2 3 2.5 6.5 20 5.4 8.4 4.5 2.8 7.8 25 5.4 8.4 4.5 3 8.2 12 7 16 2.5 20 8.5 25 6 50 mm stroke or less Top-ported

9 #0 w #1 #0 t q e @9 #1 @1 !9 t @5@6 @1 #0 q !1 w #1 #0 @2 @9 #1 @1 RSH CE1 40 to 63 CE2 @0 @4 @8 i u o @3 !1 #1 #2 @8@4 !2 @7 !3#3 r !4 e !6 @6 ML2B ML1C #7 #6 !5 REA REC RHC !9 @5 t @6 y #0 w @1 #0 #5 !7 #4 q @9@2 !8 #1 #2 !7 #5 #4 @1 MTS CC Component Parts Component Parts Description Material Note Description Material No. No.

5 t !5 t r !9 !8 @2 w !4 !2 !0 !0 !6 !6 i u !7 o i u !7 o !3 y !1 e q !3 y !1 q @7 CXSJM20 to 32 CXSJL20 to 32 @5 i u !7 o !5 t !6 r !9 !8 @2 r !9 !8 @2 !6 o i u !7 !5 t #0 Rod cover Head cover Rod cover Head cover Parts List: Standard Piping No. Description Material No.

PA T (N) d d NN RW RW PW QW PB GP lE W Y Z 2-M5X0.8 2-RB G G HT U (NA) (Option) A L HN(MAX.)

B DIN rail mounting bracket [-D] VVQ1000-57A for {F, L, M, P, S (EX500) kit} VVQC1000-57A-S for {S (EX250) kit} VVQC1000-57A-T for {T, S (EX126) kit} 17 SOL. A 5 Station 7 SOL. B 18 SOL. A 6 Station 8 SOL.

t q e OUT IN OUT IN e q r r w w AR50, 60 AR30, 40 t q t q e e IN OUT IN OUT r w w r Parts list Material Note No.

Effective thread length (mm) Bore size (mm) Stroke range (mm) A B1 B2 D E F GA1 GA2 GA3 GB1 GB2 GB3 H H1 H2 I 20 18 13 26 10 8 16 10 12 12 8 10 10 41 5 8 31 25 to 300 15.5 25 22 17 32 12 10 16 10 12 12 8 10 10 46 6 8 34 25 to 400 19.5 32 24 22 38 16 14 19 11 13 13 8 10 10 53 8 9 40 25 to 500 21 40 24 24 41 18 16 21 12 17 17 11 16 16 54 10 11 48 25 to 500 21 (mm) Bore size (mm) K NN P S T

T \ l Main Parts $mim llUlff 300 3-Pofl/nhscl 0mmud $olenoid Urlrs Series NVKF300 Manifold Soecifications Valve stations 2-20 stations (max.)

For connector cable of M8 connector, refer to page 90. 3 Series SYJ3000 Construction (A) 4 (B) 2 (A) 4 (B) 2 2 position single 2 position double 5 (R) 3 (R) 1 (P) 5 (R) 3 (R) 1 (P) t e q t r w qr w (B) 2 (A) 4 (B) 2 (A) 4 u u 3 (R) 1 (P) 5 (R) 3 (R) 1 (P) 5 (R) y 3 position closed center/Exhaust center/Pressure center 3 position closed center (A) 4 (B) 2 q t r w 5 (R) 3 (R) 1 (P) (B) 2 (

VQ1000-FPG-C4M5-D: 6 sets Double check block 757 S0700 Series Construction Body Ported Construction 2(B) (A)4 S0716 2-Position Single r u e w q 3(R2) (R1)5 1 (P) t y i 2-Position Double S0726 2(B) (A)4 r u e w q 3(R2) (R1)5 1 (P) t y i 3-Position Closed Center S0736 r u e w q 2(B) (A)4 (R1)5 1 (P) 3(R2) t y i 4-Position Dual 3-Port Valve S07A6 r u e w q 2(B) 4(A) 5(R1) 3(R2) 1(P) N.C. + N.C

2 is not energized, the valve element A t connected to the piston u is closed by the return spring i. Then valve element B y connected to the valve element A t is open. When the pilot operated solenoid valve !2 is energized, the pilot air supplied to the bottom of the piston u moves upward to open the valve element A t and closes the valve element B y. Because rod !